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Chitosan paste from crawfish shells as a synthetic bone graft material: Preparation, characterization and animal study.

机译:来自小龙虾壳的壳聚糖糊料作为合成的骨移植材料:制备,表征和动物研究。

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摘要

Bone loss associated with musculoskeletal trauma or metabolic diseases often requires bone grafts. Autograft or allograft bones are limited in supply. Therefore, development of synthetic bone graft materials is an active area of research. For several years the biomaterials group at LSUHSC-Shreveport has been investigating the use of chitosan purified from crawfish shells using a process patented by my research advisor, Dr. Debi Mukherjee.;Chitin is a polysaccharide that exists in fungi, exoskeleton of insects and outer shell of crustaceans. It is biocompatible, osteoconductive, antimicrobial, biodegradable, non-toxic, haemostatic, fungicidal, and the second most abundant natural polysaccharide on earth. Removal of the acetyl group from chitin forms chitosan. Chitosan is more useful due to the presence of amino groups that impart a positive charge to the molecule. This positive charge interacts with cells or can act as a binding site for other functional groups thereby expanding the role of chitosan molecules.;The objectives of this study are: (1) Test for the presence of bone in grafted and ungrafted defects and compare the results among the different groups. (2) Test and compare the differences in stiffnesses and fracture loads among the different groups. (3) Test, via microcomputed tomography, defect reduction in samples treated with the graft. (4) Test for the amorphous nature of crawfish chitosan. (5) Compare the purity of crawfish chitosan extracted using Dr. Debi Mukherjee's procedure with commercially available chitosan.;The first portion of this experiment was characterization of crawfish chitosan, extracted using a method patented by Dr. Debi Mukherjee, to determine the individual chemical "fingerprint" of crawfish chitosan. Tests established that crawfish chitosan contains identical functional groups as chitosan monomer and chitosan glutamate and possessing an amorphous structure.;In the second portion of this study, purified chitosan was mixed with cultured osteoblasts and compounded with a calcium salt creating a bone graft paste. Eighteen male Lewis rats underwent the surgical procedure. A critical size defect was created in rat femurs following a published protocol and repaired through use of a metal plate with and without crawfish chitosan bone graft paste. Histological examination and bone graft analysis of defected areas demonstrated the presence of bone in defect areas that were filled with experimental paste material and reduced or no bone growth on control femurs.;Chitosan possesses the necessary properties, when combined with plaster of Paris and osteoblasts, to create a bone graft that is osteoconductive, osteoinductive and osteogenic.
机译:与肌肉骨骼创伤或代谢性疾病相关的骨丢失通常需要移植骨。自体或同种异体骨的供应有限。因此,合成骨移植材料的开发是研究的活跃领域。多年来,LSUHSC-Shreveport的生物材料研究小组一直在研究使用我的研究顾问Debi Mukherjee博士申请的专利从螯虾壳中纯化的壳聚糖的用途;壳多糖是一种存在于真菌,昆虫外骨骼和外在物质中的多糖。甲壳动物的壳。它具有生物相容性,骨传导性,抗微生物性,可生物降解性,无毒,止血性,杀真菌性,是地球上第二丰富的天然多糖。从几丁质中除去乙酰基形成壳聚糖。壳聚糖由于赋予分子正电荷的氨基而更有用。该正电荷与细胞相互作用或可以充当其他官能团的结合位点,从而扩大壳聚糖分子的作用。这项研究的目的是:(1)测试移植和未移植缺损中骨的存在,并比较不同组之间的结果。 (2)测试并比较不同组之间的刚度和断裂载荷差异。 (3)通过微型计算机断层扫描测试用移植物处理的样品中缺陷的减少情况。 (4)测试螯虾壳聚糖的无定形性质。 (5)将用Debi Mukherjee博士的方法提取的螯虾壳聚糖的纯度与市售的壳聚糖进行比较。;本实验的第一部分是使用Debi Mukherjee博士的专利方法提取的螯虾壳聚糖的特性,以确定各个化学成分。小龙虾壳聚糖的“指纹”。测试确定小龙虾壳聚糖含有与壳聚糖单体和壳聚糖谷氨酸相同的功能基团,并具有无定形结构。在本研究的第二部分中,将纯化的壳聚糖与培养的成骨细胞混合,并与钙盐混合,形成了植骨糊。 18只雄性Lewis大鼠接受了外科手术。根据已公布的方案,在大鼠股骨中产生了严重的尺寸缺陷,并通过使用带有或不带有螯虾壳聚糖骨移植膏的金属板进行修复。组织学检查和缺损区域的骨移植分析表明,缺损区域中存在骨,这些缺损区域充满了实验性糊状材料,并且在对照股骨上骨生长减少或没有骨生长。壳聚糖与巴黎石膏和成骨细胞结合使用时具有必要的特性,创造出具有骨传导性,骨诱导性和成骨性的骨移植物。

著录项

  • 作者

    Saltarrelli, Jerome G., Jr.;

  • 作者单位

    Louisiana Tech University.;

  • 授予单位 Louisiana Tech University.;
  • 学科 Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 137 p.
  • 总页数 137
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;
  • 关键词

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