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Updated: Aug 24, 2025

Quantification of Atherosclerosis in Mice
Published on: June 12, 2019
C1QL1/CTRP14 Is Largely Dispensable for Atherosclerosis Formation in Apolipoprotein-E-Deficient Mice
Hua Guan1,2, Tao Shi1, Miaomiao Liu1
1Department of Cardiovascular Surgery, The First Affiliated Hospital of Xi'an Jiaotong University, Xi'an 710061, China.
Insights
Complement C1ql-like 1 (C1QL1) does not significantly impact atherosclerosis development in apolipoprotein E knockout mice. This study found C1QL1 is largely dispensable for plaque formation in the aorta.
Area of Science:
- Cardiovascular Biology
- Molecular Biology
- Genomics
Background:
- Complement C1ql-like 1 (C1QL1), also known as CTRP14, is a protein primarily synthesized in the brain and adipose tissues.
- The functional roles of C1QL1/CTRP14 outside of these tissues, particularly in cardiovascular disease, are largely unknown.
- Atherosclerosis is a complex inflammatory disease characterized by plaque buildup in arteries.
Purpose of the Study:
- To investigate the influence of C1QL1 on atherosclerosis development.
- To analyze the transcriptomic alterations in the aorta associated with C1QL1 expression.
- To determine if C1QL1 plays a role in modulating atherosclerotic plaque formation.
Main Methods:
- Apolipoprotein E (ApoE) knockout mice were fed a Western diet to induce atherosclerosis.
- Adenovirus-mediated overexpression of C1QL1 (Ad-C1QL1) or a control (Ad-GFP) was administered via tail vein injection.
- Atherosclerotic plaque area was quantified, and aortic tissue underwent RNA sequencing for transcriptomic analysis.
Main Results:
- Overexpression of C1QL1 in ApoE knockout mice did not significantly alter the area of atherosclerotic plaques compared to controls.
- RNA sequencing identified only 111 differentially expressed genes (DEGs) in aortic lesions, enriched in 26 signaling pathways.
- DEGs included genes related to metabolism and human diseases like type II diabetes, but not directly linked to atherosclerosis formation in this context.
Conclusions:
- C1QL1 appears to be largely dispensable for the development of atherosclerosis in ApoE-deficient mice.
- C1QL1 does not significantly improve or inhibit atherosclerotic plaque formation in the aorta under the studied conditions.
- The transcriptomic changes observed suggest potential indirect associations with metabolic pathways rather than direct involvement in aortic atherosclerosis.
Abstract:
The purpose of this study was to investigate the influence of C1QL1 on atherosclerosis as well as the transcriptomic alteration of the aorta. While complement C1ql-like 1 (C1QL1) is one of the C1q/tumor-necrosis-factor-related protein (CTRP) family members, also known as CTRP14, and is synthesized and secreted mainly by the brain and adipose tissues, the functional properties of the C1QL1/CTRP14 protein outside the brain and adipocytes remain, however, unknown. In this regard, apolipoprotein E (ApoE) knockout (KO) mice were fed a Western diet and injected with adenovirus (Ad) green fluorescent protein or Ad-C1QL1 through the tail vein for 12 weeks. In contrast with the control cohort, the area of atherosclerotic plaque in ApoE KO mice overexpressing C1QL1 showed no significant difference, and the RNA sequence revealed that there were only 111 differentially expressed genes (DEGs) enriched in 26 signaling pathways of the mRNA profile in the aortic atherosclerosis lesions. This analysis also revealed the expression of several genes related to metabolism, organismal system, and human diseases such as type II diabetes, which are not associated with the formation of atherosclerosis in the aorta. These findings illustrate that C1QL1 is largely dispensable for atherosclerosis formation in ApoE-deficient mice and does not improve atherosclerotic plaque formation in the aorta.
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