Results 141 to 150 of about 39,242 (266)

Diagnostic Utility of the Milan System for Reporting Salivary Gland Cytopathology With Cytohistological Correlation

open access: yesCytopathology, EarlyView.
This retrospective study reviews 111 salivary gland fine‐needle aspiration cytology (FNAC) cases collected over an 11‐year period and reclassifies them according to the Milan System for Reporting Salivary Gland Cytopathology. Cytology‐histopathology correlation was performed for excision specimens, confirming the system's accuracy in distinguishing non‐
Shifa F. Khan   +4 more
wiley   +1 more source

The malate–aspartate shuttle supports thermogenic lipid mobilization in brown adipocytes

open access: yesThe FEBS Journal, EarlyView.
Brown fat cells burn lipids within their mitochondria to generate heat. This process involves two energy “shuttles,” one of which is naturally blocked during heat production. We found that the second shuttle (MASh) is not required to generate heat. However, when MASh is disabled, the fatty acids meant for fuel are instead converted back into stored fat.
Michaela Veliova   +12 more
wiley   +1 more source

ADAM17 and its proteolytic targets in disease pathogenesis

open access: yesThe FEBS Journal, EarlyView.
ADAM17 as a multifunctional sheddase with contrasting roles across inflammatory, metabolic, cardiovascular, and neoplastic diseases. Through regulated activation by iRhom, iTAP/FRMD8, and tetraspanins, ADAM17 cleaves diverse membrane ligands and receptors, thereby promoting inflammation, fibrosis, obesity, insulin resistance, and tumor progression ...
Abdulbasit Amin, Marina Badenes
wiley   +1 more source

Adrenergic control of proteolysis in brown adipocytes [PDF]

open access: yes, 2002
Brown adipose tissue (BAT) is a sympathetically innervated tissue involved in control of thermoregulation and energy balance. BAT growth and/or atrophy occur in response to the need for energy dissipation.
Moazed, Banafsheh
core  

Identification of brown adipocyte progenitors

open access: yes, 2020
Today’s therapy against obesity uses life style changing and/or medication, but is little promising so far. Therefore it is important to develop new and successful therapeutically strategies against obesity. Nowadays brown adipose tissue gives hope to develop new therapeutically strategies and therapies against obesity because of its energy combusting ...
openaire   +2 more sources

Fast & fuelious: the malate–aspartate shuttle in brown adipocyte lipid metabolism

open access: yesThe FEBS Journal, EarlyView.
Brown adipose tissue (BAT) produces heat in response to cold exposure, for which it relies on the coordination of aerobic and anaerobic metabolism. However, how reaction intermediates connect these two essential pathways is unclear. In this issue of The FEBS Journal, Veliova et al., report that the malate–aspartate shuttle (MAS) supports norepinephrine‐
Lukas Blaas, Alexander Bartelt
wiley   +1 more source

Single-nucleus mRNA-sequencing reveals dynamics of lipogenic and thermogenic adipocyte populations in murine brown adipose tissue in response to cold exposure

open access: yesMolecular Metabolism
Objective and methods: Brown adipose tissue (BAT) comprises a heterogeneous population of adipocytes and non-adipocyte cell types. To characterize these cellular subpopulations and their adaptation to cold, we performed single-nucleus mRNA-sequencing ...
Janina Behrens   +7 more
doaj   +1 more source

The emerging role of the Hippo signaling pathway in interorgan crosstalk

open access: yesThe FEBS Journal, EarlyView.
Hippo signaling functions as a central hub of interorgan communication. Systemic cues from the gut, adipose tissue, and skeletal muscle—including hormones, metabolites, and microbial signals—regulate YAP/TAZ activity in a tissue‐ and context‐dependent manner.
Gahyeon Song   +2 more
wiley   +1 more source

Adipocyte‐specific NIK depletion enhances energy metabolism and glucose tolerance in mice

open access: yesThe FEBS Journal, EarlyView.
Obesity is associated with reduced energy expenditure and increased hepatic lipid accumulation. This study reveals that loss of NIK in adipocytes stimulates FGF21‐driven expression of thermogenic genes, including UCP1, and mitochondrial uncoupled respiration.
Atakan Ozcan   +8 more
wiley   +1 more source

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