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Synergistic Amplification of Oxidative Stress-Mediated Antitumor Activity via Liposomal Dichloroacetic Acid and MOF-Fe. | LitMetric

AI Article Synopsis

  • Selective increase of reactive oxygen species (ROS) in cancer cells can effectively induce apoptosis as a form of antitumor treatment.
  • A new liposomal formulation combining dichloroacetic acid (DCA) and metal-organic framework iron (MOF-Fe) has been developed, showing success in causing cancer cell death both in lab studies and live models.
  • This formulation not only enhances the solubility of MOF-Fe but also creates an acidic environment that boosts ROS production, ultimately leading to tumor growth inhibition with minimal side effects on the rest of the body.

Article Abstract

Cancer cells are susceptible to oxidative stress; therefore, selective elevation of intracellular reactive oxygen species (ROS) is considered as an effective antitumor treatment. Here, a liposomal formulation of dichloroacetic acid (DCA) and metal-organic framework (MOF)-Fe (MD@Lip) has been developed, which can efficiently stimulate ROS-mediated cancer cell apoptosis in vitro and in vivo. MD@Lip can not only improve aqueous solubility of octahedral MOF-Fe , but also generate an acidic microenvironment to activate a MOF-Fe -based Fenton reaction. Importantly, MD@Lip promotes DCA-mediated mitochondrial aerobic oxidation to increase intracellular hydrogen peroxide (H O ), which can be consequently converted to highly cytotoxic hydroxyl radicals (•OH) via MOF-Fe , leading to amplification of cancer cell apoptosis. Particularly, MD@Lip can selectively accumulate in tumors, and efficiently inhibit tumor growth with minimal systemic adverse effects. Therefore, liposome-based combination therapy of DCA and MOF-Fe provides a promising oxidative stress-associated antitumor strategy for the management of malignant tumors.

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Source
http://dx.doi.org/10.1002/smll.201901156DOI Listing

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