TY - JOUR
T1 - Recombinant methioninase in combination with doxorubicin (DOX) overcomes first-line DOX resistance in a patient-derived orthotopic xenograft nude-mouse model of undifferentiated spindle-cell sarcoma
AU - Igarashi, Kentaro
AU - Kawaguchi, Kei
AU - Li, Shukuan
AU - Han, Qinghong
AU - Tan, Yuying
AU - Murakami, Takashi
AU - Kiyuna, Tasuku
AU - Miyake, Kentaro
AU - Miyake, Masuyo
AU - Singh, Arun S.
AU - Eckardt, Mark A.
AU - Nelson, Scott D.
AU - Russell, Tara A.
AU - Dry, Sarah M.
AU - Li, Yunfeng
AU - Yamamoto, Norio
AU - Hayashi, Katsuhiro
AU - Kimura, Hiroaki
AU - Miwa, Shinji
AU - Tsuchiya, Hiroyuki
AU - Singh, Shree Ram
AU - Eilber, Fritz C.
AU - Hoffman, Robert M.
N1 - Publisher Copyright:
© 2018
PY - 2018/3/28
Y1 - 2018/3/28
N2 - We have previously established a patient-derived orthotopic xenograft (PDOX) model of undifferentiated spindle cell sarcoma (USCS). Recombinant methioninase (rMETase) has previously demonstrated efficacy in PDOX mouse models of human cancers. In the present study, we determined if rMETase in combination with doxorubicin (DOX) can overcome first-line DOX resistance in a PDOX models of USCS. The USCS PDOX mouse models were randomized into the following groups when tumor volume reached 100 mm3: G1, control without treatment; G2, doxorubicin (DOX) (3 mg/kg, intraperitoneal [i.p.] injection, weekly, for 2 weeks); G3, rMETase (100 units/mouse, i.p., daily, for 2 weeks); G4, DOX (3 mg/kg, i.p., weekly, for 2 weeks) combined with rMETase (100 units/mouse, i.p., daily, for 2 weeks). Tumor size and body weight were measured twice a week. On day 14 after initiation, the USCS PDOX tumor sizes were (G1): 360 ± 85 mm3; DOX (G2): 355 ± 111 mm3, p =.927; rMETase (G3): 182 ± 57 mm3, p =.0003; DOX + rMETase (G4): 134 ± 29 mm3, p =.00001. These results indicate that rMETase can overcome USCS resistance to DOX, which is first line therapy for this disease. The body weight of treated mice was not significantly different in any group. The present results demonstrate the power of the PDOX model to identify effective therapy for recalcitrant cancer and the potential of rMETase to overcome DOX resistance.
AB - We have previously established a patient-derived orthotopic xenograft (PDOX) model of undifferentiated spindle cell sarcoma (USCS). Recombinant methioninase (rMETase) has previously demonstrated efficacy in PDOX mouse models of human cancers. In the present study, we determined if rMETase in combination with doxorubicin (DOX) can overcome first-line DOX resistance in a PDOX models of USCS. The USCS PDOX mouse models were randomized into the following groups when tumor volume reached 100 mm3: G1, control without treatment; G2, doxorubicin (DOX) (3 mg/kg, intraperitoneal [i.p.] injection, weekly, for 2 weeks); G3, rMETase (100 units/mouse, i.p., daily, for 2 weeks); G4, DOX (3 mg/kg, i.p., weekly, for 2 weeks) combined with rMETase (100 units/mouse, i.p., daily, for 2 weeks). Tumor size and body weight were measured twice a week. On day 14 after initiation, the USCS PDOX tumor sizes were (G1): 360 ± 85 mm3; DOX (G2): 355 ± 111 mm3, p =.927; rMETase (G3): 182 ± 57 mm3, p =.0003; DOX + rMETase (G4): 134 ± 29 mm3, p =.00001. These results indicate that rMETase can overcome USCS resistance to DOX, which is first line therapy for this disease. The body weight of treated mice was not significantly different in any group. The present results demonstrate the power of the PDOX model to identify effective therapy for recalcitrant cancer and the potential of rMETase to overcome DOX resistance.
KW - Doxorubicin
KW - Nude mice
KW - PDOX
KW - Precision medicine
KW - Recombinant methioninase
KW - Spindle-cell sarcoma
UR - https://www.scopus.com/pages/publications/85040345374
UR - https://www.scopus.com/pages/publications/85040345374#tab=citedBy
U2 - 10.1016/j.canlet.2017.12.028
DO - 10.1016/j.canlet.2017.12.028
M3 - Article
C2 - 29306021
AN - SCOPUS:85040345374
SN - 0304-3835
VL - 417
SP - 168
EP - 173
JO - Cancer Letters
JF - Cancer Letters
ER -