ACADM
- Known as:
- ACADM
- Catalog number:
- 000979A
- Product Quantity:
- 250ul
- Category:
- -
- Supplier:
- ABM
- Gene target:
- ACADM
Ask about this productRelated genes to: ACADM
- Gene:
- ACADM NIH gene
- Name:
- acyl-CoA dehydrogenase medium chain
- Previous symbol:
- -
- Synonyms:
- MCAD, MCADH, ACAD1
- Chromosome:
- 1p31.1
- Locus Type:
- gene with protein product
- Date approved:
- 1986-01-01
- Date modifiied:
- 2019-04-23
Related products to: ACADM
Related articles to: ACADM
- Dysregulated lipid metabolism and neuroinflammation are increasingly recognized as interacting contributors to Alzheimer's disease (AD), but the cell-type-specific genetic links between fatty acid metabolism and AD remain incompletely defined. This study aimed to identify fatty acid metabolism-related genes associated with AD risk and to characterize their relevance to perivascular macrophage (PVM) states. Single-cell RNA-sequencing data from GSE160936 and bulk transcriptomic data from GSE270454 were integrated to evaluate cell-type-specific fatty acid metabolism activity in AD and control samples.The primary data sources, fatty acid metabolism gene set, AUCell scoring strategy, CellChat workflow, GSEA resources, and MR software settings were specified to improve reproducibility. PVMs were further analyzed for differential expression, ligand-receptor communication, pathway enrichment, transcription factor regulation, and pseudotime-associated transcriptional changes. Cis-eQTL-based two-sample Mendelian randomization was performed using eQTLGen exposure data and AD GWAS summary statistics, followed by sensitivity analyses, reverse MR, and Bayesian colocalization.The analyses were interpreted across three distinct evidence levels: cell-type-resolved transcriptional association, systemic genetic expression prioritization, and tissue-level protein expression. Nominal MR findings were interpreted alongside multiple-testing considerations and colocalization support.Candidate protein expression was examined in hippocampal tissue from APP/PS1 and wild-type mice by Western blotting. Single-cell analysis identified eight major cell populations and showed increased fatty acid metabolism activity in PVMs from AD samples. Mendelian randomization prioritized ten fatty acid metabolism-related genes associated with AD risk, among which ACSL1, EPM2AIP1, MALT1, and RASGRP3 showed strong colocalization support (PP.H4 > 0.9). Pathway analyses linked these genes to lipid metabolic regulation, inflammatory signaling, phagocytosis, and mitochondrial/peroxisomal fatty acid metabolism. Co-expression analysis suggested associations between MALT1 and fatty acid oxidation-related genes, including ACADM and ACOX1. Western blotting in whole hippocampal lysates from APP/PS1 mice provided exploratory tissue-level protein evidence, showing increased ACSL1 and MALT1 and decreased RASGRP3 expression; these findings should not be interpreted as confirmatory PVM-specific validation. This integrative analysis prioritizes ACSL1, EPM2AIP1, MALT1, and RASGRP3 as candidate genes connecting fatty acid metabolic dysregulation with AD-associated neuroinflammatory processes. Because the genetic instruments were blood-derived and the protein assays used whole hippocampal lysates, the findings should be interpreted as candidate-gene prioritization and hypothesis generation rather than proof of direct PVM-specific causality.Accordingly, the study supports a prioritized candidate framework for future functional testing, not validated therapeutic targets or direct causal proof. - Source: PubMed
Publication date: 2026/08/11
Wang FanWang XiangyangChen YuhuiLi QingWang ShuoCai MinZhao Jianhua - Medium-chain acyl-CoA dehydrogenase deficiency (MCADD) classically presents with hypoketotic hypoglycaemia; however, this presentation is now rare following the introduction of newborn screening. While children with MCADD may produce some ketones, severe ketoacidosis has not been previously described. Here we report two patients with MCADD presenting with severe ketoacidosis in the neonatal period prior to results of newborn screening. Patient 1 presented on Day 5 with hypoglycaemia, profound ketoacidosis and circulatory shock, and developed refractory ventricular tachycardia requiring extra-corporeal membrane oxygenation. Patient 2 presented on Day 4 with severe ketoacidosis, but only borderline hypoglycaemia. The diagnosis of MCADD was rapidly confirmed in both by analysis of acylcarnitines and urine organic acids, with subsequent genetic confirmation of mutations. We conclude that MCADD should be included in the differential diagnosis of neonatal ketoacidosis, with or without hypoglycaemia. - Source: PubMed
Publication date: 2026/08/10
Kamarus Jaman NazreenBernhardt IsaacWard SophieHassall FreyaNurse JamesLemonde HughDalton R NeilChampion Michael - Breast cancer (BC) is the most common malignancy among women worldwide. Although observational studies have linked carnitine-related metabolites (CRMs) to BC, causal inference has been limited by confounding and reverse causality. This study used Mendelian randomization (MR) analysis to investigate the potential causal link between CRMs and BC. - Source: PubMed
Publication date: 2026/04/03
Ran FeifengQue LilinLuo LanGan MeiWang RenshengLiang Leifeng - Combined metabolomics and transcriptomics analyses were performed to elucidate metabolites related to quercetin (Que) treatment in rats with CCl₄-induced hepatic fibrosis (HF). - Source: PubMed
Publication date: 2026/07/02
Zhao RuiqiLi YaxinGuo TianfuLiu DanyangNiu ShufangZheng DonghuaQi JunSun JianfangBai FengWang ZhenwangBai Wanfu - Pharmaceutical pollution is an emerging environmental concern that can disrupt microbial communities and ecological processes, while climate warming adds further stress with broad ecological consequences. Soil invertebrates such as collembolans harbor gut microbiomes essential for host health and ecosystem stability, yet the responses of these communities-particularly viral communities-to combined pharmaceutical and warming pressures remain unclear. Here, we used controlled microcosm experiments with Folsomia candida to investigate how pharmaceutical diversity and fluctuating warming jointly shape gut microbiomes through bacteria-virus interactions. - Source: PubMed
Publication date: 2026/07/16
Wang Ya-NingZheng Jin-TingChen Xue-PengShen Luo-QinSun Ming-MingYe MaoWang Yi-FeiNeilson RoyZhu Dong