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Bacteria-Elicited Specific Thrombosis Utilizing Acid-Induced Cytolysin A Expression to Enable Potent Tumor Therapy.

Wenjun QinWenxuan XuLongyu WangDebao RenYibin ChengWen SongTao JiangLixin MaCheng Zhang
Published in: Advanced science (Weinheim, Baden-Wurttemberg, Germany) (2022)
Given the special microenvironment of solid tumors, live microorganisms have emerged as drug delivery vehicles and therapeutic agents. Here, an acid-induced therapeutic platform is constructed using attenuated Escherichia coli to express the cytolysin A protein. The bacteria can target and colonize tumor tissues without causing notable host toxicity. Bacterial infection can disrupt blood vessels and trigger thrombosis in tumor tissues, resulting in the cut-off of nutrient supply to tumor cells and the arrest of tumor growth. The expression of cytolysin A induced by the acidic tumor microenvironment further strengthens thrombosis and provides a complementary therapeutic option due to its pore-forming function. In a xenograft mouse tumor model, this strategy reduces tumor proliferation by 79% and significantly prevents tumor metastasis, thus paving a new avenue for bacteria-based tumor therapy.
Keyphrases
  • escherichia coli
  • drug delivery
  • pulmonary embolism
  • poor prognosis
  • oxidative stress
  • long non coding rna
  • signaling pathway
  • mesenchymal stem cells
  • high throughput
  • anti inflammatory
  • biofilm formation