| 08:30-09:00 |
WELCOME |
| 09:00-09:15 |
David Spivak: Discovery and Development of One Monomer Molecularly Imprinted Polymers (OMNiMIPs) |
| 09:15-09:40 |
Ede Bodoki: Mechanistic insights into mechanochemical solid-state molecular imprinting |
| 09:40-09:55 |
Vilma Ratautaite: The importance of the underlayer for the molecularly imprinted polymer preparation |
| 09:55-10:10 |
Rahil Radfar: Comparative study of silicon-based and vs. acrylamide-based polymers for core-shell molecularly imprinted polymers |
| 10:10-10:25 |
Oliver Brueggemann: Chameleon Inspired Molecularly Imprinted Photonic Arrays for Biomolecule Sensing Aiming on Wound Healing Monitoring |
| 10:25-10:55 |
Coffee break |
| 10:55-11:00 |
Buffer |
| 11:00-11:15 |
Knut Rurack: The “Young Researcher’s Guide” to MIPs Incorporating Fluorescent Probe Monomers |
| 11:15-11:30 |
Lei Ye: Insight into molecular imprinting process using a fluorescent probe |
| 11:30-11:45 |
Sara Spada: Molecularly imprinted polymer (MIP) nanogels for specific capture of Vascular Endothelial Growth Factor |
| 11:45-12:00 |
Kuldeep Kaur: Molecularly Imprinted Mn-Doped Hollow Core TiO₂ Photocatalyst for Selective Visible-Light Catalytic Degradation of Antibiotics |
| 12:00-12:15 |
Zhanchen Guo: Molecular Imprinting and Cladding for High-Performance Antibody-Mimetic Materials |
| 12:15-12:30 |
Tessa Bogaardt: Synthetic Bacteria Mimics for Shape-Specific Surface-Imprinted Polymers |
| 12:30-13:30 |
Lunch break |
| 13:30-15:00 | |
| 15:00-15:15 |
Karsten Haupt: Single-molecule studies of MIP nanogels - Getting closer to antibodies |
| 15:15-15:40 |
Callum Donaldson: From Residue-Level Recognition to Epitope-Imprinted Polymers: Defining Pre-Polymerisation Design Space by Molecular Simulation |
| 15:40-15:55 |
Zeynep Altintas: Data-driven design of molecularly imprinted polymers for precision cancer diagnostics |
| 15:55-16:10 |
Simona Scarano: From Machine-Learning-Guided Design to Ultrafast Serotonin-Based Synthesis: Advanced Imprinted Polymers for Protein Recognition |
| 16:10-16:45 |
Coffee break |
| 16:45-17:00 |
Börje Sellergren: Recent advances in MIP-assisted analysis of protein post-translational modifications |
| 17:00-17:15 |
Qiong Jia: Host-guest interaction driven molecularly imprinted polymers targeting biomarker analysis |
| 17:15-17:30 |
Din Zelikovich: Nanoparticle-Imprinted Matrices (NAIM): Implications and Selective Detection of Nanoparticles |
| 08:30-08:45 |
Mélina Begou: Systemic in-vivo drug delivery application of MIP: a systematic review |
| 08:45-09:10 |
Nébéwia Griffete: Magnetic Molecularly Imprinted Polymer in Nanomedecine |
| 09:10-09:25 |
Zikuan Gu: Preliminary exploration of molecularly imprinted polymers for drug-resistant cancer therapy |
| 09:25-09:40 |
Kornelia Gawlitza: Dual-Fluorescent Molecularly Imprinted Nanoparticles for Direct Fluorescence Detection of Sialic Acid on Cancer Cells |
| 09:40-09:55 |
Shangfei Li: Trispecific Nano-Cell Engager Potentiates Antitumor Immunity by Enhancing Multicellular Crosstalk of T Cells |
| 09:55-10:10 |
Wafa Al-jamal: Engineering Molecularly Imprinted Nanoparticles for Next‑Generation Cancer Immunotherapy |
| 10:10-10:25 |
Fang Jin: A Trojan Horse Nanotrap with a GSH-Responsive Molecular Gate Orchestrates Ferroptosis via Coupled Iron Release and Spatial GPX4 Inhibition |
| 10:25-10:55 |
Coffee break |
| 10:55-11:00 |
Buffer |
| 11:00-11:15 |
Lei Ye: Molecular Imprinting-Enabled Antibacterial Materials and Therapeutic Interfaces |
| 11:15-11:30 |
Lauralie Debard: Bioavailability and antioxidant effect of a bioMIP-based quercetin delivery system |
| 11:30-11:45 |
Helen Yarimet Lorenzo-Anota: Molecularly Imprinted Polymer Targeting Fibroblast Growth Factor Receptor-1 for Obesity Treatment |
| 11:45-12:00 |
Subramanian Suriyanarayanan: Shape-engineered hyperporous MIP films for ultrasensitive antibody-free QCM detection of small-cell lungs cancer biomarkers |
| 12:00-12:15 |
Claudia Herrera Leon: Atomic-Level Insight into Molecular Recognition by Molecularly Imprinted Polymers: An STD and WaterLOGSY NMR study |
| 12:15-12:30 |
Bogdan Iacob: Mechanochemically Engineered Recognition Sites: Reducing Solvent, Enhancing Performance |
| 12:30-13:30 |
Lunch break |
| 13:30-15:00 | |
| 15:00-15:15 |
Kenneth Shea: An Overview of Abiotic Protein Affinity Reagents |
| 15:15-15:40 |
Elisabetta Mazzotta: Bioresorbable MIP-based sensors: next-generation of in-vivo diagnostics |
| 15:40-15:55 |
Lianghai Hu: Molecular imprinting toward living systems: From cells to extracellular vesicles |
| 15:55-16:10 |
Catherine Branger: Targeting bacterial communication pathways using molecularly imprinted polymers |
| 16:10-16:40 |
Coffee break |
| 16:40-16:45 |
Buffer |
| 16:45-17:00 |
Zhen Liu: Surpassing Essential Functional Biomolecules and Raising the Banner of MIPs |
| 17:00-17:15 |
Thea Serra: NanoMIP as synthetic receptors for immunodiagnostics applications: two different approaches |
| 17:15-17:30 |
Ayesha Khalid: NanoMIP engineering for selective recognition of cancer-associated MUC1 glycosylations |
| 09:00-09:15 |
Alessandra Maria Bossi: Protein-based molecularly imprinted nanoparticles for biomedical applications |
| 09:15-09:30 |
Derick Yongabi: Surface-imprinted polymers as biomimetic receptors for the sensor-based detection of bacteria |
| 09:30-09:45 |
Kyra Danielle Magdato: Molecularly Imprinted Hydrogels for Protein Recognition |
| 09:45-10:00 |
Todd Cowen: Molecularly imprinted polymer gas sensors; contemporary opportunities |
| 10:00-10:15 |
Alice Marinangeli: Castor Oil-Derived Molecularly Imprinted Nanoparticles for High-Performance Cardiac Biomarker Sensing |
| 10:15-10:30 |
Elisabetta Primiceri: Simultaneous and Selective Electrochemical Detection of NGF and proNGF in Native Conditions Using Molecularly Imprinted Polymers |
| 10:30-10:45 |
Piyush Sindhu Sharma: Macroporous Surface Imprinted Polymers: From Macroelectrode to Microelectrode for Chemosensing of Proteins |
| 10:45-11:00 |
Tiziano Di Giulio: Self-polymerized norepinephrine MIPs on porous silica: a highly sensitive and versatile platform for label-free optical sensing |
| 11:00-11:30 |
Coffee break |
| 11:30-11:35 |
Buffer |
| 11:35-11:50 |
Huiqi Zhang: Efficient Preparation of High-Performance Complex Biological Sample-Compatible Fluorescent Molecularly Imprinted Polymer Microcapsule-Based Chemosensors |
| 11:50-12:05 |
Song Gao: Ultrabright Water-Stable Perovskites Quantum Dot Affinity Nanoprobes for Multiplexed Fluorescence Glycan Imaging |
| 12:05-12:20 |
José A. Ribeiro: Electrochemical Synthesis of Molecularly Imprinted Hydrogel Thin Films for Selective Biomarker Sensing |
| 12:20-12:35 |
Yasuo Yoshimi: Development of a Wire-Type Molecularly Imprinted Carbon Paste Electrode for Direct Hypoxanthine Sensing in Fish Meat |
| 12:35-12:50 |
Natasa Budimirovic: Integration of a Molecularly Imprinted Polymer as Preconcentrator for Enhanced Electrochemical Glyphosate Sensing |
| 12:50-13:05 |
Arunas Ramanavicius: Application of Molecularly Imprinted Polymers in Electrochemistry and Surface Plasmon Resonance based Sensors |
| 13:05-13:20 |
Tiziano Di Giulio: A photoiniferter polymerization approach for the development of sensitive MIP-based electrochemical sensors |
| 13:20-14:20 |
Lunch break |
| 14:20-14:35 |
Wlodzimierz Kutner: Progress and Possibilities of Chemosensors with Molecularly Imprinted Polymers' Recognition Units for the Determination of Lysozymes in Food Quality Control and Clinical Diagnostics |
| 14:35-15:00 |
Daniel Mandler: Does Nanoparticle Imprinting Work Better than Imprinting of Molecules? |
| 15:00-15:15 |
Yadiris Garcia: Molecularly Imprinted Polymers Nanoparticles for Ultrasensitive Antibiotic Detection in Aquatic Environments |
| 15:15-15:30 |
Farah Ibrahim: MIP-modified screen-printed electrodes for electrochemical detection of PFOA in water |
| 15:30-15:45 |
Vitali Syritski: Molecularly Imprinted Electrodes with Built-In Redox Activity for Direct Biomarker Detection |
| 15:45-16:00 |
Soroush Bakhshi Sichani: A MIP-based impedimetric sensor for the detection of molecular biomarkers in exhaled-breath condensate |
| 16:00-16:15 |
Farewell Session |
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