Pfister Frederick, Feng Yuxi, vom Hagen Franziska, Hoffmann Sigrid, Molema Grietje, Hillebrands Jan-Luuk, Shani Moshe, Deutsch Urban, Hammes Hans-Peter
5th Medical Department, Medical Faculty Mannheim, University of Heidelberg, Mannheim, Germany.
Diabetes. 2008 Sep;57(9):2495-502. doi: 10.2337/db08-0325. Epub 2008 Jun 16.
The mechanism underlying pericyte loss during incipient diabetic retinopathy remains controversial. Hyperglycemia induces angiopoietin-2 (Ang-2) transcription, which modulates capillary pericyte coverage. In this study, we assessed loss of pericyte subgroups and the contribution of Ang-2 to pericyte migration.
Numbers of total pericytes and their subgroups were quantified in retinal digest preparations of spontaneous diabetic XLacZ mice. Pericytes were divided into subgroups according to their localization, their position relative to adjacent endothelial cells, and the expression of LacZ. The contribution of Ang-2 to pericyte migration was assessed in Ang-2 overexpressing (mOpsinhAng2) and deficient (Ang2LacZ) mice.
Pericyte numbers were reduced by 16% (P < 0.01) in XLacZ mice after 6 months of diabetes. Reduction of pericytes was restricted to pericytes on straight capillaries (relative reduction 27%, P < 0.05) and was predominantly observed in LacZ-positive pericytes (-20%, P < 0.01). Hyperglycemia increased the numbers of migrating pericytes (69%; P < 0.05), of which the relative increase due to diabetes was exclusively in LacZ-negative pericytes, indicating reduced adherence to the capillaries (176%; P < 0.01). Overexpression of Ang-2 in nondiabetic retinas mimicked diabetic pericyte migration of wild-type animals (78%; P < 0.01). Ang-2 deficient mice completely lacked hyperglycemia-induced increase in pericyte migration compared with wild-type littermates.
Diabetic pericyte loss is the result of pericyte migration, and this process is modulated by the Ang-Tie system.
早期糖尿病视网膜病变期间周细胞丢失的潜在机制仍存在争议。高血糖诱导血管生成素-2(Ang-2)转录,其调节毛细血管周细胞覆盖率。在本研究中,我们评估了周细胞亚群的丢失以及Ang-2对周细胞迁移的作用。
在自发性糖尿病XLacZ小鼠的视网膜消化制剂中对总周细胞及其亚群数量进行定量。根据周细胞的定位、相对于相邻内皮细胞的位置以及LacZ的表达将其分为亚群。在Ang-2过表达(mOpsinhAng2)和缺陷(Ang2LacZ)小鼠中评估Ang-2对周细胞迁移的作用。
糖尿病6个月后,XLacZ小鼠的周细胞数量减少了16%(P<0.01)。周细胞减少仅限于直毛细血管上的周细胞(相对减少27%;P<0.05),且主要在LacZ阳性周细胞中观察到(-20%;P<0.01)。高血糖增加了迁移周细胞的数量(69%;P<0.05),其中糖尿病导致的相对增加仅见于LacZ阴性周细胞,表明对毛细血管的黏附减少(176%;P<0.01)。非糖尿病视网膜中Ang-2的过表达模拟了野生型动物糖尿病性周细胞迁移(78%;P<0.01)。与野生型同窝小鼠相比,Ang-2缺陷小鼠完全缺乏高血糖诱导的周细胞迁移增加。
糖尿病性周细胞丢失是周细胞迁移的结果,并且这一过程受Ang-Tie系统调节。