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Chemical Design of Both a Glutathione-Sensitive Dimeric Drug Guest and a Glucose-Derived Nanocarrier Host to Achieve Enhanced Osteosarcoma Lung Metastatic Anticancer Selectivity. | LitMetric

AI Article Synopsis

  • Researchers developed a new type of nanomedicine called diPTX@CPGC, which combines two block polymers and a dimeric prodrug molecule for targeted cancer treatment.
  • This nanocarrier is designed to release the drug paclitaxel (PTX) in response to specific chemical agents, allowing for selective killing of cancer cells while sparing healthy cells.
  • In tests, diPTX@CPGC showed better tumor penetration and effectiveness against osteosarcoma lung metastases compared to standard treatments, with fewer side effects in both lab and live models.

Article Abstract

Although nanomedicines have been pursued for nearly 20 years, fundamental chemical strategies that seek to optimize both the drug and drug carrier together in a concerted effort remain uncommon yet may be powerful. In this work, two block polymers and one dimeric prodrug molecule were designed to be coassembled into degradable, functional nanocarriers, where the chemistry of each component was defined to accomplish important tasks. The result is a poly(ethylene glycol) (PEG)-protected redox-responsive dimeric paclitaxel (diPTX)-loaded cationic poly(d-glucose carbonate) micelle (diPTX@CPGC). These nanostructures showed tunable sizes and surface charges and displayed controlled PTX drug release profiles in the presence of reducing agents, such as glutathione (GSH) and dithiothreitol (DTT), thereby resulting in significant selectivity for killing cancer cells over healthy cells. Compared to free PTX and diPTX, diPTX@CPGC exhibited improved tumor penetration and significant inhibition of tumor cell growth toward osteosarcoma (OS) lung metastases with minimal side effects both in vitro and in vivo, indicating the promise of diPTX@CPGC as optimized anticancer therapeutic agents for treatment of OS lung metastases.

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Source
http://dx.doi.org/10.1021/jacs.7b11462DOI Listing

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