Molybdenum disulfide based nanostructures for tissue engineering applications prospects and challenges

Jime

Due to their unique physicochemical, optical, and electrical properties, Molybdenum disulfide (MoS2) nanostructures have recently gained substantial scientific thought. Although MoS2 has been mostly highlighted for its industrial applications, its biological applicability has not been extensively explored. The introduction of nanotechnology in tissue engineering has significantly contributed to human welfare by displaying advancement in tissue regeneration. Assimilation of MoS2 nanostructures into the polymer matrix has been considered a persuasive material of choice for futuristic tissue engineering applications. The current review provides a general discussion of the structural properties of different MoS2 nanostructures.

Further, this article focuses on the interactions of MoS2 with biological systems regarding its cellular toxicity and biocompatibility, along with its capability for cell proliferation, adhesion, and immunomodulation. The article continues to confer the utility of MoS2 nanostructure-based scaffolds for various tissue engineering applications. The article also highlights some emerging prospects and possibilities of the applicability of MoS2-based nanostructures in large organ tissue engineering. Finally, the article concludes with a brief annotation on the challenges and limitations that need to be overcome to make plentiful use of this wonderful material for tissue engineering applications. The development of novel materials has widened the scope of their utility in numerous commercial applications. With nanotechnology's evolution, orthodox materials and production methods have been sidetracked and superseded with new methodologies and novel engineered materials with remarkable features. It would not be an embellishment to exclaim this era as the epoch of nanomaterials. Nanomaterials offer distinctive properties compared to their counter bulk part, which makes them a unique and interesting class of materials. If you are looking for high quality, high purity, and cost-effective zinc sulfide, or if you require the latest price of zinc sulfide, please feel free to email contact mis-asia.

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