1,110 results on '"Jauhiainen, Matti"'
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2. PCSK9 Antibodies Treatment Specifically Enhances the Macrophage-specific Reverse Cholesterol Transport Pathway in Heterozygous Familial Hypercholesterolemia
3. Human HDL subclasses modulate energy metabolism in skeletal muscle cells
4. Genetic architecture of human plasma lipidome and its link to cardiovascular disease.
5. Coronary Artery Disease Risk and Lipidomic Profiles Are Similar in Hyperlipidemias With Family History and Population‐Ascertained Hyperlipidemias
6. Streptococcus pneumoniae pneumolysin and neuraminidase A convert high-density lipoproteins into pro-atherogenic particles
7. Three two-site apoA-I immunoassays using phage expressed detector antibodies – Preliminary clinical evaluation with cardiac patients
8. Fasting reveals largely intact systemic lipid mobilization mechanisms in respiratory chain complex III deficient mice
9. ApoA-I mimetic administration, but not increased apoA-I-containing HDL, inhibits tumour growth in a mouse model of inherited breast cancer.
10. Cholesterol loading suppresses the atheroinflammatory gene polarization of human macrophages induced by colony stimulating factors
11. Menaquinone 4 increases plasma lipid levels in hypercholesterolemic mice
12. Hematopoietic upstream stimulating factor 1 deficiency is associated with increased atherosclerosis susceptibility in LDL receptor knockout mice
13. Dietary cholesterol is essential to mast cell activation and associated obesity and diabetes in mice
14. Amerindian-specific regions under positive selection harbour new lipid variants in Latinos.
15. Human HDL subclasses modulate energy metabolism in skeletal muscle cells
16. New medications targeting triglyceride-rich lipoproteins: Can inhibition of ANGPTL3 or apoC-III reduce the residual cardiovascular risk?
17. PCSK9 inhibition alters the lipidome of plasma and lipoprotein fractions
18. Extracellular Lipids Accumulate in Human Carotid Arteries as Distinct Three-Dimensional Structures and Have Proinflammatory Properties
19. IgE Contributes to Atherosclerosis and Obesity by Affecting Macrophage Polarization, Macrophage Protein Network, and Foam Cell Formation
20. LXR-dependent regulation of macrophage-specific reverse cholesterol transport is impaired in a model of genetic diabesity
21. Effects of atorvastatin and diet interventions on atherosclerotic plaque inflammation and [18F]FDG uptake in Ldlr−/−Apob100/100 mice
22. LDL Receptor Regulates the Reverse Transport of Macrophage-Derived Unesterified Cholesterol via Concerted Action of the HDL-LDL Axis: Insight From Mouse Models
23. HDL Biogenesis, Remodeling, and Catabolism
24. A loss-of-function variant in OSBPL1A predisposes to low plasma HDL cholesterol levels and impaired cholesterol efflux capacity
25. Identification and analysis of anti-HDL scFv-antibodies obtained from phage display based synthetic antibody library
26. Impaired HDL (High-Density Lipoprotein)-Mediated Macrophage Cholesterol Efflux in Patients With Abdominal Aortic Aneurysm
27. Metabolomic Signature of Angiopoietin-Like Protein 3 Deficiency in Fasting and Postprandial State
28. Rapid affinity chromatographic isolation method for LDL in human plasma by immobilized chondroitin-6-sulfate and anti-apoB-100 antibody monolithic disks in tandem
29. Caspase-2 and p75 neurotrophin receptor (p75NTR) are involved in the regulation of SREBP and lipid genes in hepatocyte cells
30. USF1 deficiency alleviates inflammation, enhances cholesterol efflux and prevents cholesterol accumulation in macrophages
31. Neutrophil proteinase 3 — An LDL- and HDL-proteolyzing enzyme with a potential to contribute to cholesterol accumulation in human atherosclerotic lesions
32. Kupffer cells dictate hepatic responses to the atherogenic dyslipidemic insult
33. Time-resolved fluorescence based direct two-site apoA-I immunoassays and their clinical application in patients with suspected obstructive coronary artery disease
34. Deletion of Lymphangiogenic and Angiogenic Growth Factor VEGF-D Leads to Severe Hyperlipidemia and Delayed Clearance of Chylomicron Remnants
35. Specific collagen XVIII isoforms promote adipose tissue accrual via mechanisms determining adipocyte number and affect fat deposition
36. The role of ANGPTL3 in controlling lipoprotein metabolism
37. Very low density lipoproteins derived from periodontitis patients facilitate macrophage activation via lipopolysaccharide function
38. Haptoglobin Hp2 Variant Promotes Premature Cardiovascular Death in Stroke Survivors
39. High-fat meals induce systemic cytokine release without evidence of endotoxemia-mediated cytokine production from circulating monocytes or myeloid dendritic cells
40. The HDL particle composition determines its antitumor activity in pancreatic cancer
41. Apolipoprotein A-I, apolipoprotein B, and apolipoprotein B/apolipoprotein A-I ratio: Reference intervals compared with values in different pathophysiological conditions from the FINRISK 2007 study
42. Dry Eye Symptoms Are Increased in Mice Deficient in Phospholipid Transfer Protein (PLTP)
43. Partial-filling affinity capillary electrophoresis and quartz crystal microbalance with adsorption energy distribution calculations in the study of biomolecular interactions with apolipoprotein E as interaction partner
44. Nerve growth factor (NGF) and pro-NGF increase low-density lipoprotein (LDL) receptors in neuronal cells partly by different mechanisms: role of LDL in neurite outgrowth
45. HDL Biogenesis, Remodeling, and Catabolism
46. Partial filling affinity capillary electrophoresis with cationic poly(vinylpyrrolidone)-based copolymer coatings for studies on human lipoprotein–steroid interactions
47. Increased apolipoprotein E level and reduced high-density lipoprotein mean particle size associate with low high-density lipoprotein cholesterol and features of metabolic syndrome
48. Human Plasma Lecithin:Cholesterol Acyltransferase (LCAT) On the role of essential carboxyl groups in catalysis
49. The homeoviscous adaptation to dietary lipids (HADL) hypothesis is probably incorrect
50. Children with familial hypercholesterolemia display changes in LDL and HDL function: A cross‐sectional study
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