MetMAb, the One-Armed 5D5 Anti-c-Met Antibody, Inhibits Orthotopic Pancreatic Tumor Growth and Improves Survival
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- Hongkui Jin
- 1Translational Oncology, Departments of
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- Renhui Yang
- 1Translational Oncology, Departments of
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- Zhong Zheng
- 1Translational Oncology, Departments of
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- Mally Romero
- 1Translational Oncology, Departments of
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- Jed Ross
- 2Tumor Biology and Angiogenesis,
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- Hani Bou-Reslan
- 2Tumor Biology and Angiogenesis,
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- Richard A.D. Carano
- 2Tumor Biology and Angiogenesis,
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- Ian Kasman
- 3Pathology,
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- Elaine Mai
- 4Assay and Automation Technology, and
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- Judy Young
- 4Assay and Automation Technology, and
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- Jiping Zha
- 3Pathology,
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- Zemin Zhang
- 5Bioinformatics, Genentech, Inc., South San Francisco, California
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- Sarajane Ross
- 1Translational Oncology, Departments of
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- Ralph Schwall
- 1Translational Oncology, Departments of
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- Gail Colbern
- 1Translational Oncology, Departments of
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- Mark Merchant
- 1Translational Oncology, Departments of
説明
<jats:title>Abstract</jats:title> <jats:p>The hepatocyte growth factor (HGF) and its receptor, c-Met, have been implicated in driving proliferation, invasion, and poor prognosis in pancreatic cancer. Here, we investigated the expression of HGF and c-Met in primary pancreatic cancers and described in vitro and in vivo models in which MetMAb, a monovalent antibody against c-Met, was evaluated. First, expression of HGF and MET mRNA was analyzed in 59 primary pancreatic cancers and 51 normal samples, showing that both factors are highly expressed in pancreatic cancer. We next examined HGF responsiveness in pancreatic cancer lines to select lines that proliferate in response to HGF. Based on these studies, two lines were selected for further in vivo model development: BxPC-3 (c-Met+, HGF−) and KP4 (c-Met+, HGF+) cells. As BxPC-3 cells are responsive to exogenous HGF, s.c. tumor xenografts were grown in a paracrine manner with purified human HGF provided by osmotic pumps, wherein MetMAb treatment significantly inhibited tumor growth. KP4 cells are autocrine for HGF and c-Met, and MetMAb strongly inhibited s.c. tumor growth. To better model pancreatic cancer and to enable long-term survival studies, an orthotopic model of KP4 was established. MetMAb significantly inhibited orthotopic KP4 tumor growth in 4-week studies monitored by ultrasound and also improved survival in 90-day studies. MetMAb significantly reduced c-Met phosphorylation in orthotopic KP4 tumors with a concomitant decrease in Ki-67 staining. These data suggest that the HGF/c-Met axis plays an important role in the progression of pancreatic cancer and that targeting c-Met therein may have therapeutic value. [Cancer Res 2008;68(11):4360–8]</jats:p>
収録刊行物
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- Cancer Research
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Cancer Research 68 (11), 4360-4368, 2008-06-01
American Association for Cancer Research (AACR)