Covalent organic frameworks (COFs) as carrier for improved drug delivery and biosensing applications

Author:

Younas Rida12,Jubeen Farhat2,Bano Nargis3,Andreescu Silvana4,Zhang Hongxia1,Hayat Akhtar15ORCID

Affiliation:

1. State Key Laboratory of Biobased Material and Green Papermaking, College of Food Science and Engineering, Qilu University of Technology Shandong Academy of Science Shandong China

2. Department of Chemistry Govt College Women University Faisalabad Pakistan

3. Department of Physics and Astronomy College of Science King Saud University Riyadh Saudi Arabia

4. Department of Chemistry and Biomolecular Science Clarkson University Potsdam New York USA

5. Interdisciplinary Research Centre in Biomedical Materials COMSATS University Islamabad Lahore Punjab Pakistan

Abstract

AbstractPorous organic frameworks (POFs) represent a significant subclass of nanoporous materials in the field of materials science, offering exceptional characteristics for advanced applications. Covalent organic frameworks (COFs), as a novel and intriguing type of porous material, have garnered considerable attention due to their unique design capabilities, diverse nature, and wide‐ranging applications. The unique structural features of COFs, such as high surface area, tuneable pore size, and chemical stability, render them highly attractive for various applications, including targeted and controlled drug release, as well as improving the sensitivity and selectivity of electrochemical biosensors. Therefore, it is crucial to comprehend the methods employed in creating COFs with specific properties that can be effectively utilized in biomedical applications. To address this indispensable fact, this review paper commences with a concise summary of the different methods and classifications utilized in synthesizing COFs. Second, it highlights the recent advancements in COFs for drug delivery, including drug carriers as well as the classification of drug delivery systems and biosensing, encompassing drugs, biomacromolecules, small biomolecules and the detection of biomarkers. While exploring the potential of COFs in the biomedical field, it is important to acknowledge the limitations that researchers may encounter, which could impact the practicality of their applications. Third, this paper concludes with a thought‐provoking discussion that thoroughly addresses the challenges and opportunities associated with leveraging COFs for biomedical applications. This review paper aims to contribute to the scientific community's understanding of the immense potential of COFs in improving drug delivery systems and enhancing the performance of biosensors in biomedical applications.

Publisher

Wiley

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