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The role of anti-inflammatory drugs and nanoparticle-based drug delivery models in the management of ischemia-induced heart failure.
Author: AlmasTalal, AzharMaimoona, CheemaFaisal Habib, HaleyKathryn E, HameedAamir, ShaikhShan, ShoarSaeed
Original Abstract of the Article :
Ongoing advancements in the treatment of acute myocardial infarction (MI) have significantly decreased MI related mortality. Consequently, the number of patients experiencing post-MI heart failure (HF) has continued to rise. Infarction size and the extent of left ventricular (LV) remodeling are larg...See full text at original site
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引用元:
https://doi.org/10.1016/j.biopha.2021.112014
データ提供:米国国立医学図書館(NLM)
Fighting Heart Failure: A New Frontier in Anti-Inflammatory Drug Delivery
The [cardiovascular field] is continuously evolving, with new breakthroughs in the treatment of [ischemia-induced heart failure]. This study explores the potential of [targeted drug delivery] using [nanoparticle-based models] to deliver [anti-inflammatory drugs] directly to the [myocardium]. The researchers review [pre-clinical and clinical models] and discuss the challenges and opportunities associated with this approach. Their findings suggest that [localized delivery of anti-inflammatory agents] could be a promising strategy for improving the treatment of [ischemic heart failure].
Nanoparticles: Tiny Soldiers in the Battle Against Heart Failure
This study highlights the exciting potential of [nanoparticle-based drug delivery] in the fight against [ischemic heart failure]. By delivering [anti-inflammatory drugs] directly to the [myocardium], we can potentially reduce [infarction size], minimize [left ventricular remodeling], and ultimately improve patient outcomes. This innovative approach offers a glimpse into a future where [nanotechnology] plays a pivotal role in treating [cardiovascular diseases].
Precision Medicine: A Journey Through the Cardiac Desert
This research reflects the evolving landscape of [precision medicine] in the [cardiovascular field]. By targeting specific areas of the [heart] with [anti-inflammatory drugs], we can potentially achieve more effective treatment with fewer side effects. It's like using a compass to navigate the vast desert of the [cardiovascular system], guiding us toward more precise and targeted therapies.
Dr.Camel's Conclusion
The potential of [nanoparticle-based drug delivery] to revolutionize the treatment of [ischemic heart failure] is truly exciting. This research opens up new avenues for [precision medicine] in the [cardiovascular field], offering hope for a brighter future for patients battling this debilitating condition. It's a reminder that even in the seemingly endless desert of [cardiovascular disease], innovation and ingenuity can lead us to new oases of hope and healing.
Date :
- Date Completed 2021-12-23
- Date Revised 2021-12-23
Further Info :
Related Literature
English
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