4.7 Article

The novel treatments based on tissue engineering, cell therapy and nanotechnology for cutaneous leishmaniasis

Journal

INTERNATIONAL JOURNAL OF PHARMACEUTICS
Volume 633, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.ijpharm.2023.122615

Keywords

Tissue Engineering; Scaffold; Nanotechnology; Cell Therapy; Cutaneous leishmaniasis

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Cutaneous leishmaniasis (CL) is a global health issue, and conventional treatments have drawbacks. Topical treatment is a cost-effective approach for CL, and electrospun fibers and hydrogels are promising drug release systems for treating skin lesions. Polymeric scaffolds, microneedle patches, and nanocarriers enhance drug delivery to the skin. Additionally, cell therapy shows potential in overcoming leishmaniasis. This study investigates various treatment options, such as tissue engineering scaffolds, nanotechnology, and cell therapy, for reducing CL complications.
Cutaneous leishmaniasis (CL) is a global public health issue. Conventional treatments have substantial costs, side effects, and parasite resistance. Due to easy application and inexpensive cost, topical treatment is the optimal approach for CL. It could be used alone or with systemic treatments. Electrospun fibers as drug release systems in treating skin lesions have various advantages such as adjustable drug release rate, maintaining appropriate humidity and temperature, gas exchange, plasticity at the lesion site, similarity with the skin extracellular matrix (ECM) and drug delivery with high efficiency. Hydrogels are valuable scaffolds in the treatment of skin lesions. The important features of hydrogels include preserving unstable drugs from degradation, absorption of wound secretions, high biocompatibility, improving the re-epithelialization of the wound and preventing the formation of scars. One of the issues in local drug delivery systems for the skin is the low permeability of drugs in the skin. Polymeric scaffolds that are designed as microneedle patches can penetrate the skin and overcome this challenge. Also, drug delivery using nanocarriers increases the effectiveness of drugs in lower and more tolerable doses and reduces the toxicity of drugs. The application of cell therapy in the treatment of parasitic and infectious diseases has been widely investigated. The complexity of leishmaniasis treatment requires identifying new treatment options like cell therapy to overcome the disease. Topics investigated in this study include drug delivery systems based on tissue engineering scaffolds, nanotechnology and cell therapy-based studies to reduce the complications of CL.

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