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Thoracic aortopathy is influenced by angiotensin II (AngII) and exhibits regional heterogeneity with the ascending aorta being particularly susceptible. In this region, smooth muscle cells (SMCs) and selected fibroblasts originate from the second heart field (SHF) and cardiac neural crest (CNC). While our previous study revealed a critical role of SHF-derived cells in AngII-mediated aortopathy, the contribution of CNC-derived cells remains unclear. To investigate lineage-specific responses to AngII, Mef2c-Cre R26RmT/mG mice were infused with AngII. Ascending aortas were harvested at baseline or after 3 days of infusion, representing the prepathological phase. Cells were sorted based on their embryonic origins and single-cell RNA sequencing was performed. Transcriptomic analysis revealed significant changes in both SHF- and nSHF-derived SMCs following short-term AngII infusion, although differences between the origins were modest. Similarly, fibroblast transcriptomes exhibited notable changes, yet lineage-specific differences remained modest, except for a newly identified fibroblast subpopulation where extracellular matrix-related genes such as Eln and Col3a1 were downregulated in SHF-derived fibroblasts compared to nSHF-derived fibroblasts. These findings suggest that while fibroblasts in the new subcluster exhibit lineage-specific extracellular matrix-related differences, overall transcriptomic variations between SHF- and nSHF-derived cells in response to AngII remain modest during the prepathological phase of AngII-induced thoracic aortopathy.
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http://dx.doi.org/10.1038/s41598-025-99862-4 | DOI Listing |
Front Med (Lausanne)
August 2025
Royal College of Surgeons in Ireland - Bahrain, Al-Muharraq, Bahrain.
Introduction: Ischemic heart disease (IHD) remains a major global health burden, highlighting the urgent need for early, non-invasive diagnostic biomarkers. MicroRNAs (miRNAs), small non-coding RNA molecules that regulate gene expression, have emerged as promising candidates due to their stability in circulation and involvement in cardiovascular processes. This systematic review aimed to evaluate the potential of specific miRNAs as early diagnostic biomarkers in IHD.
View Article and Find Full Text PDFJ Interferon Cytokine Res
September 2025
Department of Nephrology, The First Affiliated Hospital of Guangxi University of Chinese Medicine, Guangxi, China.
Hirudin, a polypeptide extracted from medicinal leeches, has demonstrated potential in treating renal fibrosis. This study aimed to explore the underlying mechanisms by which Hirudin alleviates renal fibrosis. Renal fibrosis models were established using unilateral ureteral obstruction (UUO) surgery in rats and transforming growth factor-β (TGF-β)-induced HK-2 cells, followed by treatment with different concentrations of Hirudin.
View Article and Find Full Text PDFCurr Drug Metab
September 2025
First School of Clinical Medicine, Yunnan University of Chinese Medicine, Kunming 650500, China.
Background: Tetrandrine (TET) demonstrates therapeutic potential for hypoxic pulmonary hypertension (HPH); however, its precise pharmacological mechanisms remain unclear. In this study, we aimed to investigate the effects of TET on pulmonary vascular remodeling (PVR) in HPH and elucidate the molecular pathways through which TET ameliorates HPH.
Methods: We established a rat model of HPH and evaluated the therapeutic effects of TET by measuring hemodynamic parameters, assessing right ventricular hypertrophy, and analyzing pathological changes in lung tissue.
Biomed Pharmacother
September 2025
Department of Anatomy and Regenerative Biology, Graduate School of Medicine, Osaka Metropolitan University, Osaka, Japan.
Liver fibrosis, which eventually leads to cirrhosis, is characterized by excessive accumulation of type I collagen (COL1A), mainly derived from activated hepatic stellate cells (HSCs). Currently, there is no clinical treatments that can directly address this condition. The objectives of this study were to identify a compound that can suppress HSC activation and elucidate the molecular mechanism underlying its action.
View Article and Find Full Text PDFLung
September 2025
The Wellcome-Wolfson Institute for Experimental Medicine, School of Medicine, Dentistry and Biomedical Sciences, Queen's University Belfast, 97 Lisburn Road, Belfast, Belfast BT9 7BL, UK.
Introduction: Rhinovirus (RV) is the leading cause of exacerbations of lung disease. A sensory neuronal model, derived from human dental pulp stem cells and differentiated into peripheral neuronal equivalents (PNEs), was used to examine RV's effects on airway sensory nerves. We investigated whether RV can directly infect and alter PNEs or whether it exerts effects indirectly via the release of mediators from infected epithelial cells.
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