Literature DB >> 33543337

Comparison of myocardial ischemic/hypoxic staining techniques for evaluating the alleviation of exhaustive exercise-induced myocardial injury by exercise preconditioning.

Yue Huang1, Shan- Shan Pan2, Yuan-Pan Guo1, Jia-Yin Wang1, Dong-Feng Wan1, Tian-Ran Chen1, Jian-Qi Yuan1.   

Abstract

Exercise preconditioning (EP) can alleviate myocardial ischemic/hypoxic injury by inducing endogenous cardioprotection. Hematoxylin-eosin (HE), hematoxylin-basic fuchsin-picric acid (HBFP), and chromotrope-2R brilliant green (C-2R BG) staining have been used to visualize myocardial ischemic/hypoxic changes in previous EP studies, but comprehensive evaluation and comparisons of these methods are lacking. This study evaluated ischemic/hypoxic changes in adjacent myocardial sections by HE, HBFP, and C-2R BG and compared the characteristics of sections stained by these three methods to show changes associated with exercise-induced myocardial ischemic/hypoxic injury. Rats were randomly divided into four groups: control (C), exercise preconditioning (EP), exhaustive exercise (EE), and exercise preconditioning + exhaustive exercise (EP + EE). Adjacent myocardial sections were stained as described above and compared to evaluate the effects of exercise-induced myocardial ischemic/hypoxic injury. The three staining methods revealed consistent localization patterns of myocardial ischemic/hypoxic injury in all groups. Results suggest that EP can alleviate exhaustive exercise-induced myocardial ischemic/hypoxic injury, and the three staining methods are suitable for the histological study of exercise-induced myocardial ischemic/hypoxic injury and protection. HE staining is a simple procedure but is not specific for myocardial ischemic/hypoxic injury. HBFP and C-2R BG staining can be used to specifically visualize myocardial ischemic/hypoxic injury.

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Keywords:  Adjacent sections; C-2R BG staining; Exercise preconditioning; HBFP staining; HE staining; Myocardial protection

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Year:  2021        PMID: 33543337     DOI: 10.1007/s10735-021-09958-0

Source DB:  PubMed          Journal:  J Mol Histol        ISSN: 1567-2379            Impact factor:   2.611


  1 in total

1.  Exhaustive exercise-induced cardiac conduction system injury and changes of cTnT and Cx43.

Authors:  Y Chang; T Yu; H Yang; Z Peng
Journal:  Int J Sports Med       Date:  2014-09-25       Impact factor: 3.118

  1 in total

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