Related Experiment Video
Updated: Jul 6, 2026

A High Throughput, Multiplexed and Targeted Proteomic CSF Assay to Quantify Neurodegenerative Biomarkers and Apolipoprotein E Isoforms Status
Published on: October 20, 2016
HCG18 is a Potential Pathogenic Factor and Diagnostic Biomarker Alzheimer's Disease
Pingting Chen1, Genru Li2, Lingyan Cheng3
1Department of Neurology, Wenling TCM Hospital Affiliated to Zhejiang Chinese Medical University, Zhejiang, 317500, China.
Insights
Long non-coding RNA HCG18 shows elevated serum levels in Alzheimer's disease (AD) patients, acting as a potential biomarker. HCG18 exacerbates neuronal injury by sponging miR-425-3p, suggesting a new therapeutic target for AD.
Area of Science:
- Neuroscience
- Molecular Biology
- Biochemistry
Background:
- Alzheimer's disease (AD) presents significant challenges in early diagnosis and treatment.
- Long non-coding RNAs (lncRNAs) are emerging as critical players in neurodegenerative diseases.
- Identifying novel biomarkers and therapeutic targets for AD is a pressing need.
Purpose of the Study:
- To investigate the diagnostic value of lncRNA HCG18 in Alzheimer's disease.
- To elucidate the molecular mechanisms of HCG18 in neuronal injury.
- To explore the potential of the HCG18/miR-425-3p axis as a therapeutic target for AD.
Main Methods:
- Serum HCG18 expression was quantified using qRT-PCR in 83 AD patients and 83 healthy controls.
- Cerebrospinal fluid (CSF) AD biomarkers were analyzed by ELISA.
- Aβ1-42-induced neuronal injury model in HT22 cells was used to study HCG18 function and its interaction with miR-425-3p.
Main Results:
- Serum HCG18 levels were significantly higher in AD patients than in controls (P < 0.001), with high diagnostic accuracy (AUC = 0.889).
- HCG18 expression correlated negatively with CSF Aβ1-42 and MMSE scores, and positively with t-tau and p-tau181.
- HCG18 knockdown protected against Aβ1-42-induced neuronal injury by reducing apoptosis and oxidative stress, mechanistically acting as a sponge for miR-425-3p.
Conclusions:
- Serum HCG18 is a promising non-invasive biomarker for Alzheimer's disease diagnosis.
- HCG18 contributes to AD pathogenesis by exacerbating neuronal injury through the miR-425-3p sponging mechanism.
- Targeting the HCG18/miR-425-3p pathway offers a potential therapeutic strategy for Alzheimer's disease.
Abstract:
Alzheimer's disease (AD), a major neurodegenerative disorder, lacks effective early diagnostic and therapeutic strategies. This study aimed to investigate the diagnostic utility of Long non-coding RNAs HLA Complex Group 18 ( HCG18) in AD and elucidate its molecular mechanisms in neuronal injury. Eighty-three AD patients and 83 healthy controls (HC) were enrolled. Serum samples were analyzed for HCG18 expression using qRT-PCR and cerebrospinal fluid (CSF) samples were analyzed for AD biomarkers by ELISA. Diagnostic performance was assessed using ROC analysis. Aβ1-42-treated HT22 cells (Immortalized murine hippocampal neuronal-like cell line) were employed to model neuronal injury, with HCG18 knockdown and miR-425-3p inhibition experiments conducted to validate functional interactions. HT22 cell apoptosis, oxidative stress markers (SOD, GSH-Px, MDA, ROS), and HCG18/miR-425-3p interactions were evaluated through flow cytometry, biochemical assays, and dual-luciferase reporter systems. Serum HCG18 levels were significantly elevated in AD patients compared to HC (P < 0.001), exhibiting strong diagnostic accuracy (AUC = 0.889). HCG18 expression correlated negatively with CSF Aβ1-42 (r=-0.709) and MMSE scores (r=-0.657), but positively with t-tau (r = 0.591) and p-tau181 (r = 0.582). In Aβ1-42-treated HT22 cells, HCG18 knockdown reduced apoptosis, suppressed ROS, and normalized oxidative stress markers. Mechanistically, HCG18 directly bound to and acted as a molecular sponge for miR-425-3p, sequestering its function; the downregulation of miR-425-3p mediated by a synthetic inhibitor reversed the protective effects of HCG18 silencing. HCG18 serves as a potential non-invasive biomarker for AD, exacerbating neuronal injury via sponging miR-425-3p to disrupt redox balance. Targeting the HCG18/miR-425-3p axis may offer new therapeutic strategies for AD.
More Related Videos
Related Concept Videos
Alzheimer's Disease: Overview
The clinical diagnosis of AD hinges on the presence of memory and other cognitive impairments. Biomarkers, such as changes in Aβ and tau...
Alzheimer Disease l: Introduction
Alzheimer Disease ll: Pathophysiology
Huntington Disease l: Introduction

