Our previous studies using puromycin aminonucleoside (PAN) established that podocyte damage leads to glomerular growth arrest during development and glomerulosclerosis later in life. This study examined the potential benefit of maintaining podocyte-derived VEGF in podocyte defense and survival after PAN injury using conditional transgenic podocytes and mice, in which human VEGF-A (hVEGF) transgene expression is controlled by tetracycline responsive element (TRE) promoter and reverse tetracycline transactivator (rtTA) in podocytes. In vitro experiments used primary cultured podocytes harvested from mice carrying podocin-rtTA and TRE-hVEGF transgenes, in which hVEGF can be induced selectively. Induction of VEGF in PAN-exposed podocytes resulted in preservation of intrinsic VEGF, α-actinin-4 and synaptopodin, antiapoptotic marker Bcl-xL/Bax, as well as attenuation in apoptotic marker cleaved/total caspase-3. In vivo, compared with genotype controls, PAN-sensitive neonatal mice with physiologically relevant levels of podocyte-derived VEGF showed significantly larger glomeruli. Furthermore, PAN-induced up-regulation of desmin, down-regulation of synaptopodin and nephrin, and disruption of glomerular morphology were significantly attenuated in VEGF-induced transgenic mice. Our data indicate that podocyte-derived VEGF provides self-preservation functions, which can rescue the cell after injury and preempt subsequent deterioration of the glomerulus in developing mice.
Induction of podocyte-derived VEGF ameliorates podocyte injury and subsequent abnormal glomerular development caused by puromycin aminonucleoside.
诱导足细胞衍生的 VEGF 可减轻嘌呤霉素氨基核苷引起的足细胞损伤和随后的肾小球发育异常
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作者:Ma Ji, Matsusaka Taiji, Yang Hai-Chun, Zhong Jianyong, Takagi Nobuaki, Fogo Agnes B, Kon Valentina, Ichikawa Iekuni
| 期刊: | Pediatric Research | 影响因子: | 3.100 |
| 时间: | 2011 | 起止号: | 2011 Jul;70(1):83-9 |
| doi: | 10.1203/PDR.0b013e31821bdf1c | 研究方向: | 发育与干细胞、细胞生物学 |
| 疾病类型: | 肾损伤 | ||
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