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Published on: June 3, 2016
Adipose tissue inflammation: developmental ontogeny and consequences of gestational nutrient restriction in offspring
Don Sharkey1, Michael E Symonds, Helen Budge
1Centre for Reproduction and Early Life, Institute of Clinical Research, University of Nottingham NG7 2UH, United Kingdom
Insights
Maternal nutrient restriction during pregnancy alters offspring adipose tissue inflammation. The timing of this restriction impacts gene expression, potentially increasing obesity and insulin resistance risk.
Area of Science:
- Developmental biology
- Metabolic syndrome research
- Nutritional science
Background:
- Adiposity and metabolic syndrome are linked to adipose tissue inflammation.
- In utero nutrient restriction (NR) may increase offspring obesity and insulin resistance risk via unclear mechanisms.
Purpose of the Study:
- Define adipose tissue inflammatory and endoplasmic reticulum stress gene expression ontogeny from fetal to adult life.
- Examine the impact of gestational nutrient restriction timing on these genes.
Main Methods:
- Pregnant sheep received 100% (control) or 50% (NR) nutrition during early-mid or late gestation.
- Offspring adipose tissue gene expression (TLR4, CD68, IL-18, GRP78) and mass were analyzed postnatally.
Main Results:
- Control offspring showed peak inflammatory markers (TLR4, CD68) early postnatally, with IL-18 peaking later.
- Early-mid gestational NR reduced IL-18 in offspring. Late gestational NR altered CD68 and TLR4 expression patterns postnatally.
- Adipose tissue inflammatory markers correlated with adipose tissue mass.
Conclusions:
- The in utero nutritional environment significantly alters offspring adipose tissue inflammatory profiles.
- The timing of gestational nutrient restriction influences the specific inflammatory changes observed.
- Maternal diet optimization may mitigate offspring risk for metabolic syndrome and obesity.
Abstract:
Increasing adiposity predisposes to the development of the metabolic syndrome, in part, through adipose tissue dysregulation and inflammation. In addition, offspring nutrient-restricted (NR) in utero can exhibit an increased risk of early-onset insulin resistance and obesity, although the mechanisms remain unclear. We aimed to: 1) define adipose tissue ontogeny of key proinflammatory and endoplasmic reticulum stress gene expression from late fetal to early adult life and 2) examine the impact on these genes in gestational nutrient restriction. Pregnant sheep were fed 100% (control) or 50% (NR) of their nutritional requirements between early to mid (28-80 d, term approximately 147 d) or late (110-147 d) gestation. In control offspring, toll-like receptor 4 (TLR4), and the macrophage marker CD68, peaked at 30 d of life before declining. IL-18 peaked at 6 months of age, whereas the endoplasmic reticulum chaperone glucose-regulated protein 78 peaked at birth and subsequently declined through postnatal life. TLR4 and CD68 positively correlated with relative adipose tissue mass and with each other. Early to midgestational NR offspring had decreased abundance of IL-18 at 6 months of age. In late gestational NR offspring, CD68 was significantly lower at birth, a pattern that reversed in juvenile offspring, coupled with increased TLR4 abundance. In conclusion, the in utero nutritional environment can alter the adipose tissue inflammatory profile in offspring. This may contribute to the increased risk of insulin resistance or obesity, dependent on the timing of nutrient restriction. Establishing the optimal maternal diet during pregnancy could reduce the burden of later adult disease in the offspring.
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