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Updated: Nov 9, 2025

Quantitative Analysis and Characterization of Atherosclerotic Lesions in the Murine Aortic Sinus
Published on: December 7, 2013
Lysosome (Dys)function in Atherosclerosis-A Big Weight on the Shoulders of a Small Organelle
André R A Marques1, Cristiano Ramos1, Gisela Machado-Oliveira1
1iNOVA4Health, Chronic Diseases Research Center (CEDOC), NOVA Medical School (NMS), Universidade NOVA de Lisboa, Lisbon, Portugal.
Insights
Lysosome dysfunction contributes to atherosclerosis, a major cause of heart attacks and strokes. Research suggests therapies for lysosomal storage disorders could help treat cardiovascular diseases.
Area of Science:
- Cell Biology
- Pathology
- Cardiovascular Medicine
Background:
- Atherosclerosis is a chronic disease underlying cardiovascular pathologies like myocardial infarction and ischemic stroke.
- Lysosomes, crucial for cellular degradation, malfunction in atherosclerosis, impairing the processing of modified LDL and apoptotic cells.
- Lysosome dysfunction impacts acquired diseases beyond inherited lysosomal storage disorders (LSDs), including cardiovascular diseases (CVDs).
Purpose of the Study:
- To summarize current knowledge on lysosome malfunction in atherosclerotic plaque cells.
- To analyze the impact of lysosome dysfunction on atherosclerosis progression.
- To explore how LSD research and therapies can inform CVD treatment.
Main Methods:
- Literature review and synthesis of existing research on lysosomal function in atherosclerosis.
- Analysis of cellular mechanisms involving macrophages and VSMCs in atheroma formation.
- Cross-disciplinary analysis connecting LSD research to cardiovascular disease pathogenesis.
Main Results:
- Lysosome dysfunction is central to atherosclerosis etiology and pathogenesis.
- Foam cell formation involves lipid-laden, dysfunctional lysosomes in macrophages and VSMCs.
- Inefficient degradation by lysosomes exacerbates cellular stress and disease progression.
Conclusions:
- Lysosome malfunction significantly contributes to cardiovascular disease progression.
- Therapeutic strategies targeting lysosomes in LSDs may offer novel approaches to combat atherosclerosis.
- Further research integrating LSD insights could reduce cardiovascular mortality.
Abstract:
Atherosclerosis is a progressive insidious chronic disease that underlies most of the cardiovascular pathologies, including myocardial infarction and ischemic stroke. The malfunctioning of the lysosomal compartment has a central role in the etiology and pathogenesis of atherosclerosis. Lysosomes are the degradative organelles of mammalian cells and process endogenous and exogenous substrates in a very efficient manner. Dysfunction of these organelles and consequent inefficient degradation of modified low-density lipoproteins (LDL) and apoptotic cells in atherosclerotic lesions have, therefore, numerous deleterious consequences for cellular homeostasis and disease progression. Lysosome dysfunction has been mostly studied in the context of the inherited lysosomal storage disorders (LSDs). However, over the last years it has become increasingly evident that the consequences of this phenomenon are more far-reaching, also influencing the progression of multiple acquired human pathologies, such as neurodegenerative diseases, cancer, and cardiovascular diseases (CVDs). During the formation of atherosclerotic plaques, the lysosomal compartment of the various cells constituting the arterial wall is under severe stress, due to the tremendous amounts of lipoproteins being processed by these cells. The uncontrolled uptake of modified lipoproteins by arterial phagocytic cells, namely macrophages and vascular smooth muscle cells (VSMCs), is the initial step that triggers the pathogenic cascade culminating in the formation of atheroma. These cells become pathogenic "foam cells," which are characterized by dysfunctional lipid-laden lysosomes. Here, we summarize the current knowledge regarding the origin and impact of the malfunctioning of the lysosomal compartment in plaque cells. We further analyze how the field of LSD research may contribute with some insights to the study of CVDs, particularly how therapeutic approaches that target the lysosomes in LSDs could be applied to hamper atherosclerosis progression and associated mortality.
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