08:30-08:50 | Keynote |
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08:50-09:10 | Keynote |
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09:10-09:30 | Keynote |
Inflammation-modulating nanomaterials for tissue repair and regeneration |
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09:30-09:45 | Invited |
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09:45-10:00 | Invited |
Exploration of Nano-reversal Strategies for Antithrombotic Drugs |
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10:00-10:15 | Invited |
Bacterial Biomaterials for Major Disease Therapies |
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10:15-10:30 | Other |
Coffee Break |
10:30-13:30 | Deep Dive Dialogue |
Challenges, Innovations, and the Road Ahead for Cutting-Edge Nanoscience |
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13:30-13:50 | Keynote |
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13:50-14:10 | Keynote |
Chiral nanoparticles’ unique role in public health |
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14:10-14:30 | Keynote |
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14:30-14:45 | Invited |
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14:45-15:00 | Invited |
Understanding nano-bio interaction for molecular targeting nano-drug development |
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15:00-15:15 | Invited |
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15:15-15:30 | Invited |
Rational Design and Construction of Nanocomposites with Interfacial Engineering for Environmental Catalysis and Remediation |
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15:30-15:45 | Other |
Coffee Break |
15:45-16:05 | Keynote |
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16:05-16:20 | Invited |
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16:20-16:35 | Invited |
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16:35-16:50 | Invited |
Chemical engineering of Functional Se nanoparticles and its applications in preventing major diseases |
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16:50-17:05 | Invited |
Rational Design of Nanozymes Accelerated Nanocatalytic Medicine |
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17:05-17:15 | Oral Report |
Protein corona-bridged metabolic process and biological fate of biomedical nanomaterials |
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17:15-17:25 | Oral Report |
Regulation of nanozyme activity and its biomedical applications |
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17:25-17:35 | Oral Report |
Why do positive nanoparticles usually have higher uptake than negative ones? Comparing protein corona and cell receptors |
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17:35-17:45 | Oral Report |
Effect of Liposome Rigidity on Corona Formation and Its Implications for Uptake by Cell |
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17:45-17:55 | Oral Report |
A Million-scale Dataset and Generalizable Foundation Model for Nanomaterial-Protein Interactions |
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