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A Rare Olive Compound Oleacein Improves Lipid and Glucose Metabolism, and Inflammatory Functions: A Comprehensive Whole-Genome Transcriptomics Analysis in Adipocytes Differentiated from Healthy and Diabetic Adipose Stem Cells
by
Farhana Ferdousi
, Kenichi Tominaga
, Munkhzul Ganbold
, Rui Wang
, Hiroko Isoda
in
Adipocytes
/ Adipocytes - metabolism
/ Body fat
/ Cardiovascular disease
/ Cell cycle
/ Dextrose
/ Diabetes
/ Diabetes Mellitus
/ Diabetes Mellitus - drug therapy
/ Diabetes Mellitus - metabolism
/ DNA microarrays
/ Gene expression
/ Genes
/ Genetic research
/ Genetic transcription
/ Genomes
/ Genomics
/ Glucose
/ Glucose - metabolism
/ Humans
/ Immune system
/ Insulin resistance
/ Kinases
/ Lipid Metabolism
/ Lipids
/ Metabolism
/ Obesity
/ Olea
/ oleacein; olive compound; human adipose-derived stem cells; DNA microarray analysis; lipid metabolism; anti-inflammatory effect; glucose and lipid homeostasis
/ Olive Oil
/ Olive Oil - pharmacology
/ Physiological aspects
/ Proteins
/ Scientific equipment and supplies industry
/ Stem Cells
/ T cell receptors
/ Transcriptome
/ Type 2 diabetes
/ Whole genome sequencing
2023
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A Rare Olive Compound Oleacein Improves Lipid and Glucose Metabolism, and Inflammatory Functions: A Comprehensive Whole-Genome Transcriptomics Analysis in Adipocytes Differentiated from Healthy and Diabetic Adipose Stem Cells
by
Farhana Ferdousi
, Kenichi Tominaga
, Munkhzul Ganbold
, Rui Wang
, Hiroko Isoda
in
Adipocytes
/ Adipocytes - metabolism
/ Body fat
/ Cardiovascular disease
/ Cell cycle
/ Dextrose
/ Diabetes
/ Diabetes Mellitus
/ Diabetes Mellitus - drug therapy
/ Diabetes Mellitus - metabolism
/ DNA microarrays
/ Gene expression
/ Genes
/ Genetic research
/ Genetic transcription
/ Genomes
/ Genomics
/ Glucose
/ Glucose - metabolism
/ Humans
/ Immune system
/ Insulin resistance
/ Kinases
/ Lipid Metabolism
/ Lipids
/ Metabolism
/ Obesity
/ Olea
/ oleacein; olive compound; human adipose-derived stem cells; DNA microarray analysis; lipid metabolism; anti-inflammatory effect; glucose and lipid homeostasis
/ Olive Oil
/ Olive Oil - pharmacology
/ Physiological aspects
/ Proteins
/ Scientific equipment and supplies industry
/ Stem Cells
/ T cell receptors
/ Transcriptome
/ Type 2 diabetes
/ Whole genome sequencing
2023
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Do you wish to request the book?
A Rare Olive Compound Oleacein Improves Lipid and Glucose Metabolism, and Inflammatory Functions: A Comprehensive Whole-Genome Transcriptomics Analysis in Adipocytes Differentiated from Healthy and Diabetic Adipose Stem Cells
by
Farhana Ferdousi
, Kenichi Tominaga
, Munkhzul Ganbold
, Rui Wang
, Hiroko Isoda
in
Adipocytes
/ Adipocytes - metabolism
/ Body fat
/ Cardiovascular disease
/ Cell cycle
/ Dextrose
/ Diabetes
/ Diabetes Mellitus
/ Diabetes Mellitus - drug therapy
/ Diabetes Mellitus - metabolism
/ DNA microarrays
/ Gene expression
/ Genes
/ Genetic research
/ Genetic transcription
/ Genomes
/ Genomics
/ Glucose
/ Glucose - metabolism
/ Humans
/ Immune system
/ Insulin resistance
/ Kinases
/ Lipid Metabolism
/ Lipids
/ Metabolism
/ Obesity
/ Olea
/ oleacein; olive compound; human adipose-derived stem cells; DNA microarray analysis; lipid metabolism; anti-inflammatory effect; glucose and lipid homeostasis
/ Olive Oil
/ Olive Oil - pharmacology
/ Physiological aspects
/ Proteins
/ Scientific equipment and supplies industry
/ Stem Cells
/ T cell receptors
/ Transcriptome
/ Type 2 diabetes
/ Whole genome sequencing
2023
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A Rare Olive Compound Oleacein Improves Lipid and Glucose Metabolism, and Inflammatory Functions: A Comprehensive Whole-Genome Transcriptomics Analysis in Adipocytes Differentiated from Healthy and Diabetic Adipose Stem Cells
Journal Article
A Rare Olive Compound Oleacein Improves Lipid and Glucose Metabolism, and Inflammatory Functions: A Comprehensive Whole-Genome Transcriptomics Analysis in Adipocytes Differentiated from Healthy and Diabetic Adipose Stem Cells
2023
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Overview
Oleacein (OLE), a rare natural compound found in unfiltered extra virgin olive oil, has been shown to have anti-inflammatory and anti-obesity properties. However, little is known regarding the mechanisms by which OLE influences metabolic processes linked to disease targets, particularly in the context of lipid metabolism. In the present study, we conducted whole-genome DNA microarray analyses in adipocytes differentiated from human adipose-derived stem cells (hASCs) and diabetic hASCs (d-hASCs) to examine the effects of OLE on modulating metabolic pathways. We found that OLE significantly inhibited lipid formation in adipocytes differentiated from both sources. In addition, microarray analysis demonstrated that OLE treatment could significantly downregulate lipid-metabolism-related genes and modulate glucose metabolism in both adipocyte groups. Transcription factor enrichment and protein–protein interaction (PPI) analyses identified potential regulatory gene targets. We also found that OLE treatment enhanced the anti-inflammatory properties in adipocytes. Our study findings suggest that OLE exhibits potential benefits in improving lipid and glucose metabolism, thus holding promise for its application in the management of metabolic disorders.
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