The hypothesis of this work was that chronic treatment with carvedilol (CAR) administered in a nanomicelles-based formulation (CAR-NMs), which increases CAR oral bioavailability, is more effective than a conventional liquid CAR formulation (CAR-LCF) and is comparable to chronic treatment with losartan (LOS) in improving hemodynamic parameters and preventing target organ damage (TOD) in spontaneously hypertensive (SH) rats. Chronic treatment with CAR-NMs significantly improved central hemodynamic parameters (systolic and diastolic blood pressure (BP) and its variability) to a similar extent as LOS, and with superior efficacy than CAR-LCF. Although LOS was more effective than CAR-NMs and CAR-LCF in reducing peripheral systolic BP, both LOS and CAR-NMs, in contrast to CAR-LCF, were able to significantly reduce short-term BP variability indexes. Both CAR formulations and LOS significantly reduced aortic media wall thickness and interstitial collagen deposition, and lowered TNF-α expression in left ventricle (LV) in SH rats. Only CAR-NMs significantly reduced IL-6 expression and were more effective in reducing ventricular TGF-β expression in LV of SH rats. These findings suggest that encapsulation of CAR in NMs improved its ability to control central hemodynamics in SH rats when compared with CAR-LCF, mainly due to a greater effect on carotid systolic BP and short-term BP variability, resulting in a higher protection against TOD compared to CAR-LCF.
Encapsulation of Carvedilol in Nanomicelles Improves Central Hemodynamics and Target Organ Damage Protection in Spontaneously Hypertensive Rats.
将卡维地洛封装在纳米胶束中可改善自发性高血压大鼠的中心血液动力学并保护靶器官免受损伤
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作者:Parola Luciano, Prince Paula Denise, Opezzo Javier Alberto Walter, Riedel Jennifer, Allo Miguel Ãngel, Santander Plantamura Yanina Alejandra, Bin Eliana P, González Germán E, Carranza Andrea, Donato MartÃn, Chiappetta Diego A, Moretton Marcela A, Höcht Christian
| 期刊: | Pharmacology Research & Perspectives | 影响因子: | 2.300 |
| 时间: | 2025 | 起止号: | 2025 Jun;13(3):e70125 |
| doi: | 10.1002/prp2.70125 | 种属: | Rat |
| 研究方向: | 毒理研究 | ||
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