Results 51 to 60 of about 37,789 (262)
Gut microbiota dysbiosis augments atherosclerosis in LDLR-/- mice [PDF]
Aim: In recent years the gut microbiome has been recognized as an important participant in the etiology of obesity and -associated comorbidities. Moreover, recent studies have implicated an involvement of the gut microbiota in both cardiovascular health ...
Niels Kloosterhuis +23 more
core +1 more source
To obtain a panel of monoclonal antibodies (MAbs) to study the folding and conformation of the low density lipoprotein receptor (LDLr), we have generated hybridomas from LDLr-deficient mice that had been immunized with the extracellular domain of the ...
Anh T. Nguyen +4 more
doaj +1 more source
Background Patients with familial hypercholesterolemia who harbored both low‐density lipoprotein receptor (LDLR) and PCSK9 (proprotein convertase subtilisin/kexin type 9) gene variants exhibit severe phenotype associated with substantially high levels of
Takahito Doi +13 more
doaj +1 more source
CD72hi macrophages drive endothelial pyroptosis and accelerate atherosclerosis through CXCL12–CXCR4‐mediated immune–vascular crosstalk. Ilexoside K suppresses this pathogenic communication by modulating CXCR4‐dependent endothelial responses, reducing inflammation and plaque progression. These findings reveal a macrophage–endothelial regulatory axis and
Xingling He +11 more
wiley +1 more source
Expression of wt LDLr and p.(Cys46Gly) LDLr variant in CHO-ldlA7 transfected cells.
Expression of LDLr was assessed 48 h post-transfection with the corresponding plasmids by A) Western blot, B) mature LDLr protein relative to GAPDH. LDLr expression of p.(Cys46Gly) LDLr variant determined by FACS with C) IgG-C7 antibody that recognizes ...
U. Galicia-Garcia (5866481) +11 more
core +1 more source
Schematic diagram of the core pathways of the liver‐brain axis in regulating AD. The liver regulates cerebral Aβ deposition, tau phosphorylation, and neuroinflammation through pathways such as metabolic detoxification (urea cycle, ketone body metabolism, glutathione antioxidant system), molecular secretion (APOE, CRP, FGF21, IGF‐1), and Aβ clearance ...
Ning Zhang, Wei Chen, Meng Wang
wiley +1 more source
A hipercolesterolemia e o envelhecimento como modulares do estresse oxidativo em modelo de hipercolesterolemia familiar [PDF]
Dissertação (mestrado) - Universidade Federal de Santa Catarina, Centro de Ciências Biológicas. Programa de Pós-Graduação em Bioquímica, Florianópolis, 2013Por prover informações sobre o do funcionamento do metabolismo de seres vivos, antigas formações ...
Mancini, Gianni
core
Calcium score distribution across AVCS in LDLR-M and LDLR-WT groups.
Data in particular ranges are expressed as % of each calcium score subgroup. Abbreviations: LDLR-M–patients with familial hypercholesterolemia and LDLR mutation, LDLR-WT–nonfamilial hypercholesterolemia, AVCS—aortic valve calcium score.
Michał Studniarek (846526) +8 more
core +1 more source
LDLR c.415G > A causes familial hypercholesterolemia by weakening LDLR binding to LDL
Abstract Background Familial hypercholesterolemia (FH) is a prevalent hereditary disease that can cause aberrant cholesterol metabolism. In this study, we confirmed that c.415G > A in low-density lipoprotein receptor ( LDLR ),
Kaihan Wang +6 more
openaire +3 more sources
Objective: Principal component analysis is a powerful dimensionality reduction tool that can uncover hidden patterns in complex biological data. In cellular immunology research, principal component analysis may help identify meaningful relationships ...
Mănescu Ion Bogdan +4 more
doaj +1 more source

