Background: Pulmonary vascular remodeling in pulmonary hypertension (PH) is characterized by increased vascular smooth muscle cell (SMC) and adventitial fibroblast proliferation, small vessel occlusion, and inflammatory cell accumulation. The underlying molecular mechanisms driving progression remain poorly defined. We have focused on loss of the phosphatase PTEN in SMCs as a major driver of pathological vascular remodeling. Our goal was to define the role of PTEN in human PH and in hypoxia-induced PH using a mouse model with inducible deletion of PTEN in SMCs.
Methods And Results: Staining of human biopsies demonstrated enhanced inactive PTEN selectively in the media from hypertensive patients compared to controls. Mice with induced deletion of PTEN in SMCs were exposed to normoxia or hypoxia for up to 4 weeks. Under normoxia, SMC PTEN depletion was sufficient to induce features of PH similar to those observed in wild-type mice exposed to chronic hypoxia. Under hypoxia, PTEN depletion promoted an irreversible progression of PH characterized by increased pressure, extensive pulmonary vascular remodeling, formation of complex vascular lesions, and increased macrophage accumulation associated with synergistic increases in proinflammatory cytokines and proliferation of both SMCs and nonSMCs.
Conclusions: Chronic inactivation of PTEN selectively in SMC represents a critical mediator of PH progression, leading to cell autonomous events and increased production of factors correlated to proliferation and recruitment of adventitial and inflammatory cells, resulting in irreversible progression of the disease.
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http://dx.doi.org/10.1161/JAHA.113.000188 | DOI Listing |
iScience
January 2025
Department of Visceral, Vascular and Endocrine Surgery, Martin-Luther-University Halle-Wittenberg, University Medical Center Halle, 06120 Halle (Saale), Germany.
Pancreatic ductal adenocarcinoma (PDAC) is characterized by aggressive growth and metastasis, partly driven by fibroblast-mediated stromal interactions. Using RNA sequencing of fibroblasts from early-stage KPC mouse models, we identified significant upregulation of genes involved in adipogenesis, fatty acid metabolism, and the ROS pathway. ANGPTL4, a key adipogenesis regulator, was highly expressed in fibroblasts and promoted pancreatic cancer cell proliferation and migration through paracrine signaling.
View Article and Find Full Text PDFJ Prev Alzheimers Dis
January 2025
Division of Metabolism, Endocrinology and Diabetes, Department of Internal Medicine, University of Michigan, Ann Arbor, MI, USA.
Background: Atrial fibrillation (AF) has been associated with elevated dementia risk, while few studies have examined the role of the optimal glycemic status in disease trajectories of AF and dementia.
Objectives: We aim to evaluate associations between glycemic status with disease trajectories of AF and dementia, as well as major dementia subtypes, including Alzheimer's disease and vascular dementia.
Design: Population-based cohort study.
Nephrol Dial Transplant
January 2025
Division of Nephrology and Section of Mineral Metabolism, Department of Medicine, Heersink School of Medicine, The University of Alabama at Birmingham, Birmingham, AL, USA.
Elevations in systemic phosphate levels, also called hyperphosphatemia, occur in chronic kidney disease (CKD) and during the normal aging process and are associated with various pathologies, such as cardiovascular injury. Experimental studies suggest that at high serum concentrations, phosphate can induce osteogenic differentiation of vascular smooth muscle cells and contribute to vascular calcification. However, the precise underlying mechanism leading to cardiovascular injury is not well understood.
View Article and Find Full Text PDFMedicine (Baltimore)
November 2024
Department of Cardiology and Institute of Vascular Medicine, Peking University Third Hospital, Beijing, China.
Studies have shown that uremia, renal failure and heart failure (HF) are closely related. However, whether this association reflects a causal effect is still unclear. The aim of this study was to evaluate the causal effect of uremic metabolites or toxins on HF.
View Article and Find Full Text PDFJ Surg Res
January 2025
Department of Neonatology, Children's Hospital Affiliated to Shandong University, Jinan, ShanDong, China. Electronic address:
Introduction: Sildenafil, a selective phosphodiesterase 5 inhibitor, modulates vascular dysfunction, with hypoxia-induced pulmonary artery smooth muscle cells (PASMCs) proliferation, migration, and invasion closely implicated in vascular remodeling in persistent pulmonary hypertension of the newborn (PPHN). This study aimed to assess sildenafil's protective effects against PPHN and elucidate underlying molecular pathways.
Methods: Cell Counting Kit-8, wound healing, and Transwell assays evaluated rat PASMC proliferation, migration, and invasion under hypoxia.
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