
| HOME | HELP | FEEDBACK | SUBSCRIPTIONS | ARCHIVE | SEARCH | TABLE OF CONTENTS |
Cancer Therapy: Preclinical |
Pfizer Global Research and Development, Inc., Groton, Connecticut
Requests for reprints: Bruce D. Cohen, Pfizer Global Research and Development, Inc., Eastern Point Road, Groton, CT 06340. Phone: 860-715-0655; E-mail: bruce_d_cohen{at}groton.pfizer.com.
Purpose: The insulin-like growth factor (IGF) signaling pathway is implicated in cellular mitogenesis, angiogenesis, tumor cell survival, and tumorigenesis. Inhibition of this pathway results in decreased cell growth, inhibition of tumor formation in animal models, and increased apoptosis in cells treated with cytotoxic chemotherapy. We generated and characterized a human monoclonal antibody that targeted the IGF receptor.
Experimental Design: By use of XenoMouse technology, we generated CP-751,871, a fully human IgG2 antibody with high affinity (Kd = 1.5 nmol/L) for human IGF-1R and evaluated its biological, pharmacologic, and antitumor properties.
Results: This antibody blocks binding of IGF-1 to its receptor (IC50 1.8 nmol/L), IGF-1-induced receptor autophosphorylation (IC50 0.42 nmol/L) and induced the down-regulation of IGF-1R in vitro and in tumor xenografts. The extent of IGF-1R down-regulation in vivo was proportional to CP-751,871 concentrations in the serum of tumor-bearing mice. Pharmacokinetic profiles in cynomolgus monkeys indicated a close to linear increase of exposure following i.v. dosing of antibody in the range of 3 to 100 mg/kg. CP-751,871 showed significant antitumor activity both as a single agent and in combination with Adriamycin, 5-fluorouracil, or tamoxifen in multiple tumor models. A biomarker assay was developed to establish the relationship between circulating antibody concentrations and down-regulation of IGF-1R in peripheral blood cells. The concentration of CP-751,871 required to down-regulate 50% of IGF-1R on peripheral blood cells was 0.3 nmol/L.
Conclusion: These data suggest that inhibition of the IGF cascade by use of this monoclonal antibody may be of clinical benefit in the treatment of human cancers.
Key Words: IGF-1R Antibody Therapy Biomarker
This article has been cited by other articles:
![]() |
L. Cao, Y. Yu, I. Darko, D. Currier, L. H. Mayeenuddin, X. Wan, C. Khanna, and L. J. Helman Addiction to Elevated Insulin-like Growth Factor I Receptor and Initial Modulation of the AKT Pathway Define the Responsiveness of Rhabdomyosarcoma to the Targeting Antibody Cancer Res., October 1, 2008; 68(19): 8039 - 8048. [Abstract] [Full Text] [PDF] |
||||
![]() |
J. Rodon, V. DeSantos, R. J. Ferry Jr., and R. Kurzrock Early drug development of inhibitors of the insulin-like growth factor-I receptor pathway: Lessons from the first clinical trials Mol. Cancer Ther., September 1, 2008; 7(9): 2575 - 2588. [Abstract] [Full Text] [PDF] |
||||
![]() |
Y. Shang, Y. Mao, J. Batson, S. J. Scales, G. Phillips, M. R. Lackner, K. Totpal, S. Williams, J. Yang, Z. Tang, et al. Antixenograft tumor activity of a humanized anti-insulin-like growth factor-I receptor monoclonal antibody is associated with decreased AKT activation and glucose uptake Mol. Cancer Ther., September 1, 2008; 7(9): 2599 - 2608. [Abstract] [Full Text] [PDF] |
||||
![]() |
M. Q. Lacy, M. Alsina, R. Fonseca, M. L. Paccagnella, C. L. Melvin, D. Yin, A. Sharma, M. Enriquez Sarano, M. Pollak, S. Jagannath, et al. Phase I, Pharmacokinetic and Pharmacodynamic Study of the Anti-Insulinlike Growth Factor Type 1 Receptor Monoclonal Antibody CP-751,871 in Patients With Multiple Myeloma J. Clin. Oncol., July 1, 2008; 26(19): 3196 - 3203. [Abstract] [Full Text] [PDF] |
||||
![]() |
W. Piao, Y. Wang, Y. Adachi, H. Yamamoto, R. Li, A. Imsumran, H. Li, T. Maehata, M. Ii, Y. Arimura, et al. Insulin-like growth factor-I receptor blockade by a specific tyrosine kinase inhibitor for human gastrointestinal carcinomas Mol. Cancer Ther., June 1, 2008; 7(6): 1483 - 1493. [Abstract] [Full Text] [PDF] |
||||
![]() |
J. R. Hecht Current and emerging therapies for metastatic colorectal cancer: Applying research findings to clinical practice Am. J. Health Syst. Pharm., June 1, 2008; 65(11_Supplement_4): S15 - S21. [Abstract] [Full Text] [PDF] |
||||
![]() |
D. Sachdev and D. Yee Disrupting Insulin-Like Growth Factor Signaling as a Potential Cancer Therapy Am. Assoc. Cancer Res. Educ. Book, April 12, 2008; 2008(1): 39 - 58. [Abstract] [Full Text] [PDF] |
||||
![]() |
Y. Kusada, T. Morizono, A. Matsumoto-Takasaki, K. Sakai, S. Sato, H. Asanuma, A. Takayanagi, and Y. Fujita-Yamaguchi Construction and Characterization of Single-chain Antibodies Against Human Insulin-like Growth Factor-I Receptor from Hybridomas Producing 1H7 or 3B7 Monoclonal Antibody J. Biochem., January 1, 2008; 143(1): 9 - 19. [Abstract] [Full Text] [PDF] |
||||
![]() |
R. T. Kurmasheva, J. B. Easton, and P. J. Houghton Combined Targeting of mTOR and the Insulin-like Growth Factor Pathway ASCO Educational Book, January 1, 2008; 2008(1): 460 - 464. [Abstract] [Full Text] [PDF] |
||||
![]() |
P. D. Ryan and P. E. Goss The Emerging Role of the Insulin-Like Growth Factor Pathway as a Therapeutic Target in Cancer Oncologist, January 1, 2008; 13(1): 16 - 24. [Abstract] [Full Text] [PDF] |
||||
![]() |
P. Haluska, H. M. Shaw, G. N. Batzel, D. Yin, J. R. Molina, L. R. Molife, T. A. Yap, M. L. Roberts, A. Sharma, A. Gualberto, et al. Phase I Dose Escalation Study of the Anti Insulin-Like Growth Factor-I Receptor Monoclonal Antibody CP-751,871 in Patients with Refractory Solid Tumors Clin. Cancer Res., October 1, 2007; 13(19): 5834 - 5840. [Abstract] [Full Text] [PDF] |
||||
![]() |
J. Chi-Hang Li and R. Li RAV12 Accelerates the Desensitization of Akt/PKB Pathway of Insulin-like Growth Factor I Receptor Signaling in COLO205 Cancer Res., September 15, 2007; 67(18): 8856 - 8864. [Abstract] [Full Text] [PDF] |
||||
![]() |
Q.-s. Ji, M. J. Mulvihill, M. Rosenfeld-Franklin, A. Cooke, L. Feng, G. Mak, M. O'Connor, Y. Yao, C. Pirritt, E. Buck, et al. A novel, potent, and selective insulin-like growth factor-I receptor kinase inhibitor blocks insulin-like growth factor-I receptor signaling in vitro and inhibits insulin-like growth factor-I receptor dependent tumor growth in vivo Mol. Cancer Ther., August 1, 2007; 6(8): 2158 - 2167. [Abstract] [Full Text] [PDF] |
||||
![]() |
J. S. de Bono, G. Attard, A. Adjei, M. N. Pollak, P. C. Fong, P. Haluska, L. Roberts, C. Melvin, M. Repollet, D. Chianese, et al. Potential Applications for Circulating Tumor Cells Expressing the Insulin-Like Growth Factor-I Receptor Clin. Cancer Res., June 15, 2007; 13(12): 3611 - 3616. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. Imsumran, Y. Adachi, H. Yamamoto, R. Li, Y. Wang, Y. Min, W. Piao, K. Nosho, Y. Arimura, Y. Shinomura, et al. Insulin-like growth factor-I receptor as a marker for prognosis and a therapeutic target in human esophageal squamous cell carcinoma Carcinogenesis, May 1, 2007; 28(5): 947 - 956. [Abstract] [Full Text] [PDF] |
||||
![]() |
R. Fonseca and A. K. Stewart Targeted therapeutics for multiple myeloma: The arrival of a risk-stratified approach Mol. Cancer Ther., March 1, 2007; 6(3): 802 - 810. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. A. Samani, S. Yakar, D. LeRoith, and P. Brodt The Role of the IGF System in Cancer Growth and Metastasis: Overview and Recent Insights Endocr. Rev., February 1, 2007; 28(1): 20 - 47. [Abstract] [Full Text] [PDF] |
||||
![]() |
G. W. Allen, C. Saba, E. A. Armstrong, S.-M. Huang, S. Benavente, D. L. Ludwig, D. J. Hicklin, and P. M. Harari Insulin-like Growth Factor-I Receptor Signaling Blockade Combined with Radiation Cancer Res., February 1, 2007; 67(3): 1155 - 1162. [Abstract] [Full Text] [PDF] |
||||
![]() |
D. Sachdev and D. Yee Disrupting insulin-like growth factor signaling as a potential cancer therapy Mol. Cancer Ther., January 1, 2007; 6(1): 1 - 12. [Abstract] [Full Text] [PDF] |
||||
![]() |
J Riedemann and V M Macaulay IGF1R signalling and its inhibition Endocr. Relat. Cancer, December 1, 2006; 13(Supplement_1): S33 - S43. [Abstract] [Full Text] [PDF] |
||||
![]() |
S. Li, L. Wu, and Z. Zhang Constructing biological networks through combined literature mining and microarray analysis: a LMMA approach Bioinformatics, September 1, 2006; 22(17): 2143 - 2150. [Abstract] [Full Text] [PDF] |
||||
![]() |
Z. Wang, G. Chakravarty, S. Kim, Y. D. Yazici, M. N. Younes, S. A. Jasser, A. A. Santillan, C. D. Bucana, A. K. El-Naggar, and J. N. Myers Growth-Inhibitory Effects of Human Anti-Insulin-Like Growth Factor-I Receptor Antibody (A12) in an Orthotopic Nude Mouse Model of Anaplastic Thyroid Carcinoma Clin. Cancer Res., August 1, 2006; 12(15): 4755 - 4765. [Abstract] [Full Text] [PDF] |
||||
![]() |
D. Sachdev, R. Singh, Y. Fujita-Yamaguchi, and D. Yee Down-regulation of Insulin Receptor by Antibodies against the Type I Insulin-Like Growth Factor Receptor: Implications for Anti-Insulin-Like Growth Factor Therapy in Breast Cancer Cancer Res., February 15, 2006; 66(4): 2391 - 2402. [Abstract] [Full Text] [PDF] |
||||
![]() |
B. S. Miller and D. Yee Type I Insulin-like Growth Factor Receptor as a Therapeutic Target in Cancer Cancer Res., November 15, 2005; 65(22): 10123 - 10127. [Abstract] [Full Text] [PDF] |
||||
![]() |
S. J. Cohen, R. B. Cohen, and N. J. Meropol Targeting Signal Transduction Pathways in Colorectal Cancer--More Than Skin Deep J. Clin. Oncol., August 10, 2005; 23(23): 5374 - 5385. [Abstract] [Full Text] [PDF] |
||||
| HOME | HELP | FEEDBACK | SUBSCRIPTIONS | ARCHIVE | SEARCH | TABLE OF CONTENTS |
| Cancer Research | Clinical Cancer Research |
| Cancer Epidemiology Biomarkers & Prevention | Molecular Cancer Therapeutics |
| Molecular Cancer Research | Cancer Prevention Research |
| Cancer Prevention Journals Portal | Cancer Reviews Online |
| Annual Meeting Education Book | Meeting Abstracts Online |