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Advanced Applications of Nanomaterials in Atherosclerosis Diagnosis and Treatment: Challenges and Future Prospects
Junran Tong1,2,3, Zhiwen Wang4, Jiahui Zhang1,2,3
1Department of Cardiology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430022, China.
Abstract:
Atherosclerosis-induced coronary artery disease is a major cause of cardiovascular mortality. Clinically, conservative treatment strategies for atherosclerosis still focus on lifestyle interventions and the use of lipid-lowering and anticoagulant medications. Despite achieving some therapeutic effects, these approaches are limited by low bioavailability, long intervention periods, and significant side effects. With the advancement of nanotechnology, nanomaterials have demonstrated extraordinary potential in the biomedical field. Their excellent biocompatibility, surface modifiability, and high targeting capability not only enable efficient diagnosis of plaque progression but also allow precise drug delivery within atherosclerotic plaques, significantly enhancing drug bioavailability and reducing systemic side effects. Here, we systematically review the current research progress of nanomaterials in the field of atherosclerosis to summarize not only the types of nanomaterials but also their applications in both the diagnosis and treatment of atherosclerosis. Notably, in the context of plaque therapy, we provide a comprehensive overview of current nanomaterial applications based on their targeted therapeutic systems for different cell types within plaques. Additionally, we address the persistent challenge of clinical translation of nanomaterials by summarizing current issues and providing directions for innovation and improvement in nanomaterial design. Overall, we believe that this review systematically summarizes the applications and challenges of biomedical nanomaterials in atherosclerosis diagnosis and therapy, thereby offering insights and references for the development of therapeutic materials for atherosclerosis.
Insights
Nanomaterials offer advanced solutions for atherosclerosis, improving diagnosis and targeted drug delivery to plaques. This review explores their applications and challenges for clinical translation in cardiovascular disease treatment.
Area of Science:
- Biomedical Engineering
- Nanotechnology
- Cardiovascular Research
Background:
- Atherosclerosis is a leading cause of cardiovascular mortality.
- Current treatments (lifestyle, lipid-lowering, anticoagulants) have limitations like low bioavailability and side effects.
- Nanotechnology presents novel opportunities for atherosclerosis diagnosis and therapy.
Purpose of the Study:
- To systematically review nanomaterial applications in atherosclerosis diagnosis and treatment.
- To summarize nanomaterial types and their targeted therapeutic systems within plaques.
- To address challenges and suggest future directions for clinical translation.
Main Methods:
- Systematic literature review of nanomaterials in atherosclerosis research.
- Analysis of nanomaterial applications in plaque diagnosis and drug delivery.
- Evaluation of targeted therapeutic systems based on plaque cell types.
- Assessment of clinical translation challenges and innovation directions.
Main Results:
- Nanomaterials demonstrate high biocompatibility, modifiability, and targeting capabilities.
- They enable efficient plaque diagnosis and precise drug delivery, enhancing bioavailability and reducing side effects.
- Various nanomaterial applications target specific cell types within atherosclerotic plaques.
- Significant challenges remain in the clinical translation of these advanced materials.
Conclusions:
- Nanomaterials hold immense potential for improving atherosclerosis diagnosis and therapy.
- Targeted drug delivery systems show promise for enhancing treatment efficacy.
- Overcoming clinical translation hurdles is crucial for realizing the full benefits of nanomaterials in cardiovascular medicine.
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