• Title/Summary/Keyword: Maternal plasma

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Maternal Plasma Homocysteine Levels and Pregnancy Outcomes (임신 분기별 모체의 혈장 호모시스테인 농도와 임신결과)

  • 안홍석
    • Korean Journal of Community Nutrition
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    • v.9 no.4
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    • pp.483-490
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    • 2004
  • Elevated maternal plasma homocysteine concentrations have been associated with adverse pregnancy outcomes, including birth defects, low birth weight, preeclampsia, spontaneous abortion, placental abruption, and other maternal or fetal complications. The purpose of this study was to assess the maternal plasma homocysteine level during pregnancy and to investigate the relationship between the plasma homocysteine concentrations and pregnancy outcomes. Venous blood samples were drawn from 82 pregnant women who were grouped with gestational age, 1st trimester (n = 26), 2nd trimester (n = 27) and 3rd trimester (n = 29). The concentration of plasma homocysteine was analyzed by HPLC, and pregnancy outcomes including gestational length, maternal weight gain, infant birth weight, and Apgar score were collected with the medical records of the pregnant women. The levels of plasma homocysteine of the pregnant women at the 1st, 2nd, and 3rd trimester were 5.7 $$\pm$ 3.7\mu㏖/L,\;5.6 \pm4.1\mu㏖/L\; and\; 7.0\pm 4.5\mu㏖/L$, respectively, which had not showed any significant difference. The result of this study showed that in case of the pregnant women at the 1st trimester, the maternal plasma homocysteine level of the pregnant women whose gestational length was less than 38 weeks was significantly high (p < 0.01) compared to that of the pregnants whose gestational length was more than 38 weeks. And also, the level of homocysteine of the pregnant women at the 2nd trimester was significantly low when the maternal weight gain was high (p < 0.05). These findings suggest that maternal plasma homocysteine level at early stage of gestation will be a predicter of gestational length and maternal weight gain.

$\beta-Carotene,\;\alpha$-Tocopherol Concentrations in Maternal-Umbilical Cord Plasma and Their Relationships to Pregnancy Outcome (임신 말 모체와 제대혈의 Retinol, $\beta-Carotene,\;\alpha$-Tocopherol의 농도 및 임신결과와의 상관성)

  • 이금주;이민숙;안홍석
    • Korean Journal of Community Nutrition
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    • v.9 no.2
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    • pp.151-160
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    • 2004
  • The purpose of this study was to evaluate the intake of antioxidant vitamins and plasma concentrations of those in 60 maternal-infant pairs (30 in normal term delivery group, NT; 30 in preform delivery group, PT). We also investigated the relationship between vitamin levels of maternal-umbilical cord plasma and pregnancy outcome. Mean energy intakes of NT and PT pregnant women were 93.2% and 85.4%, and their protein intakes were 113.3% and 110.9% of the recommended dietary allowance (RDA), respectively. While vitamin A intakes were only 51.2% and 39.6% of the RDA in NT and PT pregnant women. The vitamin E intake was about 50% of the RDA (NT 6.27 mg, PT 7.78 mg). The levels of retinol in maternal plasma of NT and PT were $1.51\mumol/\ell\;and\;1.43\mumol/\ell$, respectively. The retinol levels in umbilical cord plasma in NT and PT were $0.72\mumol/\ell\;and\;0.61\mumol/\ell$, respectively. The level of $\beta-carotene$in maternal plasma of NT was 0.49 $\mu$mol/$\ell$, significantly (p < 0.01) higher than that of PT ($0.31\mumol/\ell$).The $\beta-carotene$ of umbilical cord plasma of NT and PT were $0.702\mumol/\ell\;and\;0.01\mumol/\ell$, respectively. The plasma $\alpha$-tocopherol of maternal of NT and PT were $0.72\mumol/\ell\;and\;0.01\mumol/\ell\;29.51 /mumol/\ell\; and 27.17\mumol/\ell,\;respectively.\; The $\alpha$-tocopherol of umbilical cord plasma of NT and PT were $4.16\mumol/\ell\;and\;3.80\mumol/\ell$, respectively. The antioxidant vitamin levels (retinol, $\beta-carotene,\;and\;\alpha$-tocopherol) in maternal plasma were significantly higher (p<0.0001) than those in umbilical cord plasma. However, there was no correlation between the vitamin levels in maternal plasma and those in umbilical cord plasma. The maternal plasma $\beta$-carotene level showed a positive correlation to gestational age. Also Apgar score at 1 min produced a positive correlation to maternal plasma $\beta$-carotene level.

Pregnancy Outcomes in Relation to Plasma TRAP Concentration of Maternal and Umbilical Cord (임신말 모체와 제대혈의 혈장 총유리기포집 항산화능과 임신결과)

  • Ahn Hong Seok
    • Journal of Nutrition and Health
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    • v.37 no.9
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    • pp.817-824
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    • 2004
  • The purpose of this study was to analyze the intake of antioxidant vitamins and plasma TRAP concentrations of 60 maternal-infant pairs (30 in normal term delivery group, NT; 30 in preform group, PT) We also investigated the relationship between plasma TRAP levels of maternal-umbilical cord blood and pregnancy outcomes. Mean energy intakes of NT and PT pregnant women were 93.2% and 85.4% and their protein intakes were 113.3% and 110.9% of the recommended dietary allowance (RDA), respectively. The vitamin A intakes of NT and W pregnant women were 559.7 RE and 497.8 RE, which were less than RDA. While the vitamin E and C intakes of both NT and PT pregnant women were more than RDA. The maternal plasma TRAP level of PT was 1.41 mmol/l and that of was 1.50 mmol/l, which was significantly higher than TRAP level of PT (p < 0.05) . The umblical cord plasma TRAP levels of NT and PT were 1.44 mmol/l and 1.23 mmol/l, which indicates the significant difference between those two groups (p < 0.001) . In case of comparing the TRAP level of maternal and umbilical cord blood, there was no significant difference in NT pregnant women, however, in PT group maternal the TRAP level significant higher than that of umbilical cord (p < 0.001). The length of gestation and plasma TRAP level of maternal and umbilical cord showed a positive correlation. However, other parameters of pregnancy outcomes such as birth weight, weight gain, and Apgar score were not affected by the plasma TRAP levels. Based on these results, preform infants could have a risk of oxidative stress because of low plasma TRAP level.

A Study on the Characteristics of Lithium Concentration Gradient between Maternal and Fetal Plasma in Rabbits (모체혈장 및 태자혈장간의 $Li^+$농도 경사의 특성에 관한 연구)

  • Shim, Jae-Sik;Sung, Ho-Kyung
    • The Korean Journal of Physiology
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    • v.21 no.1
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    • pp.23-33
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    • 1987
  • This study was carried out to investigate the characteristics of lithium concentration difference between maternal and fetal plasma and the effect of previous lithium loading on rapid transplacental transport of large amounts of lithium. Pregnant rabbits at $20{\sim}22\;days$ of gestation were divided into two groups: chronic $Li^+$ injection group and chronic plus acute $Li^+$ injection group. Small amounts of LiCl (1 mmol/kg per day) were given intraperitoneally to all rabbits of both group, for 5 days before sacrifice. The rabbits of chronic plus acute injection group, received additional intravenous injections of large amounts of LiCl (2 mmol/kg) one hour before sacrifice. Maternal arterial blood, placental sinus blood, fetal blood and amniotic fluid were drawn and analyzed for the plasma concentrations of $Li^+$, $Na^+$ and $K^+$ and for osmolartiy. Followings are the results obtained. 1) There was no difference in the $Li^+$ concentration between maternal plasma and placental sinus plasma in chronic lithium group, although the $Li^+$ concentration of placental sinus plasma was slightly lower than that of maternal arterial plasma in the chronic plus acute lithium group. 2) The $Li^+$ concentration of fetal plasma was much lower than that of placental sinus plasma in both groups, the ratio being $0.76{\pm}0.250$ ($mean{\pm}95%$ confidence interval) for the chronic $Li^+$ group and $0.78{\pm}0.366$ for the chronic plus acute $Li^+$ group. 3) The ratio of $Li^+$ concentration of fetal plasma to maternal arterial plasma was $0.71{\pm}0.196$ in the chronic group and $0.59{\pm}0.261$ in the chronic plus acute group. 4) $Li^+$ concentration of amniotic fluid was much higher than that of fetal plasma in the chronic $Li^+$ group but not significantly different in the chronic plus acute $Li^+$ group. 5) An acute loading of $Li^+$ did not produce any detectable changes in $Na^+$ and $K^+$ concentrations and osmolarity of the maternal plasma. The above results may suggest that: (a) The placental barrier maintains steady state lithium concentration gradient between placental sinus plasma and fetal plasma. (b) In rabbits chronically treated with $Li^+$ the steady state $Li^+$ gradient is established within one hour after an acute $Li^+$ loading, provided that the $Li^+$ concentration in the maternal plasma is less than 4 mmole/l.

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Relationships between Vitamin $B_6$ Status of Maternal-Umbilical Cord (임신 말 모체 및 제대혈의 비타민 $B_6$ 농도와 임신결과와의 상관성)

  • 안홍석
    • Journal of Nutrition and Health
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    • v.33 no.3
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    • pp.263-270
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    • 2000
  • The purpose of this study was to evaluate the concentration of vitamin B6 in 16 pregnant-infant pairs and 15 nonpregnant women and to investigate the relationships between vitamin B6 status of maternal-umbilical cord plasma and pregnancy outcomes. dietary intake was obtained from semiquantitative frequency questionnaire. The daily mean energy and protein intakes were higher than the recommended dietary allowance, while daily vitamin B6 was only 74% of RDA in pregnant and 73% of RDA in nonpregnant women. The main sources of vitamin B6 were vegetables and fruits in pregnant women, while cereal and starch in nonpregnant women. The plasma PLP and PL levels of pregnant women were 14.85nmol/l and 20.56nmol/l, significantly lower than those of nonpregnant women. the PLP/PL ratios of pregnant and nonpregnant women were 1.65 and 0.33, indicating that the levels of vitamin B6 was altered during pregnancy. The PLP and PL levels of umbilical cord plasma were 63.55nmol/l and 32.25nmol/l, respectively. The vitamin B6 levels of umbilical cord plasma were significantly higher than that of maternal plasm. This finding indicates that the uptake of vitamin B6 in the fetus may be due to an active placental transport mechanism. The PLP level of maternal plasma correlated positively with that of umbilical cord plasma, showing the PLP concentration of umbilical cord plasma is affected by maternal vitamin B6 status. The maternal plasma PL level showed a positive correlation to infant birth weight. The positive association has bee also found between plasma PL level of umbilical cord and Apgar 1 min score.

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Maternal photic regulation of immune status in neonates of Indian palm squirrel Funambulus pennanti

  • Bishnupuri, K.S.;Haldar, C.;Singh, R.
    • Journal of Photoscience
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    • v.9 no.2
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    • pp.472-474
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    • 2002
  • Till date the phenomenon of maternal transfer of photic information was reported to regulate the fetal/neonatal growth, however its influence on neonatal immune system is still an enigma. In the present study, we observed an increase in maternal plasma melatonin level under short day length (SOL) condition with a consequent decrease in TLC and LC in their respective neonates. However, a significant decrease in maternal plasma melatonin level was noted under constant darkness (DD) with an increase in TLC and LC of their neonates. The blastogenic response (BGR) to Con A of splenocytes exhibited a significant increase in neonates of SDL females and a significant decrease in the neonates of DD females. Hence, it appears that the increase in maternal plasma melatonin under SOL condition transmitted information to decrease the immune status. Continuous exposure of females to darkness (DD) negatively regulated the maternal pineal gland activity thereby decreasing their plasma melatonin level. This information was transmitted for elevation of immune status in neonates, so that they exhibit better growth and sexual maturation. Therefore, we may suggest that the maternal photic information transmitted either prenatally through placenta or postnatally via the milk regulate the hormonal profile of Melatonin to regulate the immune status of neonates in order to influence their growth and sexual maturation.

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Impacts of Photoperiod and Maternal Pineal Gland on Pre- and Post-natal development of Indian palm Squirrel F. pennanti

  • Haldar, C.;Bishnupuri, K.S.
    • Journal of Photoscience
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    • v.9 no.2
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    • pp.29-32
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    • 2002
  • Studies till date suggest the existence of a fetal biological clock in suprachiasmatic nuclei entrained by the circadian signal from mother. Melatonin from maternal pineal gland reaches to the fetus by crossing every biological barrier including placenta, hence fetuses were exposed to similar melatonin variation as their mother. Experimental modulations of maternal pineal gland activity of pregnant females either by exposing the them to different photoperiodic schedules or by exogenous melatonin treatments till the date of parturition, regulated the fetal plasma level of melatonin, thereby the prenatal (fetal) growth and development. This clearly suggests the maternal transport of melatonin to their fetus through placenta since fetal retina-hypothalamic tract was incomplete. An extension of experimental schedules till 60 days of post-partum period regulated the neonatal pineal gland activity and gonadal maturation along with their plasma levels of melatonin and sex steroids suggesting clearly the phenomenon of maternal transfer of melatonin to their young ones during the post-natal period, when the neonates were solely dependent on the mother's milk for their nutrition and energetic demands. On the basis of above observations we may suggest that the maternal pineal gland activity regulate the prenatal development by passing its melatonin to fetus via placenta and post-natal growth and sexual maturation by passing maternal melatonin to neonates via milk. Hence, the photoperiod perceived by mother is translated into the maternal plasma level of melatonin which not only regulates the prenatal but also the post-natal growth and sexual maturation of neonates.

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Placental Transfer and Pharmacokinetics of a Single Oral Dose of the Fluoroquinolone Antibacterial DW-116 in Rats (랫드에서 fluoroquinolone 항균제 DW-116의 단회 경구투여에 의한 태반통과와 약물동태연구)

  • 김종춘;신호철;허정두;이종화;정문구;윤효인
    • Biomolecules & Therapeutics
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    • v.10 no.1
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    • pp.43-49
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    • 2002
  • The present study was conducted to investigate the placental transfer and pharmacokinetics of the flu-oroquinolone antibacterial DW-116 in pregnant rats. The placental transfer and pharmacokinetics of DW-116 were examined after a single oral dose of 500 mg $^{14}C$ DW-116/kg on gestational day 18. Maternal and fetal tissues were collected at 0.17 0.5,1,2,4,8, and 24 h after dosing. Maximum radioactivity was detected in maternal plasma, placenta, and whole fetus at 1 h, and in amniotic plasma at 4 h after dosing. Thereafter, radioactivity gradually disappeared from these tissues and was 16~28% of maximum levels at 24 h after dosing. Radioactivity in whole fetus were higher than those in the maternal plasma and placenta. The $T_{1/2,abs}$, $T_{1/2,{\beta}},$ AUC, $T_{max},$ and $C_{max}$ in the maternal plasma were approximately 6 min, 13.3 h, 1620 $ug^*hr/ml,$ 0.5 h, and 136 ug/ml, respectively. Those in the placenta were approximately 20 min, 12.3 h, 2150 $ug^*h/$m\ell$,$ 1.0 h, and 172 ug/ml, respectively. Those in the whole fetus were 13 min, 12.8 h,2549 $ug^*h/$m\ell$,$ 1 h, and 191 ug/ml, respectively. In the amniotic fluid of maternal uterus, the 4T_1/2,abs}$, $T1/2,{\beta},$ AUC, $T_{max},$ and $C_{max}$ were approximately 1.3 h,9.3 h,2508 $ug^*h/$m\ell$,$ 4.4 h, and 135 ug/ml, respectively. While DW-116 disappeared biphasically from maternal plasma, whole fetus and placenta, it was eliminated monophasically from amniotic fluid. In conclusion, this study demonstrated that the absorption and distribution of DW-116 in maternal plasma and placenta were extensively rapid, and that the test chemical well passed the blood-placenta barrier and was transferred to the fetus.

Transfer of Lithium ion in the Placenta of the Rabbit (토끼 태반을 통한 $Li^+$이동에 관한 연구)

  • Sung, Ho-Kyung;Kim, Jun
    • The Korean Journal of Physiology
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    • v.18 no.1
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    • pp.1-8
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    • 1984
  • In order to determine the extent of the placental transfer of Lithium ion, pregnant rabbits at $27{\sim}29$ days of gestation, which has hemochorial placenta similar to the human placenta, received 2 mM/Kg of $Li^+$ in the form of LiCl intravenously. Maternal arterial blood, placental sinus blood, fetal blood, amniotic fluid and maternal urine were drawn two hours after the single dose of LiCl. Concentrations of $Li^+$, $Na^+$, $K^+$ and osmolarity were measured in plasma of collected bloods, amniotic fluid and urine. Followings are the results obtained. 1) Evident level of $Li^+$ was detected in fetal blood, although fetal plasma concentration of $Li^+$ found to be almost one third of maternal plasma. 2) Plasma concentration of $Li^+$ in placental sinus blood was higher than that in fetal plasma but lower than that in maternal plasma. It means that downward concentration gradient of $Li^+$ from mother to fetus was still remarkable two hours after the injection. 3) Significant level of $Li^+$ was also detected in amniotic fluid. It seemed likely that $Li^+$, at least in part, excreted by the fetal urinary tract. 4) There were no differences in $Na^+$ and osmolar concentration between fetal and maternal blood. 5) From above results, it was concluded that $Li^+$ may transfer across the placenta but limited passage capacity through placental barrier for $Li^+$ is significant, beacause net transfer assumed to be going on even at two hours, at which time maternal equlibrium has been reached.

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Effects of Maternal Folic Acid Nutritional Status on the Expression of Myelin Basic Protein in the Offspring (어미 쥐의 엽산 영양상태가 자손 쥐의 수초기본단백질(Myelin Basic Protein)발현에 미치는 영향)

  • Chae, Eun-Hye;Kim, Soo-Jung;Lee, Hwa-Young;Chang, Nam-Soo
    • Journal of Nutrition and Health
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    • v.40 no.2
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    • pp.130-137
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    • 2007
  • Myelin basic protein (MBP), a major structural protein of the myelin, is thought to be important for the maintenance of myelin in the central nervous system (CNS). We investigated the effect of maternal folic acid nutritional status on the folate level and the synthesis of MBP in the offspring. In order to test this hypothesis, female Sprague-Dawley rats were fed either folic acid sufficient (8 mg/kg diet) or deficient (0 mg/kg diet) diet from 2 wks prior to the mating throughout the entire pregnancy, lactation and weaning period. We examined plasma folate level by the radioimmunoassay and homocysteine level by HPLC, respectively. The MBP expression was measured by the western blot analysis. The maternal folic acid deficiency decreased plasma folate level with a concomitant increase in plasma homocysteine level in their offspring. The maternal folic acid deficiency decreased hepatic levels of SAM and SAM/SAH ratio with a concomitant increase in hepatic levels of SAH and the MBP expression of spinal cord in their offspring at 7 wks of age. These results suggest that maternal folic acid nutritional status affect plasma folate and homocysteine level in their offspring. Moreover, the maternal folic acid deficiency mi호t inhibit the MBP expression of the spinal cord and disrupt many other vital CNS reactions in their offspring.