Literature DB >> 2295146

Morphological development of the rat heart growing in oculo in the absence of hemodynamic work load.

S P Bishop1, P G Anderson, D C Tucker.   

Abstract

We evaluated cardiac muscle development in the absence of hemodynamic work load but in the presence of host factors including blood vessels, nerves, and circulating neurohumoral agents by transplanting 12-day fetal rat ventricle into the anterior eye chamber of adult host rats. Implants were studied by electron microscopy at intervals from 1 to 14 weeks in oculo. For comparison with myocardium developing in oculo, 12-day fetal tissue and 3-, 8-, and 28-day-old normally growing rats were also studied. At 1 week in oculo, myofibrils were laterally located and more frequent than in the 12-day fetus. Fibrils had clear Z bands and H bands, but no M bands. At 10 days in oculo (comparable to birth in normally growing animals), myocyte mitoses were present and tritiated thymidine autoradiography revealed many labeled myocyte nuclei. By 5 weeks in oculo, cells were filled with mature myofibrils with clear M bands and lateral connections between adjacent Z bands. However, myofibril bundles sometimes coursed at sharp angles to each other within single cells. Except for the relative lack of fibrillar polarization and small cell size, ultrastructure of myocytes developing in oculo for 5 or more weeks appeared very similar to myocytes developing in normally growing rats. By 10 weeks in oculo, when in situ growing hearts are clearly in a hypertrophic phase of growth, no mitoses or tritiated thymidine-labeled nuclei were present in myocytes, although labeled nonmyocyte nuclei were present. Morphometric evaluation revealed no change in myocyte diameter or nuclear-to-cytoplasmic ratio from 1 to 3 weeks in oculo, consistent with continued hyperplastic growth. Binucleated cells were present by 3 weeks in oculo and later, and the cytoplasm per nucleus increased fourfold between 3 and 5 weeks in oculo, suggesting conversion to hypertrophic cell growth. We concluded that cells proliferated and differentiated in the absence of a hemodynamic load, but that polarized alignment of myocytes and myofibrils was incomplete.

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Year:  1990        PMID: 2295146     DOI: 10.1161/01.res.66.1.84

Source DB:  PubMed          Journal:  Circ Res        ISSN: 0009-7330            Impact factor:   17.367


  9 in total

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Journal:  J Biomech       Date:  2011-12-12       Impact factor: 2.712

Review 2.  Cardiomyocyte transplantation into the failing heart-new therapeutic approach for heart failure?

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3.  Overexpression of bone morphogenetic protein 10 in myocardium disrupts cardiac postnatal hypertrophic growth.

Authors:  Hanying Chen; Weidong Yong; Shuxun Ren; Weihua Shen; Yongzheng He; Karen A Cox; Wuqiang Zhu; Wei Li; Mark Soonpaa; R Mark Payne; Diego Franco; Loren J Field; Vicki Rosen; Yibin Wang; Weinian Shou
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4.  Chronic hemodynamic unloading regulates the morphologic development of newborn mouse hearts transplanted into the ear of isogeneic adult mice.

Authors:  M A Rossi
Journal:  Am J Pathol       Date:  1992-07       Impact factor: 4.307

Review 5.  Cardiomyocyte Proliferation from Fetal- to Adult- and from Normal- to Hypertrophy and Failing Hearts.

Authors:  Sanford P Bishop; Jianyi Zhang; Lei Ye
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Review 7.  Changes in Cardiomyocyte Cell Cycle and Hypertrophic Growth During Fetal to Adult in Mammals.

Authors:  Sanford P Bishop; Yang Zhou; Yuji Nakada; Jianyi Zhang
Journal:  J Am Heart Assoc       Date:  2021-01-05       Impact factor: 5.501

Review 8.  Turning back the clock: A concise viewpoint of cardiomyocyte cell cycle activation for myocardial regeneration and repair.

Authors:  Wuqiang Zhu; Jiacheng Sun; Sanford P Bishop; Hesham Sadek; Jianyi Zhang
Journal:  J Mol Cell Cardiol       Date:  2022-06-01       Impact factor: 5.763

9.  The spatiotemporal development of intercalated disk in three-dimensional engineered heart tissues based on collagen/matrigel matrix.

Authors:  Jin Zhou; Yao Shu; Shuang-Hong Lü; Jun-Jie Li; Hong-Yu Sun; Rong-Yu Tang; Cui-Mi Duan; Yan Wang; Qiu-Xia Lin; Yong-Chao Mou; Xia Li; Chang-Yong Wang
Journal:  PLoS One       Date:  2013-11-15       Impact factor: 3.240

  9 in total

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