| Literature DB >> 33744388 |
Ji Eun Lee1, Yeo Wool Kang1, Kyung Hee Jung1, Mi Kwon Son1, Seung-Min Shin2, Ji-Sun Kim2, Soo Jung Kim1, Zhenghuan Fang1, Hong Hua Yan1, Jung Hee Park1, Young-Chan Yoon1, Boreum Han1, Min Ji Cheon1, Min Gyu Woo1, Myung Sung Seo1, Joo Han Lim1, Yong-Sung Kim3, Soon-Sun Hong4.
Abstract
KRAS mutation is associated with the progression and growth of pancreatic cancer and contributes to chemo-resistance, which poses a significant clinical challenge in pancreatic cancer. Here, we developed a RT22-ep59 antibody (Ab) that directly targets the intracellularly activated GTP-bound form of oncogenic KRAS mutants after it is internalized into cytosol by endocytosis through tumor-associated receptor of extracellular epithelial cell adhesion molecule (EpCAM) and investigated its synergistic anticancer effects in the presence of gemcitabine in pancreatic cancer. We first observed that RT22-ep59 specifically recognized tumor-associated EpCAM and reached the cytosol by endosomal escape. In addition, the anticancer effect of RT22-ep59 was observed in the high-EpCAM-expressing pancreatic cancer cells and gemcitabine-resistant pancreatic cancer cells, but it had little effect on the low-EpCAM-expressing pancreatic cancer cells. Additionally, co-treatment with RT22-ep59 and gemcitabine synergistically inhibited cell viability, migration, and invasion in 3D-cultures and exhibited synergistic anticancer activity by inhibiting the RAF/ERK or PI3K/AKT pathways in cells with high-EpCAM expression. In an orthotopic mouse model, combined administration of RT22-ep59 and gemcitabine significantly inhibited tumor growth. Furthermore, the co-treatment suppressed cancer metastasis by blocking EMT signaling in vitro and in vivo. Our results demonstrated that RT22-ep59 synergistically increased the antitumor activity of gemcitabine by inhibiting RAS signaling by specifically targeting KRAS. This indicates that co-treatment with RT22-ep59 and gemcitabine might be considered a potential therapeutic strategy for pancreatic cancer patients harboring KRAS mutation.Entities:
Keywords: Endosomal escape; Gemcitabine; KRAS target antibody; Pancreatic cancer
Year: 2021 PMID: 33744388 DOI: 10.1016/j.canlet.2021.03.015
Source DB: PubMed Journal: Cancer Lett ISSN: 0304-3835 Impact factor: 8.679