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Highly improved pH-Responsive anticancer drug delivery and T2-Weighted MRI imaging by magnetic MOF CuBTC-based nano/microcomposite. | LitMetric

Highly improved pH-Responsive anticancer drug delivery and T2-Weighted MRI imaging by magnetic MOF CuBTC-based nano/microcomposite.

Front Mol Biosci

Biomaterials and Tissue Engineering Research Group, Department of Interdisciplinary Technologies, Breast Cancer Research Center, Motamed Cancer Institute, ACECR, Tehran, Iran.

Published: April 2023

AI Article Synopsis

  • The Cu-BTC framework is gaining attention as a potential drug carrier for cancer treatment due to its biocompatibility and structural properties, but it has limitations in medical imaging.
  • To improve its imaging capabilities, researchers created a magnetic nano/microscale MOF by incorporating FeO nanoparticles into the Cu(BTC) structure, enhancing its drug delivery function.
  • This new nanocomposite showcases high drug loading capacity, excellent pH-responsive release, and significant cancer cell inhibition, potentially making it suitable for clinical applications and other therapies.

Article Abstract

Cu-BTC framework has received a considerable attention in recent years as a drug carrier candidate for cancer treatment due to its unique structural properties and promising biocompatibility. However, its intrinsic deficiency for medical imaging potentially limits its bioapplications; To address this subject, a magnetic nano/microscale MOF has been successfully fabricated by introducing FeO nanoparticles as an imaging agent into the porous isoreticular MOF [Cu(BTC)] as a drug carrier. The synthesized magnetic MOFs exhibits a high loading capacity (40.5%) toward the model anticancer DOX with an excellent pH-responsive drug release. The proposed nanocomposite not only possesses large surface area, high magnetic response, large mesopore volume, high transverse relaxivity ( ) and good stability but also exhibits superior biocompatibility, specific tumor cellular uptake, and significant cancer cell viability inhibitory effect without any targeting agent. It is expected that the synthesized magnetic nano/microcomposite may be used for clinical purposes and can also serve as a platform for photoactive antibacterial therapy ae well as pH/GSH/photo-triple-responsive nanocarrier.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10114589PMC
http://dx.doi.org/10.3389/fmolb.2023.1071376DOI Listing

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