The store will not work correctly when cookies are disabled.
We use cookies to make your experience better.To comply with the new e-Privacy directive, we need to ask for your consent to set the cookies.Learn about our cookie policy.
A novel method to extend viability and functionality of living heart slices.: This research introduces a novel application of 2,3-Butanedione monoxime for prolonging the functional lifespan of cardiac tissue samples in experimental settings, offering insights into cardiac biology and potential therapeutic targets (Ross et al., 2023).
Molecular Mechanisms of Deregulation of Muscle Contractility Caused by the R168H Mutation in TPM3 and Its Attenuation by Therapeutic Agents.: The study utilizes 2,3-Butanedione monoxime to investigate the molecular pathways affected by genetic mutations in muscle contractility, contributing to the understanding of muscle disorders and their management (Karpicheva et al., 2023).
Generation of myocyte agonal Ca(2+) waves and contraction bands in perfused rat hearts following irreversible membrane permeabilisation.: Research employing 2,3-Butanedione monoxime investigates its role in inducing specific cellular events in cardiac cells under stress, highlighting its potential in studies of heart disease mechanisms and therapies (Morishita et al., 2023).
A novel method to extend viability and functionality of living heart slices.
Molecular Mechanisms of Deregulation of Muscle Contractility Caused by the R168H Mutation in TPM3 and Its Attenuation by Therapeutic Agents.: The study utilizes 2,3-Butanedione monoxime to investigate the molecular pathways affected by genetic mutations in muscle contractility, contributing to the understanding of muscle disorders and their management (Karpicheva et al., 2023).
Analysis Note
Other Notes
Reagent for the colorimetric determination of urea and ureido-compounds; Spectrometric reagent for Co(II), Ni(II), Pd(II) and Re(VII); Reagent for the gravimetric determination of Ni(II)