| Literature DB >> 29374999 |
Kentaro Igarashi1,2,3, Kei Kawaguchi1,2, Tasuku Kiyuna1,2, Kentaro Miyake1,2, Masuyo Miyake1,2, Shukuan Li1, Qinghong Han1, Yuying Tan1, Ming Zhao1, Yunfeng Li4, Scott D Nelson4, Sarah M Dry4, Arun S Singh5, Irmina A Elliott6, Tara A Russell6, Mark A Eckardt7, Norio Yamamoto3, Katsuhiro Hayashi3, Hiroaki Kimura3, Shinji Miwa3, Hiroyuki Tsuchiya3, Fritz C Eilber6, Robert M Hoffman1,2.
Abstract
In the present study, a patient-derived orthotopic xenograft (PDOX) model of recurrent cisplatinum (CDDP)-resistant metastatic osteosarcoma was treated with Salmonella typhimurium A1-R (S. typhimurium A1-R), which decoys chemoresistant quiescent cancer cells to cycle, and recombinant methioninase (rMETase), which selectively traps cancer cells in late S/G2, and chemotherapy. The PDOX models were randomized into the following groups 14 days after implantation: G1, control without treatment; G2, CDDP (6 mg/kg, intraperitoneal (i.p.) injection, weekly, for 2 weeks); G3, rMETase (100 unit/mouse, i.p., daily, for 2 weeks). G4, S. typhimurium A1-R (5 × 107 CFU/100 μl, i.v., weekly, for 2 weeks); G5, S. typhimurium A1-R (5 × 107 CFU/100 μl, i.v., weekly, for 2 weeks) combined with rMETase (100 unit/mouse, i.p., daily, for 2 weeks); G6, S. typhimurium A1-R (5 × 107 CFU/100 μl, i.v., weekly, for 2 weeks) combined with rMETase (100 unit/mouse, i.p., daily, for 2 weeks) and CDDP (6 mg/kg, i.p. injection, weekly, for 2 weeks). On day 14 after initiation, all treatments except CDDP alone, significantly inhibited tumor growth compared to untreated control: (CDDP: p = 0.586; rMETase: p = 0.002; S. typhimurium A1-R: p = 0.002; S. typhimurium A1-R combined with rMETase: p = 0.0004; rMETase combined with both S. typhimurium A1-R and CDDP: p = 0.0001). The decoy, trap and kill combination of S. typhimurium A1-R, rMETase and CDDP was the most effective of all therapies and was able to eradicate the metastatic osteosarcoma PDOX.Entities:
Keywords: PDOX; Salmonella typhimurium A1-R; cisplatinum; decoy; kill; lung; metastasis; methioninase; osteosarcoma; resistance; trap
Mesh:
Substances:
Year: 2018 PMID: 29374999 PMCID: PMC5969544 DOI: 10.1080/15384101.2018.1431596
Source DB: PubMed Journal: Cell Cycle ISSN: 1551-4005 Impact factor: 4.534