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D1.8 Dissemination and Communication WP1 - Project coordination and technical management Campaign

Bellotti, Elena; Barillaro, Giuseppe

Abstract

The aim of the deliverable D1.8 Dissemination and Communication Campaign (DCC) is to detail, monitor, and refine the implementation of the RESORB’s dissemination and communication plan. In particular, the DCC identifies the tools we have exploited for sharing the RESORB vision and results with the targeted audiences. Moreover, this document identifies indicators of the effectiveness of our dissemination and communication campaigns. Such indicators will give us appropriate feedbacks to improve and/or adjust our communication actions.

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D1.8 Dissemination and Communication Campaign WP1 Project Management, Dissemination, Exploitation, Communication This project is funded by the European Union Horizon Europe programme under grant agreement No 101046946 This project has received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 952071 D1.2 - Project Quality Handbook WP1 - Project coordination and technical management Partner: PNO Authors: Carolina Salas, Antonio M. Ortiz, Jeanett Bolther Version: v.final Date: 31.08.2020 D1.8 Dissemination and Communication Campaign 2 PROJECT DETAILS AND DELIVERABLE INFORMATION PROJECT DETAILS Project Title On-Demand Bioresorbable OptoElectronic System for In-Vivo and In-Situ Monitoring of Chemotherapeutic Drugs Project Acronym RESORB Call Identifier Horizon-EIC-2021-Pathfinder Open-01 Grant Agreement No. 1010469463 Duration 42 Project Start Date April 1st, 2022 Project Website www.resorb-project.eu DELIVERABLE INFORMATION Deliverable No D1.8 Deliverable Title Dissemination and Communication Campaign WP No 1 WP Leader UNIPI Contributing Partners / Nature R — Document, report Authors Elena Bellotti, Giuseppe Barillaro Contributors Jorge Morgado,Elisabetta Mazzotta, Daniela Giuliani Reviewers Daniela Giuliani, Franco Cacialli Delivery Date to EC M36 – March 31st 2025 DISSEMINATION LEVEL PU Public — fully open ( automatically posted online) v SEN Sensitive — limited under the conditions of the Grant Agreement EU classified EU classified — RESTREINT-UE/EU-RESTRICTED, CONFIDENTIEL-UE/EUCONFIDENTIAL, SECRET-UE/EU-SECRET under Decision 2015/444 D1.8 Dissemination and Communication Campaign 3 DOCUMENT HISTORY Version Date Author Description of Change 0.1 24.02.2025 Elena Bellotti First Release 0.2 04.03.2025 Giuseppe Barillaro Second Release 0.3 20.03.2025 Daniela Giuliani Internal Review 0.4 27.03.2025 Franco Cacialli Internal Review 0.5 31.03.2025 Elena Bellotti Third Release 1.0 31.03.2025 Giuseppe Barillaro Final Release D1.8 Dissemination and Communication Campaign 4 TABLE OF CONTENTS PROJECT DETAILS AND DELIVERABLE INFORMATION .................................................................. 2 DOCUMENT HISTORY .................................................................................................................... 3 GLOSSARY OF ACRONYMS ............................................................................................................ 5 1. EXECUTIVE SUMMARY .............................................................................................................. 7 2. COMMUNICATION MONITORING & CONTROL ........................................................................ 7 3. COMMUNICATION ACTIONS ..................................................................................................... 8 3.1 X account. ............................................................................................................................ 8 3.2 Instagram account. ............................................................................................................. 9 3.3 RESORB’s website ............................................................................................................ 10 3.4 RESORB’s Gmail Account ................................................................................................. 11 3.5 Communication with cancer patient associations .......................................................... 11 3.6 Participation to national/international conferences ....................................................... 16 3.7 Press and Web News Release .......................................................................................... 21 3.8 Participation to popular science events .......................................................................... 22 3.9 Papers on International Journals ..................................................................................... 22 3.10 Patents ........................................................................................................................... 23 3.11 Collaborations with industries ....................................................................................... 24 4. BIBLIOGRAPHY/REFERENCES ................................................................................................. 24 D1.8 Dissemination and Communication Campaign 5 GLOSSARY OF ACRONYMS Acronym Extended Definition CD Communication Descriptor DCC Dissemination and Communication Campaign KVI Key Value Indicator UNIPI Università di Pisa D1.8 Dissemination and Communication Campaign 6 DISCLAIMER Views and opinions expressed in this Deliverable are those of the author only and do not necessarily reflect those of the European Union or European Commission. Neither the European Union nor the granting authority can be held responsible for them. D1.8 Dissemination and Communication Campaign 7 1. EXECUTIVE SUMMARY The aim of the deliverable D1.8 Dissemination and Communication Campaign (DCC) is to detail, monitor, and refine the implementation of the RESORB’s dissemination and communication plan [1]. In particular, the DCC identifies the tools we have exploited for sharing the RESORB vision and results with the targeted audiences. Moreover, this document identifies indicators of the effectiveness of our dissemination and communication campaigns. Such indicators will give us appropriate feedbacks to improve and/or adjust our communication actions. The implementation of the dissemination and communication campaigns is fully integrated into RESORB through the WP1 leaded by UNIPI. However, all the consortium members have been involved in the implementation and monitoring of the communication campaign. In this regard, the DCC can be considered as a living document, which we will be updated as soon as any action of the communication campaign is implemented and/or changed. All the RESORB partners will contribute to the updating of the DCC and will receive a copy of the amended DCC. 2. COMMUNICATION MONITORING & CONTROL A key point of the RESORB communication plan and strategy is generating an optimal flow of information between the RESORB “universe” and possible stakeholders at any moment in time. In this regard, it is essential to monitor and control the RESORB communication and to assess the information both flow and impact with respect to the dissemination, communication, and exploitation plan [1]. To this end, we identified the following communication descriptors (CDs) and key value indicators (KVIs): Communication Descriptors: • Author(s) and Contributor(s) of any action (source: RESORB partners) • Type of the action (source: RESORB partners); • Flow direction, namely, one-way exchange such as website and press release or twoway exchange such as exhibition, school visit (source: RESORB partners); • Main recipients (source: RESORB partners and analytical tools) • Date of the monitoring process (source: RESORB partners and analytical tools) • Place of the action, such as webpage, conference site (source: RESORB partners) • Content of the action (e.g., posts, press release, (source: RESORB partners) Key value indicators (i.e., size and/or impact of the action): • Number of visitors, downloads, documents, events on the RESORB project website (source: Google Search Console) • Number of followers, followings, reads, likes, and posts on the social media (source: X-, ResearchGate-, LinkedIn-own statistics) • Number of stakeholders reached (source: RESORB partners), D1.8 Dissemination and Communication Campaign 8 • Number of external events with participation of the consortium partners (source: RESORB partners) • Number of participants in RESORB-own events (source: participants list) The outcomes of the monitoring process will be used to timely adjust the communication campaign and meet the goals of the communication plan, or to change and improve this latter. After making changes to the communication campaign, we will frequently monitor their effect through DCs and KVIs to determine the result of the modifications we made. This loop between 1) campaign, 2) monitor, and 3) control will allow reaching the largest number of target stakeholders, thus, extending the impact of RESORB beyond its lifecycle. 3. COMMUNICATION ACTIONS To implement the communication plan we used various tools/channels with their own specificity, which depends on several aspects including the targeted audience (i.e., general vs. specialized) or the way to communicate (i.e., one-way exchange vs. two-way exchange). 3.1 X account. The X account of RESORB, after its birth in May 2022, has started collecting followers and informing a broad audience (e.g., oncologists, citizens, and research labs) about the project aims, status, and achievements. D1.8 Dissemination and Communication Campaign 9 The RESORB X account has the following DCs and KVIs: Author(s) Type Exchange direction Main recipient Date Place Content Size UNIPI Social media One-way 1. Civic society 2. Research community 21 /02/2025 https://x.com/resorb_ project Posts Followings = 103 Followers = 47 Post = 26 Likes = 54 Repost = 12 3.2 Instagram account. A RESORB’s Instagram account was created on September 30th 2022 to inform the general public, but also the scientific community and industrial professionals, about the project aims, status, and achievements. The RESORB Instagram account has the following DCs and KVIs: Author(s) Type Exchange direction Main recipient Date Place Content Size UNIPI Social media One-way 1. Civic society 2. Research community 18/02/2025 https://www.instagra m.com/resorbproject/ ?igsh=cjAyMHkwNW wxdDl4&utm_source= qr# Posts Followings = 148 Followers = 89 Posts = 19 Likes = 250 Reached accounts = 813 (last 90 days) Visualization = 1722 (last 90 days) D1.8 Dissemination and Communication Campaign 16 Figure 3: Patient willingness to use the RESORB technology, once available. A) Pie chart showing the percentage of the patients that agree, disagree, or without any specific opinion about the usage/acceptance of a RESORB device into their body. B) Pie charts with the percentage of the answers the patients provided to this section of the questionnaire. In order to understand what are the reasons why ~25% of patients have doubts about the RESORB technology, we can rely on specific questions we asked to determine possible prejudices about this technology. Results of this section of the questionnaire are shown in Figure 4. Overall, the majority of the patients have not a specific opinion about pro and cons of using a bioresorbable implant (Figure 4A) and the remaining patients do not have significant prejudices. In particular, a large percentage of the patients believe that they would be better controlled/treated with respect to frequent hospitalization, though some doubts still remain about the safety of the implant and social, economic, family impacts of the implant on the patient life. Figure 4: Assessment of possible patient prejudices. A) Pie chart showing the average level of possible prejudices regarding the acceptance/usage of a RESORB sensor into the patients’ body. B) Pie charts with the percentage of the answers the patients provided to this part of the questionnaire. 3.6 Participation to national/international conferences National Conferences D1.8 Dissemination and Communication Campaign 17 Vandini E., Corsi M., Paghi A., Mariani S., Golinelli G., Debrassi A., Egri G., Leo G., Vilella A., Dähne L., Giuliani D., Barillaro G., “Biocompatibility study of bioresorbable nanostructured chemical sensor for monitoring of pH level in a mouse model”, 42nd National SIF Conference, 13th-16th November 2024, Sorrento (Italy), poster Corsi M., Barillaro G., “Implantable and bioresorbable sensors”, ICOP 2024, 17th-19th June 2024, Florence (Italy), invited talk. Corsi M., Paghi A., Mariani S., Golinelli G., Debrassi A., Egri G., Leo G., Vandini E., Vilella A., Dähne L., Giuliani D., Barillaro G., “Implantable and bioresorbable nanostructured fluorescence sensor for in-vivo pH monitoring”, AISEM 2024, 7th-9th February 2024, Bologna (Italy), talk. Corsi M., Paghi A., Mariani S., Golinelli G., Debrassi A., Egri G., Leo G., Vandini E., Vilella A., Dähne L., Giuliani D., Barillaro G., “Bioresorbable optical sensor for wireless and real-time vaginal pH monitoring”, AISEM 2024, 7th-9th February 2024, Bologna (Italy), poster. Di Giulio T., Asif I.M., Malitesta C., Corsi M., Barillaro G., Mazzotta E., “A flexible vaporphase synthesis method for producing MIP-based sensors”, AISEM 2024, 7th-9th February 2024, Bologna (Italy), talk. Di Giulio T., Gagliani F., Malitesta C., Corsi M., Barillaro G., Mazzotta E., “Reconfigurable sensors for the optical detection of biomolecular targets by metal-ion interactions”, AISEM 2024, 7th-9th February 2024, Bologna (Italy), poster. Mazzotta E., Di Giulio T., Malitesta C., Corsi M., Barillaro G., “Vapor-phase synthesis of molecularly imprinted polymers for optical sensing applications”, GS 2023, December 2023, Rome (Italy), talk. Di Giulio T., Mariani S., Corsi M., Malitesta C., Barillaro G., Mazzotta E., “Optical detection of human hemoglobin by a molecularly imprinted polymer prepared by a novel vaporphase synthesis”, LEbiotech 2023 workshop, 27th-29th September 2023, Lecce (Italy), talk. Di Giulio T., Gagliani F., Malitesta C., Corsi M., Barillaro G., Mazzotta E., “A versatile approach for achieving metal ion mediated interactions on porous silicon interferometers”, SCI 2023, 17th-21st Septemper 2023, Vasto (Italy), talk. Mazzotta E., Di Giulio T., Malitesta C., “Molecular imprinting and sensing technology: a happy marriage based on established and innovative strategies”, SCI 2023, 17th-21st Septemper 2023, Vasto (Italy), talk. Asif M.I., Di Giulio T., Malitesta C., Corsi M., Barillaro G., Mazzotta E., “A new molecularly imprinted polymer based optical sensor for label free detection of quercetin”, SCI 2023, 17th-21st Septemper 2023, Vasto (Italy), poster. International Conferences D1.8 Dissemination and Communication Campaign 18 Corsi M., Pagi A., Mariani S., La Mattina A.A., Egri G., Dähne L., Barillaro G., “Flexible and bioresorbable optical sensor for wireless and real-time vaginal pH monitoring”, IFETC 2024, 15th-18th September 2024, Bologna (Italy), poster. Djenizian T., “From stretchable Li-ion microbatteries to bioresorbable Na-ion batteries”, 4th CNRS-AMU-UTokyo Workshop, 14th-15th October 2024, Tokyo (Japan), invited speaker. Barillaro G., “Implantable and bioresorbable chemical sensors for in-vivo monitoring of clinical-diagnostic markers”, ECS PRIME 2024 Meeting, 10th October 2024, Honolulu, Hawaii (USA), invited talk Djenizian T., “High performance flexible and stretchable wire Li-ion batteries”, Nanotexnology 2024, 29th June-6th July 2024, Thessaloniki (Greece), invited speaker. Vandini E., Corsi M., Paghi A., Mariani S., Golinelli G., Debrassi A., Egri G., Leo G., Vilella A., Dähne L., Giuliani D., Barillaro G., “In vivo study of bioresorbable nanostructured chemical sensor for monitoring of pH level”, Nanotexnology 2024, 29th June-6th July 2024, Thessaloniki (Greece), talk. Di Giulio T., Giancane G., De Gennaro M., Barca A., Verri T., Mazzotta E., Malitesta C., “Electrosynthesis of a molecularly imprinted poly(metalloporphyrin) for the selective detection of carnosine”, ESEAC 2024, 23rd-26th June 2024, Ulm (Germany), poster. Di Giulio T., Asif I.M., Malitesta C., Gonzato C., Haupt K., Corsi M., Barillaro G., Mazzotta E., “Photo-iniferter polymerization: a convenient approach for integrating molecularly imprinted polymers with nanostructured sensors”, MIP 2024, 19th-21st June 2024, Verona (Italy), talk. Di Giulio T., Asif I.M., Malitesta C., Corsi M., Barillaro G., Mazzotta E., “A versatile vaporphase polymerization approach for molecularly imprinted polymers (MIPs) in optical sensing”, MIP 2024, 19th-21st June 2024, Verona (Italy), poster. Gagliani F., Di Giulio T., Malitesta C., Barca A., Verri T., Corsi M., Barillaro G., Mazzotta E., “An innovative and versatile reconfigurable sensor for biomolecules detection via metalion mediated recognition”, IECB 2024, 20th-22nd May 2024, online, talk. Asif I.M., Di Giulio T., Malitesta C., Corsi M., Barillaro G., Mazzotta E., “An innovative vapor-phase synthesis approach to obtain MIP-based optical sensors for label free detection of quercetin”, IECB 2024, 20th-22nd May 2024, online, poster. Corsi M., Paghi A., Mariani S., Golinelli G., Debrassi A., Egri G., Leo G., Vandini E., Vilella A., Dähne L., Giuliani D., Barillaro G., “Bioresorbable optical sensor for wireless and real- D1.8 Dissemination and Communication Campaign 19 time vaginal pH monitoring”, PSST Conference 2024, 28th April-2nd May 2024, Brno (Czech Republic), poster. Corsi M., Paghi A., Mariani S., Golinelli G., Debrassi A., Egri G., Leo G., Vandini E., Vilella A., Dähne L., Giuliani D., Barillaro G., “Implantable and bioresorbable nanopstructured fluorescence sensor for in-vivo pH monitoring”, PSST Conference 2024, 28th April-2nd May 2024, Brno (Czech Republic), talk. Di Giulio T., Malitesta C., Corsi M., Mariani S., Barillaro G., Mazzotta E., “Vapor-phase synthesis of molecularly imprinted polymers on nanostructured materials at roomtemperature”, PSST Conference 2024, 28th April-2nd May 2024, Brno (Czech Republic), poster. Di Giulio T., Asif I.M., Malitesta C., Corsi M., Gonzato C., Haupt K., Barillaro G., Mazzotta E., “A new versatile photo-iniferter polymerization approach to obtain molecularly imprinted polymers (MIPs) on nanostructured porous silicon (PSi) interferometers”, PSST Conference 2024, 28th April-2nd May 2024, Brno (Czech Republic), poster. Barillaro G., “Implantable and bioresorbable chemical sensors for in-vivo monitoring of clinical-diagnostic markers”, IEEE Sensors, 30th October 2023, Vienna (Austria). Invited talk. Di Giulio T., Asif I.M., Malitesta C., Corsi M., Barillaro G., Mazzotta E., “An innovative and versatile vapor-phase synthesis approach to obtain MIP-based sensors”, Eurosensors XXXV Conference 2023, 10th – 13th Septemper 2023, Lecce (Italy), poster. Di Giulio T., Gagliani F., Malitesta C., Corsi M., Barillaro G., Mazzotta E., “A flexible functionalization strategy of porous siliconinterferometers for chemical sensing application”, Eurosensors XXXV Conference 2023, 10th – 13th Septemper 2023, Lecce (Italy), poster. Barillaro G., “Implantable and bioresorbable chemical sensors for in-vivo real time tracking of analytes of clinical interest”, 243rd ElectroChemical Society (ECS) Meeting, 30th May 2023, Boston (USA), invited talk. Barillaro G., “Implantable and bioresorbable chemical sensors for in-vivo tracking of clinical/diagnostic markers”, Nanospain 2023, 26th April 2023, Tarragona (Spain), keynote presentation. Di Giulio T., Asif I.M., Malitesta C., Gonzato C., Haupt K., Corsi M., Barillaro G., Mazzotta E., “Molecularly imprinted polymers by photo-iniferter polymerization: an easy way of functionalizing nanostructured porous silicon”, Biosensors 2023, 5th-8th June 2023, Busan (South Corea), poster. D1.8 Dissemination and Communication Campaign 20 E. Mazzotta, Di Giulio T., Malitesta C., Corsi M., Mariani S., Barillaro G., “MIP roomtemperature vapor-phase deposition: an easy flexible strategy for MIP deposition on nanostructured surfaces for sensing applications”, Biosensors 2023, 5th-8th June 2023, Busan (South Corea), poster. Di Giulio T., Asif I.M., Malitesta C., Gonzato C., Haupt K., Corsi M., Barillaro G., Mazzotta E., “A photo-iniferter polymerization for molecularly imprinted polymers (MIPs) synthesis on porous silicon (Psi) interferometers for chemical sensing”, IECB 2023, 8th21st May 2023, online, poster. Corsi, M., Paghi, A., Mariani, S., Golinelli, G., Debrassi, A., Egri, G., Leo, G., Vandini, E., Vilella, A., Dähne, L., Giuliani, D., Barillaro, G., "Implantable and Bioresorbable Nanostructured Fluorescence Sensor for In Vivo Ph Monitoring", 2022 IEEE SENSORS, 30th October-2nd November 2022, Dallas (US). Seminars and Lectures Barillaro G., “Layer-by-Layer Self-Assembly of Polyelectrolytes: From Ultrathin Ambipolar Capacitors to Wearable Label-Free Biosensors”. Seminar at the COST Action 2016 NETPORE Meeting, 2nd October 2024, Ljubljana (Slovenia). Barillaro G., “Human monitoring – New Approaches to Sensors Fabrication and Design”. Lecture at the 1st ForeLab Summer School, 11th September 2024, Pisa (Italy). Djenizian T., “Fabrication and modification of TiO2 nanotubes for high performance Li-ion micro batteries”. Lecture at the 3rd Summer NetPore Training School, 8th-12th July 2024, Ankara (Turkey). Barillaro G., “Layer-by-Layer Self-Assembly of Polyelectrolytes: From Ultrathin Ambipolar Capacitors to Wearable Label-Free Biosensors”. Seminar at the National Centre for Scientific Research Demokritos, 9th July 2024, Athens (Greece). Morgado J., “materials in Medicine”. Seminar at the University of Lisbon, April 2024, Lisbon (Portugal). Morgado J., “Electrical stimulation of neural stem cells: materials and setup”. Seminar at the University of Auckland, February 2024, Auckland (New Zeland). Barillaro G., “Implantable and bioresorbable chemical sensors for in-vivo diagnostics”. Seminar at the COST Action 2016 NETPORE Winter School, 26th February 2024, Turin (Italy). Barillaro G., “Implantable and bioresorbable chemical sensors for in-vivo monitoring of clinical-diagnostic markers”. Lecture at the Queen’s Mary University, 7th February 2024, London (UK). D1.8 Dissemination and Communication Campaign 21 Barillaro G., Seminar on RESORB’s implantable and bioresorbable chemical sensors for in-vivo monitoring of clinical-diagnostic markers, CEISAM institute of Nantes, 29th January 2024, Nantes (France). Giuliani D., “Precise medicine in chemotherapy”. Lecture at the University of Modena and Reggio Emilia. November 2023, Modena (Italy). Barillaro G., “Ex-vivo and in-vivo optical sensing with porous silicon”. Seminars at the University of California San Diego, 24th July and 4th August 2023, San Diego (USA). Barillaro G., Seminar on RESORB project, University of California Los Angeles, 17th July 2023, Los Angeles (USA). Barillaro G., Seminar on RESORB Project and results on implantable and bioresorbable porous silicon sensors, National Centre for Scientific Research Demokritos, 3rd June 2023, Athens (Greece). 3.7 Press and Web News Release RESORB “stories” are available at the UNIPI’s news pages (UnipiNews) and web release: https://www.unipi.it/index.php/component/k2/item/23833-un-sensore-bioriassorbibilesottopelle-puo-monitorare-i-segnali-del-corpo?Itemid=637; 23rd June 2022: “Un sensore bioriassorbibile sottopelle può monitorare i segnali del corpo” (English translation: A bioresorbable sensor implanted under the skin to monitor body signals); https://www.unipi.it/index.php/component/k2/item/22464-finanziato-resorb-il-primoprogetto-del-nuovo-programma-europeo-horizon-europe?Itemid=637; 19th November 2021: “Finanziato RESORB, il primo progetto del nuovo programma europeo Horizon Europe” (English translation: the new European Horizon Europe program has funded RESORB); https://www.repubblica.it/salute/2022/08/03/news/sensore_sottopelle_effetto_farmac i-360056468/; 3rd August 2022: “E con un sensore sottopelle sapremo se i farmaci fanno effetto” (English translation: A sensor under the skin will finally tell us whenever drugs are effective); https://medicoepaziente.it/2022/biosensori-impiantabili-la-nuova-frontiera-delladiagnostica/; 6th August 2022; “Biosensori impiantabili. La nuova frontiera della diagnostica” (English translation: Implantable biosensors: the new frontier in diagnostics). D1.8 Dissemination and Communication Campaign 22 3.8 Participation to popular science events In order to raise awareness of the RESORB technology and gain social acceptance, we participated and/or planned to participate to the following popular science events: Bright Night, the EU Research Nigh 2022 and 2023. Author(s) Title Location Date Audience Size G. Barillaro (UNIPI) Nanosensori biodegradabili: come potrebbe cambiare il monitoraggio di cibo, ambiente e salute (oral presentation) (English translation: Biodegradable nanosensors: how they would impact the monitoring of food, environment and health) Pisa 30.09.2022 40 E. Mazzotta (UNISAL) Biomimetic receptors in bioresorbable sensors (poster presentation) Lecce 30.09.2022 40 G. Barillaro (UNIPI) Sensori bioriassorbibili nel corpo: nuove frontiere della medicina (oral presentation) (English translation: Biodegradable Implantable biosesorbable sensors: new frontiers in nanomedicine) Pisa 29.09.2023 45 3.9 Papers on International Journals RESORB has seven gold open-access publications: Corsi M., Maurina E., Surdo S., Vandini E., Daini E., Vilella A., Leo G., Farshchian M., Grisendi G., Golinelli G., Dominici M, Bocci G., Giuliani D., and Barillaro G., “In-vivo and in-situ monitoring of doxorubicin pharmacokinetics with an implantable bioresorbable optical sensor” Science Advances 2025 (DOI: 10.1126/sciadv.ads0265) Di Giulio T., Asif I.M., Corsi M., Rajpal S., Mizaikoff B., Ditaranto N., De Benedetto G.E., Malitesta C., Barillaro G., Mazzotta E., “A Molecularly Imprinted Polymer-Based Porous Silicon Optical Sensor for Quercitin Detection in Wines”, ACS Appl. Mater. Interfaces 2025 (DOI: 10.1021/acsami.4c21238); https://pubs.acs.org/doi/full/10.1021/acsami.4c21238 D1.8 Dissemination and Communication Campaign 23 Di Giulio T., Asif I.M., Corsi M., De Benedetto G.E., Malitesta C., Haupt K., Barillaro G., Gonzato C., Mazzotta E., “Visible-Light Photo-Iniferter Polymerization of Molecularly Imprinted Polymers for Direct Integration with Nanotransducers”, Small Methods 2025, 2401315 (DOI: 10.1002/smtd.202401315); https://onlinelibrary.wiley.com/doi/10.1002/smtd.202401315 Muniraj V.K.A, Vijayan B. L., Hammoud H., Delattre R., Ramuz M., Djenizian E., Vandini E., Giuliani D., Djenizian T., “Bioresorbable and Wireless Rechargeable Implanted Na-ion Battery for Temporary Medical Devices”, Adv. Funct. Mater. 2025, 2417353 (DOI: 10.1002/adfm.202417353); https://advanced.onlinelibrary.wiley.com/doi/10.1002/adfm.202417353?af=R Di Giulio T., Corsi M., Gagliani F., De Benedetto G., Malitesta C., Mazzei A., Barca A., Verri T., Barillaro G., Mazzotta E., “Reconfigurable Optical Sensor for Metal-Ion Mediated Label-Free Recognition of Different Biomolecular Targets”, ACS Appl. Mater. Interfaces 2024, 16, 33, 43752-43761(DOI:10.1021/acsami.4c08860); https://pubs.acs.org/doi/10.1021/acsami.4c08860 Mazzotta E., Di Giulio T., Mariani S., Corsi M., Malitesta C., Barillaro G., “Vapor Phase Synthesis of Molecularly Imprinted Polymers in Nanostructured Porous Silicon for Selective and Sensitive Detection of Proteins”, Small 2023, 2302274(DOI:10.1002/smll.202302274); https://onlinelibrary.wiley.com/doi/full/10.1002/smll.202302274 Paghi A.*, Corsi M.*, Mariani S., La Mattina A.A., Egri G., Dähne L., Barillaro G., “Wireless and Flexible Optoelectronic System for In-Situ Monitoring of Vaginal pH Using a Bioresorbable Fluorescence Sensor”, Adv. Mater. Technol. 2023, 2201600 (DOI: 10.1002/admt.202201600); https://advanced.onlinelibrary.wiley.com/doi/full/10.1002/admt.202201600 *co-first authors Corsi, M., Paghi, A., Mariani, S., Golinelli, G., Debrassi, A., Egri, G., Leo, G., Vandini, E., Vilella, A., Dähne, L., Giuliani, D., Barillaro, “Bioresorbable Nanostructured Chemical Sensor for Monitoring of pH Level In Vivo”, Adv. Sci. 2022, 2202062 (DOI: 10.1002/advs.202202062); https://onlinelibrary.wiley.com/doi/full/10.1002/advs.202202062 3.10 Patents Barillaro G., Surdo S., Minopoli A., Bellotti E., “Method for producing a bioresorbable and/or compatible optical fiber”. European patent #EP24209472.2 deposited on October 29th, 2024. Djenizian T., Vedikujilazhagan M., Hammoud H., Vijayan B.L., Delattre R., Ramuz M., "A Naion bioeliminable electrochemical accumulator comprising electrode pellets coated by a current collector thin film, associated manufacturing process and wireless recharging solution”. European patent #EP24306269.2 deposited on July 26th, 2024. D1.8 Dissemination and Communication Campaign 24 Barillaro G., Corsi M., Maurina E., “Dispositivo di rilevazione della concentrazione di un farmaco” (English translation: Drug concentration detecting device). Italian patent P1215IT00 deposited on April 15th, 2024. Djenizian T., Bhatia A., Baddour-Hadjean R., Pereira-Ramos J.P., Vijayan B.L., “A Na-ion bioresorbable and flexible electrochemical accumulator”. Application # EP23170468.5, filed 27 April 2023 3.11 Collaborations with industries The RESORB technology has attracted the attention of “ab medica,” a company that operates in the biomedical sector by offering appropriate, inclusive, and sustainable patient care through the integration of clinical pathways with the best techniques and technologies available. Precisely, UNIPI and ab medica are collaborating for the development of a wireless, flexible device that will read data recorded by the RESORB optical sensors once implanted in the body and make them available to patients and doctors through a mobile app. Additionally, our the RESORB consortium and ab medica have been actively preparing two EU projects—one EIC Transition project that leverages the results of RESORB on the pH sensor, and one EIC Pathfinder Open project. These initiatives not only complement our current collaboration but also underscore our commitment to advancing cutting-edge biomedical technologies and fostering sustainable healthcare solutions. 4. BIBLIOGRAPHY/REFERENCES 1. RESORB Dissemination, Communication, and Exploitation Plan