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通过调控母源性营养不良子代大鼠 miR-206 网络探讨前列腺癌的早期起源。

Early-life origin of prostate cancer through deregulation of miR-206 networks in maternally malnourished offspring rats.

机构信息

Department of Structural and Functional Biology, Institute of Biosciences, Sao Paulo State University (UNESP), Botucatu, SP, 18618-689, Brazil.

Cancer Signaling and Epigenetics Program, Fox Chase Cancer Center, Philadelphia, PA, 19111, USA.

出版信息

Sci Rep. 2023 Oct 31;13(1):18685. doi: 10.1038/s41598-023-46068-1.

Abstract

The Developmental Origins of Health and Disease (DOHaD) concept has provided the framework to assess how early life experiences can shape health and disease throughout the life course. While maternal malnutrition has been proposed as a risk factor for the developmental programming of prostate cancer (PCa), the molecular mechanisms remain poorly understood. Using RNA-seq data, we demonstrated deregulation of miR-206-Plasminogen (PLG) network in the ventral prostate (VP) of young maternally malnourished offspring. RT-qPCR confirmed the deregulation of the miR-206-PLG network in the VP of young and old offspring rats. Considering the key role of estrogenic signaling pathways in prostate carcinogenesis, in vitro miRNA mimic studies also revealed a negative correlation between miR-206 and estrogen receptor α (ESR1) expression in PNT2 cells. Together, we demonstrate that early life estrogenization associated with the deregulation of miR-206 networks can contribute to the developmental origins of PCa in maternally malnourished offspring. Understanding the molecular mechanisms by which early life malnutrition affects offspring health can encourage the adoption of a governmental policy for the prevention of non-communicable chronic diseases related to the DOHaD concept.

摘要

健康与疾病的发育起源(DOHaD)概念为评估早期生活经历如何在整个生命周期中塑造健康和疾病提供了框架。虽然母体营养不良已被提议作为前列腺癌(PCa)发育编程的风险因素,但分子机制仍知之甚少。使用 RNA-seq 数据,我们证明了年轻母体营养不良后代腹侧前列腺(VP)中 miR-206-纤溶酶原(PLG)网络的失调。RT-qPCR 证实了年轻和老年后代大鼠 VP 中 miR-206-PLG 网络的失调。鉴于雌激素信号通路在前列腺癌发生中的关键作用,体外 miRNA 模拟研究还揭示了 PNT2 细胞中 miR-206 和雌激素受体 α(ESR1)表达之间的负相关。综上所述,我们证明了与 miR-206 网络失调相关的早期生活雌激素化可能导致母体营养不良后代中 PCa 的发育起源。了解早期营养不良如何影响后代健康的分子机制,可以鼓励政府采取预防与 DOHaD 概念相关的非传染性慢性疾病的政策。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ecae/10618455/b21f18c1d404/41598_2023_46068_Fig1_HTML.jpg

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