Unveiling ODP4: A breakthrough in PCOS treatment via BAT transplantation

IF 5.6 2区 医学 Q1 PHARMACOLOGY & PHARMACY Biochemical pharmacology Pub Date : 2025-03-14 DOI:10.1016/j.bcp.2025.116871
Fangfang Di , Yan Yan , Lihua Yao, Zhongxiao Zhang, Liwen Song, Jin Qiu, Runjie Zhang
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Abstract

Women with polycystic ovary syndrome (PCOS) often face infertility due to endocrine disorders affecting their reproductive, metabolic, and endocrine systems. Although brown adipose tissue (BAT) transplantation has been established to treat polycystic ovaries and hyperandrogenism in PCOS rats, the underlying mechanism is still largely unclear owing to lacking effective clinical treatment. Peptides are believed to significantly contribute to PCOS pathogenesis, however, the specific effects of active peptides released by BAT on PCOS remain largely unexplored. This study sought to identify active peptides secreted in the recipient’s BAT and investigate their potential biological functions in PCOS. We validated the impact of BAT transplantation and found that an overexpressed ovary derived peptide 4 (ODP4) in BAT transplantation rats could potentiate the inhibitory effect of dehydroepiandrosterone (DHEA) on granulosa cell (GC) development, yield a stimulatory effect on cell apoptosis and regulate ovulation genes and hormone synthesis. In DHEA-induced PCOS rats, ODP4 restored the estrous cycle and reduced cystic follicles, indicating its potential in PCOS treatment. Furthermore, transcriptomic analysis of KGN cells treated with ODP4 and DHEA showed changes in genes related to mitochondrial activity and oxidative damage. The mechanism results showed that ODP4 enhanced mitochondrial functionality, elevated ATP production, and decreased oxidative damage in KGN cells treatment with DHEA, suggesting its preventive role in mitochondrial malfunction and oxidative damage. These findings reveal unrecognized roles of ODP4 in PCOS pathogenesis. Our study substantiates that the connection between BAT transplantation and PCOS is related to peptidomics. Additionally, ODP4 has prospects for clinical application as an innovative therapeutic PCOS target.

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揭开 ODP4 的面纱:通过 BAT 移植治疗多囊卵巢综合症的突破。
患有多囊卵巢综合征(PCOS)的妇女往往面临不孕不育,因为内分泌失调影响了她们的生殖、代谢和内分泌系统。棕色脂肪组织(BAT)移植治疗多囊卵巢和雄激素分泌过多的PCOS大鼠已被证实,但由于缺乏有效的临床治疗方法,其潜在机制仍不清楚。多肽被认为在多囊卵巢综合征发病机制中起着重要作用,然而,BAT释放的活性多肽对多囊卵巢综合征的具体作用仍未得到充分研究。本研究旨在鉴定受体BAT中分泌的活性肽,并探讨其在多囊卵巢综合征中的潜在生物学功能。我们验证了BAT移植的影响,发现BAT移植大鼠卵巢衍生肽4 (ovarian derived peptide 4, ODP4)过表达可以增强脱氢表雄酮(dehydroepiandrosterone, DHEA)对颗粒细胞(granulosa cell, GC)发育的抑制作用,对细胞凋亡产生刺激作用,调节排卵基因和激素合成。在dhea诱导的PCOS大鼠中,ODP4能恢复发情周期,减少囊泡,提示其在PCOS治疗中的潜力。此外,经ODP4和DHEA处理的KGN细胞的转录组学分析显示,线粒体活性和氧化损伤相关基因发生了变化。机制结果显示,ODP4在DHEA处理的KGN细胞中增强线粒体功能,增加ATP的产生,降低氧化损伤,提示其在线粒体功能障碍和氧化损伤中的预防作用。这些发现揭示了ODP4在PCOS发病机制中未被认识的作用。我们的研究证实BAT移植与PCOS之间的联系与肽组学有关。此外,ODP4作为一种创新的PCOS治疗靶点具有临床应用前景。
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来源期刊
Biochemical pharmacology
Biochemical pharmacology 医学-药学
CiteScore
10.30
自引率
1.70%
发文量
420
审稿时长
17 days
期刊介绍: Biochemical Pharmacology publishes original research findings, Commentaries and review articles related to the elucidation of cellular and tissue function(s) at the biochemical and molecular levels, the modification of cellular phenotype(s) by genetic, transcriptional/translational or drug/compound-induced modifications, as well as the pharmacodynamics and pharmacokinetics of xenobiotics and drugs, the latter including both small molecules and biologics. The journal''s target audience includes scientists engaged in the identification and study of the mechanisms of action of xenobiotics, biologics and drugs and in the drug discovery and development process. All areas of cellular biology and cellular, tissue/organ and whole animal pharmacology fall within the scope of the journal. Drug classes covered include anti-infectives, anti-inflammatory agents, chemotherapeutics, cardiovascular, endocrinological, immunological, metabolic, neurological and psychiatric drugs, as well as research on drug metabolism and kinetics. While medicinal chemistry is a topic of complimentary interest, manuscripts in this area must contain sufficient biological data to characterize pharmacologically the compounds reported. Submissions describing work focused predominately on chemical synthesis and molecular modeling will not be considered for review. While particular emphasis is placed on reporting the results of molecular and biochemical studies, research involving the use of tissue and animal models of human pathophysiology and toxicology is of interest to the extent that it helps define drug mechanisms of action, safety and efficacy.
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