麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 7:Hydrogel Biomaterials

BEH.462/3. 962J Molecular Principles of Biomaterials Spring 2003 Lecture 7: Hydrogel Biomaterials: Structure and Physical Chemistry Last Day: programmed/regulated/multifactor controlled release for drug delivery and tissue engineering Today Applications of hydrogels in bioengineering Covalent hydrogels Physical hydrogels Synthesis of hydrogel biomaterials Synthesis of hydrogel biomaterials Physical gels Formation Aq son-==zs Associating hydrophobic groups synthesis in organic solvent readily assembled in situ Synthesis of pluronics? Anionic polymerization? Formation of ionic gels: coacervates, nanoparticles LCST polymer gelation 1- △T Associating hydrophobic group Thermodynamics of LCST Lecture 7-Hydrogels 1 1 of 2
BEH.462/3.962J Molecular Principles of Biomaterials Spring 2003 Lecture 7: Hydrogel Biomaterials: Structure and Physical Chemistry Last Day: programmed/regulated/multifactor controlled release for drug delivery and tissue engineering Today: Applications of hydrogels in bioengineering Covalent hydrogels Physical hydrogels Synthesis of hydrogel biomaterials Synthesis of hydrogel biomaterials Physical gels Formation: Aq soln Associating hydrophobic groups synthesis in organic solvent readily assembled in situ Synthesis of pluronics? Anionic polymerization? Formation of ionic gels: coacervates, nanoparticles LCST polymer gelation: ∆T Associating hydrophobic groups Thermodynamics of LCST Lecture 7 – Hydrogels 1 1 of 2

BEH.462/3. 962J Molecular Principles of Biomaterials Spring 2003 Covalent gels Formation: simultaneous with polymerization Approaches Free radical polymerization -+M+M+M→|+M+M+M→|-M'+M+M→|-M-M"+M Thermal initiation: Ammonium persulfate(APS) Catalyzed initiation Mechanism of APS sodium metabisulfite/ TEMED polymerization allows polymerization at room temperature or 37 C ( not a thermal initiation mechanism) Photo polymerization Mechanism Acetophenone initiation 1→"→|M→LM-M'etc. can be used in situ/in vivo during surgery DEMOS: examples of rapidity of gelation in class: APS TEMED and photopolymerization Advantages: rapid polymerization does not require organic solvents Limitations: degree of conversion typically limited Enzymatic polymerization Sperinde work with transglutaminase Hubbell work with fibrin-based hydrogels Kinetics of gelation ntn→口 conversion Lecture 7-Hydrogels 1 20f2
BEH.462/3.962J Molecular Principles of Biomaterials Spring 2003 Covalent gels Formation: simultaneous with polymerization Approaches: Free radical polymerization I-I + M + M + M → I’ + M + M + M → I-M’ + M + M → I-M-M’ + M Thermal initiation: Ammonium persulfate (APS) Catalyzed initiation: Mechanism of APS + sodium metabisulfite/TEMED polymerization allows polymerization at room temperature or 37°C (not a thermal initiation mechanism) Photo polymerization Mechanism Acetophenone initiation I → I’ → I-M’ → I-M-M’ etc. can be used in situ/in vivo during surgery DEMOS: examples of rapidity of gelation in class: APS + TEMED and photopolymerization Advantages: rapid polymerization does not require organic solvents Limitations: degree of conversion typically limited Enzymatic polymerization Sperinde work with transglutaminase Hubbell work with fibrin-based hydrogels Kinetics of gelation gel point η ⇒ � η % conversion t Lecture 7 – Hydrogels 1 2 of 2
按次数下载不扣除下载券;
注册用户24小时内重复下载只扣除一次;
顺序:VIP每日次数-->可用次数-->下载券;
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 7:Hydrogel Biomaterials:Structure and Physical Chemistry.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 5:Controlled Release Devices.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 6:Programmed/Pulsed.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 2:Molecular Design and Synthesis of Biomaterials.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 3:Degradable Materials with Biological Recognition.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 2:Molecular Design and Synthesis of Biomaterials.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 4:Degradable Materials with Biological Recognition.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 1:Molecular Design and Synthesis of Biomaterials.pdf
- 《遗传学》课程教学资源:第二章 遗传的细胞学基础.ppt
- 《遗传学》课程教学资源:第三章 遗传密码与蛋白质的翻译.ppt
- 《遗传学》课程教学资源:第七章 细菌和病毒的遗传.ppt
- 《遗传学》课程教学资源:第六章 染色体变异.ppt
- 《遗传学》课程教学资源:第三章 遗传物质的分子基础.ppt
- 《遗传学》课程教学资源:第五章 连锁遗传和性连锁t.ppt
- 《遗传学》课程教学资源:第四章 孟德尔遗传.ppt
- 《遗传学》课程教学资源:第十章 基因突变.ppt
- 《遗传学》课程教学资源:第十一章 细胞质遗传.ppt
- 《遗传学》课程教学资源:第十三章 数量性状的遗传.ppt
- 《遗传学》课程教学资源:第九章 基因工程和基因组学.ppt
- 《遗传学》课程教学资源:第八章 基因的表达与调控.ppt
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 6:Biodegradable Polymers for Tissue Engineering.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 10:Bioengineering applications of hydrogels.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 9:Polyelectrolyte Hydrogels Last Day.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 8:Physical Hydrogels.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Hydrogels in drug delivery.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Brannon-Peppas theory of swelling in ionic hydrogels.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 12:Organic templating of inorganic materials and bone biomimesis.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Molecular switches in the cell.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 11:Molecular Design and Synthesis of Biomaterials.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 14:Nano-and micro-particle carriers.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 13:Molecular Devices Last time.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 16:Intracellular drug delivery Last time.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 15:Stealth' particles.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 19:Biosensors(continued ast time.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 17:Drug targeting.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 18:Biosensors ast time.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Lecture 20:Cell-and tissue-based biosensors.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Biodegradable Solid Polymers.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Problem set 1 Solution.pdf
- 麻省理工大学:《生物材料的分子结构》教学讲义(英文版)Problem set 2 Solution.pdf