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Nanotherapeutics for the Myocardium: A Potential Alternative for Treating Cardiac Diseases
Abhik Kar1, Soumyadeep Gupta, Arkapravo Matilal
1Department of Zoology, University of Calcutta, Kolkata, West Bengal, India.
Insights
Cardiovascular diseases (CVDs) demand novel treatments. Nanoparticle-mediated therapies offer targeted, less invasive cardiac delivery, improving treatment efficacy and reducing side effects.
Area of Science:
- Biomedical Engineering
- Nanomedicine
- Cardiology
Background:
- Cardiovascular diseases (CVDs) are a leading global cause of death.
- Current CVD treatments have limitations, including invasiveness and systemic side effects.
Approach:
- This review explores nanoparticle-mediated approaches for targeted cardiac drug delivery.
- It details nanoparticle types, targeting mechanisms (passive and active), and their potential for CVD treatment.
Key Points:
- Nanoscience enables efficient, specific delivery of therapeutics directly to the myocardium.
- Nanoparticles offer controlled release, enhancing bioavailability and reducing off-target effects.
- The review discusses current clinical trials and future directions for cardiac nanomedicines.
Conclusions:
- Nanoparticle-based therapies represent a promising, minimally invasive strategy for combating CVD.
- Further development of cardiac tissue-targeted nanomedicines is crucial for clinical translation.
- These advancements align with sustainable development goals for global health and well-being.
Abstract:
Cardiovascular diseases (CVDs) are the foremost cause of morbidity and mortality worldwide. Current clinical interventions include invasive approaches for progressed conditions and pharmacological assistance for initial stages, which has systemic side effects. Preventive, curative, diagnostic, and theranostic (therapeutic + diagnostic) approaches till date are not very useful in combating the ongoing CVD epidemic, which demands a promising efficient alternative approach. To combat the growing CVD outbreak globally, the ideal strategy is to make the therapeutic intervention least invasive and direct to the heart to reduce the bystander effects on other organs and increase the bioavailability of the therapeutics to the myocardium. The application of nanoscience and nanoparticle-mediated approaches have gained a lot of momentum because of their efficient passive and active myocardium targeting capability owing to their improved specificity and controlled release. This review provides extensive insight into the various types of nanoparticles available for CVDs, their mechanisms of targeting (eg, direct or indirect), and the utmost need for further development of bench-to-bedside cardiac tissue-based nanomedicines. Furthermore, the review aims to summarize the different ideas and methods of nanoparticle-mediated therapeutic approaches to the myocardium till date with present clinical trials and future perspectives. This review also reflects the potential of such nanoparticle-mediated tissue-targeted therapies to contribute to the sustainable development goals of good health and well-being.
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