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Ischemia impacts multiple organ systems and is the major cause of morbidity and mortality in the developed world. Ischemia disrupts tissue homeostasis, driving cell death, and damages tissue structure integrity. Strategies to heal organs, like the infarcted heart, or to replace cells, as done in pancreatic islet -cell transplantations, are often hindered by ischemic conditions. Here, it is discovered that the basement membrane glycoprotein nidogen-1 attenuates the apoptotic effect of hypoxia in cardiomyocytes and pancreatic -cells via the v3 integrin and beneficially modulates immune responses in vitro. It is shown that nidogen-1 significantly increases heart function and angiogenesis, while reducing fibrosis, in a mouse postmyocardial infarction model. These results demonstrate the protective and regenerative potential of nidogen-1 in ischemic conditions.
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http://dx.doi.org/10.1002/advs.202002500 | DOI Listing |
Circulation
September 2025
Cardiology Unit, Department of Cardiac, Thoracic, Vascular Sciences and Public Health, University of Padua, Italy (M.P.M).
Cardiac adipose tissue is normally present in the epicardium, but a variable amount can also be present in the myocardium, particularly in the subepicardial regions of the right ventricular anterolateral and apical regions. Pathological adipose tissue changes may occur in both ischemic (previous myocardial infarction) and nonischemic (previous myocarditis, arrhythmogenic cardiomyopathy, lipomatous hypertrophy of the interatrial septum, cardiac lipomas and liposarcomas) conditions, with or without extensive replacement-type myocardial fibrosis. Cardiac magnetic resonance is the gold standard imaging technique to characterize myocardial tissue changes and to distinguish between physiological and pathological cardiac fat deposits.
View Article and Find Full Text PDFAm J Physiol Regul Integr Comp Physiol
September 2025
National Aplysia Resource. Rosenstiel School of Marine, Atmospheric, and Earth Science, University of Miami, Key Biscayne, FL, USA.
Current therapeutics for hypoxic/ischemic brain damage can benefit from insights resulting from the study of hypoxia/anoxia resistant organisms. Hypoxia resistance, however, is not a common feature in mammalian models. Being naturally exposed to hypoxic/anoxic conditions, the sea hare could become a very useful model for the study of hypoxia resistance.
View Article and Find Full Text PDFAm J Case Rep
September 2025
Department of Medicine, Infectious Disease Section, King Fahad Specialist Hospital, Dammam, Saudi Arabia.
BACKGROUND Gastrointestinal mucormycosis is an underrecognized and underreported fungal infection with a high mortality rate. Diagnosis is often confounded by a non-specific constellation of signs and symptoms. We present a case of neutropenic colitis and ileocecal perforation secondary to gastrointestinal mucormycosis.
View Article and Find Full Text PDFJ Vis Exp
August 2025
Department of Surgery, Division of Cardiothoracic Surgery, Warren Alpert Medical School, Brown University; Cardiovascular Research Center, Rhode Island Hospital.
Reproducibility and research integrity are foundational tenets to scientific discovery, which are produced utilizing well-established, proven principles and protocols. Furthermore, with the ever-increasing prevalence and burden cardiovascular disease (CVD) places on individuals and society at large, it deems essential to cultivate robust and validated model for investigation. Our group utilizes a two-surgery protocol in a swine model that has been progressively refined over the last twenty years, in which we first induce chronic myocardial ischemia by placement of an ameroid constrictor mimicking the pathophysiology of coronary artery disease (CAD) in humans.
View Article and Find Full Text PDFJ Vis Exp
August 2025
Department of Cardiology, First Hospital of Nanping City affiliated to Fujian Medical University;
Myocardial ischemia-reperfusion injury (MIRI) endures as a substantial impediment to the management of cardiovascular disease. The pathophysiology of MIRI is complex, involving oxidative stress, calcium overload, inflammation, and apoptosis. The NRG1/ErbB4 signaling pathway has been implicated in modulating oxidative stress responses in the heart, potentially reducing cellular damage caused by free radicals.
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