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      • KCI등재

        아스파르트산 킬레이트 칼슘의 칼슘 결핍쥐에서의 생물학적 유용성

        박명규(Park Myoung-Gyu),하태열(Ha Tae-Yul),신광순(Shin Kwang-Soon) 韓國營養學會 2011 Journal of Nutrition and Health Vol.44 No.6

        Calcium (Ca) is an essential element to maintain body homeostasis. However, many factors disturb calcium absorption. Aspartic acid chelated calcium (AAC) was synthesized by new methods using calcium carbonate and aspartic acid. This study was carried out to investigate the bioavailability of AAC in Ca-deficient rats. The experimental groups were as follows: NC; normal diet control group, CD-C; untreated control group of Ca-deficient (CD) rats, CD-CaCO3; CaCO3 treated group of CD rats, CD-AAC; AAC treated group of CD rats, and CD-SWC; and seaweed-derived Ca treated group of CD rats. The Ca content of various types of Ca was held constant at 32 mg/day, and the four CD groups were fed for 7 days after randomized grouping. Ca content in serum, urine, and feces within feeding periods were analyzed to confirm Ca absorption. Serum Ca content was significantly higher in the CD-AAC (11.24 mg/dL) and CDSWC (10.12 mg/dL) groups than that in the CD-C (8.6 mg/dL) group 2 hours following the first administration. The Ca content in feces was significantly lower in the CD-AAC (35.4 mg/3 days) and CD-SWC (71.1 mg/3 day) groups than that in the CD-CaCO3 (98.7 mg/3 days) group (p > 0.05). AAC had a 2.3-fold higher absorption rate of Ca than that of SWC. No differences in fibula length were observed in the NC and CD groups. The fibula weights of the CD-AAC (0.33 g) and CD-SWC (0.33 g) groups increased compared to those in the CD-C (0.27 g) group; however, no significant difference was observed between the CD groups. We conclude that bioavailability of AAC is higher than that of seaweed-derived Ca or inorganic Ca. Thus, these findings suggest the AAC has potential as a functional food material related to Ca metabolism. (Korean J Nutr 2011; 44(6): 474~480)

      • KCI등재

        아스파르트산 킬레이트 철분의 철분 결핍쥐에서의 생물학적 유용성

        박명규(Myoung-Gyu Park),하태열(Tae-Yul Ha),신광순(Kwang-Soon Shin) 한국식품영양과학회 2011 한국식품영양과학회지 Vol.40 No.12

        본 연구에서는 아스파르트산, 탄산칼슘 및 황산철을 반응 시켜 아스파르트산 킬레이트 철분(aspartic acid chelated iron, Asp-Fe)을 제조하고 Asp-Fe의 철분결핍 쥐(iron-deficient rat, ID)에서의 생물학적 유용성을 확인하였다. 시험군은 철분이 함유된 식이를 섭취한 정상군(NC), 철분 결핍 식이를 1개월간 투여하여 철분 결핍 상태를 유도한 쥐(ID)에 생리식염수를 공급한 결핍 대조군(ID+C), 철분 결핍 쥐에 햄철(heme-Fe) 투여군(ID+heme-Fe) 및 Asp-Fe 투여군 (ID+Asp-Fe)으로 나누어 실시하였다. 그 결과 식이섭취량, 장기무게, 체중증가 정도에서 각 군에 따른 차이가 없는 것으로 나타났다. 7일간 투여 후 혈액 중 철분의 함량을 측정한 결과 결핍쥐에 Asp-Fe 투여군(175.2 μg/dL)과 heme-Fe 투여군(140.8 μg/dL)은 결핍 대조군(96.1 μg/dL)보다 유의적인 수준으로 증가하였다. 총 철분 결합능(total iron binding capacity, TIBC)를 측정한 결과 Asp-Fe 투여군(735.4 μg/ dL)은 결핍 대조군(841.9 μg/dL)보다 유의적 수준으로 정상화되었다. 헤마토크리트(HCT) 수치를 측정한 결과에서 Asp- Fe 및 heme-Fe 모두 결핍 대조군보다 증가하는 경향은 보였지만 유의적인 차이는 없었다. 흡수율에서는 heme-Fe의 경우 21.3%인 반면에 Asp-Fe의 경우 50.2%로 약 2.3배 높은 것으로 나타났으며, 혈청에서의 철분농도 및 transferrin saturation( TS)는 heme-Fe 투여군 및 결핍 대조군에 비하여 Asp-Fe 투여군이 유의하게 높은 수준을 유지하였다. 이상의 결과로 미루어 볼 때 아미노산 킬레이트 철분은 heme-Fe과 유사한 수준의 생체 이용율을 가지고 있으며, 철분 결핍을 회복시키는데 매우 효과적인 보충제로서 이용될 수 있을 것으로 사료된다. Aspartic acid chelated iron (Asp-Fe) was synthesized by a new method using calcium carbonate, aspartic acid, and ferrous sulfate. This study was carried out to investigate the bioavailability of Asp-Fe in iron-deficient rats. We divided the rats into four experimental groups. The first was the normal diet control group, or NC. The second was the no treated control group of iron-deficient (ID) rats, or ID+C. The third was the heme-iron (heme-Fe) treated group of ID rats, ID+heme-Fe. And the fourth was the Asp-Fe treated group of ID rats, or ID+Asp-Fe. There were no differences among any of the experimental groups in diet consumption, change of body weight, or the weight of the livers, kidneys, or spleens. After 7 days of feeding, the iron content in the sera of the ID+Asp-Fe group (175.2 μg/dL) and the ID+heme-Fe group (140.8 μg/dL) were significantly higher than that of the ID-C group (96.1 μg/dL). The total iron binding capacity (TIBC) of the ID+Asp-Fe group (735.4 μg/dL) was significantly normalized compared to the ID+C group (841.9 μg/dL) or ID+heme-Fe group (824.6 μg/dL). The hematocrit level of the ID+Asp-Fe group was increased to normal levels, but there was no statistical difference among ID groups. The absorption ratio of heme-Fe was 21.3% and that of Asp-Fe was 50.2%, which indicates a 2.3 times higher ratio in comparison with heme iron. With the above results we found that Asp-Fe seems to be an efficient form of iron to supply iron deficient rats in order to cure them of anemia. Thus, these findings suggest that aspartic acid chelated iron has the potential to serve as a functional food related to iron metabolism.

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