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An Indocyanine Green-Based Nanoprobe for In Vivo Detection of Cellular Senescence

Abstract

The Fruk laboratory is supported by Cancer Research UK (CRUK) grant C67674/A27887. AGB was supported by the W. D. Armstrong Studentship. MH was supported by the Gates Cambridge Scholarship. AB was supported by the Engineering and Physical Sciences Research Council Centre Interdisciplinary Research Collaboration Grant (EPSRC IRC, EP/S009000/1). Munoz-Espin laboratory is supported by the Cancer Research UK (CRUK) Cambridge Centre Early Detection Programme (RG86786), by a CRUK Programme Foundation Award (C62187/A29760), by a CRUK Early Detection OHSU Project Award (C62187/A26989), by a Medical Research Council (MRC) New Investigator Research Grant (NIRG) (MR/R000530/1) and by a Royal Society Research Grant (RG160806). EGG was holder of a “La Caixa” Foundation Scholarship for postgraduate studies at European Universities and funded by the CRUK Cambridge Centre Early Detection Programme. DM was funded by a New Investigator Research Grant (NIRG) (MR/R000530/1) and a CRUK Programme Foundation Award (C62187/A29760). HLO is funded by a CRUK Early Detection OHSU Project Award (C62187/A26989) and a Darley/Sands Downing College Fellowship (G109261). JG was funded by a Darley/Sands Downing College Fellowship (G109261). SM is funded by a CRUK Programme Foundation Award (C62187/A29760). MD was funded by the CRUK Cambridge Centre Clinical Research Training Fellowship. CS was supported by the Cambridge University Hospitals NHS foundation Trust. ELB, JJ, MG, TRE and SEB were supported by Cancer Research UK (C9545/A29580). JJ and SEB were also supported by EPSRC (EP/R003599/1). The TEM was funded through the EPSRC Underpinning Multi-user Equipment Call (EP/P030467/1).

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An Indocyanine Green-Based Nanoprobe for In Vivo Detection of Cellular Senescence

Author: Baker, Andrew G.,Hartono, Muhamad,Ou, Hui-Ling,Popov, Andrea Bistrović,Brown, Emma L.,Joseph, James,Golinska, Monika,González-Gualda, Estela,Macías, David,Ge, Jianfeng,Denholm, Mary,Morsli, Samir,Sanghera, Chandan,Else, Thomas R.,Greer, Heather F.,Vernet
Publisher: John Wiley & Sons
DOI: http://dx.doi.org/10.13039/501100000265
Source: https://digital.csic.es/bitstream/10261/371285/1/Cellular-Senescence.pdf
Bioimaging
An Indocyanine G een-Based Nanop obe o In Vi o De ec ion o
Cellula Senescence
And ew G. Bake , Muhamad Ha ono, Hui-Ling Ou, And ea Bis o ićPopo ,
Emma L. B own, James Joseph, Monika Golinska, Es ela González-Gualda, Da id Macias,
Jian eng Ge, Ma y Denholm, Sami Mo sli, Chandan Sanghe a, Thomas R. Else,
Hea he F. G ee , Aude Ve ne , Sa ah E. Bohndiek, Daniel Muñoz-Espín,* and
Ljiljana F uk*
Abs ac : The e is an u gen need o imp o e con en ional cance - ea men s by p e en ing de imen al side e ec s,
cance ecu ence and me as ases. Recen s udies ha e shown ha p esence o senescen cells in issues ea ed wi h
chemo- o adio he apy can be used o p edic he e ec i eness o cance ea men . Howe e , al hough he
accumula ion o senescen cells is one o he hallma ks o cance , su p isingly li le p og ess has been made in
de elopmen o s a egies o hei de ec ion in i o. To add ess a lack o de ec ion ools, we de eloped a biocompa ible,
injec able o ganic nanop obe (NanoJagg), which is selec i ely aken up by senescen cells and accumula es in he
lysosomes. The NanoJagg p obe is ob ained by sel -assembly o indocyanine g een (ICG) dime s using a scalable
manu ac u ing p ocess and cha ac e ized by a unique spec al signa u e sui able o bo h pho oacous ic omog aphy
(PAT) and luo escence imaging. In i o, ex i o and in i o s udies all indica e ha NanoJaggs a e a clinically
ansla able p obe o de ec ion o senescence and hei PAT signal makes hem sui able o longi udinal moni o ing o
he senescence bu den in solid umo s a e chemo he apy o adio he apy.
In oduc ion
Cellula senescence is a esponse o i epa able damage and
s ess esul ing in s able cell cycle a es , which can p e en
he expansion o al e ed, po en ially pa hological, cells. This
igge s he sec e ion o a complex mix u e o in lamma o y
and issue emodeling ac o s (senescence-associa ed sec e-
o y pheno ype, known as SASP) o aid he epai o he
su ounding issue. Unde no mal condi ions, he SASP can
ec ui in lamma o y cells o d i e senescen cell clea ance
ul ima ely execu ed by phagocy ic cells.[1,2] Howe e , pe sis-
en damage and s ess can esul in dys egula ion o
immunosu eillance and he accumula ion o senescen cells
in issues. Such an accumula ion p omo es he onse and
p og ession o mul iple age- ela ed and ch onic diso de s
including ca dio ascula diseases, ib osis, neu ological dis-
o de s, obesi y, in lamma o y synd omes and cance .[1,3] The
impo an ole o senescence in he de elopmen o a ie y
o pa hologies has been acknowledged by i s inclusion wi hin
he hallma ks o bo h ageing and cance .[4,5]
Al hough senescence can be a con ex -dependen an ag-
onis ic esponse, s udies ha e shown ha he emo al o
senescen cells by pha macogene ic app oaches can signi i-
[*] D . A. G. Bake , M. Ha ono, D . H.-L. Ou, D . E. González-Gualda,
D . J. Ge, D . M. Denholm, D . S. Mo sli, D . D. Muñoz-Espín
Ea ly Cance ins i u e, Depa men o Oncology, Uni e si y o
Camb idge, Hills Road, Camb idge CB2 0XZ, UK
E-mail: [email p o ec ed]
D . A. G. Bake , M. Ha ono, D . A. B. Popo , D . C. Sanghe a,
D . L. F uk
Depa men o Chemical Enginee ing and Bio echnology, Uni e si y
o Camb idge, Philippa Fawce D i e, Camb idge CB3 0AS, UK
E-mail: [email p o ec ed]
D . E. L. B own, D . J. Joseph, D . M. Golinska, T. R. Else,
D . S. E. Bohndiek
Depa men o Physics, Uni e si y o Camb idge, JJ Thomson
A enue CB3 0HE, Uni ed Kingdom
D . E. L. B own, D . J. Joseph, D . M. Golinska, T. R. Else,
D . A. Ve ne , D . S. E. Bohndiek
Cance Resea ch UK Camb idge Ins i u e, Robinson Way, Cam-
b idge CB2 0RE, UK
D . J. Joseph
School o Science and Enginee ing, Uni e si y o Dundee, Dundee
DD1 4HN Sco land, UK
D . D. Macias
Ins i u o de Biomedicina de Se illa, IBIS/Hospi al Uni e si a io
Vi gen del RocioUni e sidad de Se illa, A da.D . Fed iani/>,
Se illa 41009, Spain
D . H. F. G ee , D . D. Muñoz-Espín, D . L. F uk
Yusu Hamied Depa men o Chemis y, Uni e si y o Camb idge,
Lens ield Road, Camb idge CB2 1EW, UK
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he o iginal wo k is p ope ly ci ed.
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can ly p omo e (by ~30%) he heal hspan and li espan in
p oge oid and na u ally-aged mice.[6,7] These landma k
s udies accele a ed de elopmen o he apeu ic app oaches
such as senoly ic compounds o e adica e senescen cells,
and senomo phics and senos a ics o egula ion o he
in lamma o y SASP.[3,8–12] In case o cance , combina ion o
bo h p o- and an i-senescence ea men s e e ed o as he
“one- wo punch” app oach has shown pa icula ly p omising
esul s and has been highligh ed as a p omising u u e
s a egy wi hin p ecision oncology.[11–14]
Conside ing he impo an ole o cellula senescence in
disease de elopmen as well as he ecen ad ances in he
ield o seno he apies, su p isingly li le p og ess has been
made in he design o con as agen s and ools o in i o
de ec ion o he senescence bu den. This can pa ially be
explained by he lack o an uni e sal bioma ke o
senescence, hus, senescence de ec ion o en equi es a
mul is ep o algo i hmic app oaches based on an a ay o
bioma ke s.[15,16] Mos commonly employed a e he exp es-
sion o umo supp esso p53 and cell cycle inhibi o
p o eins p16 and/o p21 o asce ain he cell cycle a es ; and
senescence-associa ed β-galac osidase (SA-β-gal) pheno ype,
a colo ime ic eac ion based on inc eased lysosomal β-
galac osidase enzyma ic ac i i y in senescen cells. Al hough
widely used, enhanced SA-β-gal ac i i y is no a dis inc i e
ea u e o only senescen cells, bu i is also p esen in o he
cell ypes such as os eoclas s, neu ons and mac ophages.[17]
Despi e limi ed speci ici y, enhanced ac i i y o lysosomal β-
galac osidase was employed in he design o small molecule
luo escen senop obes.[18–20] Howe e , luo escence-based
s a egies a e no well sui ed o clinical applica ions because
o hei poo pene a ion dep h,[10] limi ing he imaging o
in e nal o gans which equi es a pene a ion dep h o up o
se e al cen ime e s.[21,22] To add ess his limi a ion, wo
posi on emission omog aphy (PET) p obes based on SA-
β-gal ac i i y ha e ecen ly been epo ed o de ec ion o
senescence.[23] Al hough PET is widely employed as a
clinical imaging s a egy, i equi es he use o adioac i e
aces, sophis ica ed imaging sys ems, as well as specialized
in as uc u e. In addi ion o PET, magne ic esonance
imaging (MRI), and compu ed omog aphy (CT), pho o-
acous ic omog aphy (PAT) has ecen ly eme ged as a
powe ul in i o imaging echnique[24] wi h signi ican
po en ial o ea ly de ec ion o cance .[25–28]
PAT employs a pulsed lase o exci e he app op ia e
con as agen , esul ing in con e sion o abso bed ligh in o
acous ic ene gy. As acous ic wa es sca e o a lesse ex en
han ligh , PAT images can be cons uc ed om la ge
pene a ion dep h compa ed o ligh mic oscopy echniques.
In con as o CT and PET, PAT does no equi e ionizing
adia ion, he acquisi ion imes a e sho e , and he ins u-
men s mo e a o dable and easie o ope a e.[25] Impo an ly,
by acqui ing images a se e al wa eleng hs, PAT allows o
mul iplexed imaging, esul ing in da a se s ha e eal he
dis ibu ion o se e al ch omopho es.[26]
Bo h endogenous molecules such as hemoglobin, and
exogenous nea -in a ed (NIR) abso bing dyes can be used
as PAT con as agen s.[29] B oadly speaking, an ideal PAT
con as agen should ha e a high mola ex inc ion coe -
icien and exhibi a dis inc , well-de ined abso p ion spec-
um o maximize he ligh abso p ion and acili a e di e -
en ia ion om o he ch omopho es.[29] In addi ion, i should
be pho os able while main aining a low quan um yield o
ensu e e icien con e sion o ligh ene gy in o hea .[30]
These p e equisi es make nano-based p obes excep ionally
well-sui ed, gi en hei unable abso p ion spec a, high
ex inc ion coe icien s and a la ge su ace a ea ha allows
o u he (bio) unc ionaliza ion wi h s abilizing and a ge -
ing agen s.[31–33]
He ewi h, we desc ibe design and alida ion o a no el
PAT nanop obe o in i o de ec ion o senescen cells. The
nanop obe was p epa ed by exploi ing sel -assembly o
indocyanine g een (ICG) dime s in o J-agg ega e s uc u es
unde mild and scalable condi ions. J-agg ega es, ini ially
desc ibed nea ly 100 yea s ago, a e sup amolecula assem-
blies o o ganic dyes such as cyanines, po phy ins and
pe ylene bisimides, cha ac e ized by unique op ical and
pho ophysical p ope ies.[34,35] A numbe o nanos uc u ed
J-agg ega es, anging in sizes om 90 o 130 nm, ha e been
p epa ed o da e, mainly o umo imaging and pho o-
he mal he apy.[36–40] He ewi h, we desc ibe nanosized J-
agg ega e p obe (NanoJagg) cha ac e ized by high pu i y,
ema kable physiochemical p ope ies, long- e m s abili y
unde con en ional s o age condi ions and biocompa ibili y.
NanoJaggs can be manu ac u ed in a scalable and ep odu-
cible way and employed o de ec ion o chemo he apy-
induced senescence in i o,ex i o and in i o using bo h
luo escence and PAT imaging.
Resul s and Discussion
Syn hesis and Cha ac e iza ion o NanoJagg P obes
Pu e NanoJaggs we e p epa ed by s i ing an aqueous
solu ion o indocyanine g een (ICG) dye a 65°C o 24 h
(Figu e 1a), and subsequen ly pu i ied by dialysis and ul a-
cen i uga ion (Figu e 1b). The cen i uga ion s ep is c ucial,
as p e ious s udies ha omi ed his pu i ica ion s ep
ob ained a complex mix u e o J-agg ega es and side
p oduc s (Figu e 1S).[36–39] This aises conce ns abou he
eliabili y o he conclusions d awn om hese ea lie
s udies, as J-agg ega es and hei indi idual building blocks
likely ha e di e en impac on cells. Assembly o NanoJaggs
was moni o ed by measu ing he abso bance o J-agg ega es
a λmax =895 nm and ICG a λmax =780 nm (Figu e 1c). Bo h
NMR and LC–MS/MS analyses we e pe o med o be e
unde s and he s uc u al composi ion o he pelle and
supe na an ob ained a e cen i uga ion (Figu e S2 o S4).
A single peak wi h 751 m/z was obse ed in he ch oma o-
g am o he pelle (Figu e S3b), while he ch oma og am o
he supe na an con ained mul iple peaks, some o which
ha e been iden i ied as ICG deg ada ion p oduc s (Fig-
u e S4b o d).
The disappea ance o he 1H NMR peak a 6.60 ppm
co esponding o he hyd ogen in he ca bonyl chain o ICG
indica es he o ma ion o he b idging bond be ween wo
ICG molecules wi hin NanoJagg s uc u e (Figu e 1d). This
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was in line wi h p e ious s udies epo ing o ma ion o ICG
dime s.[41,42] The 1H NMR s udy o he supe na an con-
i med he p esence o mul iple compounds (Figu e S4),
which amoun ed o 54% o he o al yield by mass.
Unlike p e iously epo ed J-agg ega e nanos uc u es,
NanoJaggs we e chemically pu e wi h 97% dime composi-
ion as demons a ed by HPLC (Figu e S5). While dime iza-
ion o ICG has been no ed when J-agg ega es o med in
hin ilms o nanoemulsions,[43] o he bes o ou knowledge,
his is he i s J-agg ega e nanopa icle epo ed ha is
en i ely composed o dime ic ICG.
To gain a be e unde s anding o he size dis ibu ion
and shape o he ob ained NanoJaggs, c yo-elec on mic o-
scopy (c yo EM) imaging was pe o med showing semi-
sphe ical NPs wi h an a e age diame e o 34�4.8 nm
(Figu e 1b and Figu e S6a). Fu he , ene gy dispe si e X- ay
(EDX) analysis demons a ed he p esence o sul u s em-
ming om he sul ona e g oup on he ICG building blocks
(Figu e S6b).
The abso bance spec um o NanoJaggs displays a ed
shi in compa ison o ICG (λmax =895 nm and λmax =780,
espec i ely Figu e 1c), while he luo escence spec a e eal
quenching o ICG dime s wi hin he agg ega es (λem =
810 nm) (Figu e S6c). Such quenching phenomenon is
ad an ageous o pho oacous ic imaging as i esul s in a
highe p opo ion o abso bed ene gy being con e ed in o
acous ic ene gy, hus enhancing he PAT signa u e.[44] In
ac , when no malized o he same abso bance maximum,
NanoJaggs exhibi a ema kable h ee- old enhancemen in
he o e all gene a ed pho oacous ic signal (Figu e S6d),
which is in line wi h p e ious epo s on pho oacous ic
p ope ies o J-agg ega es.[45] In addi ion, he ex inc ion
coe icien was calcula ed o be 1.92�0.07×109M1cm1
(Figu e S6e), which esembles ha o me allic plasmonic
nanopa icles,[29,46] e en hough NanoJaggs a e composed
en i ely o o ganic molecules.
In e es ingly, when we compa ed NanoJaggs o ICG
dime s in Dulbecco’s Modi ied Eagle medium (DMEM)
wi h 10% e al bo ine se um (FBS) used o main aining
cell cul u es, we obse ed ha dime s apidly assemble in o
NanoJaggs (Figu e S7a). This assembly was empe a u e-
dependen and inhibi ed a low empe a u e (Figu e S7 b
and c). The e we e also no disce nible changes in he
abso bance spec a o NanoJaggs when assessed in di e en
biologically ele an media (PBS bu e a pH 7.4, DMEM,
DMEM wi h 10% FBS and FBS only) o e a span o 7 days
indica ing hei ema kable colloidal s abili y (Figu e S8).
Rema kably, hese nanopa icles can be s o ed o mo e
han a yea as lyophilized powde , o o a leas 8 mon hs as
aqueous suspension, which signi ican ly enhanced hei
po en ial o clinical use.
Accumula ion o NanoJaggs in Senescen Cells
P e iously i was shown ha ICG dye unde goes e icien
up ake in o he lysosomes o cance cells lines.[47,48] The e-
o e, we hypo hesized ha ICG-con aining NanoJaggs
would le e age he bene i s o ICG imp o ed lysosomal
up ake. Compa ed o cance cells and no mal (di e -
en ia ed) cells, senescen cells a e cha ac e ized by an
enla ged lysosomal compa men , e iden in bo h an
inc eased size and a g ea e quan i y o lysosomes.[49–52]
Consequen ly, signi ican ly mo e NanoJagg p obes would be
expec ed o accumula e in senescen cells. To es his
hypo hesis, we i s pe o med cell up ake and colocaliza ion
s udies in human lung adenoca cinoma (A549) and melano-
ma (SK-MEL-103) cance cell lines demons a ing ha
NanoJaggs, simila ly o ICG, indeed a ge he lysosomal
compa men (Figu e S9).
Nex , we wan ed o explo e he speci ici y o NanoJaggs
owa ds senescen cells. Gi en ha senescence is a he e oge-
neous esponse ha depends on he igge , cellula ype
and he con ex , a ious models o senescence we e
employed in his s udy. Speci ically, senescence was induced
in SK-MEL-103 and A549 cance cells by ea men wi h
chemo he apeu ic Palbociclib, which selec i ely inhibi s
cyclin dependen kinases 4 and 6 (CDK4/6). In addi ion,
DNA in e cala ing chemo he apy agen Cispla in was
employed in A549 cance cells, and DNA-damaging adia-
ion was applied o human WI-38 ib oblas s o se e as
adio he apy-induced senescence model. The implemen a-
ion o senescence s a us in hese models was e alua ed
using es ablished p o ocols including inc eased SA-β-gal
ac i i y, p oli e a ion assays and enhanced exp ession o
p21 cell cycle inhibi o . In addi ion, dec ease in exp ession
le els o phospho yla ed e inoblas oma (Rb) p o ein, which
is a ma ke o an ac i e cell cycle p og ession, was
de e mined by wes e n blo ing (Figu e S10). Once senes-
cence models we e success ully es ablished, con ocal mic o-
scopy was used o image he accumula ion o NanoJaggs in
cells showing a subs an ial inc ease in all senescen cell
models compa ed o hei non-senescen coun e pa s (Fig-
u e 2a and b; Mo ie 1 and Mo ie 2). I should be no ed ha
ela i e luo escence uni s we e no malized by he o al cell
Figu e 1. Syn hesis and cha ac e iza ion o NanoJagg p obe. (a) Nano-
Jaggs a e p epa ed by s i ing o an aqueous solu ion o indocyanine
dye (ICG) a 65°C o 24 h. (b) C yo-EM o he esul ing sphe ical
nanopa icle indica ed an a e age size o 34�4.8 nm. (c) Cha ac e is ic
ed abso bance shi om 780 (ICG) o 895 nm is obse ed upon
NanoJagg o ma ion. (d) 1H NMR spec a indica e he p esence o ICG
dime s as he main NanoJagg building blocks.
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a ea (μm2) o accoun o abe an mo phology and enla ged
size o senescen cells, hus, ensu ing ha he ob ained
a e age signal is compa able ac oss di e en cell ypes.
The la ges NanoJagg up ake was obse ed in senescen
SK-MEL-103 and A549 cells (9.4× and 5.2×, espec i ely,
when compa ed o hei non-senescen cance cell coun e -
pa s), while adia ion-induced senescen WI-38 ib oblas s
showed only 2.7× highe luo escen signal han he co e-
sponding non-i adia ed cells (Figu e 2b). These esul s
we e addi ionally con i med by low cy ome y s udies
(Figu e S11). While senescen cells a e known o ha e
inc eased au o luo escence,[53] we ha e no obse ed any
in e e ence s emming om au o luo escence wi hin Nano-
Jagg’s exci a ion and emission ange (Figu e S12 a and b).
Unlike o cance cells, he accumula ion o NanoJaggs
in senescen cells was ound o be dose dependen and
esul ed in ele a ed signal le el, e en a he lowes
concen a ion es ed (0.4 mg/mL) (Figu e S13). This was in
con as o ICG dye, which showed signi ican up ake in
bo h he con ol and senescen cells (Figu e S14). We also
e alua ed he up ake o ICG dime s, howe e hei apid
assembly in o J-agg ega es esul ed in he simila up ake
pa e n as obse ed o NanoJaggs (Figu e S8 and S15).
Colocaliza ion s udies showed ha NanoJaggs a e
la gely accumula ed in lysosomes si ua ed in he pe inuclea
space (Figu e 2b and Figu e S16 and S17) while no no ice-
able accumula ion was obse ed in mi ochond ia (Fig-
u e S16 and S18) o endoplasmic e iculum (Figu e S16 and
S19).
Addi ionally, biocompa ibili y o NanoJaggs was as-
sessed by CellTi e -Blue iabili y assays in bo h senescen
and non-senescen human lung adenoca cinoma (A549) and
melanoma (SK-MEL-103) cell lines ea ed wi h wide ange
o NanoJagg concen a ions (0.1–100 μg/mL). As i can be
seen in supplemen a y Figu e S20, no signi ican oxici y was
obse ed wi hin his ange con i ming ha NanoJaggs a e
no oxic and can be sa ely used as a e sa ile senop obe o
de ec mul iple senescen pheno ypes by luo escence mic o-
scopy.
In addi ion o luo escence mic oscopy, we also showed
ha con en ional op ical o ligh mic oscopy can be used o
moni o selec i e accumula ion o NanoJaggs in senescen
cells (Figu e S21). This capabili y ende s NanoJaggs com-
pa able o comme cially used SA-β-galac osidase ac i i y
ki s in e ms o selec i i y, bu wi h he ad an age o being
applicable o li e cells due o absence o oxici y.
Finally, NanoJagg de ec ion po en ial was alida ed
using wo addi ional senescen cell models employing non-
cance ous cell lines. Senescen human umbilical ein
endo helial cells (HUVECs), a p ima y endo helial cell line,
we e ob ained a e Palbociclib ea men , while mouse
emb yonic ib oblas s (MEFs) a high passage numbe o
eplica i e cycles we e employed as a model o age- ela ed
eplica i e senescence. Bo h he con en ional SA-β-gal and
ou no el NanoJagg s aining we e pe o med using hese
cell lines. Palbociclib- ea ed HUVECs showed an inc eased
numbe o SA-β-gal posi i e cells and a signi ican inc ease
in he up ake o NanoJaggs (Figu e S22). The same was
obse ed wi h MEFs, which showed inc eased numbe o
SA-β-gal posi i e cells a eplica i e passage 9, a which
poin a signi ican inc ease in NanoJagg up ake was also
obse ed (Figu e S23). This esul indica es ha besides
being used as p obes o chemo- and adio he apy induced
senescence, NanoJaggs can also be employed o de ec ion
o age- ela ed senescence.
Mechanism o NanoJagg Up ake in Senescen Cells
A e we obse ed a signi ican inc ease in NanoJaggs
accumula ion in a ious senescence models, we wan ed o
gain mo e insigh s in o he unde lying mechanism espon-
sible o cellula up ake. Gene ally, ac i e endocy osis pa h-
ways can be g ouped in o mac opinocy osis (o phagocy o-
sis), pinocy osis, ecep o -media ed endocy osis (also known
as cla h in-media ed endocy osis), and ecep o -independen
endocy osis (in ol ing choles e ol-binding p o ein ca eolin
plasma memb ane buds).[54] As ecen s udies ha e iden i ied
al e ed endocy osis pa hways in senescence,[55] we se ou o
explo e NanoJagg up ake in p esence o p e- and pos -
cellula up ake inhibi o s (Figu e 3a). P e-up ake endocy o-
sis inhibi o s ei he block cell memb ane-based pa hways
such as mac opinocy osis (phopha idylinos i ol-3-kinase in-
hibi o Ly294002) and cla h in-coa ed pi o ma ion (Pi s op
2), o inhibi he o ma ion o dynamin p o ein (Dyngo4a)
in ol ed in cla h in- and ca eolin- media ed endocy osis
(s uc u es o hese inhibi o s a e shown in Figu e S24).[56–59]
Pos -up ake inhibi o s in e e e wi h p ocesses wi hin he
cell such as la e s age o cla h in-coa ed esicle ission om
he memb ane (p ochlo pe azine, PCZ)[56,60] and au ophagy
(Chlo oquine).[61]
Figu e 2. Selec i i y and accumula ion o NanoJaggs in senescen cells
in i o. (a) Con ocal images o non-senescen and senescen SK-MEL-
103 cells induced by Palbociclib and ea ed wi h 50 μg/mL NanoJaggs.
(b) Con ocal quan i ica ion o ela i e luo escen uni s (RFU)/μm2o
he NanoJagg signal in he di e en cell lines. Da a ep esen as
mean�SD (n=3 biological eplica es), and a Two ailed - es was
used o calcula e he signi icance (*p<.05, **p<.01, ***p<.001). All
examples used show a signi ican inc ease in NanoJagg up ake
compa ed o con ol cells and adjus ed o cell a ea.
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Signi ican dec ease in NanoJagg up ake (p<0.0001)
was obse ed when senescen SK-MEL-103 and A549
cance cells we e ea ed wi h inhibi o s o cla h in-media ed
endocy osis (Pi s op 2 and Dyngo4a) (Figu e 3b and c,
Figu e S25 and S26), wi h smalle changes obse ed upon
adminis a ion o mac opinocy osis inhibi o Ly294002 (p<
0.01) (Figu e 3b and c, Figu e S25 and S26).
In con as , non-senescen , con ol SK-MEL-103 and
A549 cells ea ed wi h p e-up ake endocy osis inhibi o s
showed no signi ican di e ences in in acellula accumula-
ion o NanoJaggs (Figu e S27 and S28) indica ing ha
inc eased endocy ic up ake is a senescence-dependen
e ec .
This aligns wi h p e ious s udies ha ha e shown an up-
egula ion o endo-lysosomal machine y as well as he
ac i a ion o mac opinocy osis (as a su i al mechanism
h ough nu ien sca enging) and phagocy osis (employed as
a o m o cell cannibalism) in senescen cells.[62–66] Indeed,
due o hei capaci y o engul o he cells and syn hesized
ma e ials,[62,63,67] senescen cells ha e o en been compa ed o
mac ophages.[67]
Con a y o p e-up ake endocy osis inhibi o s, pos -
up ake inhibi o s PCZ and Chlo oquine, esul ed in in-
c eased NanoJagg luo escence in bo h senescen and non-
senescen cell lines (Figu e 3b and c, Figu e S25 o S29). In
addi ion, signi ican ly lowe co-localiza ion wi h lysosomes
was obse ed a e PCZ ea men , which could be a ib-
u ed o PCZ-media ed dis up ion o he usion be ween
cla h in-coa ed esicles and lysosomes.[56] Chlo oquine, on
he o he hand, is an inhibi o o au ophagy ha induces
lysosome dila ion and a ec s a ious p ocesses downs eam
o lysosome o ma ion, hus no impac ing he colocaliza ion
(Figu e S25 o S29).[68]
Toge he , hese indings sugges ha NanoJaggs a e
in e nalized h ough an ac i e mechanism, likely in ol ing
bo h cla h in-media ed endocy osis and mac opinocy osis.
While his phenomenon has been p e iously no ed wi hin
he con ex o cell engul men ,[62] i s applica ion in de elop-
men o de ec ion s a egies o o imp o ed d ug deli e y
emains la gely unexplo ed. Gi en ha ICG has been
obse ed o bind o he cance cell memb ane and
subsequen ly unde go endocy osis,[47] i is emp ing o
hypo hesize ha NanoJaggs could po en ially ecognize
speci ic molecules on he senescen su aceome hus ena-
bling selec i e a ge ing. The iden i ica ion o he senescen
su aceome ep esen s an eme ging a ea wi h signi ican
po en ial o a ge ing senescen cells, and i wa an s
u he in es iga ion. Fu u e s udies will del e deepe in o
he mechanism o up ake o gain a mo e comp ehensi e
unde s anding.
Ex Vi o and In Vi o Assessmen o Senescence in
Chemo he apy-Induced Xenog a Using NanoJaggs
To assess he e ec i eness o NanoJaggs o selec i e up ake
in o senescen cells, we u ilized immunocomp omised mice
bea ing umo xenog a s es ablished using SK-MEL-103
melanoma cells ea ed wi h senescence-inducing
chemo he apy.[13] A e he o ma ion o umo s, mice we e
subjec ed o daily ea men wi h Palbociclib o e 7 days
(Figu e 4a). This egimen led o high le els o in e umo al
senescence as indica ed by an inc ease in SA-β-gal ac i i y
(Figu e 4b), he absence o he p oli e a i e ma ke Ki-67,
and a dec ease in phospho yla ed Rb p o ein le els.[13] A
single injec ion o ehicle (DMEM, phenol ed- ee), Nano-
Jaggs (200 μL a 1 mg/mL) o an equi alen amoun o ICG
dye we e adminis e ed o he mice, and he luo escen
le els analyzed a e 6 h by IVIS luo escence imaging
(Figu e 4a). Signi ican le els o NanoJaggs luo escence
Figu e 3. Mechanism o NanoJagg up ake in senescen cells. (a)
Schema ic ep esen a ion o endocy osis in senescen cells and he
inhibi o s used in his s udy. Th ee p e-up ake inhibi o s we e used
(Pi s op 2, Dyngo4a and Ly294002), as well as wo pos -up ake
inhibi o s (PCZ and Chlo oquine). (b) Con ocal images o NanoJagg
up ake in senescen SK-MEL-103 cells ea ed wi h p e- and pos -up ake
inhibi o s o endocy osis. Lysosomes a e s ained wi h Lyso acke g een
and nuclei wi h Hoechs (blue). (c) Con ocal quan i ica ion o ela i e
luo escen uni s (RFU/μm2) o SK-MEL-103 and A549 cells. Con ol
cells no ea ed wi h inhibi o s a e shown in black. Pi s op 2 and
Dyngo4a bo h esul in a signi ican inhibi ion o NanoJagg up ake in
bo h cell lines (p<0.0001), while Ly294002 caused lowe bu s ill
signi ican educ ion (p<0.01 o SK-MEL-103 and p<0.05 o A549).
Bo h pos -up ake inhibi o s esul in an inc ease o NanoJagg signal:
p ochlo pe azine’s inc ease p<0.01 o SK-MEL-103, and p<0.05 o
A549; Chlo oquine causes p<0.01 o SK-MEL-103 and p<0.0001 o
A549. Da a ep esen mean�SD (n=3 biological eplica es) and a
Two- ailed - es was used o calcula e he signi icance (*p<0.05,
**p<0.01, ***p<0.001, and ****p<0.0001).
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we e de ec ed in senescen umo s ea ed wi h Palbociclib
(n=4) bu no in con ol (p oli e a i e) umo s (n=4) (p=
0.0077) (Figu e 4c). In con as , ICG luo escence was
p edominan ly obse ed (p=0.0438) in non-senescen u-
mo s (n=4) (Figu e 4d), which aligns wi h he p e iously
epo ed endency o ICG dye o accumula e in agg essi e
solid umo s.[48,69]
Negligible backg ound luo escence signal in ehicle-
ea ed mice con ol (Figu e S30a) con i med ha obse ed
luo escence can be p edominan ly a ibu ed ei he o
NanoJaggs o ICG wi hin he umo s. Mo eo e , subsequen
ex i o biodis ibu ion s udies e ealed ha NanoJaggs
luo escence was ha dly de ec able 6 h a e adminis a ion
in o gans o he e iculoendo helial sys em such as he li e
and spleen, in bo h un ea ed and Palbociclib- ea ed mice.
In bo h mice g oups, a conside able luo escence signal was
obse ed in he kidneys, sugges ing ha enal clea ance is a
p e e en ial ou e o elimina ion (Figu e S30b).
Con ocal imaging o issue slices was conduc ed o
p o ide addi ional alida ion o he accumula ion o Nano-
Jaggs in he senescen umo s (Figu e 4e, p=0.0028).
To u he assess he e ec i eness o NanoJaggs in
a ge ing senescen cells, we also u ilized immunocomp o-
mised mice bea ing umo xenog a s es ablished using A549
adenoca cinoma cells ea ed wi h cispla in. A e he
o ma ion o umo s, mice we e subjec ed o in ape i oneal
cispla in o ehicle injec ions h ee imes a week o 14 days
(Figu e S31a). This egimen led o high le els o in a-
umo al senescence as indica ed by an inc ease in SA-β-gal
ac i i y and a educed umo g ow h a e (Figu e S31b and
e). Upon NanoJaggs adminis a ion ia he ail ein
injec ion, he signal- o-backg ound a io was signi ican ly
inc eased in cispla in- ea ed umo s (n=6) when compa ed
o he ehicle con ol (n=6) (p<0.05.). In addi ion, he
signal- o-backg ound luo escen a io signi ican ly in-
c eased (p<0.001) when cispla in- ea ed mice we e com-
pa ed p e- and pos -NanoJagg adminis a ion. This longi u-
dinal moni o ing clea ly demons a es ha he signal
inc ease s emmed solely om he accumula ion o he
nanop obe wi hin chemo he apy-induced senescen umo s.
NanoJaggs as Con as Agen s o Pho oacous ic (PA) Imaging
o Senescen Cell Bu den In Vi o
Following he encou aging esul s ob ained om
luo escence imaging, a subsequen s udy was conduc ed o
explo e he po en ial o NanoJaggs o be used as pho o-
acous ic (PA) con as agen s. PA is an eme ging imaging
echnique wi h subs an ial po en ial o ansla ional appli-
ca ions in cance and o he diseases, as i enhances he
imaging dep h, all he while main aining spa ial and
empo al esolu ion.[25,28,29,70] Two in a ed (IR) dyes, ICG
and ce uximab-800CW, a e cu en ly employed as PAT
agen s in clinical s udies o lymph node mapping in
melanoma (NCT05467137) and ce ical cance
(NCT03923881), espec i ely. Mo eo e , se e al PAT nano-
pa icle con as agen s, bo h me al nanopa icles and
o ganic s uc u es, ha e been epo ed and success ully
alida ed in p eclinical s udies.[29]
To e alua e NanoJaggs po en ial o PAT, we employed
immunocomp omised emale nude mice bea ing SK-MEL-
103 melanoma umo xenog a s, di ided in o Palbociclib- o
ehicle- ea ed g oups. NanoJaggs o ICG we e adminis-
e ed ia ail ein injec ion and PAT imaging ca ied ou a
in e als o 6 and 24 h pos -injec ion (Figu e 5a). Induc ion
o senescence wi hin umo s was con i med a e in i o
imaging by SA-β-gal ac i i y assays and immunohis ochemis-
y (IHC) s aining o pRB and Ki-67 (Figu e S32a). As
expec ed, he Palbociclib- ea ed g oup showed an inc eased
lysosomal SA-β-gal ac i i y and a dec eased nuclea s aining
Figu e 4. Fluo escence de ec ion o NanoJaggs ex i o. (a) Schema ic
o e iew o he in i o expe imen . The up ake o bo h ICG and he
NanoJaggs we e compa ed in Palbociclib- ea ed umo s s un ea ed
umo s. (b) SA-β- gal s aining o un ea ed and Palbociclib- ea ed
umo s. (c) IVIS luo escence images o dissec ed con ol (n=4) and
senescen umo s (n=4) a e ea men wi h NanoJaggs (le ).
Quan i ica ion o he a e age adian e iciency compa ing NanoJagg
luo escen signal (p=0.0077) is shown on he igh . (d) IVIS images
o dissec ed con ol and senescen umo s a e ea men wi h ICG o
6 h (le ). Quan i ica ion o he a e age adian e iciency compa ing
ICG luo escen signal (p=0.0438) is shown on he igh . (e) Con ocal
images and quan i ica ion o NanoJagg-posi i e cells compa ing he
un ea ed o Palbociclib ea ed umo s (n=4). Da a ep esen
mean�SD, and a Two- ailed - es was used o calcula e he
signi icance. (*p<0.05, **p<0.01, ***p<0.001).
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o pRB and Ki-67, indica ing a educed p oli e a i e
capaci y and he implemen a ion o he senescen p og am
(Figu e 5b). In addi ion, umo s ea ed wi h Palbociclib
showed a ma ked educ ion in p oli e a ion a es, he eby
con i ming he onse o cell cycle a es cha ac e is ic o
senescence (Figu e S32c o e).
As i can be obse ed in Figu e 5c, he NanoJaggs signal
was p ominen ly dis ibu ed h oughou he senescen umo
o Palbociclib- ea ed mice. In con as , in he con ol (non-
senescen , ea ed wi h ehicle) p oli e a i e umo s, he
signal was concen a ed a he umo edges. The signal- o-
backg ound a io (SBR) was de e mined by di iding he
signal om he umo egion o in e es (ROI) by he
backg ound signal ob ained h ough spec al unmixing o
he NanoJagg PAT spec um (Figu e 5c). This SBR was
compu ed o e e y axial plane o bo h con ol and
Palbociclib- ea ed umo s, p o iding a ep esen a i e Nano-
Jagg signal ac oss he en i e umo olume. A no ably highe
SBR was obse ed in he senescen , Palbociclib- ea ed
umo s (n=4), in compa ison o he p oli e a i e umo
coun e pa s (n=2) (p=0.0135). This obse a ion was
co obo a ed by compa able alues ob ained h ough quan-
i ica ion based on con as - o-noise a ios (Figu e S33a).
One o he ad an ages o PAT imaging lies in i s abili y
o acqui e and analyze mul iple da a s eams, including
pa ame e s such as blood oxygena ion and he co-colocaliza-
ion o blood essels using dis inc signals om de-oxy-
gena ed (Hb) and oxygena ed (HbO2) hemoglobin. Linea
spec al unmixing applied o hemoglobin (Hb), deoxyhemo-
globin (HbO2), and NanoJagg/ICG spec a (Figu e S33b),
e ealed ha in non-senescen umo s, NanoJaggs colocalise
wi h Hb and HbO2indica ing hei dis ibu ion wi hin
ascula u e (Figu e 5d). Howe e , in case o Palbociclib-
ea ed (senescen ) xenog a s, NanoJaggs we e ound o
in il a e he umo issue, and he e was no o e lap wi h Hb
and HbO2signals indica ing ha hey we e no co- localized
wi h ascula u e. To alida e ha he inc ease in NanoJagg
signal is no due o inc eased blood pe usion wi hin he
Figu e 5. Pho oacous ic imaging o senescen cells in li e mice employing NanoJagg p obe. (a) Expe imen al design using wo g oups o xenog a
mice ansplan ed wi h SK-MEL-103 cells: ea ed wi h Palbociclib o induce senescence, and a con ol ehicle. NanoJaggs we e injec ed in o bo h
g oups h ough ail ein. (b) Assessmen o senescence in umo s pos -in i o imaging. Palbociclib- ea ed, senescen umo s show s ong SA-β-
Gal ac i i y and dec ease in nuclea pRB and Ki-67 le els compa ed o con ol umo s. Scale ba s=100 mm. (c) Rep esen a i e axial images ( op)
o con ol ( ehicle+NanoJaggs, n=2) and senescen umo s (Pablociclib+NanoJaggs, n=4) ea ed wi h NanoJaggs. Signi ican di e ence can
be obse ed in signal o backg ound a io (SBR, bo om) o PAT signal in con ol and senescen umo . (d) PAT Images ob ained by spec al
unmixing o NanoJagg (yellow), Hb (blue) and HbO2( ed). Bo om image ep esen s scale ba o bo h (c) and (d). (e) Rep esen a i e con ocal
images o biopsied issue sec ions pos -in i o PAT imaging. In bo h cases mul iple umo s we e used, as well as imaged in di e en pa s o each
slice. Quan i ica ion o NanoJagg-posi i e cells indica es signi ican di e ences be ween senescen and con ol mice. Da a ep esen mean�SD,
and a Two- ailed - es was used o calcula e he signi icance (*p<0.05, **p<0.01, ***p<0.001).
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umo , a compa ison o HbO2and Hb signals was conduc ed
be ween senescence and non-senescen umo s (Fig-
u e S33c). This analysis e ealed no signi ican di e ences
be ween wo g oups (p=0.5099 and p=0.2926 espec i ely).
To u he con i m ha he NanoJagg signal is associa ed
wi h senescence, a co ela ion analysis was conduc ed using
pa ame e s such as he umo size and g ow h a e (Fig-
u e S33d). Rema kably, we ound ha he pho oacous ic
NanoJagg signal s ongly co ela es wi h he a es ed umo
g ow h a e ( 2=0.875, p=0.0061), bu no he umo size
( 2=0.015, p=0.817, ns). This co ela ion wi h g ow h a e
was no obse ed in he case o endogenous hemoglobin
HbO2( 2=0.112, p=0.516, ns, Figu e S33e).
The p esence o NanoJaggs in senescen umo s was
addi ionally con i med by luo escence imaging o he ex
i o umo slices (Figu e 5e). The o al numbe o Nano-
Jagg-posi i e cells is signi ican ly inc eased in senescen
umo s compa ed o con ol coun e pa s (p=0.0002).
Mo eo e , hese posi i e cells wi hin he senescen umo s
displayed a signi ican ly inc eased NanoJagg luo escence
signal when compa ed o he un ea ed con ols (p=0.0301,
Figu e S33 ).
Finally, PA imaging was also employed o moni o
NanoJaggs biodis ibu ion and ou es o elimina ion con-
i ming he da a ob ained om ex i o s udies (Fig-
u e S34a). S ong PAT signal in kidneys sugges s enal
clea ance ha is in line wi h he luo escence ex i o and in
i o da a. Con a y o he ex i o images, NanoJagg
accumula ion can also be obse ed in he spleen and li e ,
possibly due o he imp o ed sensi i i y o he imagng
echnique. Howe e , impo an ly, NanoJaggs signal in he
li e , spleen and kidneys dec eases o e ime, and becomes
signi ican ly educed a e 24 h (Figu e S34a and b). Fu -
he mo e, no disce nible his ological di e ences in issue
a chi ec u e be ween mice ea ed wi h he ehicle and hose
ea ed wi h NanoJaggs we e e ealed by hema oxylin and
eosin (H&E) s aining, indica ing an absence o hepa ic and
enal damage, as well as he lack o in lamma ion in spleen
(Figu e S34c).
Conclusions
The o ganic nanos uc u ed J-agg ega es (NanoJaggs) de-
sc ibed in his s udy enable he de ec ion o a ious ypes o
chemo he apy-induced senescence using ange o echniques
such as low cy ome y, con ocal imaging, in i o
luo escence, and PA imaging ac oss di e en se ings,
including in i o, ex i o, and in i o models. NanoJagg
syn hesis is highly ep oducible and scalable and deli e s a
p obe, which is s able in wa e and biologically ele an
media. The p obe is also sui able o lyophiliza ion, which
signi ican ly imp o es s o age ime and anspo . Unlike
p e iously epo ed J-agg ega e nanos uc u es, ou p obe
has high pu i y and we ha e shown ha i is composed
comple ely o ICG dime s. Al hough u he esea ch is
needed o ho oughly unde s and he mechanism o Nano-
Jagg up ake and lysosomal a ge ing, we p o ide e idence
ha he p e e en ial up ake o NanoJaggs in senescence is
egula ed, a leas in pa , by cla h in-media ed endocy osis
and mac opinocy osis. We also demons a e ha he
enhanced accumula ion o he p obe in senescen cells
co ela es wi h hei inc eased lysosomal con en .
The simple syn hesis, speci ici y owa ds senescen cells
and s ong PAT signal, makes NanoJaggs sui able o la ge-
scale p epa a ion and clinical ansla ion. Howe e , u he
s udies a e needed, including a ho ough biodis ibu ion and
biodeg ada ion s udy in heal hy mice as well as he
in es iga ion o o he models such as senescence- ela ed
ch onic diso de s, oncogene-induced senescence, and na u-
ally aged mice.
Ou s udy has demons a ed ha NanoJaggs can e ec-
i ely se e as selec i e con as agen s o luo escence and
PA imaging o senescen cells. The p ope ies o NanoJaggs
coupled wi h enhanced issue pene ance o PA imaging,
o e a p ac ical a enue o ansla ion o his senop obe
in o human se ings. The in i o de ec ion and moni o ing
o he senescen bu den using NanoJaggs could no only
o e aluable insigh s in o he ex en o issue dys unc ion
bu could also g ea ly impac isk s a i ica ion and diagnos-
ic e iciency o pa ien s ac oss a ious diseases including
cance . Assessmen o senescen bu den could aid di e -
en ia ion o pa ien s esponding well o he he apy and
hose a isk o umo elapse and me as asis. In addi ion, in
i o de ec ion ool could p o ide da a on he e iciency o
de eloped senoly ic in e en ions aimed a a ge ed emo al
o senescen cells. Indeed, he demons a ed inc ease in
NanoJaggs up ake by senescen cells could lead o he
design o he anos ic ools o selec i e nanos uc u ed
senoly ics ha do no equi e addi ional unc ionaliza ion
wi h a ge ing species.
Suppo ing In o ma ion
The au ho s ha e ci ed addi ional e e ences wi hin he
Suppo ing In o ma ion (Re . [30,31]).
Acknowledgemen s
The F uk labo a o y is suppo ed by Cance Resea ch UK
(CRUK) g an C67674/A27887. AGB was suppo ed by he
W. D. A ms ong S uden ship. MH was suppo ed by he
Ga es Camb idge Schola ship. AB was suppo ed by he
Enginee ing and Physical Sciences Resea ch Council Cen e
In e disciplina y Resea ch Collabo a ion G an (EPSRC
IRC, EP/S009000/1). Munoz-Espin labo a o y is suppo ed
by he Cance Resea ch UK (CRUK) Camb idge Cen e
Ea ly De ec ion P og amme (RG86786), by a CRUK
P og amme Founda ion Awa d (C62187/A29760), by a
CRUK Ea ly De ec ion OHSU P ojec Awa d (C62187/
A26989), by a Medical Resea ch Council (MRC) New
In es iga o Resea ch G an (NIRG) (MR/R000530/1) and
by a Royal Socie y Resea ch G an (RG160806). EGG was
holde o a “La Caixa” Founda ion Schola ship o pos -
g adua e s udies a Eu opean Uni e si ies and unded by
he CRUK Camb idge Cen e Ea ly De ec ion P og amme.
Angewand e
Chemie
Resea ch A icles
Angew. Chem. In . Ed. 2024,63, e202404885 (8 o 10) © 2024 The Au ho s. Angewand e Chemie In e na ional Edi ion published by Wiley-VCH GmbH
15213773, 2024, 25, Downloaded om h ps://onlinelib a y.wiley.com/doi/10.1002/anie.202404885 by Csic O ganización Cen al Om (O icialia Mayo ) (U ici), Wiley Online Lib a y on [07/11/2024]. See he Te ms and Condi ions (h ps://onlinelib a y.wiley.com/ e ms-and-condi ions) on Wiley Online Lib a y o ules o use; OA a icles a e go e ned by he applicable C ea i e Commons License
DM was unded by a New In es iga o Resea ch G an
(NIRG) (MR/R000530/1) and a CRUK P og amme Foun-
da ion Awa d (C62187/A29760). HLO is unded by a
CRUK Ea ly De ec ion OHSU P ojec Awa d (C62187/
A26989) and a Da ley/Sands Downing College Fellowship
(G109261). JG was unded by a Da ley/Sands Downing
College Fellowship (G109261). SM is unded by a CRUK
P og amme Founda ion Awa d (C62187/A29760). MD was
unded by he CRUK Camb idge Cen e Clinical Resea ch
T aining Fellowship. CS was suppo ed by he Camb idge
Uni e si y Hospi als NHS ounda ion T us . ELB, JJ, MG,
TRE and SEB we e suppo ed by Cance Resea ch UK
(C9545/A29580). JJ and SEB we e also suppo ed by
EPSRC (EP/R003599/1). The TEM was unded h ough he
EPSRC Unde pinning Mul i-use Equipmen Call (EP/
P030467/1).
We would also like o hank Gemma C onshaw and all
he eam in he biological esou ce uni (BRU) o he
Cance Resea ch UK Camb idge Ins i u e o hei suppo
wi h he animal models and day o day main enance. Fu he
we would like o hank And ew Mason, Duncan Howe, and
Pe e Gie h o he Yusu Hamied Depa men o Chemis y,
Uni e si y o Camb idge, NMR acili y, and Asha Boodhun,
Robe o Canales, and Dijana Ma ak-Vinko ic o he
Depa men o Chemis y Mass Spec ome y o hei
con inued suppo .
Compe ing in e es
AGB, DME and LF ha e iled a pa en o he p esen ed
echnology.
Da a A ailabili y S a emen
The da a ha suppo he indings o his s udy a e a ailable
in he supplemen a y ma e ial o his a icle.
Keywo ds: Cellula senescence ·cance ·endocy osis ·ICG
nanop obe ·pho oacous ic omog aphy (PAT)
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Angewand e
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Resea ch A icles
Angew. Chem. In . Ed. 2024,63, e202404885 (9 o 10) © 2024 The Au ho s. Angewand e Chemie In e na ional Edi ion published by Wiley-VCH GmbH
15213773, 2024, 25, Downloaded om h ps://onlinelib a y.wiley.com/doi/10.1002/anie.202404885 by Csic O ganización Cen al Om (O icialia Mayo ) (U ici), Wiley Online Lib a y on [07/11/2024]. See he Te ms and Condi ions (h ps://onlinelib a y.wiley.com/ e ms-and-condi ions) on Wiley Online Lib a y o ules o use; OA a icles a e go e ned by he applicable C ea i e Commons License