PubMed چکیده/رکورد

Relaxin inhibits renal interstitial fibrosis and promotes fatty acid metabolism after UUO via the AMPK/PGC1α signaling pathway.

استودیوی صوتی مقاله

پخش حرفه‌ای فارسی و انگلیسی

در حال بررسی نسخه‌های صوتی ذخیره‌شده…

صوت تولیدشده با هوش مصنوعی است. برای کاربرد علمی یا درمانی، متن و منبع اصلی را بررسی کنید.
خواندن هوشمند فارسی و انگلیسی در حال آماده‌سازی صداهای مرورگر…
تنظیم صدای طبیعی و سرعت

صداهایی که در نامشان «Natural»، «Neural» یا «Online» دیده می‌شود معمولاً طبیعی‌ترند. انتخاب صدا به صداهای نصب‌شده در ویندوز و مرورگر شما بستگی دارد.

چکیده اصلی

Renal tubulointerstitial fibrosis, as the common final pathological outcome of almost all progressive chronic kidney diseases (CKD), is challenging to reverse. Although CKD remains incurable, reversal or amelioration of renal fibrosis is beneficial to retard CKD progression. In this study, based on our in vitro and in vivo studies, we found that relaxin, a human hormone with promising renal protection effects, was closely related to ameliorating tubular injury and reversing tubulointerstitial fibrosis in the obstructed kidney in the mouse model of unilateral ureteral obstruction (UUO). Downregulation of relaxin was accompanied by the development of tubulointerstitial fibrosis and tubular epithelial fatty acid oxidation (FAO) disorder. Furthermore, overexpression of relaxin significantly alleviated, whereas knockdown of relaxin extremely aggravated the process of renal interstitial fibrosis following UUO and FAO disorder in mouse tubular epithelial cells (mTECs). Mechanistically, AMP-activated protein kinase (AMPK)/peroxisome proliferator-activated receptor-gamma coactivator 1α (PGC1α) pathway was validated as a downstream pathway of relaxin, which participated in the regulation of renal interstitial fibrosis. Our findings suggest that upregulation of relaxin positively alleviated renal tubulointerstitial fibrosis in UUO-induced CKD via AMPK-PGC1α axis, which gives insight into novel therapeutic and diagnostic targets of CKD.

متن کامل اصلی

متن در JumpToDate ذخیره نشده است.

برای بررسی دسترسی کتابخانه‌ای یا خرید، رکورد اصلی را باز کنید.

رفتن به منبع اصلی

کلیدواژه‌ها

AMPK/PGC1α signalingFAORenal interstitial fibrosisrelaxin
در همین زیرشاخه

مقاله‌های مرتبط

PubMed2026

Fibrinogen-like protein 2-complement C3 interaction exacerbates tubular inflammation in acute kidney injury by elevating complement C3a levels.

Renal tubular epithelial cells are among the earliest renal parenchymal cells to be injured in the context of acute kidney injury (AKI). Numerous studies have confirmed that fibrinogen-like protein 2 (FGL2) can regulate the occurrence and development of inflammation during disease progression. We found that FGL2 expression is elevated under AKI conditions. However, the role of FGL2 in AKI remains unclear. To elucidate the role of FGL2 …

PubMed2026

E4BP4 restrains effector-memory CD8+ T cell responses in systemic lupus erythematosus.

Increasing evidence shows that CD8+ T cells are the pathogenic mediators of tissue injury in systemic lupus erythematosus (SLE), sustaining the chronic inflammation through the accumulation of long-lived cytotoxic memory populations. However, the transcriptional mechanisms that prevent the aberrant differentiation of pathogenic CD8+ T cells remain poorly understood. Here, the transcription factor E4BP4 (NFIL3) was identified as a criti…

PubMed2026

Dynamic flexibility of the murine gut microbiota during morphine disturbance enables escape from the stable dysbiosis that is associated with addiction-like behavior.

Although opioids are effective analgesics, they can lead to problematic drug use behaviors that underlie opioid use disorder (OUD). Opioids also cause gut microbiota dysbiosis, which is linked to altered opioid responses. We used a longitudinal paradigm of voluntary oral morphine self-administration to capture multiple facets of drug seeking and preserve both individual behavioral responses and individual gut microbiota variation to in…

PubMed2026

Gut-derived genistein from Parabacteroides distasonis alleviates psoriatic inflammation via CD200-mediated NF-κB inhibition in mice.

The gut-skin axis plays a pivotal role in psoriasis pathogenesis, yet the precise metabolic crosstalk by which intestinal commensals regulate cutaneous immunity remains elusive. Here, we identify a functional "microbe-enzyme-metabolite-immune" axis that orchestrates skin homeostasis. Through multi-omics analyses of psoriatic patients and imiquimod-induced murine models, we reveal a significant depletion of the gut commensal Parabactero…