Therapies targeting blood vessels hold promise for autosomal dominant polycystic kidney disease (ADPKD), the most common inherited disorder causing kidney failure. However, the onset and nature of kidney vascular abnormalities in ADPKD are poorly defined. Accordingly, we employed a combination of single-cell transcriptomics; three-dimensional imaging with geometric, topological and fractal analyses; and multimodal magnetic resonance imaging with arterial spin labelling to investigate aberrant microvasculature in ADPKD kidneys. Within human ADPKD kidneys with advanced cystic pathology and excretory failure, we identified a molecularly distinct blood microvascular subpopulation, characterised by impaired angiogenic signalling and metabolic dysfunction, differing from endothelial injury profiles observed in non-cystic human kidney diseases. Next, Pkd1 mutant mouse kidneys were examined postnatally, when cystic pathology is well established, but before excretory failure. An aberrant endothelial subpopulation was also detected, concurrent with reduced cortical blood perfusion. Disorganised kidney cortical microvasculature was also present in Pkd1 mutant mouse fetal kidneys when tubular dilation begins. Thus, aberrant features of cystic kidney vasculature are harmonised between human and mouse ADPKD, supporting early targeting of the vasculature as a strategy to ameliorate ADPKD progression.
Microvascular aberrations found in human polycystic kidneys are an early feature in a Pkd1 mutant mouse model.
人类多囊肾中发现的微血管异常是 Pkd1 突变小鼠模型的早期特征
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作者:Jafree Daniyal J, Perera Charith, Ball Mary, Tolomeo Daniele, Pomeranz Gideon, Wilson Laura, Davis Benjamin, Mason William J, Funk Eva Maria, Kolatsi-Joannou Maria, Polschi Radu, Malik Saif, Stewart Benjamin J, Price Karen L, Mitchell Hannah, Motallebzadeh Reza, Muto Yoshiharu, Lees Robert, Needham Sarah, Moulding Dale, Chandler Jennie C, Nandanwar Sonal, Walsh Claire L, Winyard Paul J D, Scambler Peter J, Hägerling René, Clatworthy Menna R, Humphreys Benjamin D, Lythgoe Mark F, Walker-Samuel Simon, Woolf Adrian S, Long David A
| 期刊: | Disease Models & Mechanisms | 影响因子: | 3.300 |
| 时间: | 2025 | 起止号: | 2025 Apr 1; 18(4):dmm052024 |
| doi: | 10.1242/dmm.052024 | 种属: | Human、Mouse |
| 研究方向: | 其它 | ||
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