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Dual Delivery of Gemcitabine and Paclitaxel by Wet-Spun Coaxial Fibers Induces Pancreatic Ductal Adenocarcinoma Cell Death, Reduces Tumor Volume, and Sensitizes Cells to Radiation. | LitMetric

AI Article Synopsis

  • Pancreatic ductal adenocarcinoma (PDAC) has a poor prognosis, with surgery and chemotherapy being the only potential curative treatments; however, most cases (up to 80%) are not operable, highlighting the need for new therapies.
  • Researchers developed coaxial polymeric fibers that deliver two chemotherapy drugs, gemcitabine (Gem) and paclitaxel (Ptx), to test their effectiveness against PDAC cells both in lab conditions and in living organisms.
  • The fiber-loaded drugs showed better cell-killing effects and tumor volume reduction in a mouse model without causing harmful side effects, suggesting they could be a promising alternative for treating unresectable PDAC in the future.

Article Abstract

Pancreatic ductal adenocarcinoma (PDAC) has a dismal prognosis, with surgical resection of the tumor in conjunction with systemic chemotherapy the only potential curative therapy. Up to 80% of diagnosed cases are deemed unresectable, prompting the need for alternative treatment approaches. Herein, coaxial polymeric fibers loaded with two chemotherapeutic agents, gemcitabine (Gem) and paclitaxel (Ptx), are fabricated to investigate the effect of local drug delivery on PDAC cell growth in vitro and in vivo. A wet-spinning fabrication method to form a coaxial fiber with a polycaprolactone shell and alginate core loaded with Ptx and Gem, respectively, is used. In vitro, Gem+Ptx fibers display significant cytotoxicity as well as radiosensitizing properties toward PDAC cell lines greater than the equivalent free drugs, which may be attributed to a radiosensitizing effect of the polymers. In vivo studies assessing Gem+Ptx fiber efficacy found that Gem+Ptx fibers reduce tumor volume in a xenograft mouse model of PDAC. Importantly, no difference in mouse weight, circulating cytokines, or liver function is observed in mice treated with Gem+Ptx fibers compared to the empty fiber controls confirming the safety of the implant approach. With further development, Gem+Ptx fibers can improve the treatment of unresectable PDAC in the future.

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Source
http://dx.doi.org/10.1002/adhm.202001115DOI Listing

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