IL-17A exacerbates corpus cavernosum fibrosis and neurogenic erectile dysfunction by inducing CSMC senescence via the mTORC2-ACACA pathway

IF 7 1区 医学 Q1 MEDICINE, GENERAL & INTERNAL BMC Medicine Pub Date : 2024-09-11 DOI:10.1186/s12916-024-03609-3
Wende Yang, Jiafeng Fang, Jiancheng Zhai, Chen Qiu, Zhenkang Liang, Qianhui Liu, Hongbo Wei
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Abstract

Neurogenic erectile dysfunction, characterized by neurological repair disorders and progressive corpus cavernosum fibrosis (CCF), is an unbearable disease with limited treatment success. IL-17A exhibits a complex role in tissue remodelling. Nevertheless, the precise role and underlying mechanisms of IL-17A in CCF under denervation remain unclear. PCR array was employed to identified differentially expressed genes between neurogenic ED and normal rats. IL-17A expression and its main target cells were analyzed using Western blotting, immunofluorescence and immunohistochemistry. The phenotypic regulation of IL-17A on corpus cavernosum smooth muscle cells (CSMCs) was evaluated by cell cycle experiments and SA-β-Gal staining. The mechanism of IL-17A was elucidated using non-target metabolomics and siRNA technique. Finally, IL-17A antagonist and ABT-263 (an inhibitor of B-cell lymphoma 2/w/xL) were utilized to enhance the therapeutic effect in a rat model of neurogenic ED. IL-17A emerged as the most significantly upregulated gene in the corpus cavernosum of model rats. It augmented the senescence transformation and fibrotic response of CSMCs, and exhibited a strong correlation with CCF. Mechanistically, IL-17A facilitated CCF by activating the mTORC2-ACACA signalling pathway, upregulating of CSMCs lipid synthesis and senescence transition, and increasing the secretion of fibro-matrix proteins. In vivo, the blockade of IL-17A-senescence signalling improved erectile function and alleviated CCF in neurogenic ED. IL-17A assumes a pivotal role in denervated CCF by activating the mTORC2-ACACA signalling pathway, presenting itself as a potential therapeutic target for effectively overcoming CCF and erection rehabilitation in neurogenic ED. IL-17A is significantly upregulated in the corpus cavernosum under denervated conditions, promoting the senescence transformation and fibrotic response of corpus cavernosum smooth muscle cells, primarily through the activation of the mTORC2-ACACA signalling pathway. Blocking the IL-17A-senescence signalling axis can improve erectile function and alleviate corpus cavernosum fibrosis, suggesting that this pathway represents a potential therapeutic target for neurogenic erectile dysfunction.
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IL-17A 通过 mTORC2-ACACA 通路诱导海绵体细胞衰老,从而加剧海绵体纤维化和神经源性勃起功能障碍
神经源性勃起功能障碍以神经修复障碍和进行性海绵体纤维化(CCF)为特征,是一种难以忍受的疾病,治疗效果有限。IL-17A 在组织重塑中发挥着复杂的作用。然而,IL-17A 在去神经支配下的 CCF 中的确切作用和内在机制仍不清楚。研究人员利用 PCR 阵列鉴定了神经源性 ED 大鼠和正常大鼠的差异表达基因。利用 Western 印迹、免疫荧光和免疫组化分析了 IL-17A 的表达及其主要靶细胞。通过细胞周期实验和 SA-β-Gal 染色评估了 IL-17A 对海绵体平滑肌细胞(CSMC)的表型调控。利用非靶代谢组学和 siRNA 技术阐明了 IL-17A 的作用机制。最后,利用IL-17A拮抗剂和ABT-263(一种B细胞淋巴瘤2/w/xL抑制剂)增强了神经源性ED大鼠模型的治疗效果。在模型大鼠的海绵体中,IL-17A 是上调最明显的基因。它增强了 CSMC 的衰老转化和纤维化反应,并与 CCF 密切相关。从机制上讲,IL-17A 通过激活 mTORC2-ACACA 信号通路、上调 CSMCs 脂质合成和衰老转化以及增加纤维基质蛋白的分泌来促进 CCF。在体内,阻断IL-17A-衰老信号传导可改善神经源性 ED 的勃起功能并缓解 CCF。通过激活 mTORC2-ACACA 信号通路,IL-17A 在去神经支配的 CCF 中起着关键作用,因此它是有效克服神经源性 ED 中 CCF 和勃起康复的潜在治疗靶点。在去神经支配条件下,IL-17A 在海绵体中明显上调,主要通过激活 mTORC2-ACA 信号通路促进海绵体平滑肌细胞的衰老转化和纤维化反应。阻断IL-17A-衰老信号轴可改善勃起功能并减轻海绵体纤维化,这表明该通路是神经源性勃起功能障碍的潜在治疗靶点。
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来源期刊
BMC Medicine
BMC Medicine 医学-医学:内科
CiteScore
13.10
自引率
1.10%
发文量
435
审稿时长
4-8 weeks
期刊介绍: BMC Medicine is an open access, transparent peer-reviewed general medical journal. It is the flagship journal of the BMC series and publishes outstanding and influential research in various areas including clinical practice, translational medicine, medical and health advances, public health, global health, policy, and general topics of interest to the biomedical and sociomedical professional communities. In addition to research articles, the journal also publishes stimulating debates, reviews, unique forum articles, and concise tutorials. All articles published in BMC Medicine are included in various databases such as Biological Abstracts, BIOSIS, CAS, Citebase, Current contents, DOAJ, Embase, MEDLINE, PubMed, Science Citation Index Expanded, OAIster, SCImago, Scopus, SOCOLAR, and Zetoc.
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