Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Pivot Concepts:
Gene/Protein
Disease
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Drug
Enzyme
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Target Concepts:
Gene/Protein
Disease
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Enzyme
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Query: UMLS:C0035412 (
rhabdomyosarcoma
)
6,156
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
To test the role of STAT3 in human
rhabdomyosarcoma
cells, genetic approaches were used to either knockdown the expression of STAT3 and
GP130
, an upstream activator of STAT3 using short hairpin RNA (shRNA) or express persistently active STAT3 protein. Knockdown expression of
GP130
or STAT3 sensitized cells to anti-cancer drugs doxorubicin, cisplatin, and MEK inhibitor AZD6244. On the other hand, expression of the constitutively active STAT3 protein reduced the sensitivity of
rhabdomyosarcoma
cells to those drugs. In addition, we tested a small molecule STAT3 inhibitor LY5 and a
GP130
inhibitor bazedoxifene in
rhabdomyosarcoma
cells. Our data demonstrated that the combination of LY5 or bazedoxifene with doxorubicin, cisplatin, and AZD6244 showed stronger inhibitory effects than single agent alone. In summary, our results demonstrated that
GP130
/STAT3 signaling contributes to the resistance of these drugs in
rhabdomyosarcoma
cells. They also suggested a potentially novel cancer therapeutic strategy using the combination of inhibitors of
GP130
/STAT3 signaling with doxorubicin, cisplatin, or AZD6244 for
rhabdomyosarcoma
treatments.
...
PMID:Persistent GP130/STAT3 Signaling Contributes to the Resistance of Doxorubicin, Cisplatin, and MEK Inhibitor in Human Rhabdomyosarcoma Cells. 2637 15
Interleukins-6 (IL-6)/
GP130
signaling pathway represents a promising target for cancer therapy due to its critical role in survival and progression of multiple types of cancer. We have identified Bazedoxifene, a Food and Drug Administration (FDA)-approved drug used for the prevention of postmenopausal osteoporosis, with novel function as inhibitor of IL-6/
GP130
interaction. In this study, we investigate the effect of Bazedoxifene in
rhabdomyosarcoma
and evaluate whether inhibiting IL-6/
GP130
signaling is an effective therapeutic strategy for
rhabdomyosarcoma
. The inhibitory effect of Bazedoxifene was assessed in
rhabdomyosarcoma
cell lines in vitro and RH30 xenograft model was used to further examine the suppressive efficacy of Bazedoxifene on tumor growth in vivo.
Rhabdomyosarcoma
cells showed their sensitivity to
GP130
inhibition using gene knockdown or neutralized antibody, suggesting IL-6/
GP130
as therapeutic target in
rhabdomyosarcoma
cells. Bazedoxifene decreased the signal transducer and activator of transcription3 (STAT3) phosphorylation, blocked STAT3 DNA binding, and down-regulated the expression of STAT3 downstream genes. Bazedoxifene also induced cell apoptosis, reduced cell viability, and inhibited colony formation in
rhabdomyosarcoma
cells. The inhibition of colony formation, STAT3 phosphorylation, or cell viability following Bazedoxifene treatment was partially reversed by addition of excess IL-6 or overexpression of constitutive STAT3, respectively, supporting Bazedoxifene acted through IL-6/
GP130
signaling. In addition, Bazedoxifene repressed cell invasion and angiogenesis in vitro. Furthermore, oral administration of Bazedoxifene significantly suppressed tumor growth and expression of STAT3 phosphorylation in nude mice bearing established human
rhabdomyosarcoma
xenograft. Taken together, these findings validate IL-6/
GP130
signaling as therapeutic target in
rhabdomyosarcoma
and provide first evidence that Bazedoxifene may serve as a novel promising drug targeting IL-6/
GP130
for treatment of
rhabdomyosarcoma
.
...
PMID:Repositioning Bazedoxifene as a novel IL-6/GP130 signaling antagonist for human rhabdomyosarcoma therapy. 2867 24