Intergenerational effects of early life nutrition: Maternal leg length predicts offspring placental weight and birth weight among women in rural Luzon, Philippines

2014 ◽  
Vol 26 (5) ◽  
pp. 652-659 ◽  
Author(s):  
Green C. Chung ◽  
Christopher W. Kuzawa
2012 ◽  
Vol 279 (1745) ◽  
pp. 4253-4262 ◽  
Author(s):  
Ian J. Rickard ◽  
Alexandre Courtiol ◽  
Andrew M. Prentice ◽  
Anthony J. C. Fulford ◽  
Tim H. Clutton-Brock ◽  
...  

Environmental conditions experienced in early life can influence an individual's growth and long-term health, and potentially also that of their offspring. However, such developmental effects on intergenerational outcomes have rarely been studied. Here we investigate intergenerational effects of early environment in humans using survey- and clinic-based data from rural Gambia, a population experiencing substantial seasonal stress that influences foetal growth and has long-term effects on first-generation survival. Using Fourier regression to model seasonality, we test whether (i) parental birth season has intergenerational consequences for offspring in utero growth (1982 neonates, born 1976–2009) and (ii) whether such effects have been reduced by improvements to population health in recent decades. Contrary to our predictions, we show effects of maternal birth season on offspring birth weight and head circumference only in recent maternal cohorts born after 1975. Offspring birth weight varied according to maternal birth season from 2.85 to 3.03 kg among women born during 1975–1984 and from 2.84 to 3.41 kg among those born after 1984, but the seasonality effect reversed between these cohorts. These results were not mediated by differences in maternal age or parity. Equivalent patterns were observed for offspring head circumference (statistically significant) and length (not significant), but not for ponderal index. No relationships were found between paternal birth season and offspring neonatal anthropometrics. Our results indicate that even in rural populations living under conditions of relative affluence, brief variation in environmental conditions during maternal early life may exert long-term intergenerational effects on offspring.


2020 ◽  
Vol 16 (1) ◽  
pp. 52-59
Author(s):  
Naina Kumar ◽  
Himani Agarwal

Background: Placenta plays a very important role in the growth and development of fetus. Objective: To know the correlation between placental weight and perinatal outcome in term antenatal women. Methods: Present prospective case-control study was conducted in the rural tertiary center of Northern India over one year (January-December 2018) on 1,118 term (≥37-≤42 weeks) antenatal women with singleton pregnancy fulfilling inclusion criteria with 559 women with high-risk pregnancy as cases and 559 low-risk pregnant women as controls. Placental weight, birth weight was measured immediately after delivery and compared between the two groups along with gestation, parity, fetal gender, and neonatal outcome. Statistical analysis was done using SPSS 22 version. Results: Mean placental weight [481.98±67.83 gm vs. 499.47±59.59 gm (p=.000)] and birth weight [2.68±0.53 Kg vs. 2.88±0.4 Kg (p=.000)] was significantly lower in high risk as compared to lowrisk participants, whereas placental birth weight ratio was higher in high-risk cases [18.35±2.37 vs. 17.41±1.38 (p=.000)] respectively. Placental weight was positively correlated with birth weight and placental weight and birth weight increased with increasing gestation in both cases and controls. Male neonates had higher placental weight [492.74±68.24 gm vs. 488±58.8 gm (p=0.224)] and birth weight [2.81±0.5 Kg vs. 2.74±0.45 Kg (p=0.033)] as compared to females. Neonatal Intensive Care Unit admission was significantly associated with low placental and birth weight (p=.000). Conclusion: There is a significant correlation between placental weight, birth weight and neonatal outcome, hence placental weight can be used as an indirect indicator of intrauterine fetal growth.


2007 ◽  
Vol 79 (4) ◽  
pp. 281-288 ◽  
Author(s):  
Carolyn M. Salafia ◽  
Jun Zhang ◽  
Richard K. Miller ◽  
Adrian K. Charles ◽  
Patrick Shrout ◽  
...  

2021 ◽  
Vol 36 (Supplement_1) ◽  
Author(s):  
Agne Laucyte-Cibulskiene ◽  
Shantanu Sharma ◽  
Peter M Nilsson ◽  
Anders Christensson

Abstract Background and Aims Renal functional capacity is influenced by factors acting early in life, such as intrauterine environment, maturity, birth weight, length at birth, placental weight etc. Early life factors are responsible for the number of nephrons a person starts life with, and the consequence of a low nephron number is earlier kidney ageing and chronic kidney disease (CKD). Notably, most reports addressing early life factors in the context of adult kidney function use creatinine-based eGFR equations and/or albuminuria and lack longer follow-up (<30 years). Therefore, we aimed to identify early life factors associated with kidney function, determined by different creatinine and cystatin C equations and urinary albumin-to-creatinine ratio (UACR), more than 40 years later. Method 94 women and 494 men, born 1923-50, who participated in The Malmo Diet and Cancer (MDC) study were analyzed. Perinatal data records including birth weight (BW), birth length, head circumference, gestational age, placenta weight (PW) and mother related risk factors were collected from hospital and regional state archives. After a follow-up of 46 to 67 years study subjects underwent physical examination, blood pressure measurements and estimation of glomerular filtration rate (eGFR) using 4 different equations: Chronic Kidney Disease Epidemiology Collaboration (CKD-EPI) 2012 creatinine and cystatin C formula (CKD-EPI_creatinine, CKD-EPI_cystatin C), cystatin C eGFR equation based on Caucasian, Asian, pediatric, and adult cohorts (CAPA), the Lund-Malmö revised creatinine based eGFR equation (LM_rev). Urinary albumin-to-creatinine ratio (UACR) was measured in morning urine samples, albuminuria was defined as UACR ⩾3 mg/mmol. Birth weight z-scores (gender specific BWz and combined BWz) acquired by using the equation as reported by Marsal et al.(1996). Four growth mismatch phenotypes defined by combining low or high BW z-score (lowBWz or hiBWz respectively) with lower or higher body mass index at 20 years of age (lowBMI20 ir hiBMI20 respectively). Results Linear regression analysis of early life factors indicated that in females birth weight was positively associated with kidney function measured by both CAPA and CKD-EPI_cystatin C. In the whole population, birth weight adjusted for gestational age and sex, together with prematurity were independently associated to CKD-EPI_cystatin C, while BW/PW ratio was related to LM_rev. Logistic regression analysis showed that only gender specific BWz and combined BWz shared the same odds ratios for age and pulse pressure adjusted albuminuria in males (OR 0,75 (95%CI [0,58; 0,96]). While analyzing postnatal growth mismatch we found that females with hiBWz/lowBMI20 phenotype had significantly worse kidney function acquired by both cystatin C equations compared to those with lowBWz/lowBMI20 phenotype (p=0.044 for CAPA, p=0.040 for CKD-EPI_cystatin C). The logistic regression analysis revealed that hiBWz/hiBMI20 phenotype was related to lower risk of age and pulse pressure adjusted albuminuria (OR 0,35 (95%CI[0,12;0,93]) Conclusion Here we report that lower birth weight in females is associated with worse kidney function determined by cystatin C eGFR equations, while in males lower birth weight z-score is a risk factor for albuminuria in adulthood. Postnatal growth catch-up is not related to worse kidney function. We identified the protective phenotype (hiBWz/hiBMI20) for albuminuria in males and the unfavorable phenotype (hiBWz/lowBMI20) for kidney function in females. This suggests that lower birth weight and postnatal growth curve have a potential sex specific effect to kidney function and development of CKD in middle-aged Swedish subjects. Further studies are warranted to address early life factor prognostic accuracy in kidney function and outcomes prediction later in the lifetime.


2008 ◽  
Vol 40 (4) ◽  
pp. 563-575 ◽  
Author(s):  
MWENZA BLELL ◽  
TESSA M. POLLARD ◽  
MARK S. PEARCE

SummarySeveral studies have found relationships between early life factors (birth weight, length of gestation, height, weight, duration of breast-feeding, maternal age, social class, periods of infection, presence of adverse life events, and quality of housing conditions in childhood) and age at menarche but none has considered all of these factors in the same study. The follow-up study of the Newcastle Thousand Families birth cohort, established in 1947, provided age at menarche data collected retrospectively at age 50 from 276 women who returned self-completion questionnaires in 1997. Three main independent associations were observed: girls who experienced a shorter gestation, girls whose mothers were younger when they were born, and girls who were heavier at age 9 had earlier menarche. Birth weight, standardized for gestational age, was found to have different relationships with age at menarche depending upon how heavy or light a girl was at age 9. The results of this study support the hypotheses that conditions in fetal and early life are associated with the timing of menarche and that greater childhood growth is associated with earlier menarche. It is suggested that future work should focus on illuminating the mechanisms underlying these statistical relationships.


Placenta ◽  
2015 ◽  
Vol 36 (9) ◽  
pp. 1018-1023 ◽  
Author(s):  
Marc U. Baumann ◽  
Michelle Marti ◽  
Lukas Durrer ◽  
Petros Koumoutsakos ◽  
Panagiotis Angelikopoulos ◽  
...  

2021 ◽  
pp. 1-14
Author(s):  
Murali Krishna ◽  
Ghattu V. Krishnaveni ◽  
Veena Sargur ◽  
Kalyanaraman Kumaran ◽  
Mohan Kumar ◽  
...  

ABSTRACT Objective: To examine if smaller size at birth, an indicator of growth restriction in utero, is associated with lower cognition in late life, and whether this may be mediated by impaired early life brain development and/or adverse cardiometabolic programming. Design: Longitudinal follow-up of a birth cohort. Setting: CSI Holdsworth Memorial Hospital (HMH), Mysore South India. Participants: 721 men and women (55–80 years) whose size at birth was recorded at HMH. Approximately 20 years earlier, a subset (n = 522) of them had assessments for cardiometabolic disorders in mid-life. Measurements: Standardized measurement of cognitive function, depression, sociodemographic, and lifestyle factors; blood tests and assessments for cardiometabolic disorders Results: Participants who were heavier at birth had higher composite cognitive scores (0.12 SD per SD birth weight [95% CI 0.05, 0.19] p = 0.001) in late life. Other lifecourse factors independently positively related to cognition were maternal educational level and participants’ own educational level, adult leg length, body mass index, and socioeconomic position, and negatively were diabetes in mid-life and current depression and stroke. The association of birth weight with cognition was independent cardiometabolic risk factors and was attenuated after adjustment for all lifecourse factors (0.08 SD per SD birth weight [95% CI −0.01, 0.18] p = 0.07). Conclusions: The findings are consistent with positive effects of early life environmental factors (better fetal growth, education, and childhood socioeconomic status) on brain development resulting in greater long-term cognitive function. The results do not support a pathway linking poorer fetal development with reduced late life cognitive function through cardiometabolic programming.


2021 ◽  
Vol 38 ◽  
pp. 27-37
Author(s):  
Jussara Ennes ◽  
Muryllo Santos ◽  
Ana Beatriz Torres ◽  
Samille Avila

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