Revolutionizing Cancer Treatment: Biopolymer‐Based Aerogels as Smart Platforms for Targeted Drug Delivery

Author:

Alkhalidi Hala M.1ORCID,Alahmadi Amerh Aiad2ORCID,Rizg Waleed Y.23,Yahya Esam Bashir45ORCID,H.P.S. Abdul Khalil56ORCID,Mushtaq Rayan Y.7ORCID,Badr Moutaz Y.8ORCID,Safhi Awaji Y.9ORCID,Hosny Khaled M.2ORCID

Affiliation:

1. Department of Clinical Pharmacy, Faculty of Pharmacy King Abdulaziz University Jeddah 21589 Saudi Arabia

2. Department of Pharmaceutics, Faculty of Pharmacy King Abdulaziz University Jeddah 21589 Saudi Arabia

3. Center of Innovation in Personalized Medicine, 3D Bioprinting Unit King Abdulaziz University Jeddah 21589 Saudi Arabia

4. Bioprocess Technology Division, School of Industrial Technology Universiti Sains Malaysia Penang 11800 Malaysia

5. Green Biopolymer, Coatings and Packaging Cluster, School of Industrial Technology Universiti Sains Malaysia Penang 11800 Malaysia

6. Bioresource Technology Division, School of Industrial Technology Universiti Sains Malaysia Penang 11800 Malaysia

7. Department of Pharmaceutics, College of Clinical Pharmacy Imam Abdulrahman Bin Faisal University Dammam 31441 Saudi Arabia

8. Department of Pharmaceutical Sciences, College of Pharmacy Umm Al‐Qura University Makkah 24381 Saudi Arabia

9. Department of Pharmaceutics, College of Pharmacy Jazan University Jazan 45142 Saudi Arabia

Abstract

AbstractCancer stands as a leading cause of global mortality, with chemotherapy being a pivotal treatment approach, either alone or in conjunction with other therapies. The primary goal of these therapies is to inhibit the growth of cancer cells specifically, while minimizing harm to healthy dividing cells. Conventional treatments, often causing patient discomfort due to side effects, have led researchers to explore innovative, targeted cancer cell therapies. Thus, biopolymer‐based aerogels emerge as innovative platforms, showcasing unique properties that respond intelligently to diverse stimuli. This responsiveness enables precise control over the release of anticancer drugs, enhancing therapeutic outcomes. The significance of these aerogels lies in their ability to offer targeted drug delivery with increased efficacy, biocompatibility, and a high drug payload. In this comprehensive review, the author discuss the role of biopolymer‐based aerogels as an emerging functionalized platforms in anticancer drug delivery. The review addresses the unique properties of biopolymer‐based aerogels showing their smart behavior in responding to different stimuli including temperature, pH, magnetic and redox potential to control anticancer drug release. Finally, the review discusses the application of different biopolymer‐based aerogel in delivering different anticancer drugs and also discusses the potential of these platforms in gene delivery applications.

Publisher

Wiley

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