Nanomaterials as a Potential Target for Infectious Parasitic Agents

Author:

Aljabali Alaa A A1ORCID,Tambuwala Murtaza M.2,Alsharedeh Rawan H.1,Rezigue Meriem1,Bashatwah Rasha M.1,Amawi Haneen3,Obeid Mohammad A.1

Affiliation:

1. Faculty of Pharmacy, Department of Pharmaceutics and Pharmaceutical Technology, Yarmouk University, Irbid 21163 - P. O. BOX 566, Jordan

2. School of Pharmacy and Pharmaceutical Science, Ulster University, Coleraine, County Londonderry, BT52 1SA, Northern Ireland, United Kingdom

3. Faculty of Pharmacy, Department of Pharmacy Practice, Yarmouk University, Irbid-Jordan

Abstract

Abstract: Despite the technological advancement in the era of personalized medicine and therapeutics development, infectious parasitic causative agents remain one of the most challenging areas of research and development. The disadvantages of conventional parasitic prevention and control are the emergence of multiple drug resistance as well as the non-specific targeting of intracellular parasites, which results in high dose concentration needs and subsequently intolerable cytotoxicity. Nanotechnology has attracted extensive interest to reduce medication therapy adverse effects including poor bioavailability and drug selectivity. Numerous nanomaterials-based delivery systems have previously been shown in animal models to be effective in the treatment of various parasitic infections. This review discusses a variety of nanomaterials-based antiparasitic procedures and techniques as well as the processes that allow them to be targeted to different parasitic infections. This review focuses on the key prerequisites for creating novel nanotechnology-based carriers as a potential option in parasite management, specifically in the context of human-related pathogenic parasitic agents.

Publisher

Bentham Science Publishers Ltd.

Subject

Pharmaceutical Science

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