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Therapies and Vaccines Based on Nanoparticles for the Treatment of Systemic Fungal Infections. | LitMetric

AI Article Synopsis

  • Current antifungal treatments for systemic mycoses are limited to polyenes, azoles, and echinocandins, but mortality rates remain high despite proper administration.
  • The increasing number of immunocompromised individuals has led to a rise in systemic fungal infections, highlighting the need for better treatment options due to the complexity and costs of existing therapies.
  • Nanotechnology is being explored as a promising approach to develop new antifungal treatments and vaccines, focusing on targeted drug delivery to reduce toxicity and costs.

Article Abstract

Treatment modalities for systemic mycoses are still limited. Currently, the main antifungal therapeutics include polyenes, azoles, and echinocandins. However, even in the setting of appropriate administration of antifungals, mortality rates remain unacceptably high. Moreover, antifungal therapy is expensive, treatment periods can range from weeks to years, and toxicity is also a serious concern. In recent years, the increased number of immunocompromised individuals has contributed to the high global incidence of systemic fungal infections. Given the high morbidity and mortality rates, the complexity of treatment strategies, drug toxicity, and the worldwide burden of disease, there is a need for new and efficient therapeutic means to combat invasive mycoses. One promising avenue that is actively being pursued is nanotechnology, to develop new antifungal therapies and efficient vaccines, since it allows for a targeted delivery of drugs and antigens, which can reduce toxicity and treatment costs. The goal of this review is to discuss studies using nanoparticles to develop new therapeutic options, including vaccination methods, to combat systemic mycoses caused by sp., sp., sp., sp., sp., and sp., in addition to providing important information on the use of different types of nanoparticles, nanocarriers and their corresponding mechanisms of action.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7502903PMC
http://dx.doi.org/10.3389/fcimb.2020.00463DOI Listing

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