• 제목/요약/키워드: Human blood sample

검색결과 82건 처리시간 0.021초

적혈구(赤血球) Protoporphyrin과 철분대사(鐵分代謝)에 관(關)한 연구(硏究) (A Study on Red Cell Protoporphyrin Concentration and Iron Metabolism)

  • 조경환;채범석
    • Journal of Nutrition and Health
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    • 제7권3호
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    • pp.1-13
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    • 1974
  • The relative state of human iron storage may be ascertained more reliably through determination of the serum iron, iron binding capacity, transferrin saturation and absorption of radioactive iron in conjunction with studies of red cell morphology than from the study of red cell morphology alone. Recent investigations have shown that there is an increase in red cell protoporphyrin concentration in iron deficiency anemia. The significance of the red cell protoporphyrin has been discussed greatly during the years since its discovery. Two of the main factors which appear to influence the amaunt of protoporphyrin are increased erythropoiesis and factors interfering with the utilization of iron in the synthesis of hemoglobin, and iron deficiency. Recently Heller et al. have described a simplified method for blood protoporphyrin assay and this technique could be used assess nutritional iron status, wherein even minor insufficiencies are detectable as increased protoporphyrin concentrations. Based on the evaluation of the relationship between nutritional iron status and red cell protoporphyrin as an index suitable for the detection of the iron deficiency is described in this paper. RESULTS 1. Hemoglobin Concentrations and Anthropometric Measurements. The mean and standard deviations of the various anthropometric measurements of different age and sex groups are shown in table 1. There measurements have been compared with the Korean Standard. In the absence of local standards for arm circumference and skin-fold thickness over triceps, they have been compared with the standard from Jelliffe. Table 2,3, and 4 give anthropometric measurements and frequency (%) of anemia in children surveyed. The mean height of the children studid was 10 to 20 percent; below the Korean Standard. The distribution of height below 80 percent of the Standard was 21.2 percent, however, among anemic group this percentage was 27.7 percent. In general, the mean weight of the children was 10 to 15 percent below the Korean Standard. The percentage of children with weight less than 80 percent of the Standard was about 35 percent. But in the anemic group of the children, this percentage was 44 percent. The mean arm circumference was about 15 percent lower than the Jelliffe's standard. 61.2 percent of the children had values of arm circumference below 80 percent of the standard. Children with low hemoglobin levels, this percentage was 80 percent. The mean skinfold thickness over the triceps of the children studied was about 25 Percent lower than the Jelliffe's standard and 61.2 percent of the children had the value less than 80 percent of the standard. Among anemic children, this percentage was 70.8%. As may be seen from table 5, the mean hemoglobin concentration of the total group was 11.3g/100ml. Hemoglobin concentration was less than 11.0g/100ml. in 65(36.5%) of the 178 children. The degree of anemia in most of these children was mild with a hemoglobin level of less than 8.0g/100ml. found in only one child. In general, the prevalence of anemia was high in female children than male and decreased its frequency with increasing age. Relatively close relationship was observed between hemoglobin level and anthrophometric measurements especially high between arm circumference and skinfold thickness and hemoglobin but very low in height and low in weight and hemoglobin level, estimated by chi-square value. II. Serum iron, Transferrin saturation (1) Serum iron, and transferrin saturation Serum iron, transferrin saturation and red cell protoporphyrin concentrations were estimated in sub-sample of 84 children from 1 to 6 years and 24 older children between 7 and 13 years of age. The findings are presented in table 6. The mean serum iron concentration of the total group was 59ug/100ml. However, the level incrased with age from 36.6ug/100ml. (1-3years) to 80.8ug/100ml. (7-13 years). 60 percent of these children had a serum iron level less than 50ug/10ml. in the 1-3 years age group and 31.4 percent for 4-6 years group. These contrast with the finding of 12.5 percent anemic children in the 7-13 years age group. The mean transferrin saturation for the total group was 18.1 percent and frequency of anemia by transferrin saturation was observed same pattern as serum iron concentration. (2) Red cell protoporphyrin concentrations. (a) Red cell protoporphrin levels of children: Red cell protoporphyrin and other biochemical data are shown in table 4. The mean concentration in red cell of all children was fround 46.3ug/100ml. RBC. and differences with age groups were observed; in the age group 1-3 years, the mean concentration was $59.5{\pm}32.14$ ug/100ml. RBC; 4-6 years $44.1{\pm}22.57$ ug/100ml. RBC. and 7-13 years, $39.0{\pm}13.56$ ug/100ml. RBC. (b) Normal protoporphyrin values in adults: It was observed that in 10 normal adult males studied here the level of protoporphyrin in red cell ranged from 18 to 54 ug/100ml. RBC. and the mean concentration was $47.5{\sim}14.47$ ug/100ml. RBC. Other biochemical determination made on the same subjects are presented in table 8. (c) Red tell protoporphyrin concentration of occupational blood donors: The results of analyses for red cell protoporphyrin as well as serum iron, transferrin saturation and hemoglobin in the 76 blood donors are presented in table 7 and 8. In this experiment, donors were selected at random, however, most of them bled repeatedly because of poor economic situation, I doubt. Table 9 shows the distribution of red cell protoporphyrin concentration and hemoglobin concentration of occupational donors. The mean hemoglobin value for the total was 11.9 g/100 ml. When iron deficiency anemia is defined as a transferrin saturation below 15%, prevalence of anemia was 47.4 percent and the mean serum iron was 27.1ug/100ml. and red cell protoporphyrin, 168.3ug/100ml. RBC. However, mean serum iron and protoporphyrin concentration of above 15% transferrin saturation were 11.6 ug/100 ml. and 58.8 ug/100 ml. RBC. respectively. The mean Protoporphyrin concentration of non-anemic (above 15% transferrin saturation) donors was slightly higher than the results of normal adult males.

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비소세포폐암 환자의 혈장 DNA를 이용한 Microsatellite 분석 (Microsatellite Alterations of Plasma DNA in Non Small Cell Lung Cancer)

  • 김규식;김은정;김수옥;오인재;박창민;정주연;김유일;임성철;박종태;김영철
    • Tuberculosis and Respiratory Diseases
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    • 제58권4호
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    • pp.352-358
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    • 2005
  • 폐암의 조기 진단을 위한 방법으로써 MA의 의의를 알아보고자 전남대학교 병원 내과에 내원한 폐암 환자 9례(squamous cell carcinoma 6례, adenocarcinoma 2례, non-small cell lung cancer: 1례), 연령이 비슷한 비폐암 대조군 9례(AMC, 결핵: 3례, 비특이적 염증성 폐질환: 6례)와 40세 이하 정상인 12례(NC)를 대상으로, 이들의 말초혈액의 백혈구와 혈장으로부터 DNA를 추출하여 D21S1245, D3S1300, D3S1234 유전자좌의 MA를 분석하였다. 세가지 유전자좌 중 어느 한 유전자좌에서라도 MA가 관찰되면 MA가 있는 것으로 인정하였다. MA는 NC에서는 관찰되지 않았으나 0%(0/12), AMC에서는 88.9%(8/9)에서 관찰되었다. AMC와 NC 총 21례 중 흡연자에서 70%(7/10) 비흡연자에서 9.1%(1/11) MA가 관찰되었다(p<0.05). 폐암군과 AMC 총 18례 중 AMC에서 88.9%(8/9), 폐암군에서 66.7%(6/9)를 보여 양군간에 서로 차이 없이 모두 높은 빈도로 관찰되었다(p>0.05). 결과적으로 혈장 DNA의 MA는 40세 이하의 정상인들에서는 발견되지 않으며 폐암 환자들에서 높은 빈도로 발견되었다. 그러나 고령의 흡연자들인 비폐암 대조 군에서도 높은 빈도로 MA가 관찰되므로 폐암 조기진단의 지표로써는 적합하지 않을 것으로 예상된다. 그러나 본 연구는 소수의 한정된 대상을 이용한 결과로써 다양한 연령층과 흡연력 그리고 조직형에 따라 세분화된 더 큰 대상 군을 이용한 연구가 추구되어야 할 것이다.