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1.
Biomed Pharmacother ; 146: 112249, 2022 Feb.
Article En | MEDLINE | ID: mdl-34972632

The emergence of many new viruses in recent times has resulted in a significant scientific challenge for discovering drugs and vaccines that effectively treat and prevent viral diseases. Nanotechnology has opened doors to prevent the spread of several diseases, including those caused by viruses. Polymer-hybrid nanodevices are a class of nanotechnology platforms for biomedical applications that present synergistic properties among their components, with improved performance compared to conventional forms of therapy. Considering the growing interest in this emerging field and the promising technological advantages of polymer-hybrid nanodevices, this work presents the current status of these systems in the context of prevention and treatment of viral diseases. A brief description of the different types of polymer-hybrid nanodevices highlighting some peculiar characteristics such as their composition, biodistribution, delivery of antigens, and overall immune responses in systemic tissues are discussed. Finally, the work presents the future trends for new nanotechnological hybrid materials based on polymers and perspectives for clinical use.


Antiviral Agents/administration & dosage , Nanoparticles/administration & dosage , Nanotechnology/trends , Polymers/administration & dosage , Virus Diseases/prevention & control , Animals , Antiviral Agents/metabolism , Drug Delivery Systems , Humans , Immunity, Cellular/drug effects , Immunity, Cellular/physiology , Nanoparticles/metabolism , Polymers/metabolism , Tissue Distribution/drug effects , Tissue Distribution/physiology , Virus Diseases/metabolism
2.
Biomed Pharmacother ; 131: 110695, 2020 Nov.
Article En | MEDLINE | ID: mdl-32920512

The unique properties of polymer-hybrid nanosystems enable them to play an important role in different fields such as biomedical applications. Hybrid materials, which are formed by polymer and inorganic- or organic-base systems, have been the focus of many recently published studies whose results have shown outstanding improvements in drug targeting. The development of hybrid polymer materials can avoid the synthesis of new molecules, which is an overall expensive process that can take several years to get to the proper elaboration and approval. Thus, the combination of properties in a single hybrid system can have several advantages over non-hybrid platforms, such as improvements in circulation time, structural disintegration, high stability, premature release, low encapsulation rate and unspecific release kinetics. Thus, the aim of the present review is to outline a rapid and well-oriented scenario concerning the knowledge about polymer-hybrid nanoparticles use in biomedical platforms. Furthermore, the ultimate methodologies adopted in synthesis processes, as well as in applications in vitro/in vivo, are the focus of this review.


Drug Delivery Systems , Nanoparticles/chemistry , Polymers/chemistry , Animals , Antineoplastic Agents/chemistry , Antineoplastic Agents/pharmacokinetics , Antineoplastic Agents/pharmacology , Cell Line, Tumor , Humans , Polymerization , Polymers/chemical synthesis
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