CALCIUM REGULATION OF COLONIC CRYPT CELL-KINETICS - EVIDENCE FOR A DIRECT EFFECT IN MICE

被引:14
作者
NOBRELEITAO, C [1 ]
CHAVES, P [1 ]
FIDALGO, P [1 ]
CRAVO, M [1 ]
GOUVEIAOLIVEIRA, A [1 ]
FERRA, MA [1 ]
MIRA, FC [1 ]
机构
[1] INST PORTUGUES ONCOL FRANCISCO GENTIL, DEPT PATHOL, P-1093 LISBON, PORTUGAL
关键词
D O I
10.1016/0016-5085(95)90338-0
中图分类号
R57 [消化系及腹部疾病];
学科分类号
摘要
Background and Aims: Oral calcium supplementation is believed to decrease colonic hyperproliferation through neutralization of fatty acids and bile acids. In the present study, the effect of oral calcium, given with low-fat diets, in the early stages of colorectal carcinogenesis is evaluated. Methods: In experiment A, mice received normal or low-calcium diets and were killed at 25 weeks. In experiment B, mice were fed the same diets but were submitted to six weekly injections of dimethylhydrazine and were killed at 10, 16, and 21 weeks. Cell proliferation was evaluated using bromodeoxyuridine immunohistochemistry. Results: In experiment A, mice fed low-calcium diets showed a significant upward shift of the proliferative compartment (P = 0.04) (phase 2 defect) in the absence of hyperproliferation. In experiment 6, besides a phase 2 defect, dimethylhydrazine-induced hyperproliferation was also significantly enhanced in animals fed low-calcium diets (phase 1 defect) as shown by an increased number of labeled cells per column and total labeling index (P = 0.01). Conclusions: Low-calcium diets induce an upward shift of the main proliferative compartment, which reflects an increased risk for malignant transformation. This effect was observed with a low-fat diet, suggesting a direct mechanism, rather than the usual indirect one, documented with high-fat diets.
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页码:498 / 504
页数:7
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共 57 条
[1]  
Crespi, Caperle, Trends in epidemiology of colorectal adenomas and cancer, Recent progress in colorectal cancer: biology and management of high risk groups, pp. 55-58, (1992)
[2]  
Stemmermann, Geographic epidemiology of colorectal cancer: the role of dietary fat, Colorectal cancer: from pathogenesis to prevention?, pp. 3-23, (1989)
[3]  
Lipkin, Biomarkers of increased susceptibility to gastrointestinal cancers: new application to studies of cancer prevention in human subjects, Cancer Res, 48, pp. 235-245, (1988)
[4]  
Deschner, Maskens, Significance of the labeling index and labeling distribution as kinetic parameters in colorectal mucosa of cancer patients and DMH treated animals, Cancer, 50, pp. 1136-1141, (1982)
[5]  
Lipkin, Biomarkers in the identification of high-risk groups, Colorectal cancer: from pathogenesis to prevention?, pp. 73-85, (1989)
[6]  
Lipkin, Phase 1 and phase 2 proliferative lesion of colonic epithelial cells in diseases leading to colonic cancer, Cancer, 34, pp. 878-888, (1974)
[7]  
Sunter, Cell proliferation in gastrointestinal carcinogenesis, Basic science in gastroenterology, pp. 45-55, (1986)
[8]  
Risio, Lipkin, Candelaresi, Bertone, Coverlizza, Rossini, Correlation between rectal mucosa cell proliferation and the clinical pathological features of nonfamilial neoplasia of the large intestine, Cancer Res, 51, pp. 1917-1921, (1991)
[9]  
Chang, Histogenesis of symmetrical 1,2 dimethylhydrazine-induced neoplasms of the colon in the mouse, J Natl Cancer Inst, 60, pp. 1405-1418, (1978)
[10]  
Deschner, Raicht, Kinetic and morphologic alterations in the colon of a patient with multiple polyposis, Cancer, 47, pp. 2440-2445, (1981)