Literature DB >> 6863034

Cytofluorometric nuclear DNA-determinations in infant, adolescent, adult and aging human hearts.

T Takamatsu, K Nakanishi, M Fukuda, S Fujita.   

Abstract

The progress of polyploidization in the human heart muscle cell was investigated by cytofluorometry, involving selective measurements of heart muscle cell nuclei. Thirty-two tissue samples, taken from the free wall of the left ventricle of each autopsied heart, were fixed in Carnoy's fluid. From thick (100--150 micrometers) paraffin sections, isolated cells for smears were obtained by enzyme digestion and ultrasonic treatment. The smears were stained with azocarmin G to eliminate background fluorescence and subsequently stained by an acriflavine-Feulgen reaction. Cytofluorometric DNA-determinations were carried out selectively on heart muscle cell nuclei, using the muscle striations revealed by azocarmin g-fluorescence as specific markers. The dynamic process of polyploidization in normal hearts could be divided into four stages. In the first stage (under 1 year of age), almost all heart muscle cell nuclei (94.3 +/- 1.8%) were diploid. In the second stage (1 to 9 years of age), the number of tetraploid nuclei increased (13.6 +/- 7.1%). In the third stage (9 to 22 years of age), octaploid nuclei first appeared and the number of tetraploid nuclei increased (26.7 +/- 3.9%). The DNA pattern in the fourth stage (22 to 75 years of age) was relatively constant, with a ratio of diploid (62.4 +/- 8.7%), tetraploid (31.4 +/- 6.7%) and octaploid (5.8 +/- 3.9%) nuclei. From these results it was concluded that physiological polyploidization progresses in proportion to the increase of heart weight. The frequency of polyploid nuclei in human heart was not so high as reported by previous investigators.

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Year:  1983        PMID: 6863034     DOI: 10.1007/bf00495803

Source DB:  PubMed          Journal:  Histochemistry        ISSN: 0301-5564


  16 in total

1.  DEOXYRIBONUCLEIC ACID CONTENT (FEULGEN PHOTOMETRY) AND DRY WEIGHT (INTERFERENCE MICROSCOPY) OF NORMAL AND HYPERTROPHIC HEART MUSCLE FIBERS.

Authors:  W SANDRITTER; G SCOMAZZONI
Journal:  Nature       Date:  1964-04-04       Impact factor: 49.962

2.  NONUNIFORM DISTRIBUTION OF BLOOD FLOW AND GRADIENTS OF OXYGEN TENSION WITHIN THE HEART.

Authors:  E S KIRK; C R HONIG
Journal:  Am J Physiol       Date:  1964-09

3.  Feulgen cytophotometric DNA determinations on human hearts.

Authors:  M Kompmann; I Paddags; W Sandritter
Journal:  Arch Pathol       Date:  1966-10

4.  Cellular hyperplasia and hypertrophy in cardiomegalies induced by anemia in young and adult rats.

Authors:  J F Neffgen; B Korecky
Journal:  Circ Res       Date:  1972-01       Impact factor: 17.367

5.  Studies on deoxyribonucleic acid content and cell count of human heart muscle.

Authors:  T Morishita; R Sasaki; S Yamagata
Journal:  Jpn Heart J       Date:  1970-01

6.  Response of myocardial connective tissue to development of experimental hypertrophy.

Authors:  R A Buccino; E Harris; J F Spann; E H Sonnenblick
Journal:  Am J Physiol       Date:  1969-02

7.  Myocardial DNA synthesis in experimental cardiac hypertrophy.

Authors:  E Morkin; T P Ashford
Journal:  Am J Physiol       Date:  1968-12

8.  Cell number in human heart in atrophy, hypertrophy, and under the influence of cytostatics.

Authors:  C P Adler; U Costabel
Journal:  Recent Adv Stud Cardiac Struct Metab       Date:  1975

9.  [DNA in growing hearts of children. Biochemical and cytophotometric investigations (author's transl)].

Authors:  C P Adler
Journal:  Beitr Pathol       Date:  1976-07

10.  Cytofluorometry on cells isolated from paraffin sections after blocking of the background fluoroscence by azocarmine G.

Authors:  T Takamatsu; K Nakanishi; M Fukuda; S Fujita
Journal:  Histochemistry       Date:  1981
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  7 in total

1.  Polyploidy in cardiac myocytes of normal and hypertrophic human hearts; range of values.

Authors:  D S Sarkisov; A M Arefyeva; N W Panova; I G Gvasava
Journal:  Virchows Arch       Date:  1994       Impact factor: 4.064

2.  Cytofluorometric nuclear DNA determinations on the atrioventricular nodal cells in human hearts.

Authors:  S Hayashi; T Takamatsu; S Fujita
Journal:  Histochemistry       Date:  1986

3.  Methodological aspects of flow cytometric analysis of DNA polyploidy in human heart tissue.

Authors:  H W Vliegen; A M Vossepoel; A van der Laarse; F Eulderink; C J Cornelisse
Journal:  Histochemistry       Date:  1986

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Journal:  J Physiol       Date:  2019-01-15       Impact factor: 6.228

5.  Accelerated Growth, Differentiation, and Ploidy with Reduced Proliferation of Right Ventricular Cardiomyocytes in Children with Congenital Heart Defect Tetralogy of Fallot.

Authors:  Tatyana V Sukhacheva; Roman A Serov; Natalia V Nizyaeva; Artem A Burov; Stanislav V Pavlovich; Yulia L Podurovskaya; Maria V Samsonova; Andrey L Chernyaev; Aleksandr I Shchegolev; Alexei I Kim; Leo A Bockeria; Gennady T Sukhikh
Journal:  Cells       Date:  2022-01-05       Impact factor: 6.600

Review 6.  Maturing heart muscle cells: Mechanisms and transcriptomic insights.

Authors:  Sean A Murphy; Elaine Zhelan Chen; Leslie Tung; Kenneth R Boheler; Chulan Kwon
Journal:  Semin Cell Dev Biol       Date:  2021-05-02       Impact factor: 7.499

7.  Hybrid mathematical model of cardiomyocyte turnover in the adult human heart.

Authors:  Jeremy A Elser; Kenneth B Margulies
Journal:  PLoS One       Date:  2012-12-19       Impact factor: 3.240

  7 in total

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