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间充质干细胞疗法联合释放血管内皮生长因子(VEGF)的药理活性微载体在大鼠缺血性中风模型中的作用。

Effects of mesenchymal stem cell therapy, in association with pharmacologically active microcarriers releasing VEGF, in an ischaemic stroke model in the rat.

作者信息

Quittet Marie-Sophie, Touzani Omar, Sindji Laurence, Cayon Jérôme, Fillesoye Fabien, Toutain Jérôme, Divoux Didier, Marteau Léna, Lecocq Myriam, Roussel Simon, Montero-Menei Claudia N, Bernaudin Myriam

机构信息

CNRS, UMR 6301 ISTCT, CERVOxy group, GIP CYCERON, Bd Henri Becquerel, BP5229, F-14074 Caen cedex, France; Université de Caen Basse-Normandie, UMR 6301 ISTCT, CERVOxy group, GIP CYCERON, Bd Henri Becquerel, BP5229, F-14074 Caen cedex, France; CEA, DSV/I2BM, UMR 6301 ISTCT, CERVOxy group, GIP CYCERON, Bd Henri Becquerel, BP5229, F-14074 Caen cedex, France; Normandie Univ, F-14032 Caen cedex, France.

CNRS, UMR 6301 ISTCT, CERVOxy group, GIP CYCERON, Bd Henri Becquerel, BP5229, F-14074 Caen cedex, France; Université de Caen Basse-Normandie, UMR 6301 ISTCT, CERVOxy group, GIP CYCERON, Bd Henri Becquerel, BP5229, F-14074 Caen cedex, France; CEA, DSV/I2BM, UMR 6301 ISTCT, CERVOxy group, GIP CYCERON, Bd Henri Becquerel, BP5229, F-14074 Caen cedex, France; Normandie Univ, F-14032 Caen cedex, France.

出版信息

Acta Biomater. 2015 Mar;15:77-88. doi: 10.1016/j.actbio.2014.12.017. Epub 2014 Dec 31.

Abstract

Few effective therapeutic interventions are available to limit brain damage and functional deficits after ischaemic stroke. Within this context, mesenchymal stem cell (MSC) therapy carries minimal risks while remaining efficacious through the secretion of trophic, protective, neurogenic and angiogenic factors. The limited survival rate of MSCs restricts their beneficial effects. The usefulness of a three-dimensional support, such as a pharmacologically active microcarrier (PAM), on the survival of MSCs during hypoxia has been shown in vitro, especially when the PAMs were loaded with vascular endothelial growth factor (VEGF). In the present study, the effect of MSCs attached to laminin-PAMs (LM-PAMs), releasing VEGF or not, was evaluated in vivo in a model of transient stroke. The parameters assessed were infarct volume, functional recovery and endogenous cellular reactions. LM-PAMs induced the expression of neuronal markers by MSCs both in vitro and in vivo. Moreover, the prolonged release of VEGF increased angiogenesis around the site of implantation of the LM-PAMs and facilitated the migration of immature neurons towards the ischaemic tissue. Nonetheless, MSCs/LM-PAMs-VEGF failed to improve sensorimotor functions. The use of LM-PAMs to convey MSCs and to deliver growth factors could be an effective strategy to repair the brain damage caused by a stroke.

摘要

目前几乎没有有效的治疗干预措施可用于限制缺血性中风后的脑损伤和功能缺陷。在此背景下,间充质干细胞(MSC)疗法风险极小,同时通过分泌营养、保护、神经生成和血管生成因子而保持疗效。MSC的有限存活率限制了它们的有益作用。三维载体,如具有药理活性的微载体(PAM),对缺氧条件下MSC存活的作用已在体外得到证实,尤其是当PAM负载血管内皮生长因子(VEGF)时。在本研究中,在短暂性中风模型中对附着于层粘连蛋白-PAM(LM-PAM)且释放或不释放VEGF的MSC的作用进行了体内评估。评估的参数包括梗死体积、功能恢复和内源性细胞反应。LM-PAM在体外和体内均可诱导MSC表达神经元标志物。此外,VEGF的持续释放增加了LM-PAM植入部位周围的血管生成,并促进未成熟神经元向缺血组织迁移。尽管如此,MSC/LM-PAM-VEGF未能改善感觉运动功能。使用LM-PAM来转运MSC并递送生长因子可能是修复中风所致脑损伤的有效策略。

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