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首页> 外文期刊>Materials science & engineering >Macroporous elastic cryogels based on platelet lysate and oxidized dextran as tissue engineering scaffold: In vitro and in vivo evaluations
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Macroporous elastic cryogels based on platelet lysate and oxidized dextran as tissue engineering scaffold: In vitro and in vivo evaluations

机译:基于血小板裂解物和氧化葡聚糖作为组织工程支架的大孔弹性冷冻凝胶:体内和体外评估

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In this study, three-dimensional macroporous cryogels were developed from platelet lysate (PL) and different concentrations of oxidized dextran (OD; 0.5, 1, 2, 4%). Subsequently, PL/OD scaffolds were characterized for potential use in tissue engineering applications. The pore size and morphology of the resulting cryogels were visualized using scanning electron microscopy (SEM). The pore size distributions were determined using mercury intrusion porosimetry (MIP). In vitro hydrolytic degradation, water uptake, mechanical properties and hemocompatibility were investigated. Extraction test was carried out to evaluate potential in vitro toxic effects of the PL/OD. The in vitro adhesion, proliferation, chondrogenic differentiation, and extracellular matrix production of human adipose stem cells (hASCs) on PL/OD cryogels were evaluated. In vivo biodegradation of the cryogels was investigated at the subcutaneous dorsal site of rats. SEM and MIP results indicated that PL/OD had a macroporous pore structure with pore sizes ranging between 10 and 200 mu m. The cryogels completely degraded within 90-240 days post-implantation, depending on OD concentration. Histochemical analysis revealed high levels of cell and tissue infiltration into the pores of PL/OD. In vitro cytotoxicity findings indicated that the extracts of PL/OD0.5, PL/OD1 and PL/OD2 showed no cytotoxic effect, whereas that of PL/OD4 exhibited a moderate cytotoxic effect on cell cultures. hASCs seeded on PL/OD2 retained their viability and showed extensive spreading and filopodia formation after 7 days. PL/OD2 also supported the chondrogenesis of hASCs in the presence of chondro-inductive factors. Given all the results, PL/OD could have potential as a scaffold for tissue engineering applications.
机译:在这项研究中,从血小板裂解液(PL)和不同浓度的氧化葡聚糖(OD; 0.5、1、2、4%)开发了三维大孔冷凝胶。随后,表征PL / OD支架在组织工程应用中的潜在用途。使用扫描电子显微镜(SEM)可视化所得冰晶的孔径和形态。使用水银压入孔隙率法(MIP)确定孔径分布。研究了体外水解降解,吸水率,机械性能和血液相容性。进行提取试验以评估PL / OD的潜在体外毒性作用。评估了人脂肪干细胞(hASCs)在PL / OD冷冻凝胶上的体外粘附,增殖,软骨形成分化和细胞外基质产生。在大鼠的皮下背位研究了冰晶的体内生物降解。 SEM和MIP结果表明,PL / OD具有大孔结构,孔径在10至200μm之间。取决于OD浓度,冰晶在植入后90-240天内完全降解。组织化学分析显示高水平的细胞和组织渗透到PL / OD的孔中。体外细胞毒性研究结果表明,PL / OD0.5,PL / OD1和PL / OD2的提取物无细胞毒性作用,而PL / OD4的提取物对细胞培养物有中等程度的细胞毒性作用。 7天后,接种在PL / OD2上的hASC保持了活力,并表现出广泛的扩散和丝状伪足形成。在存在软骨诱导因子的情况下,PL / OD2还支持hASC的软骨形成。鉴于所有结果,PL / OD有望成为组织工程应用的支架。

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