AHEART January 47/1
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چکیده
Yang, H. T., and Y. Feng. bFGF increases collateral blood flow in aged rats with femoral artery ligation. Am. J. Physiol. Heart Circ. Physiol. 278: H85–H93, 2000.—We tested the hypothesis that aged animals are as responsive as the young adult animals in expanding collateral vasculature under a similar treatment of basic fibroblast growth factor (bFGF). Two age groups of male Fischer 344 rats (11 mo old; n 5 32, 23 mo old; n 5 43) weighing ,385 g were subdivided into normal, acute ligation [femoral artery (FA) ligated 3 days before blood flow (BF) measurement] or ligated groups for 16 days and received recombinant human bFGF intra-arterial infusion at doses of 0, 0.5, 5, and 50 μg·kg21 ·day21. BF was determined with 85Srand 141Ce-labeled microspheres during treadmill running at 15 and 20 m/min at 15% grade. Blood presure (BP) values were ,149 and ,163 mmHg (p , 0.05); heart rates were ,496 and ,512 beats/min in the aged and young adult groups during running, respectively. Maximal collateral BF values were confirmed by no additional BF increase in the calf muscle at the higher speed. Ligation of the FA for 3 days reduced the BF reserve to the calf muscle by ,90%. Calf muscle BF was modestly greater (10 ml·min21 · 100 g21) by 16 days in the carrier group. bFGF infusion expanded collateral BF in a dose-dependent manner with an increase of 33 and 42 ml·min21 ·100 g21 (P , 0.001) in the 5 and 50 μg·kg21 ·day21 bFGF groups, respectively. Aged animals showed similar BF improvements as observed with the adult groups in response to ligation surgery and bFGF treatment. Our data indicate that the aged rats (,23 mo old) remain responsive to exogenous bFGF induced in developing collateral-dependent BF as the young adult (,11 mo old) controls. This suggests that the influence of bFGF in expanding collateral BF should not be preempted in the aged group, the population most affected by peripheral arterial insufficiency.
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AHEART February 47/2
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متن کاملAHEART January 47/1
Shi, Hong, Hui-Zhen Wang, and Zhiguo Wang. Extracellular Ba21 blocks the cardiac transient outward K1 current. Am. J. Physiol. Heart Circ. Physiol. 278: H295–H299, 2000.—Ba21 is widely used as a tool in patch-clamp studies because of its ability to block a variety of K1 channels and to pass Ca21 channels. Its potential ability to block the cardiac transient outward K1 current (Ito) has not been...
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