Fluoride bioavailability - Nutritional and clinical aspects

被引:76
作者
Cerklewski, FL
机构
[1] Oregon State University, Department of Nutrition Management, Corvallis
关键词
fluoride; bioavailability; osteoporosis; requirement;
D O I
10.1016/S0271-5317(97)00057-2
中图分类号
R15 [营养卫生、食品卫生]; TS201 [基础科学];
学科分类号
100403 ;
摘要
Dietary fluoride obtained from food and water is efficiently absorbed from both the stomach and small intestine without regulation. A variety of dietary factors have been identified that either decrease or increase fluoride absorption and utilization. About half of absorbed fluoride is quickly taken-up by developing bone and teeth, and the remainder is excreted in the urine. The amount of fluoride excreted in the urine increases as bone growth slows. Nearly all of total body fluoride, which is second among the trace elements only to iron, is found in-the skeleton. Although fluoride's unique role in mineralization provides the basis for its recognition as a beneficial trace element for dental health of humans, a more subtle role of fluoride in the mineralization of bone is also likely to exist. As with other essential trace elements, fluoride's action is biphasic in nature in that toxicity (fluorosis) can occur. Therapeutic effects of fluoride in the treatment of osteoporosis continue to be studied, and recent developments in this area point to a mitogenic role of fluoride in osteoblast cell proliferation. Recognition of fluoride essentiality for human health, rather than just being classified as beneficial, is likely to be forthcoming especially if reduction of a chronic disease is added to the criteria that establish a recommended dietary allowance. (C) 1997 Elsevier Science Inc.
引用
收藏
页码:907 / 929
页数:23
相关论文
共 137 条
[51]   Fluoride exposure and childhood osteosarcoma: A case-control study [J].
Gelberg, KH ;
Fitzgerald, EF ;
Hwang, SA ;
Dubrow, R .
AMERICAN JOURNAL OF PUBLIC HEALTH, 1995, 85 (12) :1678-1683
[52]   DISSECTION OF THE PROTEIN-KINASE CASCADE BY WHICH NERVE GROWTH-FACTOR ACTIVATES MAP KINASES [J].
GOMEZ, N ;
COHEN, P .
NATURE, 1991, 353 (6340) :170-173
[53]  
GREENWOOD NN, 1984, CHEM ELEMENTS, P920
[54]   RETENTION OF SKELETAL FLUORIDE DURING BONE TURNOVER IN RATS [J].
GUO, MK ;
NOPAKUN, J ;
MESSER, HH ;
OPHAUG, R ;
SINGER, L .
JOURNAL OF NUTRITION, 1988, 118 (03) :362-366
[55]  
Guyton A. C., 1996, MED PHYSL
[56]   Developmental toxicity evaluation of sodium fluoride administered to rats and rabbits in drinking water [J].
Heindel, JJ ;
Bates, HK ;
Price, CJ ;
Marr, MC ;
Myers, CB ;
Schwetz, BA .
FUNDAMENTAL AND APPLIED TOXICOLOGY, 1996, 30 (02) :162-177
[57]   PROPHYLAXIS OF DENTAL-CARIES - RELATIVE EFFECTIVENESS OF CHEWABLE FLUORIDE PREPARATIONS WITH AND WITHOUT ADDED VITAMINS [J].
HENNON, DK ;
MUHLER, JC ;
STOOKEY, GK .
JOURNAL OF PEDIATRICS, 1972, 80 (06) :1018-+
[58]   FLUORIDE-VITAMIN SUPPLEMENTS - EFFECTS ON DENTAL-CARIES AND FLUOROSIS WHEN USED IN AREAS WITH SUBOPTIMUM FLUORIDE IN WATER-SUPPLY [J].
HENNON, DK ;
STOOKEY, GK ;
BEISWANGER, BB .
JOURNAL OF THE AMERICAN DENTAL ASSOCIATION, 1977, 95 (05) :965-971
[59]   FLUORIDE RETENTION IN RATS RECEIVING VARIOUS VITAMIN-SODIUM FLUORIDE PREPARATIONS [J].
HENNON, DK ;
MUHLER, JC ;
STOOKEY, GK .
JOURNAL OF PEDIATRICS, 1964, 64 (02) :272-+
[60]  
HODGE HC, 1970, WHO MONOGR SER, V59, P141