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Carbohydrate-Derived Polytriazole Nanoparticles Enhance the Anti-Inflammatory Activity of Cilostazol.
Author: Díaz PeñaRocío, ErreaMaría I, KolenderAdriana A, MartínezKarina D, MusikantDaniel, PelazzoLuciana, PérezOscar E, RivasM Verónica, RossiEzequiel, VarelaOscar, ÁlvarezDaniela
Original Abstract of the Article :
Poly(amide-triazole) and poly(ester-triazole) synthesized from d-galactose as a renewable resource were applied for the synthesis of nanoparticles (NPs) by the emulsification/solvent evaporation method. The NPs were characterized as stable, spherical particles, and none of their components, includin...See full text at original site
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引用元:
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9753171/
データ提供:米国国立医学図書館(NLM)
Carbohydrate-Derived Polytriazole Nanoparticles Enhance the Anti-Inflammatory Activity of Cilostazol
The quest for effective and safe drug delivery is a continuous journey, much like a camel caravan navigating a vast and intricate desert. This article explores the use of carbohydrate-derived polytriazole nanoparticles (NPs) to enhance the anti-inflammatory activity of cilostazol, a drug used for treating intermittent claudication.Carbohydrate-Derived Polytriazole Nanoparticles: A Novel Approach for Enhancing Cilostazol's Anti-Inflammatory Activity
The study demonstrates that encapsulating cilostazol within carbohydrate-derived polytriazole NPs significantly enhances its anti-inflammatory activity. This approach holds promise for improving the therapeutic efficacy of cilostazol while minimizing its potential side effects. Think of the NPs as a protective oasis, shielding the cilostazol from the harsh desert environment and allowing it to exert its anti-inflammatory effects more effectively.Navigating the Landscape of Drug Delivery
This article highlights the innovative use of carbohydrate-derived polytriazole NPs to improve drug delivery and enhance therapeutic outcomes. Just as a camel caravan adapts its strategy based on the desert terrain, researchers are constantly exploring new approaches to optimize drug delivery and improve patient outcomes.Dr.Camel's Conclusion
Carbohydrate-derived polytriazole nanoparticles offer a promising new approach for enhancing the anti-inflammatory activity of cilostazol. Like a clever camel driver navigating a desert, this innovative delivery system aims to optimize drug efficacy and minimize potential side effects, leading to improved patient outcomes.Date :
- Date Completed n.d.
- Date Revised 2022-12-22
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