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Growth hormone promotes the reconstruction of injured axons in the hypothalamo-neurohypophyseal system
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作者 Kai li Zhanpeng Feng +11 位作者 Zhiwei Xiong Jun Pan Mingfeng Zhou weizhao li Yichao Ou Guangsen Wu Mengjie Che Haodong Gong Junjie Peng Xingqin Wang Songtao Qi Junxiang Peng 《Neural Regeneration Research》 SCIE CAS CSCD 2024年第10期2249-2258,共10页
Previous studies have shown that growth hormone can regulate hypothalamic energy metabolism, stress, and hormone release. Therefore, growth hormone has great potential for treating hypothalamic injury. In this study, ... Previous studies have shown that growth hormone can regulate hypothalamic energy metabolism, stress, and hormone release. Therefore, growth hormone has great potential for treating hypothalamic injury. In this study, we established a specific hypothalamic axon injury model by inducing hypothalamic pituitary stalk electric lesions in male mice. We then treated mice by intraperitoneal administration of growth hormone. Our results showed that growth hormone increased the expression of insulin-like growth factor 1 and its receptors, and promoted the survival of hypothalamic neurons, axonal regeneration, and vascular reconstruction from the median eminence through the posterior pituitary. Altogether, this alleviated hypothalamic injury-caused central diabetes insipidus and anxiety. These results suggest that growth hormone can promote axonal reconstruction after hypothalamic injury by regulating the growth hormone-insulin-like growth factor 1 axis. 展开更多
关键词 arginine vasopressin growth hormone hypothalamo-neurohypophyseal system HYPOTHALAMUS injury insulin-like growth factor 1 OXYTOCIN regeneration
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基于胶原蛋白的多孔微球制备及应用研究进展
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作者 熊新 李炜钊 +3 位作者 杨育灿 张灿华 周郁斌 彭新生 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2022年第11期183-190,共8页
胶原蛋白是一种天然的生物高分子材料,具有良好的生物相容性、生物可降解性及低免疫原性,广泛应用于生物医用材料领域。基于胶原蛋白制得的多孔微球,不仅对组织有良好亲和性,还具有比表面积大、密度低、细胞黏附性好等优良特性,是一种... 胶原蛋白是一种天然的生物高分子材料,具有良好的生物相容性、生物可降解性及低免疫原性,广泛应用于生物医用材料领域。基于胶原蛋白制得的多孔微球,不仅对组织有良好亲和性,还具有比表面积大、密度低、细胞黏附性好等优良特性,是一种细胞培养与药物递送系统的极佳选择。文中综述了胶原蛋白的生理性能、多孔微球的制备工艺、多孔微球用于细胞培养和药物递送的优点,总结了近十年来基于胶原蛋白的多孔微球在药物载体和细胞培养中的实际应用,并对其未来发展进行了展望。 展开更多
关键词 胶原蛋白 多孔微球 制备工艺 药物载体 细胞培养
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