MXenes-polymer nanocomposites for biomedical applications: fundamentals and future perspectives

Нанокомпозиты MXenes-полимер для биомедицинских приложений: основы и перспективы
D. Parajuli
2024-05-28

MXenesMXenes-polymer nanocompositesdrug deliveryimaging and diagnosticspolymer matrices
The article discusses the promising synergy between MXenes and polymers in developing advanced nanocomposites with diverse applications in biomedicine domains. MXenes, possessing exceptional properties, are integrated into polymer matrices through various synthesis and fabrication methods. These nanocomposites find applications in drug delivery, imaging, diagnostics, and environmental remediation. They offer improved therapeutic efficacy and reduced side effects in drug delivery, enhanced sensitivity and specificity in imaging and diagnostics, and effectiveness in water purification and pollutant removal. The perspective also addresses challenges like biocompatibility and toxicity, while suggesting future research directions. In totality, it highlights the transformative potential of MXenes-polymer nanocomposites in addressing critical issues across various fields.
1
Challenges remain regarding biocompatibility and toxicity, and the paper outlines future research directions to address these issues.
2
MXenes integrated into polymer matrices form nanocomposites with promising applications across biomedicine, including drug delivery, imaging, and diagnostics.
3
MXenes-polymer composites are effective for environmental remediation tasks such as water purification and pollutant removal.
4
MXenes-polymer nanocomposites improve therapeutic efficacy and reduce side effects in drug delivery applications.
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These nanocomposites enhance sensitivity and specificity in imaging and diagnostic applications compared to conventional materials.

MXenes–polymer nanocomposites

Their biomedical-relevant properties and applications including drug delivery efficacy and safety, imaging and diagnostic sensitivity/specificity, and environmental remediation performance, along with biocompatibility and toxicity challenges and future research directions

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Publication Date
2024-05-28
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D. Parajuli
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