4.3 Article

Recent advances in polymeric hydrogel nanoarchitectures for drug delivery applications

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TAYLOR & FRANCIS AS
DOI: 10.1080/00914037.2022.2120875

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Polymeric hydrogel nanoarchitectures; nanogels; macrogels; microgels; magnetically responsive HDG

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This paper presents recent advancements in drug delivery applications of polymeric hydrogel nanoarchitectures and hydrogel derivatives, including the incorporation of nanoparticulates and the enhancement of the chemical, biological, electrical, and mechanical properties of hydrogels. The application of magnetically responsive and smart hydrogels as drug delivery systems is also discussed.
Hydrogels (HDG) are materials exhibiting versatile applications in varying fields such as the pharmaceutical and biomedical industries. However, HDG are prone to inferior chemical, biological, electrical and mechanical features. In order to mitigate these deficiencies, the advent of nanotechnology has informed the inclusion of multifunctional nanoparticulates within HDG matrices to garnerior superior features. Thus, polymeric hydrogel nanoarchitectures (PHN) are amongst emerging category of new nano-hydrogels, fabricated through the incorporation of nanoparticulates, as a second phase within HDG, with enhanced and enchanting properties. For effective pharmaceutical applications, the prevalence of pores within the PHN is outstanding for drug delivery systems (DDS) because of the feasibility of conveying active entities and releasing them at a controlled rate through varying mechanisms. The outstanding behavior of PHN to up-take elevated levels of water transforms them to immune-tolerant nanomaterials thereby making them attractive for biologically affiliated applications, especially in field of pharmacy for drug delivery application. Therefore, this paper presents recently emerging advancements in drug delivery applications of PHN and HDG derivatives including macrogels microgels, and nanogels. Furthermore, magnetically responsive HDG, smart or intelligent HDG as DDS are also presented. They HDG materials preparation, characterization, properties and applications as DDS are elaborately elucidated as well.

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