The Impact of Gender on Progression of Renal Disease
article
OA: bronze
CC0
⤵ 1 in-corpus citation
Abstract
Male gender is associated with a more rapid progression of renal disease independent of blood pressure, dietary protein intake, or serum lipid levels. Recently, we reported a key role for the intrarenal vasculature in progressive renal disease (Kang D-H, Kanellis J, Hugo C, Truong L, Anderson S, Kerjaschki D, Schreiner GF, Johnson RJ: Role of endothelium in progressive renal disease. J Am Soc Nephrol 2002, 13:806-816). We hypothesized that estrogen-mediated preservation of the renal vasculature could account for the better renal outcome in female rats. We analyzed micro- and macrovascular changes in the 5/6 remnant kidney (RK) models both in male (n = 24) and female (n = 24) Sprague-Dawley rats up to 12 weeks after renal mass reduction. At 12 weeks, male and female RK rats had equivalent blood pressure, glomerular tuft area, and RK/body weight, but male rats showed worse renal function, proteinuria, glomerulosclerosis (%), and tubulointerstitial fibrosis. At 12 weeks peritubular capillary (PTC) EC proliferation and PTC density were higher in female RK rats whereas macrovascular changes in preglomerular vessels (smooth muscle cell proliferation, medial wall thickening, and adventitial fibrosis) were less prominent. The expression of vascular endothelial growth factor (VEGF) and VEGF type 2 receptor (flk-1) in renal cortex assessed by immunostaining were higher in female RK rats. To dissect the mechanism of sex hormone-induced vascular remodeling and VEGF regulation, we investigated the in vitro effect of 17 beta-estradiol (17 beta E, 10 nmol/L) on proliferation and VEGF expression of renal tubular cells (rat proximal tubular cells), vascular smooth muscle cells (VSMCs), and human umbilical vein endothelial cells (HUVECs). 17 beta E directly stimulated the proliferation of HUVECs, whereas it inhibited serum-induced proliferation of VSMCs. 17 beta E stimulated VEGF mRNA expression both in renal tubular cells and VSMCs. However, when cells were pretreated with a nitric oxide donor to simulate the in vivo condition, 17 beta E inhibited VEGF mRNA expression and protein release in VSMCs. In conclusion, female RK rats developed less glomerulosclerosis and renal failure compared to male RK rats in association with greater preservation of PTC and less preglomerular arteriopathy. Estrogen stimulated basal VEGF expression in renal tubular cells. We propose that estrogen may protect female rats in progressive renal disease by stimulating VEGF expression and maintaining a healthy intrarenal vasculature.
My notes (saved in your browser only)
Citation neighborhood (sparse)
Too few in-corpus citations on either side for a chart; here are the lists.
Cites (2)
- Estradiol is nephroprotective in the rat remnant kidney 2002
- Estradiol is nephroprotective in the rat remnant kidney 2002
Cited by (1)
References (68)
- Estradiol is nephroprotective in the rat remnant kidney via crossref
- Estradiol is nephroprotective in the rat remnant kidney via openalex
- doi:10.1053/ajkd.2001.22087 via crossref
- doi:10.1681/asn.v1271434 via crossref
- doi:10.1097/01.asn.0000034910.58454.fd via crossref
- doi:10.1016/s0002-9440(10)64175-2 via crossref
- doi:10.1161/01.hyp.4.6.898 via crossref
- doi:10.1046/j.1523-1755.2000.00422.x via crossref
- doi:10.1681/asn.v1271448 via crossref
- doi:10.1038/nm0897-879 via crossref
- doi:10.1053/jarr.2003.50001 via crossref
- doi:10.1016/s0895-7061(01)02087-8 via crossref
- doi:10.1016/s0272-6386(99)70046-6 via crossref
- doi:10.1016/0002-9343(85)90010-5 via crossref
- doi:10.1038/ki.1984.112 via crossref
- doi:10.1161/01.cir.95.7.1768 via crossref
- doi:10.1210/endo.138.8.5354 via crossref
- doi:10.1161/01.cir.91.3.755 via crossref
- doi:10.1161/01.hyp.37.2.645 via crossref
- doi:10.1161/01.res.83.8.832 via crossref
- doi:10.1038/86490 via crossref
- doi:10.1016/s0735-1097(01)01301-8 via crossref
- doi:10.1074/jbc.m103213200 via crossref
- doi:10.1016/s0272-6386(89)80035-6 via crossref
- doi:10.1172/jci114102 via crossref
- doi:10.1161/01.atv.17.7.1216 via crossref
- W1488735729 via openalex
- W1561059299 via openalex
- W1964533512 via openalex
- W1976693476 via openalex
- W2009974525 via openalex
- W2012542707 via openalex
- W2015058903 via openalex
- W2021139743 via openalex
- W2038526035 via openalex
- W2041821709 via openalex
- W2051109788 via openalex
- W2054729118 via openalex
- W2065804122 via openalex
- W2069890010 via openalex
- W2071342149 via openalex
- W2075333521 via openalex
- W2081955935 via openalex
- W2082677544 via openalex
- W2085326970 via openalex
- W2106403351 via openalex
- W2117317462 via openalex
- W2123295328 via openalex
- W2123607535 via openalex
- W2126157581 via openalex
- W2129859917 via openalex
- W2138519685 via openalex
- W2146713188 via openalex
- W2152723385 via openalex
- W2155156767 via openalex
- W2168574106 via openalex
- W2186358774 via openalex
- W2286510516 via openalex
- W2410870014 via openalex
- W2466569046 via openalex
- W6629488079 via openalex
- W6677782742 via openalex
- W6682723575 via openalex
- W6686705394 via openalex
- W6695862486 via openalex
- doi:10.1016/0272-6386(95)90119-1 via crossref
- W6719827238 via openalex
- doi:10.1681/asn.v112319 via crossref
Cited by (1)
Source provenance
- crossref
- last seen: 2026-05-21T01:00:13.675741+00:00
- openalex
- last seen: 2026-06-10T17:14:06.276822+00:00
License: CC0
· commercial use OK