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CPPF, A Novel Microtubule Targeting Anticancer Agent, Inhibits the Growth of a Wide Variety of Cancers. | LitMetric

AI Article Synopsis

  • Several microtubule targeting agents (MTAs) have shown effectiveness as anticancer drugs, but resistance often limits their use, creating a need for new therapies.
  • Researchers discovered a novel MTA, CPPF, which effectively suppresses cancer cell proliferation, including in multidrug-resistant lines that do not respond to conventional MTAs.
  • CPPF works by depolymerizing microtubules, causing mitotic arrest and apoptosis, and has demonstrated low toxicity in zebrafish models, indicating its potential as a successful new anticancer treatment.

Article Abstract

In the past, several microtubule targeting agents (MTAs) have been developed into successful anticancer drugs. However, the usage of these drugs has been limited by the acquisition of drug resistance in many cancers. Therefore, there is a constant demand for the development of new therapeutic drugs. Here we report the discovery of 5-5 (3-cchlorophenyl)-N-(3-pyridinyl)-2-furamide (CPPF), a novel microtubule targeting anticancer agent. Using both 2D and 3D culture systems, we showed that CPPF was able to suppress the proliferation of diverse cancer cell lines. In addition, CPPF was able to inhibit the growth of multidrug-resistant cell lines that are resistant to other MTAs, such as paclitaxel and colchicine. Our results showed that CPPF inhibited growth by depolymerizing microtubules leading to mitotic arrest and apoptosis. We also confirmed CPPF anticancer effects in vivo using both a mouse xenograft and a two-step skin cancer mouse model. Using established zebrafish models, we showed that CPPF has low toxicity in vivo. Overall, our study proves that CPPF has the potential to become a successful anticancer chemotherapeutic drug.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7370279PMC
http://dx.doi.org/10.3390/ijms21134800DOI Listing

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