BMY 7378 is a multitarget drug primarily known for its selective antagonism of α-adrenoceptors (α-AR), exhibiting both hypotensive effects and the ability to prevent or reverse angiotensin II-induced vascular hypertrophy. Notably, BMY 7378 contains a phenylpiperazine moiety, a structural feature associated with angiotensin-converting enzyme (ACE) inhibition. This study aimed to investigate ACE inhibition as a potential pharmacological mechanism of BMY 7378. Using an in silico approach we predicted BMY 7378 interactions with the ACE active site, followed by in vitro activity assays. Additionally, ACE protein expression in the heart was analyzed following four weeks of BMY 7378 treatment in 7-8-month-old spontaneously hypertensive rats (SHR). All assays were benchmarked against captopril, a standard ACE inhibitor. In silico results showed that BMY 7378 binds to the ACE active site, though with reduced interaction with Zn701 (73.7 % compared to captopril), likely due to the pKa of its amino group. The inhibitory concentration 50 (IC) for BMY 7378 was 136 μM, lower than other reported phenylpiperazine derivatives. Furthermore, BMY 7378 significantly increased ACE expression in the hearts of SHR, with an increase of 8.5-fold compared to captopril. In conclusion, BMY 7378 exhibits dual activity as an α-AR antagonist and an ACE inhibitor, making it a promising pharmacological tool for investigating and potentially treating hypertension and its associated cardiovascular complications.
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http://dx.doi.org/10.1016/j.bbagen.2024.130732 | DOI Listing |
Biochim Biophys Acta Gen Subj
January 2025
Unidad de Investigación en Biomedicina, Carrera de Enfermería, Facultad de Estudios Superiores-Iztacala, Universidad Nacional Autónoma de México, Av. de los Barrios 1, Los Reyes Iztacala, Tlalnepantla 54090, Estado de México, México. Electronic address:
BMY 7378 is a multitarget drug primarily known for its selective antagonism of α-adrenoceptors (α-AR), exhibiting both hypotensive effects and the ability to prevent or reverse angiotensin II-induced vascular hypertrophy. Notably, BMY 7378 contains a phenylpiperazine moiety, a structural feature associated with angiotensin-converting enzyme (ACE) inhibition. This study aimed to investigate ACE inhibition as a potential pharmacological mechanism of BMY 7378.
View Article and Find Full Text PDFEnviron Toxicol Pharmacol
September 2024
Department of Psychology, University of Kentucky, Lexington, KY, USA. Electronic address:
This study assessed the ability of α and α-adrenergic drugs to decrease fentanyl-induced locomotor and ventilatory depression. Rats were given saline or fentanyl, followed by: (1) naltrexone, (2) naloxone, (3) nalmefene, (4) α agonist phenylephrine, (5) α antagonist prazosin, (6) α antagonist BMY-7378, (7) α agonist clonidine, (8) α antagonist yohimbine or (9) vehicle. All µ-opioid antagonists dose-dependently reversed fentanyl-induced locomotor and ventilatory depression.
View Article and Find Full Text PDFBiol Pharm Bull
February 2023
Department of Chemical Pharmacology, Faculty of Pharmaceutical Sciences, Toho University.
We examined whether the α-adrenoceptor (AR), which shows low affinity (pA < 9) for prazosin (an α-AR antagonist) and high affinity (pA ≈ 10) for tamsulosin/silodosin (α-AR antagonists), is involved in phenylephrine-induced contractions in the guinea pig (GP) thoracic aorta (TA). Intracellular signaling induced by α-AR activation was also examined by focusing on Ca influx pathways. Tension changes of endothelium-denuded TAs were isometrically recorded and mRNA encoding α-ARs/Ca channels and their related molecules were measured using RT-quantitative PCR.
View Article and Find Full Text PDFBasic Clin Pharmacol Toxicol
December 2021
Department of Physiology, RCSI, Dublin, Ireland.
We have investigated the interaction of α - and α -adrenoceptor subtypes in producing isometric contractions to NA in mouse whole spleen. The α -adrenoceptor antagonist prazosin (10 M) or the α -adrenoceptor antagonist yohimbine (10 M) alone produced only small shifts in NA potency in wild type (WT) mice, but the combination produced a large shift in NA potency. In spleen from α -KO mice, the effects of prazosin and the combination of prazosin and yohimbine were similar to their effects in WT mice.
View Article and Find Full Text PDFInvest Ophthalmol Vis Sci
December 2020
Department of Ophthalmology, University of Szeged, Szeged, Hungary.
Purpose: The role of adrenergic innervation in the regulation of lacrimal gland (LG) ductal fluid secretion is unknown. The Aim of the present study was to investigate the effect of adrenergic stimulation on fluid secretion in isolated LG duct segments and to study the underlying intracellular mechanisms.
Methods: Fluid secretion of isolated mouse LG ducts was measured using video-microscopy.
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