Alginate-Chitosan Biodegradable and Biocompatible Based Hydrogel for Breast Cancer Immunotherapy and Diagnosis: A Comprehensive Review
Биодеградируемый и биосовместимый гидрогель на основе альгината и хитозана для иммунотерапии и диагностики рака молочной железы: комплексный обзор
2024-05-24
SCID: 54.1/epb7v45h
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alginate-chitosan hydrogelbiocompatible biomaterialsbiodegradable drug deliverybreast cancer immunotherapyhydrogel-based diagnosis
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Abstract (AI)
Breast cancer is the most common type of cancer and the second leading cause of cancer-related mortality in females. There are many side effects due to chemotherapy and traditional surgery, like fatigue, loss of appetite, skin irritation, and drug resistance to cancer cells. Immunotherapy has become a hopeful approach toward cancer treatment, generating long-lasting immune responses in malignant tumor patients. Recently, hydrogel has received more attention toward cancer therapy due to its specific characteristics, such as decreased toxicity, fewer side effects, and better biocompatibility drug delivery to the particular tumor location. Researchers globally reported various investigations on hydrogel research for tumor diagnosis. The hydrogel-based multilayer platform with controlled nanostructure has received more attention for its antitumor effect. Chitosan and alginate play a leading role in the formation of the cross-link in a hydrogel. Also, they help in the stability of the hydrogel. This review discusses the properties, preparation, biocompatibility, and bioavailability of various research and clinical approaches of the multipolymer hydrogel made of alginate and chitosan for breast cancer treatment. With a focus on cases of breast cancer and the recovery rate, there is a need to find out the role of hydrogel in drug delivery for breast cancer treatment.
Key Findings
1
Alginate–chitosan multipolymer hydrogels are reviewed as biodegradable, biocompatible platforms for breast cancer immunotherapy, drug delivery, and diagnosis.
2
Chitosan and alginate form stabilizing cross-links that support hydrogel structure and controlled nanostructured drug-delivery platforms.
3
Hydrogel-based delivery may reduce toxicity and treatment-related side effects while enabling localized administration to tumor sites compared with conventional chemotherapy approaches.
4
The abstract identifies the need for further evaluation of hydrogel-mediated drug delivery and its relationship to breast cancer recovery rates.
5
The review examines hydrogel properties, preparation methods, biocompatibility, bioavailability, and reported research and clinical applications in breast cancer.
Research Object
alginate–chitosan biodegradable and biocompatible multipolymer hydrogels for breast cancer immunotherapy, diagnosis, and drug delivery
Research Subject
the properties, preparation, biocompatibility, bioavailability, antitumor effects, and therapeutic and diagnostic performance of alginate–chitosan hydrogels in breast cancer
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2024-05-24
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