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Analyses and comparison of a novel, hybrid, multifunctional orthopedic composite and implant.

机译:新型,混合,多功能骨科复合材料和植入物的分析和比较。

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摘要

In the orthopedic/medical device industry, 2, 2' -bis-(4-(2-hydroxy-3-methacryloxypropoxy)phenyl]propane (Bis-GMA)- and diurethanedimethacrylate (DUDMA)-based polymeric biomaterials have become well-known substitutes for polymethylmethacrylate (PMMA)- and ultra-high molecular weight polyethylene (UHMWPE)-based biomaterials, respectively. The development of these polymeric biomaterials cannot continue without direct comparison studies against currently marketed materials. The initiative for this research stems wholly from developing analytical methodologies that assist in qualifying novel biomaterials under development, by evaluating their chemical properties, performance, and safety.; The goals of this research were: (i) Characterize the assay/quality of every resin component and quantify elution of extractable monomers from novel, DUDMA-based RHAKOSS(TM) implant, (ii) Determine degree of conversion (alpha) and rate of polymerization (Rp) for novel, Bis-GMA-based CORTOSS(TM) composite, (iii) Assess risk for radical-induced post-surgical cytotoxicity for CORTOSS, (iv) Determine if surface radical chemistries occur for sterilized RHAKOSS and assess its oxidative stability, and (v) Quantify antibiotic elution from antibiotic-impregnated CORTOSS and identify factors that control elution. The phenomena studied necessitated the utilization of several analytical spectroscopic techniques; fluorometry, differential scanning calorimetry (DSC), electron paramagnetic resonance (EPR), ultraviolet-visible (UV-VIS), attenuated total reflectance---Fourier-transform infrared (ATR-FTIR), and high performance liquid chromatography (HPLC). A battery of lateral chemical techniques were employed as well; including molecular derivatization/tagging, phase partitioning, spin-trapping, and thermal annealing.; Results demonstrated that RHAKOSS monomer percent compositions were prepared according to formulations and monomer elution was virtually undetectable, serving as an empirical gauge to portend degree of polymerization (DOP). A high alpha was reported for CORTOSS and essentially all bifunctional monomers had at least one functional group polymerized, stressing low monomer elution potential. Regarding cytotoxicity, CORTOSS impeded further production of hydroxyl radicals (•OH), whereas RHAKOSS did not facilitate the Fenton reaction but displayed some chelating abilities. Residual radicals in RHAKOSS were easily terminated, thus not projected to form oxidative degradants. Additionally, significant antibiotic concentrations, over extended durations, eluted from CORTOSS in linear-type fashion, advocating a sustained therapeutic effect, and phase partitioning correlated antibiotic release to hydrophilicity. The incurred data comprehensively argues in favor of the excellent biocompatibility that CORTOSS and RHAKOSS inherently possess, and was definitive in rendering them as advanced biomaterials, possessing favorable chemical properties.
机译:在骨科/医疗器械行业中,基于2,2'-双-(4-(2-(3-羟基-3-甲基丙烯酰氧基丙氧基)苯基]丙烷(Bis-GMA)-和二氨基甲酸酯二甲基丙烯酸酯(DUDMA)的聚合生物材料已广为人知。分别基于聚甲基丙烯酸甲酯(PMMA)和超高分子量聚乙烯(UHMWPE)的生物材料的替代品如果不与目前市场上出售的材料进行直接比较研究,这些聚合物生物材料的开发就无法继续进行。通过评估其化学性质,性能和安全性来帮助鉴定正在开发的新型生物材料的方法;该研究的目标是:(i)表征每种树脂成分的测定/质量,并定量从新型中提取可萃取单体,基于DUDMA的RHAKOSS™植入物,(ii)确定基于Bis-GMA的新型CORTOSS™复合材料的转化度(α)和聚合速率(Rp), (iii)评估自由基对CORTOSS造成的手术后细胞毒性的风险,(iv)确定灭菌的RHAKOSS是否存在表面自由基化学物质并评估其氧化稳定性,以及(v)量化从抗生素浸渍的CORTOSS洗脱的抗生素控制洗脱。研究的现象需要利用几种分析光谱技术。荧光法,差示扫描量热法(DSC),电子顺磁共振(EPR),紫外可见光(UV-VIS),衰减的全反射率-傅立叶变换红外(ATR-FTIR)和高效液相色谱(HPLC)。也使用了一系列的横向化学技术。包括分子衍生化/标记,相分配,自旋捕获和热退火。结果表明,根据配方制备了RHAKOSS单体百分含量的组合物,单体洗脱几乎无法检测到,可作为衡量聚合度(DOP)的经验指标。据报道,CORTOSS的α值很高,并且基本上所有双功能单体均具有至少一个聚合的官能团,从而强调了较低的单体洗脱潜力。关于细胞毒性,CORTOSS阻止了羟基自由基(•OH)的进一步产生,而RHAKOSS并不促进Fenton反应,但显示出一些螯合能力。 RHAKOSS中的残留自由基很容易被终止,因此不会形成氧化降解物。另外,在较长的时间内,大量的抗生素浓度以线性方式从CORTOSS中洗脱出来,提倡持续的治疗效果,并且相分配使抗生素释放与亲水性相关。所得到的数据全面地证明了CORTOSS和RHAKOSS固有的优异的生物相容性,并且明确地使它们成为具有良好化学特性的先进生物材料。

著录项

  • 作者

    DiCicco, Michael.;

  • 作者单位

    Temple University.;

  • 授予单位 Temple University.;
  • 学科 Chemistry Analytical.; Engineering Biomedical.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 267 p.
  • 总页数 267
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;生物医学工程;工程材料学;
  • 关键词

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