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Predicting high-grade cancer at ten-core prostate biopsy using four kallikrein markers measured in blood in the ProtecT study

Abstract

BACKGROUND: Many men with elevated prostate-specific antigen (PSA) levels in serum do not have aggressive prostate cancer and undergo unnecessary biopsy. Retrospective studies using cryopreserved serum suggest that four kallikrein markers can predict biopsy outcome. METHODS: Free, intact and total PSA, and kallikrein-related peptidase 2 were measured in cryopreserved blood from 6129 men with elevated PSA (≥3.0ng/mL) participating in the prospective, randomized trial Prostate Testing for Cancer and Treatment. Marker levels from 4765 men providing anticoagulated plasma were incorporated into statistical models to predict any-grade and high-grade (Gleason score ≥7) prostate cancer at 10-core biopsy. The models were corrected for optimism by 10-fold cross validation and independently validated using markers measured in serum from 1364 men. All statistical tests were two-sided. RESULTS: The four kallikreins enhanced prostate cancer detection compared with PSA and age alone. Area under the curve (AUC) for the four kallikreins was 0.719 (95% confidence interval [CI] = 0.704 to 0.734) vs 0.634 (95% CI = 0.617 to 0.651, P < .001) for PSA and age alone for any-grade cancer, and 0.820 (95% CI = 0.802 to 0.838) vs 0.738 (95% CI = 0.716 to 0.761) for high-grade cancer. Using a 6% risk of high-grade cancer as an illustrative cutoff, for 1000 biopsied men with PSA levels of 3.0ng/mL or higher, the model would reduce the need for biopsy in 428 men, detect 119 high-grade cancers, and delay diagnosis of 14 of 133 high-grade cancers. Models exhibited excellent discrimination on independent validation among men with only serum samples available for analysis. CONCLUSIONS: A statistical model based on kallikrein markers was validated in a large prospective study and reduces unnecessary biopsies while delaying diagnosis of high-grade cancers in few men.

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Predicting high-grade cancer at ten-core prostate biopsy using four kallikrein markers measured in blood in the ProtecT study

Author: Bryant, Richard J,Sjoberg, Daniel D,Vickers, Andrew J,Robinson, Mary C,Kumar, Rajeev,Marsden, Luke,Davis, Michael,Scardino, Peter T,Donovan, Jenny,Neal, David E,Lilja, Hans,Hamdy, Freddie C
Year: 2015
Source: https://trepo.tuni.fi/bitstream/10024/100111/1/predicting_high-grade_cancer_2015.pdf
Recei ed: Augus 8, 2014; Re ised: Decembe 17, 2014; Accep ed: Ma ch 11, 2015
JNCI J Na l Cance Ins (2015) 107(7): dj 095
doi:10.1093/jnci/dj 095
Fi s published online Ap il 11, 2015
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© The Au ho 2015. Published by Ox o d Uni e si y P ess.
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P edic ing High-G ade Cance a Ten-Co e P os a e
Biopsy Using Fou Kallik ein Ma ke s Measu ed in
Blood in he P o ecT S udy
Richa d J.B yan *, Daniel D.Sjobe g*, And ew J.Vicke s, Ma y C.Robinson,
Rajee Kuma , LukeMa sden, MichaelDa is, Pe e T.Sca dino,
JennyDono an, Da id E.Neal, HansLilja, F eddie C.Hamdy
A ilia ions o au ho s: Nu ield Depa men o Su gical Sciences, Uni e si y o Ox o d, UK (RJB, RK, LM, HL, FCH); Depa men o Epidemiology & Bios a is ics, Memo ial
Sloan Ke e ing Cance Cen e , New Yo k, NY (DDS, AJV); Depa men o Cellula Pa hology, Royal Vic o ia In i ma y, Newcas le upon Tyne, UK (MCR); School o Social
and Communi y Medicine, Uni e si y o B is ol, UK (MD); Depa men o Su ge y, U ology Se ice, Memo ial Sloan Ke e ing Cance Cen e (PTS, HL); Depa men
o Oncology, Uni e si y o Camb idge, UK (DEN); Depa men s o Labo a o y Medicine (Clinical Chemis y Se ice) and Medicine (Geni ou ina y Oncology Se ice),
Memo ial Sloan Ke e ing Cance Cen e , New Yo k, NY (HL); Depa men o Labo a o y Medicine and Clinical Sciences in Malmö, Lund Uni e si y, Skåne Uni e si y
Hospi al, Malmö, Sweden; and Ins i u e o Biomedical Technology, Uni e si y o Tampe e, Finland (HL).
* Au ho s con ibu ed equally o his wo k.
Co espondence o: Hans Lilja, MD, PhD, Memo ial Sloan Ke e ing Cance Cen e , 1275 Yo k A enue, New Yo k, NY 10065 (e-mail: [email p o ec ed]g).
Abs ac
Backg ound: Many men wi h ele a ed p os a e-speci ic an igen (PSA) le els in se um do no ha e agg essi e p os a e cance
and unde go unnecessa y biopsy. Re ospec i e s udies using c yop ese ed se um sugges ha ou kallik ein ma ke s can
p edic biopsy ou come.
Me hods: F ee, in ac and o al PSA, and kallik ein- ela ed pep idase 2 we e measu ed in c yop ese ed blood om 6129 men
wi h ele a ed PSA (≥3.0 ng/mL) pa icipa ing in he p ospec i e, andomized ial P os a e Tes ing o Cance and T ea men .
Ma ke le els om 4765 men p o iding an icoagula ed plasma we e inco po a ed in o s a is ical models o p edic any-g ade
and high-g ade (Gleason sco e ≥7) p os a e cance a 10-co e biopsy. The models we e co ec ed o op imism by 10- old c oss
alida ion and independen ly alida ed using ma ke s measu ed in se um om 1364 men. All s a is ical es s we e wo-sided.
Resul s: The ou kallik eins enhanced p os a e cance de ec ion compa ed wi h PSA and age alone. A ea unde he cu e
(AUC) o he ou kallik eins was 0.719 (95% con idence in e al [CI]=0.704 o 0.734) s 0.634 (95% CI=0.617 o 0.651, P <
.001) o PSA and age alone o any-g ade cance , and 0.820 (95% CI=0.802 o 0.838) s 0.738 (95% CI=0.716 o 0.761) o
high-g ade cance . Using a 6% isk o high-g ade cance as an illus a i e cu o , o 1000 biopsied men wi h PSA le els
o 3.0 ng/mL o highe , he model would educe he need o biopsy in 428 men, de ec 119 high-g ade cance s, and delay
diagnosis o 14 o 133 high-g ade cance s. Models exhibi ed excellen disc imina ion on independen alida ion among men
wi h only se um samples a ailable o analysis.
Conclusions: A s a is ical model based on kallik ein ma ke s was alida ed in a la ge p ospec i e s udy and educes
unnecessa y biopsies while delaying diagnosis o high-g ade cance s in ew men.
Risk o dea h om p os a e cance is s ongly associa ed wi h
le els o p os a e-speci ic an igen (PSA) in blood measu ed in
middle-aged men (1). E idence om andomized sc eening
ials in Eu ope shows ha PSA-based sc eening can educe
dea hs om p os a e cance (2–4), bu also leads o o e diag-
nosis and he isk o o e ea men among elde ly men wi h
This is an Open Access a icle dis ibu ed unde he e ms o he C ea i e Commons A ibu ion License
(h p://c ea i ecommons.o g/licenses/by/3.0/), which pe mi s un es ic ed euse, dis ibu ion, and ep oduc ion in
any medium, p o ided he o iginal wo k is p ope ly ci ed.
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a limi ed li e expec ancy (5,6). Al hough he PSA es de ec s
an inc eased isk o p os a e cance a an ea ly s age o he
disease, i has low speci ici y (7) such ha mos men wi h an
ele a ed PSA ei he do no ha e p os a e cance o ha e low-
isk disease ha is unlikely o a ec quali y o leng h o li e
i le un ea ed. An ele a ed PSA is he main indica ion o
he app oxima ely one million p os a e biopsies pe o med
pe annum in he Uni ed S a es (8). Annual p os a e cance
incidence in he Uni ed S a es is close o 250 000, illus a ing
he unme need o ma ke s ha con ibu e speci ici y beyond
ha o o al PSA in o de o disc imina e be ween men wi h
cance s likely o in luence he leng h o quali y o li e and
hose wi h indolen disease o benign condi ions associa ed
wi h PSA ele a ion inblood.
P e ious esea ch sugges ed ha a panel o ee PSA
( PSA), “in ac ” PSA (iPSA—de ec ing only nonca aly ic single-
chain ee PSA bu no mul ichain- ee PSA in e nally clea ed
be ween Lys145 o Lys146 [9]), and o al PSA ( PSA), as well as
human kallik ein– ela ed pep idase 2 (hK2) measu ed in blood,
is mo e accu a e in p edic ing he ou come o p os a e biopsy
han o al PSA alone among p e iously unsc eened (10–12)
and p e iously sc eened (11,12) men and men wi h a p e ious
nega i e biopsy (13). Decision analyses showed ha a s a is i-
cal model based on he ou kallik ein ma ke s in blood can
imp o e clinical decision-making abou biopsy o men wi h
a PSA abo e 3 ng/mL (10,11,14). These da a sugges ha he
numbe o men unde going biopsy could be educed o hal
using 20% o g ea e cance isk as a en a i e h eshold o
biopsy, wi h app oxima ely 20% o cance s emaining unde-
ec ed among p e iously unsc eened men. Howe e , mos o
hese cance s would be low-g ade and low-s age cance s ypi-
cally associa ed wi h o e diagnosis, while ew high-g ade can-
ce s would be missed.
The P os a e Tes ing o Cance and T ea men (P o ecT)
s udy in he Uni ed Kingdom is a p ospec i e andomized con-
olled ial e alua ing he cos -e ec i eness o con en ional
ea men modali ies in PSA-de ec ed clinically localized p os-
a e cance . A o al o 8565 o 82 428 (10.4%) men ec ui ed o
P o ecT had a PSA o 3.0 ng/mL o g ea e and we e o e ed
a s anda d 10-co e p os a e biopsy. O he 7413 pa icipan s
ecei ing biopsies, 2894 we e ound o ha e e idence o p os-
a e cance (15,16). In p e ious s udies, se um samples had
been used o measu e he ou kallik ein ma ke s. Howe e , i
is well ecognized ha e hylenediamine e aace ic acid (EDTA)
an icoagula ed plasma has ad an ages o e se um wi h ee
and in ac PSA, being less p one o deg ada ion in plasma, ena-
bling mo e accu a e bioma ke analyses wi h samples shipped
o labo a o ies dis an om he poin o ca e (9,17). The majo -
i y o pa icipan s en olled in P o ecT had EDTA an icoagu-
la ed blood collec ed, which p o ided unique oppo uni ies
o compa e he kallik ein ma ke s measu ed in plasma s
se um. P e ious e alua ions o he ou kallik ein ma ke s
we e limi ed o men unde going sex an p os a e biopsies
(10–13), while he s udy epo ed he ein has he added alue
o assessing he ma ke s in he mo e con empo a y ex ended
10-co e biopsy p o ocol used in P o ecT (15), as his leads o
highe a es o cance de ec ion (18,19). We pe o med e o-
spec i e measu emen s o ou kallik ein ma ke s ( PSA, PSA,
iPSA, and hK2) in c yop ese ed EDTA an icoagula ed blood o
se um in he con ex o a la ge andomized p ospec i e clini-
cal ial in ol ing con empo a y ex ended 10-co e biopsies o
de e mine whe he his panel o ma ke s imp o es p edic ion
o biopsy ou comes compa ed wi h o al PSA andage.
Me hods
Pa ien Coho
In he P o ecT s udy, 228 926 men aged 50 o 69yea s we e in i ed
be ween 2001 and 2008 o ecei e PSA es ing. O hose, 82 429
(36%) pa icipan s we e es ed, 8565 men wi h a se um PSA
measu emen o 3.0 ng/mL o g ea e we e in i ed o unde go a
10-co e p os a e biopsy, 7471 (87%) men we e biopsied, and p os-
a e cance was de ec ed in 2637 pa icipan s. Two men wi h
missing age in o ma ion a biopsy and h ee men wi h missing
Gleason g ading we e omi ed om all analyses. C yop ese ed
blood was e ie ed o 82% o biopsied P o ecT pa icipan s:
EDTA an icoagula ed plasma om 4765 men, se um om 1860
men, and bo h plasma and se um om 496 men. Pa icipan s
had consen ed o sample collec ion and analysis by en oll-
men in he P os a e Cance Mechanisms o P og ession and
T ea men (P oMPT) s udy (e hics app o al NRES 01/04/061).
Pa hological Analysis
Assessmen o biopsies was unde aken blind o ma ke esul s
by u ological pa hologis s using s anda dized p o ocols and
ag eed-upon epo ing p o o mas (20), cance s we e g aded
using he s anda d Gleason sys em (21), as de ailed in a ecen
publica ion p o iding in o ma ion on he p ocessing and epo -
ing o p os a e co es and changes in Gleason sco es o e ime
(22).
Labo a o y Me hods
Fo consen ed indi iduals unde going PSA es ing wi hin he
P o ecT s udy, blood was collec ed, cen i uged, and ozen a
-80° C.An icoagula ed plasma o se um was ob ained a e cen-
i uga ion a 3000 g o 10 minu es wi hin 30 o 60 minu es o
enipunc u e. Immunoassays o PSA, PSA (17,23), iPSA, and
hK2 (24,25) we e pe o med as p e iously epo ed (11) using
c yop ese ed samples shipped on d y ice o analysis in Hans
Lilja’s labo a o y a he Wallenbe g Resea ch Labo a o ies,
Depa men o Labo a o y Medicine, Lund Uni e si y, Skåne
Uni e si y Hospi al, Malmö, Sweden. Sample aliquo s we e sub-
jec o wo eeze- haw cycles, and analyses we e pe o med
wi h esea che s blinded o p os a e biopsy ou come.
S a is ical Me hods
P e ious s a is ical models we e based on kallik ein le els meas-
u ed in se um o p e iously unsc eened men unde going sex-
an p os a e biopsy as pa o he Eu opean Randomized S udy
o Sc eening o P os a e Cance (ERSPC) s udy in Ro e dam
(10,11). As le els o some o he kallik ein ma ke s di e in
an icoagula ed plasma s se um and he biopsied men in he
P o ecT coho we e subjec ed o ex ended 10-co e biopsy, we
gene a ed new p edic ion models. We used mul i a iable logis-
ic eg ession o build models p edic ing p esence o any-g ade
o high-g ade disease on biopsy based on a man’s age, PSA,
PSA, iPSA, and hK2. Res ic ed cubic splines wi h kno s a he
e iles we e included in he model o PSA and PSA bu no
iPSA and hK2. P edic ions o men wi h a PSA le el o g ea e
han 25 ng/mL we e based on PSA le els alone. The use o
splines o PSA and PSA, bu no iPSA o hK2, and he use o
a 25 ng/mL PSA cu o we e p ede e mined based on ou p io
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esea ch, and he only model i ing was o es ima e an in e cep
and coe icien s o each ma ke and nonlinea e m. We epo
he a ea unde he cu e (AUC), o disc imina ion, o he newly
de eloped models. AUCs we e compa ed wi h models based on
s anda d clinically a ailable p edic o s using he DeLong es
(26). We also in es iga ed whe he he model based on he ou -
kallik ein panel could educe he numbe o men unde going
biopsy wi hou delaying he diagnosis o high-g ade disease in
many men. We used decision cu e analysis (27) o in es iga e
he po en ial clinical e ec s o ou models. All epo ed s a is-
ics based on modelling we e co ec ed o o e i using 10- old
c oss- alida ion. As se um samples we e a ailable o some
men in he coho , we conduc ed explo a o y analyses applying
ou p e iously de eloped models o his subg oup. All P alues
epo ed a e wo-sided. Analyses we e conduc ed using S a a
12.0 (S a aCo p., College S a ion, TX).
Resul s
Cha ac e is ics o he 6129 biopsied men wi h blood samples a e
shown in Table1. An icoagula ed plasma (p ima y analysis) was
a ailable om 4765 men (3032 wi h no cance , 1733 wi h can-
ce ), and se um (seconda y analysis) was a ailable om ano he
1860 men (1221 wi h no cance and 639 wi h cance ). Finally,
we measu ed he ou kallik ein ma ke s in aliquo s om 496
men who had bo h plasma and se um samples (Supplemen a y
Table 1, a ailable online). O e all, p io PSA es ing was low
among biopsied men (18% o men p o iding plasma and 16%
o men p o iding se um).
The disc imina o y accu acy o each combina ion o kal-
lik ein ma ke s, as measu ed in EDTA an icoagula ed plasma,
is ou lined in Table2. The disc imina o y accu acy o he base
model (age plus PSA), as measu ed by he AUC, was 0.634 (95%
con idence in e al [CI]=0.617 o 0.651) o any-g ade p os a e
cance . Adding PSA, iPSA, and hK2 o his model imp o ed he
p edic i e accu acy (AUC 0.719 [95% CI=0.704 o 0.734], inc e-
men 0.085, P < .001). Use o he base model o p edic e idence
o Gleason sco e 7 o highe (high-g ade) p os a e cance a
10-co e biopsy ga e an AUC o 0.738 (95% CI=0.716 o 0.761),
while he addi ional kallik ein ma ke s s a is ically signi ican ly
enhanced he AUC o 0.820 (95% CI=0.802 o 0.838; inc emen
0.082, P < .001) (Table2).
To explo e he implica ions o using he models in clinical
p ac ice, we conduc ed a decision analysis o simula e ou -
comes i biopsy decisions had been based on a ious cu poin s
om he model. The esul s a e shown in Table3 and Figu e1.
Fo an illus a i e h eshold ep esen ing a 6% isk o Gleason
sco e 7 o highe (high-g ade) disease, use o his model would
educe he numbe o biopsies by 428 pe 1000 biopsied men
(43%), de ec 119 high-g ade cance s, and delay he diagnosis
o 14 o 133 high-g ade cance s, ou o which would ha e had
p ima y Gleason g ade 4. A decision-cu e analysis demon-
s a es ha use o he model con ibu es added clinical alue
(Supplemen a y Figu e3, a ailable online).
In a seconda y analysis, we examined he p ope ies
o he ou kallik ein ma ke s measu ed in se um om
ano he 1860 P o ecT pa icipan s (comple e da a shown in
he Supplemen a y Ma e ials, a ailable online). Applying he
p e iously epo ed “ERSPC-Ro e dam” (11) model imp o ed
he AUC compa ed wi h he base model (PSA plus age) om
0.665 o 0.709 (inc emen o 0.043, P=.010) o e idence o any-
g ade cance a biopsy, and om 0.785 o 0.836 (inc emen o
0.052, P=.010) o high-g ade cance a biopsy. Howe e , as
he “ERSPC-Ro e dam” model unde es ima ed isk o bo h
endpoin s (Supplemen a y Figu e 1B, a ailable online), and
ERSPC used sex an biopsies in con as o he minimum o
a 10-co e p os a e biopsy used in P o ecT, we ees ima ed he
coe icien s o he kallik ein ma ke s among men p o iding a
Table1. Cha ac e is ics o men in he P o ecT s udy coho *
EDTA an icoagula ed blood plasma Se um
Cha ac e is ics
No cance de ec ed
n=3032, 64%
No. (%)
Diagnosed wi h cance
n=1733, 36%
No. (%) P
No cance de ec ed
n=1221, 66%
No. (%)
Diagnosed wi h cance
n=639, 34%
No. (%) P
Clinical cha ac e is ics
Age (IQR), y 62 (58 o 66) 63 (59 o 67) <.001 62 (58 o 66) 63 (59 o 67) .005
P io PSA sc een 629 (21) 232 (13) <.001 207 (17) 83 (13) .024
Unknown 63 (2.1) 35 (2.0) 27 (2.2) 13 (2.0)
To al PSA (IQR), ng/mL 4.3 (3.6 o 5.7) 5.4 (3.9 o 8.6) <.001 4.5 (3.6 o 5.8) 5.6 (4.2 o 9.7) <.001
F ee PSA (IQR), ng/mL 1.00 (0.76 o 1.37) 0.97 (0.70 o 1.46) .3 0.97 (0.71 o 1.35) 0.92 (0.68 o 1.46) .7
In ac PSA (IQR), ng/mL 0.40 (0.27 o 0.58) 0.41 (0.26 o 0.66) .095 0.38 (0.25 o 0.57) 0.43 (0.27 o 0.70) <.001
hK2, ng/mL 0.043 (0.030 o 0.062) 0.049 (0.035 o 0.073) <.001 0.041 (0.029 o 0.061) 0.053 (0.036 o 0.081) <.001
Tumo cha ac e is ics
Gleason sum sco e
≤ 6 1099 (63) 464 (73)
7 542 (31) 143 (22)
≥ 8 92 (5.3) 32 (5.0)
S age
T1 1016 (59) 330 (52)
T2 331 (19) 88 (14)
T3 127 (7.3) 63 (10)
T4 4 (0.2) 2 (0.3)
Unknown 255 (15) 156 (24)
* The coho unde wen a 10-co e p os a e biopsy and had EDTA-an icoagula ed plasma and/o se um a ailable o e ospec i e measu emen s o o al, ee, and
in ac p os a e-speci ic an igens (PSAs) and hK2, in c yop ese ed sample aliquo s. Da a a e median (in e qua ile ange) o equency (pe cen age). IQR=in e qua -
ile ange; hK2=human kallik ein- ela ed pep idase 2; PSA=p os a e-speci ic an igen.
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se um sample in he P o ecT s udy and pe o med an in e -
nal alida ion o he upda ed model again u ilizing 10- old
c oss- alida ion. The AUC now imp o ed om 0.665 o 0.757
(inc emen 0.092, P < .001) o e idence o any-g ade cance ,
and om 0.785 o 0.859 (inc emen 0.075, P < .001) o high-
g ade cance as shown in Supplemen a y Table 2 (a ailable
online). Nex , we e alua ed whe he he disc imina o y p op-
e ies o he kallik ein ma ke measu emen s we e di e en
in c yop ese ed se um s an icoagula ed plasma using pai ed
se um and plasma samples om 496 P o ecT pa icipan s
(Supplemen a y Table3, a ailable online). We ound no di e -
ences in he p edic i e accu acy o he ma ke s measu ed in
se um compa ed wi h plasma.
Finally, as an ex e nal alida ion o he model de eloped o
p edic high-g ade cance based on kallik ein ma ke s meas-
u ed in an icoagula ed plasma om 4765 biopsied P o ecT
pa icipan s, we assessed he disc imina o y accu acy o his
model using 1364 biopsied P o ecT pa icipan s wi h only se um
samples a ailable o measu e he ou kallik ein ma ke s and
excluding 496 P o ecT pa icipan s wi h bo h an icoagula ed
plasma and se um samples a ailable. Using his independen
g oup o 1364 biopsied P o ecT pa icipan s, ou ex e nal ali-
da ion showed ha he model exhibi s excellen disc imina o y
accu acy (AUC=0.849, 95% CI=0.814 o 0.883) (Supplemen a y
Da a Sec ion 5, a ailable online).
Discussion
In his s udy we demons a e ha a panel o ou kallik ein ma k-
e s— o al PSA, ee PSA, in ac PSA, and hK2—can p edic he
esul o p os a e biopsy. A s a is ical model based on he ou
ma ke s imp o ed his p edic ion abo e and beyond bo h PSA
and age, as well as beyond a combina ion o o al and ee PSA
(Table2). Adecision analysis indica ed ha use o he s a is ical
model o guide biopsy decisions would educe he numbe o men
ecei ing unnecessa y biopsies, wi hou subs an ially a ec ing
he diagnosis o Gleason sco e 7 o highe (high-g ade) cance s.
Two ini ial s udies on he Gö ebo g a m o he ERSPC demon-
s a ed ha he panel o ma ke s imp o ed p edic ion o biopsy
ou come o bo h unsc eened men (10) and hose wi h a p e ious
Table2. Disc imina o y accu acy o each kallik ein model*
Model
Plasma
AUC (95% CI) Inc emen o e “Age + o al PSA” (P alue)
Any-g ade p os a e cance
Age + o al PSA 0.634 (0.617 o 0.651)
Age + o al PSA and ee- o- o al PSA a io 0.710 (0.695 o 0.725) 0.076 (P < .001)
Age + panel o ou kallik ein ma ke s 0.719 (0.704 o 0.734) 0.085 (P < .001)
High-g ade p os a e cance
Age + o al PSA 0.738 (0.716 o 0.761)
Age + o al PSA and ee- o- o al PSA a io 0.799 (0.779 o 0.819) 0.060 (P < .001)
Age + panel o ou kallik ein ma ke s 0.820 (0.802 o 0.838) 0.082 (P < .001)
* This able ou lines he h ee combina ions o ma ke s o p edic ing any-g ade o Gleason sco e 7 o highe (high-g ade) cance a 10-co e p os a e biopsy based on
kallik ein ma ke measu emen s in an icoagula ed plasma p o ided by 4765 biopsied P o ecT pa icipan s. A eas unde he cu e we e compa ed wi h models based
on s anda d clinically a ailable p edic o s using he DeLong es (26). All s a is ical es s we e wo-sided. CI=con idence in e al; PSA=p os a e-speci ic an igen.
Table3. Resul s o di e ing biopsy s a egies pe 1000 men sc eened a a ying h esholds o isk o any-g ade cance o high-g ade cance
among men wi h an icoagula ed plasma
Th eshold
Biopsies
Any-g ade p os a e
cance
Gleason sco e 7 o
highe (high-g ade)
P ima y Gleason
sco e 4 o highe *
Pe o med A oided (%) Found Delayed Found Delayed Found Delayed
Risk o any-g ade cance
Biopsy all men 1000 0 (0) 364 0 133 0 47 0
Risk by age and o al PSA
≥20% 997 3 (0.3) 363 0 133 0 47 0
≥30% 642 358 (36) 264 99 111 22 41 6
Risk by age and panel o ou kallik ein ma ke s
≥20% 834 166 (17) 334 30 129 4 46 1
≥30% 545 455 (46) 264 100 116 17 43 4
Risk o high-g ade cance
Biopsy all men 1000 0 (0) 364 0 133 0 47 0
Risk by age and o al PSA
≥4% 974 26 (2.6) 357 7 132 1 47 0
≥6% 876 124 (12) 332 32 127 6 44 3
≥8% 715 285 (28) 284 79 117 16 42 5
≥10% 533 467 (47) 235 129 105 28 39 8
Risk by age and panel o ou kallik ein ma ke s
≥4% 734 266 (27) 313 51 127 6 46 1
≥6% 572 428 (43) 270 94 119 14 43 4
≥8% 442 558 (56) 229 135 110 23 42 5
≥10% 361 639 (64) 203 161 103 30 39 8
* Includes cases wi h any Gleason G ade 5 componen .
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PSA in he no mal ange (28). Ou esul s con i m hese indings.
The assays we e subsequen ly modi ied, and a new s a is ical
model was buil based on a g oup o unsc eened men in he
Ro e dam a m o ERSPC. This was e med he “Ro e dam” model
and was shown o imp o e he p edic ion o biopsy ou come
o e and abo e PSA in se e al independen alida ion coho s,
including unsc eened men (11,14), men wi h p io sc eening (29),
hose wi h p io nega i e biopsy (13), and hose subjec o clini-
cal wo k-up be o e biopsy (12). The AUC esul s in hese p e i-
ous s udies a e e y simila o hose ound he e, including an
AUC o 0.820 o high-g ade cance , ep esen ing an inc emen o
0.082 o e age and PSA alone. Fo ins ance, in unsc eened men in
ERSPC, we epo ed an AUC o 0.825, 0.049 highe han he base
model (11), and o p e iously sc eened men he AUC was 0.793,
an inc emen o 0.094 beyond he base model (29).
The Ro e dam model was also shown o p edic clinical cance
endpoin s in men who we e ne e sc eened om he Malmö Die
and Cance s udy, a popula ion-based coho o 11 063 Swedish
men aged 45 o 73yea s who p o ided blood be ween 1991 and
1996. Subsequen diagnosis o p os a e cance was assessed by
linking wi h he Swedish Cance Regis y, upda ed o he end o
2006, and his occu ed in 943 men. Ra es o PSA sc eening we e
e y low in Sweden du ing he s udy. The Ro e dam model was
applied o a subse o men wi h a o al PSA le el 3.0 ng/mL o
mo e a baseline. The conco dance index o clinical diagnosis o
cance was highe o he Ro e dam model compa ed wi h PSA
alone (0.65 s 0.75, P < .001). Fo e e y 1000 men wi h a o al PSA
le el 3 ng/mL o mo e a baseline, he model would classi y as
high- isk 131 o 152 (86%) o he cance case pa ien s diagnosed
clinically wi hin i e yea s, and 421 men would be classi ied as
low- isk by he panel and ecommended o o go biopsy. O hese,
only wo men would be expec ed o be diagnosed wi h ad anced
p os a e cance (clinical T3 o T4 o me as ases) wi hin i e yea s.
Hence, while some men wi h a low sco e on he Ro e dam model
including he ou kallik ein ma ke s do indeed ha e biopsy-
de ec able cance , only a e y small p opo ion ha e agg essi e
disease ha would become appa en o e  ime.
The cu en s udy goes abo e and beyond he p e ious esea ch
no only in e ms o size—wi h a sample size app oaching all p e-
ious pape s on he kallik ein ma ke s combined—bu also in he
use o plasma samples, which appea o be mo e app op ia e o
analysis in clinical ca e, as he bioma ke s a e less p one o decay
in plasma compa ed wi h se um samples. Mo eo e , pa ien s in
he s udy unde wen a minimum o 10 co e biopsies, a he han
he ou da ed sex an biopsy used in p e ious s udies. Ou s udy
also p o ides clea e idence ha he s a is ical model based on
he ou kallik ein ma ke s could be used in e e yday clinical
p ac ice in o de o aid decisions abou p os a e biopsy.
The s udy has a numbe o limi a ions ha would need o be
add essed in subsequen esea ch. Fi s , esh samples would
need o be assayed in a ou ine clinical labo a o y a he han
in a esea ch se ing using c yop ese ed samples. Second, he
P o ecT ial p o ocol o e ed biopsies o all men wi h PSA le -
els o 3 ng/mL o g ea e , and no ably 87% o men accep ed he
o e o a biopsy. In ou ine clinical p ac ice, a man p esen ing o
a u ologis wi h an ele a ed PSA would be subjec ed o clinical
wo k-up, including assessmen o benign disease and equen ly
a epea PSA (30). Biopsy migh no be indica ed i he PSA is lowe
on epea es ing o i he PSA ele a ion is a ibu ed o a benign
cause. I may be ha some o he in o ma ion p o ided by he
kallik ein model is al eady cap u ed in such a clinical wo k-up. I
so, i is plausible ha while he kallik ein model may be o alue
whe e all men wi h ele a ed PSA a e biopsied, i is no o alue o
men selec ed o biopsy acco ding o a u ologis ’s clinical judg-
men . Thi d, he P o ecT coho does no e lec clinical p ac ice
in he Uni ed Kingdom, whe e li le oppo unis ic PSA es ing
akes place in he communi y (31) in con as wi h many o he
coun ies whe e PSA es ing and e es ing p e ails.
A de ini i e ou -kallik ein panel e alua ion will equi e he
p ospec i e analysis o samples aken om men wi h ele a ed
PSA le els in whom u ologis s ha e made he clinical judgmen
o pe o m a biopsy. The coho should include all-come s,
i espec i e o p io sc eening, PSA cu o used, o biopsy his-
o y. Kallik ein ma ke s should be measu ed om plasma in a
clinical labo a o y wi hin one o wo days o he blood d aw.
The biopsy would in ol e he 12 o 14 co e app oaches com-
mon in US p ac ice. Ma ke alues should be inco po a ed in o
a p especi ied s a is ical model including da a on digi al ec al
examina ion and his o y o p io biopsy. Such s udies a e cu -
en ly unde way.
In conclusion, we p o ide e idence ha a panel o ou kal-
lik ein ma ke s, inco po a ing o al PSA, ee PSA, in ac PSA,
Figu e1. Clinical implica ions o a ious biopsy s a egies using a model de eloped o p edic he isk o Gleason sco e 7 o highe (high-g ade) p os a e cance based
on ou kallik ein ma ke s measu ed in an icoagula ed plasma collec ed om 4765 biopsied P o ecT pa icipan s. The g aph illus a es he esul s o di e ing biopsy
s a egies pe 1000 biopsied P o ecT-pa icipan s, wi h he x-axis deno ing he isk o high-g ade cance and he y-axis indica ing he numbe o men biopsied (black
line) o de ec ed wi h e idence o high-g ade cance (g een line) using di e en biopsy s a egies. The do ed e ical blue line illus a es a en a i e cu poin (6% isk
o high-g ade cance ) a which only 572 o 1000 o he men would be biopsied, which would esul in he de ec ion o 119 o 133 high-g ade cance s.
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and hK2, is supe io o o al PSA alone in p edic ing he esul o
p os a e biopsy. The ma ke s di e en ially de ec ed high-g ade
disease. In a decision analysis we ound ha implemen a ion
o a s a is ical model based on he ma ke s would educe by
close o hal he numbe o unnecessa y biopsies unde aken,
while delaying diagnosis o only a small numbe o high-g ade
cance s. These indings need o be con i med in p ospec i e
esea ch using clinical coho s.
No es
Au ho Con ibu ions: D . Lilja had ull access o all o he da a
in he s udy and akes esponsibili y o he in eg i y o he
da a and he accu acy o he da a analysis. S udy concep and
design: HL and AJV. Acquisi ion, analysis, o in e p e a ion o
da a: HL, RB, LM, RK, MD, FCH, DDS, MCR, and AJV. D a ing o
he manusc ip : RB, DDS, AJV, and HL. S a is ical analysis: DDS
and AJV. S udy supe ision: AJV, FCH, and HL. FCH, JD, and DEN
a e P incipal In es iga o s o he NIHR HTA P o ecT s udy.
Hans Lilja holds pa en s o ee PSA, hK2, and in ac PSA
assays, and is named, along wi h And ew J.Vicke s, on a pa en
applica ion o a s a is ical me hod o de ec p os a e cance . The
ma ke assay pa en s and he pa en applica ion o he s a is i-
cal model has been licensed and comme cialized as he 4K sco e
by OPKO Diagnos ics. D . Vicke s, Sca dino, and Lilja may ecei e
oyal ies om sales o his es . Addi ionally, D s. Sca dino and
Lilja own s ock and D . Vicke s owns s ock op ions in OPKO.
We a e g a e ul o Gemma Ma sden and A hene Lane o
hei help wi h his p ojec and o he P o ecT pa hology g oup:
Jon Oxley (Chai ), John Goepel, Mu ali Va ma, Da id G i i hs, Ken
G igo , Nick Maye , Ann Wa en, Naynee a Deshmukh, Selina
Ba ha ai, John Do me , and L. A. Adamczyk. We hank Gun-
B i E iksson, Mona Hassan Al-Ba a , and AnnaPe i E landsson
o expe assis ance wi h immunoassay measu emen s o he
blood samples a he Wallenbe g Resea ch Labo a o ies a Lund
Uni e si y in Malmö, Sweden.
Funding
This wo k is suppo ed by he Na ional Cance Ins i u e a he
Na ional Ins i u es o Heal h (R01 CA160816 o HL and AV, P50
CA092629 o C aig Thompson, and R01 CA175491 o Robe Klein),
he Sidney Kimmel Cen e o P os a e and U ologic Cance s,
Da id H. Koch h ough he P os a e Cance Founda ion, he
Na ional Ins i u e o Heal h Resea ch (NIHR) Ox o d Biomedical
Resea ch Cen e P og am, he Cance Resea ch UK Ox o d Cen e,
he Swedish Cance Socie y (p ojec no.11–0624 o HL), a FiDIP o-
p og am awa d o HL om TEKES, and Fundacion Fede ico SA. The
P o ecT s udy is unded by he UK Na ional Ins i u e o Heal h
Resea ch Heal h Technology P og amme (96/20/99).
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