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A partition-type tubular scaffold loaded with PDGF-releasing microspheres for spinal cord repair facilitates the directional migration and growth of cells 被引量:1
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作者 Xue Chen Mei-Ling Xu +7 位作者 Cheng-Niu Wang Lu-Zhong Zhang Ya-Hong Zhao Chang-Lai Zhu Ying Chen Jian Wu Yu-Min Yang Xiao-Dong Wang 《Neural Regeneration Research》 SCIE CAS CSCD 2018年第7期1231-1240,共10页
The best tissue-engineered spinal cord grafts not only match the structural characteristics of the spinal cord but also allow the seed cells to grow and function in situ.Platelet-derived growth factor(PDGF) has been... The best tissue-engineered spinal cord grafts not only match the structural characteristics of the spinal cord but also allow the seed cells to grow and function in situ.Platelet-derived growth factor(PDGF) has been shown to promote the migration of bone marrow stromal cells;however,cytokines need to be released at a steady rate to maintain a stable concentration in vivo.Therefore,new methods are needed to maintain an optimal concentration of cytokines over an extended period of time to effectively promote seed cell localization,proliferation and differentiation.In the present study,a partition-type tubular scaffold matching the anatomical features of the thoracic 8–10 spinal cord of the rat was fabricated using chitosan and then subsequently loaded with chitosan-encapsulated PDGF-BB microspheres(PDGF-MSs).The PDGF-MS-containing scaffold was then examined in vitro for sustained-release capacity,biocompatibility,and its effect on neural progenitor cells differentiated in vitro from multilineage-differentiating stress-enduring cells(MUSE-NPCs).We found that pre-freezing for 2 hours at-20°C significantly increased the yield of partition-type tubular scaffolds,and 30 μL of 25% glutaraldehyde ensured optimal crosslinking of PDGF-MSs.The resulting PDGF-MSs cumulatively released 52% of the PDGF-BB at 4 weeks in vitro without burst release.The PDGF-MS-containing tubular scaffold showed suitable biocompatibility towards MUSE-NPCs and could promote the directional migration and growth of these cells.These findings indicate that the combination of a partition-type tubular scaffold,PDGF-MSs and MUSENPCs may be a promising model for the fabrication of tissue-engineered spinal cord grafts. 展开更多
关键词 nerve regeneration partition-type tubular scaffold microspheres platelet-derived growth factor muse cells neural precursor cells chitosan encapsulation efficiency bone marrow spinal cord injury tissue engineering neural regeneration
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几丁糖/聚乙烯醇导管联合脑源性神经营养因子缓释微球修复大鼠周围神经缺损 被引量:1
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作者 史正亮 张华 +3 位作者 范志勇 马维 袁鹤 杨冰 《中国组织工程研究》 CAS 北大核心 2021年第10期1555-1559,共5页
背景:通过神经导管桥接修复周围神经缺损可为神经再生提供适合的微环境,一方面为神经再生提供唯一的通道,防止周围结缔组织的侵入和瘢痕的形成;另一方面,能保存内源性和外源性的神经营养因子、生长因子等促进轴突生长的刺激物质。目的:... 背景:通过神经导管桥接修复周围神经缺损可为神经再生提供适合的微环境,一方面为神经再生提供唯一的通道,防止周围结缔组织的侵入和瘢痕的形成;另一方面,能保存内源性和外源性的神经营养因子、生长因子等促进轴突生长的刺激物质。目的:观察几丁糖/聚乙烯醇导管内注入脑源性神经营养因子缓释微球桥接周围神经缺损的效果。方法:采用反复冻融技术制备几丁糖/聚乙烯醇神经导管;采用乳化-溶剂挥发法与聚合物合金法制备脑源性神经营养因子缓释微球。在60只成年雄性SD大鼠右后肢制作15 mm坐骨神经缺损模型,随机分4组处理:A组植入自体坐骨神经,B组植入几丁糖/聚乙烯醇神经导管后注射生理盐水,C组植入几丁糖/聚乙烯醇神经导管后注射脑源性神经营养因子溶液,D组植入几丁糖/聚乙烯醇神经导管后注射脑源性神经营养因子缓释微球,每组15只。术后4个月取材,进行大体解剖观察、组织学检查和神经电生理测定。动物实验获得河北医科大学第二医院科研伦理委员会批准。结果与结论:①大体解剖:A、D组肌肉萎缩较另外2组轻,4组移植物均与周边组织有粘连,自体移植段神经与周围组织粘连较重,D组再生神经已将远、近两端神经连接,再生神经填满导管;②电生理检测:D组潜伏期短于B、C组(P <0.01),诱发电位与传导速度大于B、C组(P <0.01),与A组比较差异均无显著性意义(P> 0.05);③组织学观察:B、C、D组导管内均有再生神经纤维,D组再生神经纤维直径、个数及髓鞘厚度大于B、C组(P <0.01),与A组比较差异均无显著性意义(P> 0.05);④结果表明,几丁糖/聚乙烯醇导管内注入脑源性神经营养因子微球对于外周神经再生有较长期的促进作用。 展开更多
关键词 材料 支架 神经 神经导管 周围神经 神经缺损 脑源性神经营养因子 缓释微球 神经再生
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