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Published on: October 26, 2020
Sex differences in renal transcriptome and programmed hypertension in offspring exposed to prenatal dexamethasone
You-Lin Tain1, Meng-Shan Wu2, Yu-Ju Lin3
1Department of Pediatrics, Kaohsiung Chang Gung Memorial Hospital and Chang Gung University, College of Medicine, Kaohsiung, Taiwan; Institute for Translational Research in Biomedicine, Kaohsiung Chang Gung Memorial Hospital and Chang Gung University, College of Medicine, Kaohsiung, Taiwan.
Insights
Prenatal dexamethasone (DEX) exposure caused hypertension in male offspring but not females. This sex-specific effect was linked to kidney gene changes and renin-angiotensin system alterations.
Area of Science:
- Reproductive biology
- Developmental programming
- Genomics
Background:
- Prenatal glucocorticoid exposure, like dexamethasone (DEX), prevents chronic lung disease but may cause later hypertension.
- Sex differences in blood pressure regulation and sex-specific renal transcriptomes suggest DEX effects could be sex-dependent.
Purpose of the Study:
- To investigate if prenatal DEX exposure induces sex-specific hypertension.
- To identify candidate genes and pathways involved in sex-specific programming using whole-genome RNA sequencing.
Main Methods:
- Pregnant rats received DEX or vehicle from gestational day 16-22.
- Offspring (male and female) were assessed for blood pressure and renal gene expression at 16 weeks.
- Whole-genome RNA next-generation sequencing (NGS) was employed to analyze differential gene expression.
Main Results:
- Prenatal DEX exposure led to increased blood pressure in adult male offspring, but not females.
- Sex-specific renal programming was observed, with 8 differentially expressed genes (DEGs) in males and 18 in females.
- Lower angiotensinogen (Agt) expression in females may confer resistance to DEX-induced hypertension.
Conclusions:
- Prenatal DEX exposure programs hypertension in a sex-specific manner, primarily affecting adult males.
- Renal programming involves sex-biased genes and the renin-angiotensin system (RAS).
- Understanding these sex-specific mechanisms is crucial for developing targeted deprogramming strategies.
Abstract:
Glucocorticoids, predominantly dexamethasone (DEX), are widely used to reduce the risk of prematurity-related chronic lung disease. However, prenatal DEX treatment links to adverse effects in later life, including hypertension. Given that sex differences exist in the blood pressure (BP) control, and that renal transcriptome is sex-specific, thus we intended to elucidate whether prenatal DEX-induced programmed hypertension is in a sex-specific manner and identify candidate genes and pathways using the whole-genome RNA next-generation sequencing (NGS) approach. Offspring were assigned to 4 groups (n=7-8/group): male control (MC), female control (FC), male DEX (MD), and female DEX (FD). Dexamethasone (0.1mg/kg body weight) or vehicle was intraperitoneally administered to pregnant SD rats from gestational day 16-22, to construct a DEX model. Rats were killed at 16weeks of age. Prenatal DEX induced sex-specific increase in BPs in male but not female adult offspring. Prenatal DEX elicited renal programming in a sex-specific fashion as demonstrated by 8 and 18 DEGs in male and female offspring, respectively. Among them, two genes, Hbb and Hba-a2, were shared. The resistance of female offspring to prenatal DEX-induced programmed hypertension is related to a lower Agt expression. Prenatal DEX induced programmed hypertension in adult male but not female offspring, which was related to renal programming affecting sex-biased genes and the RAS. Early identification of sex-specific underlying mechanisms could provide novel deprogramming strategy to reach maximal optimization in both sexes.
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