| Literature DB >> 29777999 |
Wenyan Fu1, Hefen Sun1, Yang Zhao1, Mengting Chen1, Lipeng Yang2, Xueli Yang1, Wei Jin3.
Abstract
The overexpression of EGFR often occurs in TNBC, and the anti-EGFR receptor antibody cetuximab is used widely to treat metastatic cancer in the clinic. However, EGFR-targeted therapies have been developed for TNBC without clinical success. In this study, we show that impaired EGFR degradation is crucial for resistance to cetuximab, which depends on the cell surface molecule CD44. To further investigate the role of CD44 in EGFR signaling and its treatment potential, we developed a targeting fusion protein composed of an anti-EGFR scFv generated from cetuximab and truncated protamine, called Ce-tP. CD44 siRNA can be specifically delivered into EGFR-positive TNBC cells by Ce-tP. Efficient knockdown of CD44 and suppression of both EGFR and downstream signaling by the Ce-tP/siRNA complex were observed in EGFR-positive TNBC cells. More importantly, our results also showed that targeted delivery of siRNA specific for CD44 can efficiently overcome resistance to EGFR targeting in TNBC cells both in vitro and in vivo. Overall, our results establish a new principle to achieve EGFR inhibition in TNBC and limit drug resistance.Entities:
Keywords: De novo resistance; EGFR; RNAi; TNBC
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Year: 2018 PMID: 29777999 DOI: 10.1016/j.molimm.2018.05.010
Source DB: PubMed Journal: Mol Immunol ISSN: 0161-5890 Impact factor: 4.407