Volume : 11, Issue : 11, November – 2024

Title:

EXOSOMES LOADED HYDROGEL IN SKIN REGENERATION

Authors :

MissP.Sony, Dr.K.Umasankar*,DR.K.Venugopal

Abstract :

Nanoscale lipid bilayer vesicles called exosomes have become a viable treatment option for skin regeneration. Exosomes, which are derived from mesenchymal stem cells (MSCs), are abundant in growth hormones and proteins that promote wound healing and tissue regeneration. Exosomes’ therapeutic efficacy is increased by loading them onto hydrogels, which offers a regulated release mechanism. Hydrogels provide the perfect platform for exosome distribution because of their biocompatibility and adjustable mechanical characteristics. This method has demonstrated promise in supporting tissue repair, wound healing, and skin regeneration. It has been demonstrated that exosomes put onto hydrogels improve wound healing results by promoting cell migration, proliferation, and differentiation. They have also been shown to stimulate tissue remodelling, lower inflammation, and alter the immunological response. Exosomes have been utilized in cosmetics to lessen wrinkles, increase skin elasticity, improve skin texture and hydration, and lessen UV radiation-induced inflammation and damage. Because of their versatility, exosomes and hydrogels can be used for a variety of skin-related applications, such as tissue engineering, wound healing, and skin rejuvenation. Exosome infusion is one of these applications, and hydrogels have been shown to be the most accessible, affordable, and user-friendly material. In addition to outlining the main benefits, difficulties, and probable future approaches in this field, this paper highlights the potential of exosomes loaded on hydrogels as a therapeutic strategy for skin regeneration.
Key Words: Exosomes, Hydrogel, Wound healing, Biogenesis, Therapeutic applications.

Cite This Article:

Please cite this article in press P.Sony et al., Exosomes Loaded Hydrogel In Skin Regeneration., Indo Am. J. P. Sci, 2024; 11 (11).

Number of Downloads : 10

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