2D Materials for Combination Therapy to Address Challenges in the Treatment of Cancer

Author:

Self Ava1,Farell Megan1,Samineni Laximicharan23,Kumar Manish23,Gomez Esther W.14ORCID

Affiliation:

1. Department of Chemical Engineering The Pennsylvania State University University Park PA 16802 USA

2. Department of Civil, Architectural, and Environmental Engineering The University of Texas at Austin Austin TX 78712 USA

3. McKetta Department of Chemical Engineering The University of Texas at Austin Austin TX 78712 USA

4. Department of Biomedical Engineering The Pennsylvania State University University Park PA 16802 USA

Abstract

2D materials exhibit a variety of characteristics that make them appealing platforms for cancer treatment such as high drug loading capacity and photothermal and photodynamic properties. A key advantage of 2D material platforms for oncological applications is the ability to harness multiple modalities including drug delivery, photothermal therapy, photodynamic therapy, chemodynamic therapy, gene delivery, and immunotherapy approaches for improved efficacy. In this review, a comparison of the unique properties of different classes of 2D materials that enable their usage as platforms for multimodal therapy is provided. Further, the benefits and drawbacks of different platforms are also highlighted. Finally, current challenges and emerging opportunities for future development of 2D materials to further enable combination therapy and translation from the bench to clinical oncology applications are discussed.

Funder

National Science Foundation

Publisher

Wiley

Subject

General Medicine

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