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本文引用的文献

1
Notch Signaling in Development, Tissue Homeostasis, and Disease.Notch 信号通路在发育、组织稳态和疾病中的作用。
Physiol Rev. 2017 Oct 1;97(4):1235-1294. doi: 10.1152/physrev.00005.2017.
2
Diabetic retinopathy: current understanding, mechanisms, and treatment strategies.糖尿病视网膜病变:当前的认识、机制及治疗策略
JCI Insight. 2017 Jul 20;2(14). doi: 10.1172/jci.insight.93751.
3
Therapeutic antibody targeting of Notch3 signaling prevents mural cell loss in CADASIL.针对Notch3信号通路的治疗性抗体可预防伴有皮质下梗死和白质脑病的常染色体显性遗传性脑动脉病中的壁细胞丢失。
J Exp Med. 2017 Aug 7;214(8):2271-2282. doi: 10.1084/jem.20161715. Epub 2017 Jul 11.
4
Jagged1/Notch3 Signaling Modulates Hemangioma-Derived Pericyte Proliferation and Maturation.Jagged1/Notch3信号通路调节血管瘤来源的周细胞增殖和成熟。
Cell Physiol Biochem. 2016;40(5):895-907. doi: 10.1159/000453148. Epub 2016 Dec 7.
5
Diabetes-Induced Jagged1 Overexpression in Endothelial Cells Causes Retinal Capillary Regression in a Murine Model of Diabetes Mellitus: Insights Into Diabetic Retinopathy.糖尿病诱导的内皮细胞中Jagged1过表达导致糖尿病小鼠模型视网膜毛细血管消退:对糖尿病视网膜病变的见解
Circulation. 2016 Jul 19;134(3):233-47. doi: 10.1161/CIRCULATIONAHA.116.014411. Epub 2016 Jul 12.
6
Pericytes of the neurovascular unit: key functions and signaling pathways.神经血管单元的周细胞:关键功能与信号通路
Nat Neurosci. 2016 May 26;19(6):771-83. doi: 10.1038/nn.4288.
7
Brain and Retinal Pericytes: Origin, Function and Role.脑与视网膜周细胞:起源、功能及作用
Front Cell Neurosci. 2016 Feb 4;10:20. doi: 10.3389/fncel.2016.00020. eCollection 2016.
8
Epidemiology of diabetic retinopathy, diabetic macular edema and related vision loss.糖尿病视网膜病变、糖尿病性黄斑水肿及相关视力丧失的流行病学
Eye Vis (Lond). 2015 Sep 30;2:17. doi: 10.1186/s40662-015-0026-2. eCollection 2015.
9
Combined deficiency of Notch1 and Notch3 causes pericyte dysfunction, models CADASIL, and results in arteriovenous malformations.Notch1和Notch3联合缺陷导致周细胞功能障碍,模拟大脑常染色体显性动脉病伴皮质下梗死和白质脑病(CADASIL),并导致动静脉畸形。
Sci Rep. 2015 Nov 13;5:16449. doi: 10.1038/srep16449.
10
The complex mural cell: pericyte function in health and disease.复杂的壁细胞:周细胞在健康与疾病中的功能
Int J Cardiol. 2015;190:75-89. doi: 10.1016/j.ijcard.2015.03.258. Epub 2015 Mar 20.

Notch3缺乏在糖尿病诱导的视网膜周细胞丢失中的作用评估。

Evaluation of Notch3 Deficiency in Diabetes-Induced Pericyte Loss in the Retina.

作者信息

Liu Hua, Zhang Wenbo, Lilly Brenda

机构信息

Department of Ophthalmology and Visual Sciences, University of Texas Medical Branch, Galveston, Texas, USA.

Center for Biomedical Engineering, University of Texas Medical Branch, Galveston, Texas, USA.

出版信息

J Vasc Res. 2018;55(5):308-318. doi: 10.1159/000493151. Epub 2018 Oct 22.

DOI:10.1159/000493151
PMID:30347392
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6280662/
Abstract

Loss of vascular pericytes has long been associated with the onset of diabetic retinopathy; however, mechanisms contributing to pericyte dropout are not understood. Notch3 has been implicated in pericyte stability and survival, and linked to vascular integrity. Notch3 mutant mice exhibit progressive loss of retinal pericytes. Given that diabetic retinopathy is associated with pericyte loss, we sought to determine whether perturbation of Notch3 signaling contributes to diabetes-induced pericyte dropout and capillary degeneration. We utilized a pericyte-expressed LacZ transgene (XlacZ4) to examine pericyte loss in retinas of a type I diabetic mouse model (Ins2Akita) and Notch3-deficient mice. Notch3 null animals showed a dramatic loss of the LacZ marker by 8 weeks of age, while Ins2Akita diabetic and Notch3 heterozygous mice exhibited a much slower and subtler loss of LacZ. Although combined Notch3 heterozygosity in Ins2Akita diabetic animals did not show further deficits, the trypsin digest method revealed that Notch3 haploinsufficiency increased the formation of acellular capillaries in diabetic mice. Our data further indicate that Notch signaling is blunted in diabetic retinas and in cells exposed to hyperglycemia. These results are the first to demonstrate an association between Notch3 signaling, pericyte loss, and diabetic retinopathy.

摘要

长期以来,血管周细胞的缺失一直与糖尿病视网膜病变的发生有关;然而,导致周细胞脱失的机制尚不清楚。Notch3与周细胞的稳定性和存活有关,并与血管完整性相关。Notch3突变小鼠表现出视网膜周细胞的逐渐丧失。鉴于糖尿病视网膜病变与周细胞丢失有关,我们试图确定Notch3信号通路的扰动是否会导致糖尿病诱导的周细胞脱失和毛细血管变性。我们利用周细胞表达的LacZ转基因(XlacZ4)来检测I型糖尿病小鼠模型(Ins2Akita)和Notch3缺陷小鼠视网膜中的周细胞丢失情况。Notch3基因敲除动物在8周龄时LacZ标记物显著丢失,而Ins2Akita糖尿病小鼠和Notch3杂合小鼠的LacZ丢失则慢得多且不明显。尽管Ins2Akita糖尿病动物中Notch3杂合性的联合并未显示出进一步的缺陷,但胰蛋白酶消化法显示Notch3单倍剂量不足会增加糖尿病小鼠无细胞毛细血管的形成。我们的数据进一步表明,Notch信号在糖尿病视网膜和暴露于高血糖的细胞中减弱。这些结果首次证明了Notch3信号通路、周细胞丢失和糖尿病视网膜病变之间的关联。