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BIOCHEMICAL CHARACTERIZATION OF EMBRYONIC CHICK CALVARIAL CELLS
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  • BIOCHEMICAL CHARACTERIZATION OF EMBRYONIC CHICK CALVARIAL CELLS
  • BIOCHEMICAL CHARACTERIZATION OF EMBRYONIC CHICK CALVARIAL CELLS
저자명
Jae-Hvung Yu,Jung-Kun Kim,Kyung-Suk Cha
간행물명
The Korean Journal of OrthodonticsKCI,SCIE,SCOPUS
권/호정보
1995년|25권 6호|pp.697-704 (8 pages)
발행정보
대한치과교정학회|한국
파일정보
정기간행물|ENG|
PDF텍스트(0.53MB)
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영문초록

Chicken calvarial bone is known to contain various cell types, but their exact composition is unknown. By characterizing the chicken calvarial bone biochemically, it can be used to study biochemical, histochemical actions of bone cells in general. Calvaria of I8-day-old white leg horn embryo was aseptically dissected and bone cell populations were isolated by sequential enzymatic digestion. Histochemical study for osteoclast-like bone cell population was performed with tartrate resistant acid phosphatase(TRAP) stain and for osteoblast-like bone cell population, alkaline phosphatase(ALP) stain was performed. Biochemical study for osteoblast-like bone cell population was performed using alkaline phosphatasetal.P) assay. Following conclusions were obtained from this study. 1. TRAP positive multi and mononuclear cells were mostly observed in group I and II, indicating that osteoclast-like bone cell population is mostly found in these groups. 2. All the cultured groups showed almost equal ALP activities and were positive for ALP stain, indicating that osteoblast-like bone cell population is evenly dispersed in all culture groups. 3. Experimental group treated with I,25(OH)²D ³ showed increase in ALP activity in contrast to the control group, confirming previous studies that I,25(OH)²D ³ increases ALP activities in vitro bone cultures. 4. Results from von Kassa´s stain indicated that in vitro bone formation had occured after 3 weeks of culture with beta glycero phosphate.

영문초록

Chicken calvarial bone is known to contain various cell types, but their exact composition is unknown. By characterizing the chicken calvarial bone biochemically, it can be used to study biochemical, histochemical actions of bone cells in general. Calvaria of I8-day-old white leg horn embryo was aseptically dissected and bone cell populations were isolated by sequential enzymatic digestion. Histochemical study for osteoclast-like bone cell population was performed with tartrate resistant acid phosphatase(TRAP) stain and for osteoblast-like bone cell population, alkaline phosphatase(ALP) stain was performed. Biochemical study for osteoblast-like bone cell population was performed using alkaline phosphatasetal.P) assay. Following conclusions were obtained from this study. 1. TRAP positive multi and mononuclear cells were mostly observed in group I and II, indicating that osteoclast-like bone cell population is mostly found in these groups. 2. All the cultured groups showed almost equal ALP activities and were positive for ALP stain, indicating that osteoblast-like bone cell population is evenly dispersed in all culture groups. 3. Experimental group treated with I,25(OH)²D ³ showed increase in ALP activity in contrast to the control group, confirming previous studies that I,25(OH)²D ³ increases ALP activities in vitro bone cultures. 4. Results from von Kassa´s stain indicated that in vitro bone formation had occured after 3 weeks of culture with beta glycero phosphate.