Key result
Fasudil improved pulmonary blood flow distribution and reduced pulmonary pressure in PAH rats by dilating perfused vessels and restoring flow to previously closed vessels.
Why the study?
Does fasudil and endothelial modulation improve pulmonary blood flow distribution in a rat model of pulmonary arterial hypertension?
Does fasudil and endothelial modulation improve pulmonary blood flow distribution in a rat model of pulmonary arterial hypertension?
In a rat model of PAH, Rho-kinase inhibition with fasudil improves pulmonary blood flow distribution by dilating perfused vessels and reopening constricted microvessels.
Hypothesis-generating for Rho-kinase inhibition in experimental PAH; leaves open translation to human therapy.
Rho-kinase-mediated vasoconstriction and endothelial dysfunction are considered two primary instigators of pulmonary arterial hypertension (PAH). However, their contribution to the adverse changes in pulmonary blood flow distribution associated with PAH has not been addressed. This study utilizes synchrotron radiation microangiography to assess the specific role, and contribution of, Rho-kinase-mediated vasoconstriction and endothelial dysfunction in PAH. Male adult Sprague-Dawley rats were injected with saline (Cont-rats) or monocrotaline (MCT-rats) 3 wk before microangiography was performed on the left lung. We assessed dynamic changes in vessel internal diameter (ID) in response to 1) the Rho-kinase inhibitor fasudil (10 mg/kg iv); or 2) ACh (3 μg · kg⁻¹ · min⁻¹), sodium nitroprusside (SNP, 5 μg · kg⁻¹ · min⁻¹), and N(ω)-nitro-l-arginine methyl ester (l-NAME, 50 mg/kg iv). We observed that MCT-rats had fewer vessels of the microcirculation compared with Cont-rats. The fundamental result of this study is that fasudil improved pulmonary blood flow distribution and reduced pulmonary pressure in PAH rats, not only by dilating already-perfused vessels (ID > 100 μm), but also by restoring blood flow to vessels that had previously been constricted closed (ID < 100 μm). Endothelium-dependent vasodilation was impaired in MCT-rats primarily in vessels with an ID < 200 μm. Moreover the vasoconstrictor response to l-NAME was accentuated in MCT-rats, but only in the 200- to 300-μm vessels. These results highlight the importance of Rho-kinase-mediated control and endothelial control of pulmonary vascular tone in PAH. Indeed, an effective therapeutic strategy for treating PAH should target both the smooth muscle Rho-kinase and endothelial pathways.
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Schwenke et al. (2011) studied Pulmonary arterial hypertension. Fasudil vs. Saline (Cont-rats) was evaluated on Dynamic changes in vessel internal diameter (ID). Fasudil improved pulmonary blood flow distribution and reduced pulmonary pressure in PAH rats by dilating perfused vessels and restoring flow to previously closed vessels.
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