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March 28, 2026Maaen Journal for Medical Sciences0 citationsOpen Access

Recent Progress in Nanogel Technology: From Molecular Design to Biomedical Applications

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FAFatima Raed Al-AhmedMAMohammed Sabar Al-Lami

Key Points

  • This review aims to evaluate the unique properties and applications of nanogels in various therapeutic areas.
  • Critical examination of nanogels' properties and classifications
  • Discussion of drug release mechanisms and characterization techniques
  • Review of preparation methods including microfluidics and photolithography
  • Comparison of physically and chemically crosslinked nanogels
  • Analysis of their applications in cancer therapy, wound healing, and drug delivery.
  • Nanogels exhibit enhanced drug loading and release capabilities due to their unique structure.
  • The review highlights improved treatment safety through targeted drug delivery and stimuli-responsive behavior.
  • Challenges in characterization and crosslinking complexities are outlined, emphasizing the need for standardization.

Abstract

Nanogels, a hydrophilic polymer network at the nanoscale, combine the structural flexibility of hydrogels with the dynamic behavior of nanoparticles, offering unprecedented control over drug loading and release. Their large surface area, tunable porosity, high water content, biocompatibility, and stimuli-responsive behavior enable transport across biological barriers. This review critically examines nanogels’ unique properties, classifications, diverse methods of preparation, drug release mechanisms, characterization techniques, and various applications in therapeutic areas, such as cancer therapy, wound healing, transdermal and ocular drug delivery, and theranostics. Highlights are shed on nanogels’ potential to target specific sites, both by functionalization and stimuli-responsive behavior, therefore improving treatment safety and efficacy. Crosslinking complexity are thoroughly discussed, with critical comparison between the physically and chemically crosslinked types, as well as the challenges of characterization. Novel techniques such as microfluidics and photolithographic techniques are discussed for their role at achieving reproducible, scalable systems. By integrating insights from synthesis through clinical translation, this article offers thorough insights into the revolutionary potential of nanogel in transforming the medication delivery systems.

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Cite This Study

Al-Ahmed et al. (2026) studied this question.

synapsesocial.com/papers/69c771988bbfbc51511e19fchttps://doi.org/10.55810/2789-9136.1093
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