孕期母体叶酸和维生素 B12 比例的改变与新生儿出生体重、头围和胸围的关系

IF 6.8 4区 医学 Q1 NUTRITION & DIETETICS Journal of the American Nutrition Association Pub Date : 2024-07-01 Epub Date: 2024-01-30 DOI:10.1080/27697061.2024.2307980
Ramji Rao Ramijinni, Aatish Mahajan, Divika Sapehia, Parampal Singh, Vanita Suri, Jyotdeep Kaur
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引用次数: 0

摘要

研究目的本研究评估了母体红细胞叶酸(MRF)与血清维生素 B12(MB12)比例改变对妊娠和新生儿结局的影响:方法:采集孕妇的血液样本和分娩时的脐带样本。从母体和脐带血样本中估算红细胞叶酸和血清维生素 B12,以及总同型半胱氨酸(HCY)。孩子出生后,我们测量了母体和新生儿的人体测量参数,如胎盘重量(PW)、头围(HC)、胸围(CC)和体重(BW)。我们将孕妇分为六组:(a) 维生素 B12 正常和叶酸正常组(BNFN)--对照组;(b) 维生素 B12 正常和叶酸升高组(BNFE);(c) 维生素 B12 正常和叶酸缺乏组(BNFD)、(d) 维生素 B12 缺乏和叶酸正常组(BDFN)、(e) 维生素 B12 缺乏和叶酸升高组(BDFE)和 (f) 维生素 B12 缺乏和叶酸缺乏组(BDFD)。此外,还利用实时 PCR 技术研究了胎盘组织中一碳代谢基因(蛋氨酸合成酶(MS)、甘氨酸 N-甲基转移酶(GNMT)和胱硫醚 β-合成酶(CBS))的表达情况:结果:与对照组(BNFN)相比,BDFE 组和 BDFD 组的脐血红细胞叶酸明显降低。与对照组(BNFN)相比,BDFE 组的脐血维生素 B12 水平也有所降低。MRF/MB12比率改变(低比率和高比率与正常比率相比)时,所有新生儿参数,即PW、HC、CC和BW均降低。与对照组相比,母体红细胞叶酸和血清维生素 B12 失衡组(BDFE 和 BDFN)的总 HCY 明显升高。单碳代谢基因(如 MS)下调(p p p p 结论):母体血液中叶酸和维生素 B12 比例的改变与新生儿的生长发育不良有关。
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Association of Altered Ratio of Maternal Folic Acid and Vitamin B12 during Pregnancy with Newborn Birth Weight, Head Circumference, and Chest Circumference.

Objective: This study evaluated the effect of an altered ratio of maternal RBC folate (MRF) to serum vitamin B12 (MB12) on pregnancy and newborn outcomes.

Methods: Blood samples were collected from pregnant women and the umbilical cord at the time of delivery. Estimations of RBC folate and serum vitamin B12 from maternal and cord blood samples and total homocysteine (HCY) were performed. Maternal and newborn anthropometric parameters like placental weight (PW), head circumference (HC), chest circumference (CC), and body weight (BW) were measured in offsprings after birth. We stratified the pregnant women into six groups (a) vitamin B12 normal and folic acid normal (BNFN)-control group, (b) vitamin B12 normal and folic acid elevated (BNFE), (c) vitamin B12 normal and folic acid deficient (BNFD), (d) vitamin B12 deficient and folic acid normal (BDFN), (e) vitamin B12 deficient and folic acid elevated (BDFE) and (f) vitamin B12 deficient and folic acid deficient (BDFD) based on their levels of RBC folate (MRF) and vitamin B12 (MB12). The expression of the one-carbon metabolism genes (methionine synthase (MS), glycine N-methyltransferase (GNMT), and cystathionine β-synthase (CBS) was also studied in placental tissue by using real-time PCR.

Results: Cord blood RBC folate was significantly reduced in groups BDFE and BDFD as compared to the control group (BNFN). The cord blood vitamin B12 levels were also reduced in the BDFE group as compared to the BDFD. All the newborn parameters viz. PW, HC, CC, and BW, were reduced in the altered MRF/MB12 ratio (low & high vs. normal ratio). Total HCY was significantly elevated in the groups with (BDFE & BDFN) an imbalance of maternal RBC folate and serum vitamin B12 as compared to the control group. Downregulation of one-carbon metabolism genes like MS (p < 0.001), GNMT (p < 0.05), and CBS (p < 0.01) in placental tissue was observed in the high MRF/MB12 ratio group as compared to the normal ratio group. A strong positive correlation was also observed between MRF, MB12, and newborn parameters.

Conclusions: The altered ratio of folate to vitamin B12 in the maternal blood is associated with adverse growth and development of the newborn.

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