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文档格式:PPT 文档大小:937KB 文档页数:84
• 生物医学材料的发展概况 • 生物材料的分类及性能 • 医用金属材料 • 不锈钢 • 钴(Co)基合金 • 钛(Ti)基合金 • 形状记忆合金 • 贵金属 • 纯金属钽 • 纯金属铌 • 纯金属铬 • 医用高分子材料 4.4.1 天然高分子生物材料 4.4.2 合成高分子生物材料 • 其他生物医学材料 • 生物医学材料的安全性 • 生物材料的发展趋势 • 纳米医学材料简介
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第1节 概述 1.1 生物材料的概念 1.2 生物材料的发展 1.3 生物材料的基本性能要求 1.4 生物材料的分类 第2节 生物材料的种类 2.1 金属生物材料 2.2 无机非金属生物材料 2.3 高分子生物材料 第3节 组织工程 3.1 组织工程基本概念 3.2 组织工程材料简介 3.3 组织工程材料应用 第4节 蛋白质和细胞在生物材料表面的吸附 4.1 蛋白质结构、性质及对材料表面的吸附 4.2 细胞表面及与材料的相互作用 第5节 蛋白质和细胞在生物材料表面的吸附
文档格式:PPT 文档大小:8.29MB 文档页数:37
《高分子传感材料》课程PPT讲稿:监测蛋白质(Monitoring proteins)、生物传感器与生物芯片(Biosensors and biochips)
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Lecture 2: Molecular Design and Synthesis of Biomaterials I: Biodegradable Solid Polymeric Materials(continued) hemistry and physical chemistry of degrading polymeric solids for biomaterials Today Theory of polymer erosion Enzymatic degradation of synthetic biomaterials Designing degradable materials Reading
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Lecture 5: Controlled Release Devices Last time: Using enzyme substrate and cytokine peptides to engineer biological recognition of synthetic polymers Today: principles of controlled release devices based on degradable polymers Synthesis of controlled release devices Theory of polymer-based controlled release
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Example: HIV-1 DNA vaccine delivered with boosters to elevate Ab titers2: Mechanical and electrical devices that can provide digitized release typically require larger devices and surgical implantation(e.g. Pharm. Res. 1, 237(1984); also have high cost
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Molecular Principles of Biomaterials Spring 2003 Lecture 2: Molecular Design and Synthesis of Biomaterials I: Biodegradable Materials Chemistry of Biodegradable Materials Hydrolytically degraded biomaterials Common hydrolytically unstable linkages Ester
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Lecture 7: Hydrogel Biomaterials: Structure and Physical Chemistry Last Day: programmed/regulated/multifactor controlled release for drug delivery and tissue engineering
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Lecture 6: Biodegradable Polymers for Tissue Engineering Last time: enzymatic degradation of solid polymers Engineering biological recognition of polymers Toda Designing polymers for tissue engineering Reading
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Lecture 10: Bioengineering applications of hydrogels: Molecular Imprinting and Drug Delivery Last Day polyelectrolyte gels Polyelectrolyte complexes and multilayers Applications in bioengineering Theory of ionic gel swelling Toda Molecular imprinting
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