An apoptotic body-biomimic liposome in situ upregulates anti-inflammatory macrophages for stabilization of atherosclerotic plaques.

Author: DaiLiLi, SuZhigui, WangQianQian, WuYue, XueLingJing, ZhangCan, ZhangYong

Paper Details 
Original Abstract of the Article :
The macrophages mediated inflammation participates in every stage of atherosclerosis. Attenuation of macrophages inflammatory responses by active ingredients in atherosclerotic plaques is benefit to atherosclerotic stabilization and regression, but meanwhile, it is highly desired to develop accurate...See full text at original site
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引用元:
https://doi.org/10.1016/j.jconrel.2019.10.043

データ提供:米国国立医学図書館(NLM)

A Novel Approach to Stabilizing Atherosclerotic Plaques

The field of cardiovascular research is constantly seeking new ways to combat atherosclerosis, a disease that hardens arteries and increases the risk of heart attacks and strokes. This research dives deep into the complex world of macrophages, immune cells that play a critical role in both promoting and resolving inflammation. This study proposes a unique approach to target pro-inflammatory macrophages, the troublemakers that contribute to atherosclerosis, with a liposome delivery system that mimics the structure of apoptotic bodies. Think of it like this: Imagine your body is a bustling city, and macrophages are the sanitation workers, cleaning up debris. However, sometimes, they get overwhelmed and accidentally create more chaos than order. This liposome delivery system, cleverly named AP-Lipo, acts like a smart truck that specifically targets the overzealous sanitation workers, delivering a powerful anti-inflammatory medication directly to them.

Delivering the Right Medicine to the Right Place

This research demonstrates that AP-Lipo effectively targets pro-inflammatory macrophages, suppressing their inflammatory activity and promoting the development of anti-inflammatory macrophages. This strategy holds great promise for stabilizing atherosclerotic plaques and preventing the progression of atherosclerosis. The results showed that AP-Lipo is particularly effective in penetrating the activated vascular endothelial monolayer, the lining of blood vessels, which is a key step in delivering the medication to its target. In laboratory settings, AP-Lipo successfully reduced inflammation by increasing the production of anti-inflammatory cytokines, small proteins that act as messengers in the immune system.

Fighting Inflammation with Precision

This research offers a glimmer of hope for individuals struggling with atherosclerosis, suggesting that targeted delivery of anti-inflammatory agents can be a powerful tool in combating this disease. It is exciting to think that AP-Lipo could potentially reduce the side effects of these medications while increasing their efficacy. It highlights the importance of precise targeting in drug delivery, much like sending a package to the right address in a crowded city.

Dr.Camel's Conclusion

This research provides a fascinating glimpse into the intricate world of inflammation and the potential of targeted delivery systems for treating complex diseases. The development of AP-Lipo, a liposome delivery system that mimics apoptotic bodies, opens a new avenue for effectively targeting pro-inflammatory macrophages in atherosclerosis, potentially leading to novel therapies for this debilitating disease.

Date :
  1. Date Completed 2020-10-26
  2. Date Revised 2020-10-26
Further Info :

Pubmed ID

31672624

DOI: Digital Object Identifier

10.1016/j.jconrel.2019.10.043

Related Literature

SNS
PICO Info
in preparation
Languages

English

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