AI Article Synopsis

  • Vaccines have been essential for improving human health, but their development is complicated by the need for effective antigens, adjuvants, and delivery methods to stimulate a strong immune response.
  • Mesoporous silica nanoparticles (MSNs) have emerged as promising tools for delivering vaccine components and acting as adjuvants, showing potential in enhancing immune responses.
  • The review discusses current advancements in the synthesis, function, and safety of MSNs, while also addressing future challenges and opportunities in their use as vaccine delivery systems.

Article Abstract

Vaccines have been at the forefront of improving human health for over two centuries. The challenges faced in developing effective vaccines flow from complexities associated with the immune system and requirement of an efficient and safe adjuvant to induce a strong adaptive immune response. Development of an efficient vaccine formulation requires careful selection of a potent antigen, efficient adjuvant and route of delivery. Adjuvants are immunological agents that activate the antigen presenting cells (APCs) and elicit a strong immune response. In the past decade, the use of mesoporous silica nanoparticles (MSNs) has gained significant attention as potential delivery vehicles for various biomolecules. In this review, we aim to highlight the potential of MSNs as vaccine delivery vehicles and their ability to act as adjuvants. We have provided an overview on the latest progress on synthesis, adsorption and release kinetics and biocompatibility of MSNs as next generation antigen carriers and adjuvants. A comprehensive summary on the ability of MSNs to deliver antigens and elicit both humoral and cellular immune responses is provided. Finally, we give insight on fundamental challenges and some future prospects of these nanoparticles as adjuvants.

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Source
http://dx.doi.org/10.1039/c3nr00357dDOI Listing

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