The paper describes multifunctional vesicles as nanocarrier systems used in cancer treatment and theranostics. They are presented as platforms that can improve delivery and efficacy of anticancer agents.
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multifunctional vesicles
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Multifunctional vesicles in cancer treatment offer targeted drug delivery, reduced side effects, and improved drug stability.
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highlighting the advantages they offer, such as targeted drug delivery, reduced side effects, and improved drug stability
Multifunctional vesicles used in cancer treatment include liposomes, polymersomes, extracellular vesicles, and hybrid vesicles.
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This paper explores the various types of multifunctional vesicles utilized in cancer treatment, including non-biological vesicles such as liposomes and polymersomes, biological vesicles like extracellular vesicles (EVs), and hybrid vesicles that combine the benefits of both.
Recent advancements and case studies indicate that multifunctional vesicles can improve therapeutic outcomes in cancer treatment.
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Recent advancements and specific case studies are presented to illustrate the effectiveness of these vesicles in improving therapeutic outcomes.
Multifunctional vesicles have potential pitfalls including stability issues, manufacturing complexity, and toxicity concerns.
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we discuss the potential pitfalls associated with these vesicles, including stability issues, manufacturing complexity, and toxicity concerns
Continued research is needed to address challenges and fully harness the potential of multifunctional vesicles in cancer treatment.
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Our findings underscore the need for continued research to address the challenges and fully harness the potential of multifunctional vesicles in cancer treatment.