首页> 外文期刊>Journal of biomedical materials research, Part A >Differential osteogenic activity of osteoprogenitor cells on HA and TCP/HA scaffold of tissue engineered bone.
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Differential osteogenic activity of osteoprogenitor cells on HA and TCP/HA scaffold of tissue engineered bone.

机译:骨祖细胞对组织工程骨的HA和TCP / HA支架的差异性成骨活性。

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Biomaterial, an essential component of tissue engineering, serves as a scaffold for cell attachment, proliferation, and differentiation; provides the three dimensional (3D) structure and, in some applications, the mechanical strength required for the engineered tissue. Both synthetic and naturally occurring calcium phosphate based biomaterial have been used as bone fillers or bone extenders in orthopedic and reconstructive surgeries. This study aims to evaluate two popular calcium phosphate based biomaterial i.e., hydroxyapatite (HA) and tricalcium phosphate/hydroxyapatite (TCP/HA) granules as scaffold materials in bone tissue engineering. In our strategy for constructing tissue engineered bone, human osteoprogenitor cells derived from periosteum were incorporated with human plasma-derived fibrin and seeded onto HA or TCP/HA forming 3D tissue constructs and further maintained in osteogenic medium for 4 weeks to induce osteogenic differentiation. Constructs were subsequently implanted intramuscularly innude mice for 8 weeks after which mice were euthanized and constructs harvested for evaluation. The differential cell response to the biomaterial (HA or TCP/HA) adopted as scaffold was illustrated by the histology of undecalcified constructs and evaluation using SEM and TEM. Both HA and TCP/HA constructs showed evidence of cell proliferation, calcium deposition, and collagen bundle formation albeit lesser in the former. Our findings demonstrated that TCP/HA is superior between the two in early bone formation and hence is the scaffold material of choice in bone tissue engineering.
机译:生物材料是组织工程的重要组成部分,可作为细胞附着,增殖和分化的支架。提供三维(3D)结构,并在某些应用中提供了工程组织所需的机械强度。合成的和天然存在的磷酸钙基生物材料都已在整形外科和重建外科中用作骨填充剂或骨增量剂。这项研究旨在评估两种流行的基于磷酸钙的生物材料,即羟基磷灰石(HA)和磷酸三钙/羟基磷灰石(TCP / HA)颗粒作为骨组织工程中的支架材料。在我们构建组织工程骨的策略中,将源自骨膜的人骨祖细胞与人血浆衍生的纤维蛋白掺入并接种到形成HA或TCP / HA的3D组织构建物中,并进一步在成骨培养基中保持4周以诱导成骨分化。随后将构建体植入肌内无痛小鼠中8周,然后对小鼠实施安乐死并收获构建体用于评估。未脱钙的构建物的组织学以及使用SEM和TEM的评估说明了细胞对被用作支架的生物材料(HA或TCP / HA)的差异细胞反应。 HA和TCP / HA构造均显示出细胞增殖,钙沉积和胶原束形成的迹象,尽管前者较少。我们的研究结果表明,TCP / HA在早期骨形成方面在两者之间具有优势,因此是骨组织工程中选择的支架材料。

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