Agrin Inhibition in Enteric Neural Stem Cells Enhances Their Migration Following Colonic Transplantation.

IF 5.4 2区 医学 Q1 CELL & TISSUE ENGINEERING
Jessica L Mueller, Rhian Stavely, Richard A Guyer, Ádám Soos, Sukhada Bhave, Chris Han, Ryo Hotta, Nandor Nagy, Allan M Goldstein
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Abstract

Regenerative cell therapy to replenish the missing neurons and glia in the aganglionic segment of Hirschsprung disease represents a promising treatment option. However, the success of cell therapies for this condition are hindered by poor migration of the transplanted cells. This limitation is in part due to a markedly less permissive extracellular environment in the postnatal gut than that of the embryo. Coordinated interactions between enteric neural crest-derived cells (ENCDCs) and their local environment drive migration along the embryonic gut during development of the enteric nervous system. Modifying transplanted cells, or the postnatal extracellular environment, to better recapitulate embryonic ENCDC migration could be leveraged to improve the engraftment and coverage of stem cell transplants. We compared the transcriptomes of ENCDCs from the embryonic intestine to that of postnatal-derived neurospheres and identified 89 extracellular matrix (ECM)-associated genes that are differentially expressed. Agrin, a heparin sulfate proteoglycan with a known inhibitory effect on ENCDC migration, was highly over-expressed by postnatal-derived neurospheres. Using a function-blocking antibody and a shRNA-expressing lentivirus, we show that inhibiting agrin promotes ENCDC migration in vitro and following cell transplantation ex vivo and in vivo. This enhanced migration is associated with an increased proportion of GFAP + cells, whose migration is especially enhanced.

抑制肠道神经干细胞中的 Agrin 可增强其在结肠移植后的迁移。
通过再生细胞疗法补充赫氏弓形虫病神经节段缺失的神经元和胶质细胞是一种很有前景的治疗方法。然而,由于移植细胞的迁移能力差,细胞疗法在这种疾病上的成功受到了阻碍。造成这种限制的部分原因是,出生后肠道的细胞外环境明显不如胚胎时期那么宽松。在肠道神经系统的发育过程中,肠道神经嵴衍生细胞(ENCDCs)与其局部环境之间的协调互动推动了沿胚胎肠道的迁移。改变移植细胞或出生后的细胞外环境,以更好地再现胚胎ENCDC迁移,可用于改善干细胞移植的接种率和覆盖率。我们比较了胚胎肠道ENCDC与出生后衍生神经球的转录组,确定了89个细胞外基质(ECM)相关基因的不同表达。Agrin是一种肝素硫酸酯蛋白多糖,已知对ENCDC迁移有抑制作用,而产后衍生的神经球高度过度表达Agrin。通过使用功能阻断抗体和表达 shRNA 的慢病毒,我们发现抑制 agrin 可促进 ENCDC 在体外以及体内外细胞移植后的迁移。这种迁移的增强与 GFAP + 细胞比例的增加有关,后者的迁移尤其增强。
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来源期刊
Stem Cells Translational Medicine
Stem Cells Translational Medicine CELL & TISSUE ENGINEERING-
CiteScore
12.90
自引率
3.30%
发文量
140
审稿时长
6-12 weeks
期刊介绍: STEM CELLS Translational Medicine is a monthly, peer-reviewed, largely online, open access journal. STEM CELLS Translational Medicine works to advance the utilization of cells for clinical therapy. By bridging stem cell molecular and biological research and helping speed translations of emerging lab discoveries into clinical trials, STEM CELLS Translational Medicine will help move applications of these critical investigations closer to accepted best patient practices and ultimately improve outcomes. The journal encourages original research articles and concise reviews describing laboratory investigations of stem cells, including their characterization and manipulation, and the translation of their clinical aspects of from the bench to patient care. STEM CELLS Translational Medicine covers all aspects of translational cell studies, including bench research, first-in-human case studies, and relevant clinical trials.
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