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猕猴急性脊髓全横断损伤血清的代谢组学分析 被引量:2
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作者 唐涛 程建华 +5 位作者 杨树广 高健 黄涛 王滨 董芳霆 刘少君 《中国组织工程研究》 CAS 北大核心 2017年第36期5818-5823,共6页
背景:脊髓损伤通过非靶标代谢组学分析可用于发现和识别代谢物变化,分析其与脊髓损伤的关系,有助于理解并进一步探讨继发脊髓损伤的病理生理过程和机制。目的:检测分析猕猴脊髓全横断损伤后血清代谢物变化,探讨其与脊髓损伤病理生理过... 背景:脊髓损伤通过非靶标代谢组学分析可用于发现和识别代谢物变化,分析其与脊髓损伤的关系,有助于理解并进一步探讨继发脊髓损伤的病理生理过程和机制。目的:检测分析猕猴脊髓全横断损伤后血清代谢物变化,探讨其与脊髓损伤病理生理过程的关系,筛选潜在生物标志物。方法:对5只成年猕猴脊髓全横断损伤前1 d(正常对照),损伤后3 h(超急性期)及3 d(急性期)血清进行气相飞行时间质谱(GC/TOF-MS)非靶标检测,通过与质谱图库比对,指认代谢产物,查找差异代谢物,并映射至相关代谢通路,分析病理生理过程和作用机制。结果与结论:质谱分析共识别出358个谱峰,14个代谢物被认定为差异代谢物,包括小分子有机酸,氨基酸,脂肪酸和糖。结果显示,全横断脊髓损伤急性期与氨基酸代谢、三羧酸循环和丙酮酸代谢密切相关。 展开更多
关键词 织构建 织工程 猕猴 脊髓损伤 代谢 气相飞行时间质谱 三羧酸循环 氨基酸代谢 丙酮酸代谢 主成分分析 国家自然科学基金
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脊柱骨折伴脊髓损伤患者外周血神经丝蛋白H磷酸化亚型、S100B、骨钙素、甲状旁腺激素、碱性磷酸酶表达与其病情程度的关系 被引量:1
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作者 欧阳艳菲 苏镜 +3 位作者 郭星 王利仁 何美容 袁春燕 《中华实验外科杂志》 CAS 北大核心 2021年第10期2044-2044,共1页
本研究旨在探讨脊柱骨折伴脊髓损伤患者外周血神经丝蛋白H磷酸化亚型(pNF-H)、S100B、骨钙素(BGP)、甲状旁腺激素(PTH)、碱性磷酸酶(BALP)表达与其病情程度的相关性。现将结果报道如下。一、资料与方法1.一般资料:将医院从2017年1月2019... 本研究旨在探讨脊柱骨折伴脊髓损伤患者外周血神经丝蛋白H磷酸化亚型(pNF-H)、S100B、骨钙素(BGP)、甲状旁腺激素(PTH)、碱性磷酸酶(BALP)表达与其病情程度的相关性。现将结果报道如下。一、资料与方法1.一般资料:将医院从2017年1月2019年12月收治的脊柱骨折患者157例纳入研究,将其按照是否伴有脊髓损伤分作脊髓损伤组51例和无脊髓损伤组106例。 展开更多
关键词 S100B 病情程度 甲状旁腺激素 碱性磷酸酶 脊柱骨折伴脊髓损伤 BALP 脊髓损伤组 脊柱骨折患者
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Repair of acutely injured spinal cord through constructing tissue-engineered neural complex in adult rats 被引量:6
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作者 蒲渝 郭庆山 +3 位作者 王爱民 吴思宇 刑书星 张忠荣 《Chinese Journal of Traumatology》 CAS 2007年第3期171-176,共6页
Objective: To construct tissue-engineered neural complex in vitro and study its effect in repairing acutely injured spinal cord in adult rats. Methods: Neural stem cells were harvested from the spinal cord of embry... Objective: To construct tissue-engineered neural complex in vitro and study its effect in repairing acutely injured spinal cord in adult rats. Methods: Neural stem cells were harvested from the spinal cord of embryo rats and propagated in vitro. Then the neural stem cells were seeded into polygiycolic acid scaffolds and co-cultured with extract of embryonic spinal cord in vitro. ce histochemistry and scanning electron microscope were used to observe the microstructure of this complex. Animal model of spine semi-transection was made and tissue-engineered neural complex was implanted by surgical intervention. Six weeks after transplantation, functional evaluation and histochemistry were applied to evaluate the functional recovery and anatomic reconstruction. Results: The tissue-engineered neural complex had a distinct structure, which contained neonatal neurons, oligodendrocytes and astrocytes. After tissue-engineered neural complex was implanted into the injured spinal cord, the cell components such as neurons, astrocytes and oligodendrocytes, could survive and keep on developing. The adult rats suffering from spinal cord injury got an obvious neurological recovery in motor skills. Conclusions: The tissue-engineered neural complex appears to have therapeutic effects on the functional recovery and anatomic reconstruction of the adult rats with spinal cord injury. 展开更多
关键词 Spinal cord injuries Tissue engineering Stem cell transplantation Polyglycolic acid
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