Key result
In neonatal rats, unilateral ureteral obstruction impairs renal growth by reducing proliferation and stimulating apoptosis via AT2 receptors, whereas in adults these effects are independent of ANG II.
Why the study?
Does angiotensin II receptor inhibition or exogenous angiotensin II alter renal cellular proliferation and apoptosis in neonatal and adult rats with unilateral ureteral obstruction?
Does angiotensin II receptor inhibition or exogenous angiotensin II alter renal cellular proliferation and apoptosis in neonatal and adult rats with unilateral ureteral obstruction?
In neonatal rats, renal growth impairment from ureteral obstruction is mediated at least in part by angiotensin AT2 receptors, a mechanism not observed in adult rats.
Should not change AT2 antagonist use in obstruction; extends evidence for age-specific ANG II receptor roles in renal growth impairment.
Renal angiotensin II (ANG II) is increased as a result of unilateral ureteral obstruction (UUO), and angiotensin AT(2) receptors predominate over AT(1) receptors in the early postnatal period. To examine the renal cellular response to 3-day UUO in the neonatal and adult rat, AT(1) and AT(2) receptors were inhibited by losartan and PD-123319, respectively. Additional rats received exogenous ANG II, 0.5 mg. kg(-1). day(-1). Renal cellular proliferation and apoptosis were quantitated by proliferating cell nuclear antigen and terminal deoxynucleotidyl transferase-mediated dUTP-biotin nick end labeling technique, respectively. In the neonate, UUO reduced proliferation and increased tubular apoptosis. Losartan had no detectable cellular effect, whereas PD-123319 increased cellular proliferation and suppressed apoptosis, and exogenous ANG II stimulated apoptosis. In the adult, UUO increased cellular proliferation as well as apoptosis, whereas losartan, PD-123319, and exogenous ANG II did not alter the cellular response. In conclusion, UUO impairs renal growth in the neonate by reducing proliferation and stimulating apoptosis, at least in part through angiotensin AT(2) receptors. UUO stimulates both renal cellular proliferation and apoptosis in the adult, but these effects are independent of ANG II. We speculate that the unique early responses of the developing kidney to urinary tract obstruction are mediated by a highly activated renin-angiotensin system and preponderance of AT(2) receptors.
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Chevalier et al. (1999) studied Unilateral ureteral obstruction. Losartan, PD-123319, or exogenous ANG II was evaluated on Renal cellular proliferation and apoptosis. In neonatal rats, unilateral ureteral obstruction impairs renal growth by reducing proliferation and stimulating apoptosis via AT2 receptors, whereas in adults these effects are independent of ANG II.
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