Differential effect of vitamin K and vitamin D supplementation on bone mass in young rats fed normal or low calcium diet. 2004

Jun Iwamoto, and Tsuyoshi Takeda, and Shoichi Ichimura, and Yoshihiro Sato, and James K Yeh
Department of Sports Medicine, Keio University School of Medicine, 35 Shinanomachi, Shinjuku-ku, Tokyo 160-8582, Japan. jiwamoto@sc.itc.keio.ac.jp

The purpose of this study was to clarify the differential effect of vitamin K and vitamin D supplementation on bone mass in young rats fed a normal or low calcium diet. Ninety female Sprague-Dawley rats, 6 weeks of age, were randomized by stratified weight method into nine groups with 10 rats in each group: baseline control, and 0.5% (normal) or 0.1% (low) calcium diet, either alone, or with vitamin K (30 mg/100g, food intake), vitamin D (25 micro g/100 g, food intake), or vitamin K + vitamin D. After 10 weeks of feeding, bone histomorphometric analyses were performed on cortical bone of the tibial shaft and cancellous bone of the proximal tibia. Vitamin K supplementation increased the maturation-related cancellous bone gain and retarded the reduction in the maturation-related cortical bone gain in rats fed a low calcium diet, and increased the maturation-related cortical bone gain in rats fed a normal calcium diet. Vitamin D supplementation reduced the maturation-related cancellous bone gain, prevented the reduction in periosteal bone gain, and enhanced the enlargement of the marrow cavity, with no significant effect on the reduction in the maturation-related cortical bone gain in rats fed a low calcium diet, and increased the maturation- related cancellous and cortical bone gains with increased periosteal bone gain in rats fed a normal calcium diet. An additive effect of vitamin K and vitamin D on the maturation- related cortical bone gain was found in rats fed a normal calcium diet. This study shows the differential effects of vitamin K and vitamin D supplementation on cancellous and cortical bone mass in young rats fed a normal or low calcium diet, as well as the additive effect on cortical bone under calcium sufficient condition.

UI MeSH Term Description Entries
D001846 Bone Development The growth and development of bones from fetus to adult. It includes two principal mechanisms of bone growth: growth in length of long bones at the epiphyseal cartilages and growth in thickness by depositing new bone (OSTEOGENESIS) with the actions of OSTEOBLASTS and OSTEOCLASTS. Bone Growth
D002136 Calcium, Dietary Calcium compounds in DIETARY SUPPLEMENTS or in food that supply the body with calcium. Dietary Calcium
D005260 Female Females
D000367 Age Factors Age as a constituent element or influence contributing to the production of a result. It may be applicable to the cause or the effect of a circumstance. It is used with human or animal concepts but should be differentiated from AGING, a physiological process, and TIME FACTORS which refers only to the passage of time. Age Reporting,Age Factor,Factor, Age,Factors, Age
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D000933 Antifibrinolytic Agents Agents that prevent fibrinolysis or lysis of a blood clot or thrombus. Several endogenous antiplasmins are known. The drugs are used to control massive hemorrhage and in other coagulation disorders. Antifibrinolysin,Antifibrinolysins,Antifibrinolytic,Antifibrinolytic Agent,Antiplasmin,Antiplasmins,Antifibrinolytics,Plasmin Inhibitor,Plasmin Inhibitors,Agent, Antifibrinolytic,Agents, Antifibrinolytic,Inhibitor, Plasmin,Inhibitors, Plasmin
D014807 Vitamin D A vitamin that includes both CHOLECALCIFEROLS and ERGOCALCIFEROLS, which have the common effect of preventing or curing RICKETS in animals. It can also be viewed as a hormone since it can be formed in SKIN by action of ULTRAVIOLET RAYS upon the precursors, 7-dehydrocholesterol and ERGOSTEROL, and acts on VITAMIN D RECEPTORS to regulate CALCIUM in opposition to PARATHYROID HORMONE.
D014812 Vitamin K A lipid cofactor that is required for normal blood clotting. Several forms of vitamin K have been identified: VITAMIN K 1 (phytomenadione) derived from plants, VITAMIN K 2 (menaquinone) from bacteria, and synthetic naphthoquinone provitamins, VITAMIN K 3 (menadione). Vitamin K 3 provitamins, after being alkylated in vivo, exhibit the antifibrinolytic activity of vitamin K. Green leafy vegetables, liver, cheese, butter, and egg yolk are good sources of vitamin K.
D015519 Bone Density The amount of mineral per square centimeter of BONE. This is the definition used in clinical practice. Actual bone density would be expressed in grams per milliliter. It is most frequently measured by X-RAY ABSORPTIOMETRY or TOMOGRAPHY, X RAY COMPUTED. Bone density is an important predictor for OSTEOPOROSIS. Bone Mineral Content,Bone Mineral Density,Bone Densities,Bone Mineral Contents,Bone Mineral Densities,Density, Bone,Density, Bone Mineral
D017207 Rats, Sprague-Dawley A strain of albino rat used widely for experimental purposes because of its calmness and ease of handling. It was developed by the Sprague-Dawley Animal Company. Holtzman Rat,Rats, Holtzman,Sprague-Dawley Rat,Rats, Sprague Dawley,Holtzman Rats,Rat, Holtzman,Rat, Sprague-Dawley,Sprague Dawley Rat,Sprague Dawley Rats,Sprague-Dawley Rats

Related Publications

Jun Iwamoto, and Tsuyoshi Takeda, and Shoichi Ichimura, and Yoshihiro Sato, and James K Yeh
December 1993, Osteoporosis international : a journal established as result of cooperation between the European Foundation for Osteoporosis and the National Osteoporosis Foundation of the USA,
Jun Iwamoto, and Tsuyoshi Takeda, and Shoichi Ichimura, and Yoshihiro Sato, and James K Yeh
January 1997, Roczniki Akademii Medycznej w Bialymstoku (1995),
Jun Iwamoto, and Tsuyoshi Takeda, and Shoichi Ichimura, and Yoshihiro Sato, and James K Yeh
December 1958, Comptes rendus hebdomadaires des seances de l'Academie des sciences,
Jun Iwamoto, and Tsuyoshi Takeda, and Shoichi Ichimura, and Yoshihiro Sato, and James K Yeh
January 1987, Bone,
Jun Iwamoto, and Tsuyoshi Takeda, and Shoichi Ichimura, and Yoshihiro Sato, and James K Yeh
June 1990, Showa Shigakkai zasshi = The Journal of Showa University Dental Society,
Jun Iwamoto, and Tsuyoshi Takeda, and Shoichi Ichimura, and Yoshihiro Sato, and James K Yeh
July 1991, Medical laboratory sciences,
Jun Iwamoto, and Tsuyoshi Takeda, and Shoichi Ichimura, and Yoshihiro Sato, and James K Yeh
January 2023, International journal of preventive medicine,
Jun Iwamoto, and Tsuyoshi Takeda, and Shoichi Ichimura, and Yoshihiro Sato, and James K Yeh
February 1962, Georgetown medical bulletin,
Jun Iwamoto, and Tsuyoshi Takeda, and Shoichi Ichimura, and Yoshihiro Sato, and James K Yeh
May 1982, Journal of anatomy,
Copied contents to your clipboard!