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Modern Herbal Nanogels: Formulation, Delivery Methods, and Applications.

Rakesh K Sindhu1, Rubal Gupta1, Gaurish Wadhera1

  • 1Chitkara College of Pharmacy, Chitkara University, Rajpura 140401, India.

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|February 24, 2022
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Summary

This study explores advancements in herb-related nanogels for improved drug delivery. These nanogels enhance therapeutic efficacy, safety, and patient compliance for various disorders.

Keywords:
herbal bioactiveshydrogelsnanogelspolysaccharides

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Area of Science:

  • Pharmaceutical Chemistry
  • Nanotechnology
  • Phytochemistry

Background:

  • Phytochemistry, the study of herbal compounds, has historically contributed to novel remedies.
  • Challenges exist in utilizing herbal compounds in medicine due to broad characteristics and pharmacokinetics.
  • New technical approaches are crucial for integrating herbal discoveries into the pharmaceutical sector.

Purpose of the Study:

  • To review recent advancements in nanogel production and drug delivery systems utilizing herbal compounds.
  • To highlight the historical use and therapeutic potential of herb-related nanogels.
  • To discuss stimulus-responsive nanogel systems for targeted drug delivery.

Main Methods:

  • Literature review of herb-related nanogel research.
  • Analysis of nanogel formulations for drug delivery applications.
  • Examination of stimulus-responsive nanogel systems (temperature and pH).

Main Results:

  • Herb-related nanogels show promise for treating various disorders with improved patient compliance, delivery rate, and efficacy.
  • Nanogel formulations can modify drug profiles, cross biological barriers, and alter biodistribution and pharmacokinetics.
  • Stimulus-responsive nanogels offer enhanced control over drug release.

Conclusions:

  • Nanogels represent a significant advancement in drug delivery, particularly for herbal compounds.
  • These systems have the potential to improve therapeutic outcomes by enhancing drug efficacy, safety, and patient cooperation.
  • Further research into nanogel technology can unlock new possibilities in pharmaceutical development.