4.6 Article

Nanogels: An overview of properties, biomedical applications, future research trends and developments

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JOURNAL OF MOLECULAR STRUCTURE
卷 1239, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.molstruc.2021.130446

关键词

nanoparticle composed gel; polymer; crosslinking; drug delivery; oligonucleotide

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Nanogels are considered promising materials in the biomedical field, offering high drug encapsulation capacity, stability, and stimuli responsiveness for applications in chemotherapy, diagnosis, organ targeting, and delivery of bioactive substances. Research focuses on nanogels assimilation in nanomedicine, their features and advantages, preparation techniques, and recent progress as carriers of genetic material, proteins, and vaccines. Recent developments in synthesis and experimental analysis have led to tailored microgels with specific properties and a deeper understanding of nano- and microgels behavior under external influences.
Nanogels in biomedical field are promising and innovative materials as dispersions of hydrogel nanoparticles based on crosslinked polymeric networks that have been called as next generation drug delivery systems due to their relatively high drug encapsulation capacity, uniformity, tunable size, ease of preparation, minimal toxicity, stability in the presence of serum, and stimuli responsiveness. Nanogels show a great potential in chemotherapy, diagnosis, organ targeting and delivery of bioactive substances. The main subjects reviewed in this article concentrates on: (i) Nanogel assimilation in the nanomedicine domain; (ii) Features and advantages of nanogels, the main characteristics, such as: swelling capacity, stimuli sensitivity, the great surface area, functionalization, bioconjugation and encapsulation of bioactive substances, which are taken into account in designing the structures according to the application; some data on the advantages and limitations of the preparation techniques; (iii) Recent progress in nanogels as a carrier of genetic material, protein and vaccine. Recent tremendous developments in their synthesis open access to systems with complex architectures and compositions allowing for tailoring microgels with specific properties. At the same time state-of-the-art theoretical and simulation approaches offer deeper understanding of the behavior and structure of nano-and microgels under external influences and confinement at interfaces or at high volume fractions. Developments in the experimental analysis of nano-and microgels have become particularly important for structural investigations covering a broad range of length scales relevant to the internal structure, the overall size and shape, and interparticle interactions in concentrated samples. Here we summarize emerging research of nanogewls for biomedical applications and provide an overview of the state-of-the-art, recent developments as well as emerging trends in the field of nano-and microgels. (c) 2021 Elsevier B.V. All rights reserved.

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