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October 1, 1992Cardiology in the Young11 citations

Expression of myosin heavy chain in neonatal human hearts

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AWAndy WesselsTMTom A. MijndersCVCorrie de Gier-de Vries

Key Result

In 5 neonatal human hearts, the beta isoform of myosin heavy chain predominated in force-producing myocardium, while the alpha isoform was strongly expressed in the conduction system of term hearts.

Key Points

  • This research aims to explore the spatial distribution of myosin heavy chain isoforms in neonatal human heart tissues.
  • Analyzed five neonatal human hearts, three preterm and two at term.
  • Identified expression levels of α and β myosin heavy chain isoforms through immunohistochemical techniques.
  • Examined different regions: force-producing myocardium, ventricular conduction system, and atrioventricular junctional region.
  • In hearts analyzed, the β isoform predominated in the force-producing myocardium; no β-negative cells were found.
  • Transient α isoform expression correlated with early postnatal thyroid hormone levels.
  • Strong α isoform expression was seen in the conduction system of full-term hearts, reflecting maturity.

Study Design

Type

Observational (n=5)

PICO

P
Population
5 neonatal human hearts (3 preterm, 2 term) examined for spatial distribution of myosin heavy chain isoforms.
E
Exposure / Comparator
Spatial distribution of alpha and beta isoforms of myosin heavy chain
O
Primary Outcome
Expression of alpha and beta isoforms of myosin heavy chain in ventricular myocardium, conduction system, and atrioventricular junctional region

Abstract

Abstract We have investigated the spatial distribution of the α and β isoforms of myosin heavy chain in the force-producing ventricular myocardium, the ventricular conduction system and the atrioventricular junctional region of five neonatal human hearts–three born prior to and two at term. The results can be summarized as follows: 1) the force-producing myocardium: in each heart, the β isoform was found to be the predominating isoform, β-negative cells never being observed. Considerable amounts of the α isoform were observed only in those hearts that were obtained from patients dying within the first two weeks of postnatal life. This transient expression is probably correlated with the postnatal increase in levels of circulating thyroid hormone. 2) the ventricular conduction system: in addition to the expression of the β isoform, a strong expression of the α isoform was detected in all the components of the ventricular conduction system in the two full-term hearts. In the preterm hearts, however, this strong expression was mainly restricted to the atrioventricular node and the penetrating atrioventricular bundle. The level of expression of the α isoform in the conduction system of the neonatal hearts, therefore, might reflect the state of maturity of this system at the time of birth. 3) the atrioventricular junctional region: in each heart examined, structures were detected that resembled immunohistochemically and morphologically the atrioventricular node. Although the expression of the isoforms of myosin heavy chain in the conduction system, and in these comparable structures, cannot, as yet, be interpreted with regard to function, these resemblances, coupled with the same developmental background for these structures (they all develop from the so-called “primary ring”) suggest functional affinities during this stage of cardiac development.

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Cite This Study

Wessels et al. (1992) conducted an observational in Neonatal human hearts (n=5). Spatial distribution of alpha and beta isoforms of myosin heavy chain was evaluated on Expression of alpha and beta isoforms of myosin heavy chain in ventricular myocardium, conduction system, and atrioventricular junctional region. In 5 neonatal human hearts, the beta isoform of myosin heavy chain predominated in force-producing myocardium, while the alpha isoform was strongly expressed in the conduction system of term hearts.

synapsesocial.com/papers/6a22e0d7f940156bc9c46973https://doi.org/10.1017/s1047951100007885
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