Results 101 to 110 of about 3,741 (219)

Comparative analysis of caveolins in mouse and tammar wallaby: Role in regulating mammary gland function

open access: yes, 2014
Comparative analysis of caveolins in mouse and tammar wallaby: Role in regulating mammary gland ...
S Kuruppath (13662376)   +4 more
core  

A deeper look into the cellular caves: Caveolins, cavins and popdc proteins in cardioprotection

open access: yes, 2017
Cardioprotection is a promising novel therapeutic for the treatment of ischemic heart disease (IHD). Various cardioprotective methods such as ischemic, anesthetic and G-protein-coupled-receptor (GPCR) based preconditioning have been shown to be reliant ...
Kiessling, Can, Ashton, Kevin John
core   +1 more source

From senescence and inflammaging to systemic comorbidities: Drivers of aging‐associated periodontitis

open access: yesPeriodontology 2000, EarlyView.
Abstract Background Aging is accompanied by a chronic low‐grade inflammatory process, known as inflammaging, as well as immunosenescence, an age‐related decline and dysregulation of immune function, and cellular senescence, a process in which cells enter a state of irreversible growth arrest while actively releasing pro‐inflammatory factors.
James Cheng   +4 more
wiley   +1 more source

Induction of caveolins by adenoviral transduction of MRTF-A and myocardin.

open access: yes, 2015
(A) Adenoviral transduction of human coronary artery smooth muscle cells with MRTF-A (MKL1, 20 MOI) increased expression of caveolin-1 and caveolin-2, but not caveolin-3 mRNA compared to empty virus.
Ola Hansson (88199)   +11 more
core   +1 more source

Understanding exosomes in diabetic wound healing

open access: yesPeriodontology 2000, EarlyView.
Abstract Background Diabetic wounds signify a major complication of diabetes mellitus, characterized by chronic inflammation, compromised angiogenesis, and high risk of infection, amputation, and mortality. Contemporary therapies remain limited in efficacy and durability.
Paras Ahmad   +4 more
wiley   +1 more source

Caveolins and flotillin-2 are present in the blood stages of Plasmodium vivax.

open access: yes, 2006
Blood stages of Plasmodium vivax induce the development of caveolae and caveola–vesicle complexes (CVC) in the membrane of their host erythrocyte. Caveolae are found in almost all types of cells and are involved in endogenous processes as calcium and ...
Romano, Mirtha   +6 more
core   +1 more source

Understanding extracellular vesicle biology, isolation, and characterization: The theory of EV‐erything

open access: yesPeriodontology 2000, EarlyView.
Abstract Background Extracellular vesicles (EVs), especially exosomes, are nanoparticles increasingly recognized as key regulators of intercellular communication in both physiological and pathological aspects. Despite rapid progress, inconsistencies in nomenclature, isolation, and characterization continue to restrict translational advancement.
Paras Ahmad   +6 more
wiley   +1 more source

Functional Characterization of Caveolae and Caveolins

open access: yes
This project aims to study the cellular machinery that allows a cell to respond to its external environment. Specifically, this project focusses on the function of a family of membrane proteins, called caveolins, which are the major protein components of

core  

Polarization of caveolins and caveolae during migration of immortalized neurons

open access: yes, 2008
During CNS development neurons undergo directional migration to achieve their adult localizations. To study neuronal migration, we used a model cell line of immortalized murine neurons (gonadotropin-releasing hormone expressing neurons; GN11), enriched ...
F. Pimpinelli   +7 more
core   +1 more source

TMEM16A channel signalling microdomains in the regulation of vascular function

open access: yesThe Journal of Physiology, EarlyView.
Abstract figure legend Schematic representation of TMEM16A channel signalling microdomains. Calcium influx or calcium release from the endoplasmic/sarcoplasmic reticulum (ER/SR) activates TMEM16A channels through interactions with regulatory proteins in vascular smooth muscle cells or endothelial cells. TMEM16A channel activation drives chloride efflux,
Fênix Araujo, Swapnil K. Sonkusare
wiley   +1 more source

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