欢迎来到麦多课文档分享! | 帮助中心 海量文档,免费浏览,给你所需,享你所想!
麦多课文档分享
全部分类
  • 标准规范>
  • 教学课件>
  • 考试资料>
  • 办公文档>
  • 学术论文>
  • 行业资料>
  • 易语言源码>
  • ImageVerifierCode 换一换
    首页 麦多课文档分享 > 资源分类 > PPT文档下载
    分享到微信 分享到微博 分享到QQ空间

    Biodegradable Polymers- Chemistry, Degradation and .ppt

    • 资源ID:378963       资源大小:1MB        全文页数:28页
    • 资源格式: PPT        下载积分:2000积分
    快捷下载 游客一键下载
    账号登录下载
    微信登录下载
    二维码
    微信扫一扫登录
    下载资源需要2000积分(如需开发票,请勿充值!)
    邮箱/手机:
    温馨提示:
    如需开发票,请勿充值!快捷下载时,用户名和密码都是您填写的邮箱或者手机号,方便查询和重复下载(系统自动生成)。
    如需开发票,请勿充值!如填写123,账号就是123,密码也是123。
    支付方式: 支付宝扫码支付    微信扫码支付   
    验证码:   换一换

    加入VIP,交流精品资源
     
    账号:
    密码:
    验证码:   换一换
      忘记密码?
        
    友情提示
    2、PDF文件下载后,可能会被浏览器默认打开,此种情况可以点击浏览器菜单,保存网页到桌面,就可以正常下载了。
    3、本站不支持迅雷下载,请使用电脑自带的IE浏览器,或者360浏览器、谷歌浏览器下载即可。
    4、本站资源下载后的文档和图纸-无水印,预览文档经过压缩,下载后原文更清晰。
    5、试题试卷类文档,如果标题没有明确说明有答案则都视为没有答案,请知晓。

    Biodegradable Polymers- Chemistry, Degradation and .ppt

    1、Biodegradable Polymers: Chemistry, Degradation and Applications,Definition,A “biodegradable” product has the ability to break down, safely, reliably, and relatively quickly, by biological means, into raw materials of nature and disappear into nature.Natures way: every resource made by nature returns

    2、 to nature. Nature has perfected the system we just need to figure out how,How long does it take?,Cotton rags 1-5 months Paper 2-5 months Rope 3-14 months Orange peels 6 months Wool socks 1 to 5 years Cigarette butts 1 to 12 years Plastic coated paper milk cartons 5 years Plastic bags 10 to 20 years

    3、 Nylon fabric 30 to 40 years Aluminum cans 80 to 100 years Plastic 6-pack holder rings 450 years Glass bottles 1 million years Plastic bottles May be never,What is Polymer Degradation?,polymers were synthesized from glycolic acid in 1920s At that time, polymer degradation was viewed negatively as a

    4、process where properties and performance deteriorated with time.,Why Would a Medical Practitioner Like a Material to Degrade in the Body?,Do not require a second surgery for removal Avoid stress shielding Offer tremendous potential as the basis for controlled drug delivery,Medical Applications of Bi

    5、odegradable Polymers,Wound management Sutures Staples Clips Adhesives Surgical meshes Orthopedic devices Pins Rods Screws Tacks Ligaments,Dental applications Guided tissue regeneration Membrane Void filler following tooth extraction Cardiovascular applications Stents Intestinal applications Anastomo

    6、sis rings Drug delivery system Tissue engineering,Biodegradable Polymers,Carbonyl bond to,O N S,Where X= O, N, S,Ester,Amide,A.,Thioester,Where X and X= O, N, S,B.,Carbonate,Urethane,Urea,C.,Imide,Anhydride,Where X and X= O, N, S,Biodegradable Polymers,Biodegradable Polymers,Acetal: Hemiacetal: Ethe

    7、r Nitrile Phosphonate Polycyanocrylate,Biodegradable Polymers Used for Medical Applications,Natural polymers Fibrin Collagen Chitosan Gelatin Hyaluronan . Synthetic polymers PLA, PGA, PLGA, PCL, Polyorthoesters Poly(dioxanone) Poly(anhydrides) Poly(trimethylene carbonate) Polyphosphazenes .,Syntheti

    8、c or Natural Biodegradable Polymers? Why We Prefer Synthetic Materials:,Tailor-able properties Predictable lot-to-lot uniformity Free from concerns of immunogenicity Reliable source of raw materials,Degradation Mechanisms,Enzymatic degradation Hydrolysis (depend on main chain structure: anhydride es

    9、ter carbonate)Homogenous degradation Heterogenous degradation,Degradation can be divided into 4 steps:,water sorption reduction of mechanical properties (modulus & strength) reduction of molar mass weight loss,Polymer Degradation by Erosion (1),Degradation Schemes,Surface erosion (poly(ortho)esters

    10、and polyanhydrides) Sample is eroded from the surface Mass loss is faster than the ingress of water into the bulkBulk degradation (PLA,PGA,PLGA, PCL) Degradation takes place throughout the whole of the sample Ingress of water is faster than the rate of degradation,Erodible Matrices or Micro/Nanosphe

    11、res,(a) Bulk-eroding system(b) Surface-eroding system,General Fabrication Techniques,Molding (formation of drug matrix)compression moldingmelt moldingsolvent casting,Molding ( compression molding ) (1),Polymer and drug particles are milled to a particle size range of 90 to 150 mDrug / Polymer mix is

    12、 compressed at 30,000 psiFormation of some types of tablet / matrix,Molding ( melt molding / casting ) (1),Polymer is heated to 10C above it melting point ( Tm ) to form a viscous liquidMix drug into the polymer meltShaped by injection molding,Molding ( melt molding / casting ) (2),Advantages More u

    13、niform distribution of drug in polymer Wide range of shapes possibleDisadvantages Thermal instability of drugs (heat inactivation) Drug / polymer interaction at high temperature Cost,Molding ( Solvent casting ) (1),Co-dissolve drug and polymer in an organic solvent Pour the drug / polymer solution i

    14、nto a mold chilled under dry iceAllow solvent to evaporateFormation of a drug-polymer matrix,Molding ( Solvent casting ) (2),Advantages Simplicity Room temperature operation Suitable for heat sensitive drugsDisadvantages Possible non-uniform drug distribution Proper solvents for drugs and polymers F

    15、ragility of the system Unwanted matrix porosity Use of organic solvents / Solvent residues,Polyesters,Comparison,Mobley, D. P. Plastics from Microbes. 1994,Factors Influence the Degradation Behavior,Chemical Structure and Chemical Composition Distribution of Repeat Units in Multimers Molecular Weigh

    16、t Polydispersity Presence of Low Mw Compounds (monomer, oligomers, solvents, plasticizers, etc) Presence of Ionic Groups Presence of Chain Defects Presence of Unexpected Units Configurational Structure Morphology (crystallinity, presence of microstructure, orientation and residue stress) Processing

    17、methods & Conditions Method of Sterilization Annealing Storage History Site of Implantation Absorbed Compounds Physiochemical Factors (shape, size) Mechanism of Hydrolysis (enzymes vs water),Poly(lactide-co-glycolide) (PLGA),(JBMR, 11:711, 1977),Factors That Accelerate Polymer Degradation,More hydro

    18、philic backbone. More hydrophilic endgroups. More reactive hydrolytic groups in the backbone. Less crystallinity. More porosity. Smaller device size.,Methods of Studying Polymer Degradation,Morphological changes (swelling, deformation, bubbling, disappearance) Weight lose Thermal behavior changes Differential Scanning Calorimetry (DSC) Molecular weight changes Dilute solution viscosity Size exclusion chromatograpgy(SEC) Gel permeation chromatography(GPC) MALDI mass spectroscopy Change in chemistry Infared spectroscopy (IR) Nuclear Magnetic Resonance Spectroscopy (NMR) TOF-SIMS,


    注意事项

    本文(Biodegradable Polymers- Chemistry, Degradation and .ppt)为本站会员(王申宇)主动上传,麦多课文档分享仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对上载内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知麦多课文档分享(点击联系客服),我们立即给予删除!




    关于我们 - 网站声明 - 网站地图 - 资源地图 - 友情链接 - 网站客服 - 联系我们

    copyright@ 2008-2019 麦多课文库(www.mydoc123.com)网站版权所有
    备案/许可证编号:苏ICP备17064731号-1 

    收起
    展开