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引用本文的文献

1
Orchestrating Resilience: How Neuropilin-2 and Macrophages Contribute to Cardiothoracic Disease.协调恢复力:神经纤毛蛋白-2和巨噬细胞如何导致心胸疾病。
J Clin Med. 2024 Mar 1;13(5):1446. doi: 10.3390/jcm13051446.

神经纤毛蛋白 2 是调节远端结肠收缩性的新型调节剂。

Neuropilin 2 Is a Novel Regulator of Distal Colon Contractility.

机构信息

Urological Diseases Research Center, Boston Children's Hospital, Boston, Massachusetts.

Department of Surgery, Harvard Medical School, Boston, Massachusetts; Division of Urology, VA Boston Healthcare System, Boston, Massachusetts.

出版信息

Am J Pathol. 2022 Nov;192(11):1592-1603. doi: 10.1016/j.ajpath.2022.07.013. Epub 2022 Aug 17.

DOI:10.1016/j.ajpath.2022.07.013
PMID:35985479
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9667714/
Abstract

Appropriate coordination of smooth muscle contraction and relaxation is essential for normal colonic motility. The impact of perturbed motility ranges from moderate, in conditions such as colitis, to potentially fatal in the case of pseudo-obstruction. The mechanisms underlying aberrant motility and the extent to which they can be targeted pharmacologically are incompletely understood. This study identified colonic smooth muscle as a major site of expression of neuropilin 2 (Nrp2) in mice and humans. Mice with inducible smooth muscle-specific knockout of Nrp2 had an increase in evoked contraction of colonic rings in response to carbachol at 1 and 4 weeks following initiation of deletion. KCl-induced contractions were also increased at 4 weeks. Colonic motility was similarly enhanced, as evidenced by faster bead expulsion in Nrp2-deleted mice versus Nrp2-intact controls. In length-tension analysis of the distal colon, passive tension was similar in Nrp2-deficient and Nrp2-intact mice, but at low strains, active stiffness was greater in Nrp2-deficient animals. Consistent with the findings in conditional Nrp2 mice, Nrp2-null mice showed increased contractility in response to carbachol and KCl. Evaluation of selected proteins implicated in smooth muscle contraction revealed no significant differences in the level of α-smooth muscle actin, myosin light chain, calponin, or RhoA. Together, these findings identify Nrp2 as a novel regulator of colonic contractility that may be targetable in conditions characterized by dysmotility.

摘要

平滑肌的收缩和舒张的适当协调对于正常的结肠运动至关重要。运动障碍的影响范围从中度,如结肠炎,到潜在致命的假性肠梗阻。异常运动的机制以及在多大程度上可以通过药物治疗来靶向这些机制尚不完全清楚。本研究在小鼠和人类中确定了结肠平滑肌是神经纤毛蛋白 2 (Nrp2) 的主要表达部位。在启动缺失后 1 周和 4 周,诱导性平滑肌特异性 Nrp2 敲除小鼠对 carbachol 的结肠环诱发收缩反应增加。在 4 周时,KCl 诱导的收缩也增加了。结肠运动也同样增强,如 Nrp2 缺失小鼠中珠子排出速度比 Nrp2 完整对照小鼠更快。在远端结肠的长度张力分析中,Nrp2 缺陷型和 Nrp2 完整型小鼠的被动张力相似,但在低应变时,Nrp2 缺陷型动物的主动硬度更大。与条件性 Nrp2 小鼠的发现一致,Nrp2 缺失型小鼠对 carbachol 和 KCl 的反应性收缩性增加。对涉及平滑肌收缩的选定蛋白的评估显示,α-平滑肌肌动蛋白、肌球蛋白轻链、钙调蛋白或 RhoA 的水平没有显著差异。综上所述,这些发现表明 Nrp2 是一种新型的结肠收缩性调节因子,在运动障碍特征的情况下可能是可靶向的。