Istituto di Ricerche Farmacologiche Mario Negri IRCCS, Centro Anna Maria Astori, Science and Technology Park Kilometro Rosso, 24126 Bergamo, Italy.
Int J Mol Sci. 2023 Nov 20;24(22):16543. doi: 10.3390/ijms242216543.
Peritubular capillary rarefaction is a recurrent aspect of progressive nephropathies. We previously found that peritubular capillary density was reduced in BTBR / mice with type 2 diabetic nephropathy. In this model, we searched for abnormalities in the ultrastructure of peritubular capillaries, with a specific focus on the endothelial glycocalyx, and evaluated the impact of treatment with an angiotensin-converting enzyme inhibitor (ACEi). Mice were intracardially perfused with lanthanum to visualise the glycocalyx. Transmission electron microscopy analysis revealed endothelial cell abnormalities and basement membrane thickening in the peritubular capillaries of BTBR / mice compared to wild-type mice. Remodelling and focal loss of glycocalyx was observed in lanthanum-stained diabetic kidneys, associated with a reduction in glycocalyx components, including sialic acids, as detected through specific lectins. ACEi treatment preserved the endothelial glycocalyx and attenuated the ultrastructural abnormalities of peritubular capillaries. In diabetic mice, peritubular capillary damage was associated with an enhanced tubular expression of heparanase, which degrades heparan sulfate residues of the glycocalyx. Heparanase was also detected in renal interstitial macrophages that expressed tumor necrosis factor-α. All these abnormalities were mitigated by ACEi. Our findings suggest that, in experimental diabetic nephropathy, preserving the endothelial glycocalyx is important in order to protect peritubular capillaries from damage and loss.
肾小管周毛细血管稀疏是进行性肾病的一个常见特征。我们之前发现,2 型糖尿病肾病的 BTBR/ 小鼠中肾小管周毛细血管密度降低。在该模型中,我们搜索了肾小管周毛细血管超微结构的异常,特别关注内皮糖萼,并评估了血管紧张素转换酶抑制剂 (ACEi) 治疗的影响。通过心内灌流镧来可视化糖萼。与野生型小鼠相比,BTBR/ 小鼠的肾小管周毛细血管中观察到内皮细胞异常和基底膜增厚。在糖尿病肾脏中,观察到糖萼重塑和局灶性丢失,同时糖萼成分(包括唾液酸)减少,这通过特定的凝集素检测得到证实。ACEi 治疗保存了内皮糖萼,并减轻了肾小管周毛细血管的超微结构异常。在糖尿病小鼠中,肾小管周毛细血管损伤与肝素酶的增强表达相关,肝素酶降解糖萼的肝素硫酸酯残基。在表达肿瘤坏死因子-α的肾间质巨噬细胞中也检测到了肝素酶。所有这些异常均通过 ACEi 得到缓解。我们的研究结果表明,在实验性糖尿病肾病中,保护内皮糖萼对于保护肾小管周毛细血管免受损伤和丢失很重要。