首页> 外文期刊>Journal of biomedical materials research, Part A >Synthesis and characterization of injectable, thermosensitive, and biocompatible acellular bone matrix/poly(ethylene glycol)-poly (epsilon-caprolactone)-poly(ethylene glycol) hydrogel composite.
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Synthesis and characterization of injectable, thermosensitive, and biocompatible acellular bone matrix/poly(ethylene glycol)-poly (epsilon-caprolactone)-poly(ethylene glycol) hydrogel composite.

机译:可注射,热敏和生物相容性细胞骨基质/聚(乙二醇)-poly(ε-己内酯) - 磷(乙二醇)水凝胶复合材料的合成及表征。

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In orthopedic tissue engineering, the extensively applied acellular bone matrix (ABM) can seldom be prefabricated just right to mold the cavity of the diverse defects, might induce severe inflammation on account of the migration of small granules and usually bring the patients great pain in the treatment. In this study, a new injectable thermosensitive ABM/PECE composite with good biocompatibility was designed and prepared by adding the ABM granules into the triblock copolymer poly(ethylene eglycol)-poly(epsilon-caprolactone)-poly(ethylene eglycol) (PEG-PCL-PEG, PECE). The PECE was synthesized by ring-opening copolymerization and characterized by (1)H NMR. The ABM was prepared by acellular treatment of natural bone and ground to fine granules. The obtained ABM/PECE composite showed the most important absorption bands of ABM and PECE copolymer in FT-IR spectroscopy and underwent sol-gel phage transition from solution to nonflowing hydrogel at 37 degrees C. SEM results indicated that the ABM/PECE composite with different ABM contents all presented similar porous 3D structure. ABM/PECE composite presented mild cytotoxicity to rat MSCs in vitro and good biocompatibility in the BALB/c mice subcutis up to 4 weeks. In conclusion, all the results confirmed that the injectable thermosensitive ABM/PECE composite was a promising candidate for orthopedic tissue engineering in a minimally-invasive way.
机译:在矫形组织工程中,广泛应用的薄膜骨基质(ABM)可以很少预制,只是为了塑造多种缺陷的腔体,可能会因为小颗粒的迁移而导致严重的炎症,并且通常将患者带来巨大的痛苦治疗。在该研究中,通过将ABM颗粒加入三嵌段共聚物聚(乙烯甲基甲基甲基)-poly(乙烯Eglodone)(乙烯Eglycol)(乙烯Eglycol)(乙烯Eglycol)(乙烯Eglycol)中设计并制备具有良好生物相容性的新可注射热敏性ABM / PECE复合材料。(乙烯Eglodone)(PEG-PCL) -peg,pece)。通过开环共聚合成PECE,其特征在于(1)H NMR。 ABM是通过对天然骨的细胞治疗和粒细颗粒制备的。所获得的ABM / PECE复合材料显示出在FT-IR光谱中的ABM和PECE共聚物中最重要的吸收带,并在37℃下从溶液中接受溶胶 - 凝胶噬菌体过渡到非流水凝胶。SEM结果表明ABM / PECE复合材料不同ABM含量所有呈现出类似的多孔3D结构。 ABM / PECE复合材料在BALB / C小鼠皮瓣中的体外和良好的生物相容性呈现轻微的细胞毒性,在BALB / C小鼠的良好中相容于4周。总之,所有结果证实,以微创的方式,可注射热敏ABM / PECE复合材料是用于矫形组织工程的有希望的候选者。

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