Literature DB >> 22907596

Phase 2 study of carlumab (CNTO 888), a human monoclonal antibody against CC-chemokine ligand 2 (CCL2), in metastatic castration-resistant prostate cancer.

Kenneth J Pienta1, Jean-Pascal Machiels, Dirk Schrijvers, Boris Alekseev, Mikhail Shkolnik, Simon J Crabb, Susan Li, Shobha Seetharam, Thomas A Puchalski, Chris Takimoto, Yusri Elsayed, Fitzroy Dawkins, Johann S de Bono.   

Abstract

BACKGROUND: CC-chemokine ligand 2 (CCL2) promotes tumor growth by angiogenesis, macrophage infiltration and tumor invasion, and distant metastasis. Carlumab (CNTO 888) is a human IgG1κ mAb with high affinity and specificity for human CCL2. Preclinical data suggest carlumab may offer clinical benefit to cancer patients.
METHODS: In a phase 2, open-label study, patients with metastatic castration-resistant prostate cancer (CRPC) previously treated with docetaxel received a 90-min infusion of 15 mg/kg carlumab q2w. The primary endpoint was response rate: change from baseline in skeletal lesions, extraskeletal lesions, and PSA values. Secondary endpoints included overall response rate (CR + PR) by RECIST, OS, PSA response, safety, pharmacodynamics, pharmacokinetics, immunogenicity.
RESULTS: Forty-six patients were treated with 6 median (range 1, 26) doses. One patient had SD >6 months. There were no PSA or RECIST responses. Fourteen (34 %) patients had SD ≥ 3 months. Median OS was 10.2 (95 % CI: 5.2, not estimable) months. Twelve (39 %) patients reported improved pain scores. AEs occurred in 43 (93 %) patients, including 27 (59 %) with grade ≥ 3 AEs. Common grade ≥ 3 AEs were back (11 %) and bone (9 %) pain. Twenty (43 %) patients experienced SAEs, including pneumonia, spinal cord compression, back pain. No patient developed antibodies to carlumab. Steady-state serum concentrations were achieved after 3 repeated doses and were above the 10-μg/mL target concentration. Suppression of free CCL2 serum concentrations was briefly observed following each dose but was not sustained.
CONCLUSION: Carlumab was well-tolerated but did not block the CCL2/CCR2 axis or show antitumor activity as a single agent in metastatic CRPC.

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Year:  2012        PMID: 22907596     DOI: 10.1007/s10637-012-9869-8

Source DB:  PubMed          Journal:  Invest New Drugs        ISSN: 0167-6997            Impact factor:   3.850


  23 in total

1.  Prednisone plus cabazitaxel or mitoxantrone for metastatic castration-resistant prostate cancer progressing after docetaxel treatment: a randomised open-label trial.

Authors:  Johann Sebastian de Bono; Stephane Oudard; Mustafa Ozguroglu; Steinbjørn Hansen; Jean-Pascal Machiels; Ivo Kocak; Gwenaëlle Gravis; Istvan Bodrogi; Mary J Mackenzie; Liji Shen; Martin Roessner; Sunil Gupta; A Oliver Sartor
Journal:  Lancet       Date:  2010-10-02       Impact factor: 79.321

2.  Monocyte chemotactic protein-1 (MCP-1) acts as a paracrine and autocrine factor for prostate cancer growth and invasion.

Authors:  Yi Lu; Zhong Cai; Deborah L Galson; Guozhi Xiao; Yulin Liu; Diane E George; Mona F Melhem; Zhi Yao; Jian Zhang
Journal:  Prostate       Date:  2006-09-01       Impact factor: 4.104

3.  A randomized controlled trial with an anti-CCL2 (anti-monocyte chemotactic protein 1) monoclonal antibody in patients with rheumatoid arthritis.

Authors:  Jasper J Haringman; Danielle M Gerlag; Tom J M Smeets; Dominique Baeten; Filip van den Bosch; Barry Bresnihan; Ferdinand C Breedveld; Huib J Dinant; Francois Legay; Hermann Gram; Pius Loetscher; Robert Schmouder; Thasia Woodworth; Paul P Tak
Journal:  Arthritis Rheum       Date:  2006-08

4.  CCL2 is a potent regulator of prostate cancer cell migration and proliferation.

Authors:  Robert D Loberg; LaShon L Day; Jason Harwood; Chi Ying; Lauren N St John; Ryan Giles; Chris K Neeley; Kenneth J Pienta
Journal:  Neoplasia       Date:  2006-07       Impact factor: 5.715

5.  A destructive cascade mediated by CCL2 facilitates prostate cancer growth in bone.

Authors:  Xin Li; Robert Loberg; Jinhui Liao; Chi Ying; Linda A Snyder; Kenneth J Pienta; Laurie K McCauley
Journal:  Cancer Res       Date:  2009-01-27       Impact factor: 12.701

Review 6.  Second-line chemotherapy for advanced hormone-refractory prostate cancer.

Authors:  Edward G Garmey; Oliver Sartor; Susan Halabi; Nicholas J Vogelzang
Journal:  Clin Adv Hematol Oncol       Date:  2008-02

7.  Docetaxel plus prednisone or mitoxantrone plus prednisone for advanced prostate cancer.

Authors:  Ian F Tannock; Ronald de Wit; William R Berry; Jozsef Horti; Anna Pluzanska; Kim N Chi; Stephane Oudard; Christine Théodore; Nicholas D James; Ingela Turesson; Mark A Rosenthal; Mario A Eisenberger
Journal:  N Engl J Med       Date:  2004-10-07       Impact factor: 91.245

8.  Design and end points of clinical trials for patients with progressive prostate cancer and castrate levels of testosterone: recommendations of the Prostate Cancer Clinical Trials Working Group.

Authors:  Howard I Scher; Susan Halabi; Ian Tannock; Michael Morris; Cora N Sternberg; Michael A Carducci; Mario A Eisenberger; Celestia Higano; Glenn J Bubley; Robert Dreicer; Daniel Petrylak; Philip Kantoff; Ethan Basch; William Kevin Kelly; William D Figg; Eric J Small; Tomasz M Beer; George Wilding; Alison Martin; Maha Hussain
Journal:  J Clin Oncol       Date:  2008-03-01       Impact factor: 44.544

9.  Docetaxel plus prednisone or mitoxantrone plus prednisone for advanced prostate cancer: updated survival in the TAX 327 study.

Authors:  Dominik R Berthold; Gregory R Pond; Freidele Soban; Ronald de Wit; Mario Eisenberger; Ian F Tannock
Journal:  J Clin Oncol       Date:  2008-01-10       Impact factor: 44.544

10.  Circulating tumor cells predict survival benefit from treatment in metastatic castration-resistant prostate cancer.

Authors:  Johann S de Bono; Howard I Scher; R Bruce Montgomery; Christopher Parker; M Craig Miller; Henk Tissing; Gerald V Doyle; Leon W W M Terstappen; Kenneth J Pienta; Derek Raghavan
Journal:  Clin Cancer Res       Date:  2008-10-01       Impact factor: 12.531

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  144 in total

1.  Tumor-Derived CCL2 Mediates Resistance to Radiotherapy in Pancreatic Ductal Adenocarcinoma.

Authors:  Anusha Kalbasi; Chad Komar; Graham M Tooker; Mingen Liu; Jae W Lee; Whitney L Gladney; Edgar Ben-Josef; Gregory L Beatty
Journal:  Clin Cancer Res       Date:  2016-06-28       Impact factor: 12.531

2.  Antibody Neutralization of CXCL10 in Vivo Is Dependent on Binding to Free and Not Endothelial-bound Chemokine: IMPLICATIONS FOR THE DESIGN OF A NEW GENERATION OF ANTI-CHEMOKINE THERAPEUTIC ANTIBODIES.

Authors:  Pauline Bonvin; Franck Gueneau; Vanessa Buatois; Maud Charreton-Galby; Stanley Lasch; Marie Messmer; Urs Christen; Andrew D Luster; Zoë Johnson; Walter Ferlin; Marie Kosco-Vilbois; Amanda Proudfoot; Nicolas Fischer
Journal:  J Biol Chem       Date:  2017-01-30       Impact factor: 5.157

Review 3.  The multifaceted roles of the chemokines CCL2 and CXCL12 in osteophilic metastatic cancers.

Authors:  Élora Midavaine; Jérôme Côté; Philippe Sarret
Journal:  Cancer Metastasis Rev       Date:  2021-05-11       Impact factor: 9.264

4.  Noninvasive Imaging of CCR2+ Cells in Ischemia-Reperfusion Injury After Lung Transplantation.

Authors:  Y Liu; W Li; H P Luehmann; Y Zhao; L Detering; D H Sultan; H-M Hsiao; A S Krupnick; A E Gelman; C Combadiere; R J Gropler; S L Brody; D Kreisel
Journal:  Am J Transplant       Date:  2016-07-14       Impact factor: 8.086

5.  Targeting tumour-associated macrophages with CCR2 inhibition in combination with FOLFIRINOX in patients with borderline resectable and locally advanced pancreatic cancer: a single-centre, open-label, dose-finding, non-randomised, phase 1b trial.

Authors:  Timothy M Nywening; Andrea Wang-Gillam; Dominic E Sanford; Brian A Belt; Roheena Z Panni; Brian M Cusworth; Adetunji T Toriola; Rebecca K Nieman; Lori A Worley; Motoyo Yano; Kathryn J Fowler; A Craig Lockhart; Rama Suresh; Benjamin R Tan; Kian-Huat Lim; Ryan C Fields; Steven M Strasberg; William G Hawkins; David G DeNardo; S Peter Goedegebuure; David C Linehan
Journal:  Lancet Oncol       Date:  2016-04-04       Impact factor: 41.316

6.  Inflammatory Monocytes Promote Perineural Invasion via CCL2-Mediated Recruitment and Cathepsin B Expression.

Authors:  Richard L Bakst; Huizhong Xiong; Chun-Hao Chen; Sylvie Deborde; Anna Lyubchik; Yi Zhou; Shizhi He; William McNamara; Sei-Young Lee; Oakley C Olson; Ingrid M Leiner; Andrea R Marcadis; James W Keith; Hikmat A Al-Ahmadie; Nora Katabi; Ziv Gil; Efsevia Vakiani; Johanna A Joyce; Eric Pamer; Richard J Wong
Journal:  Cancer Res       Date:  2017-09-26       Impact factor: 12.701

7.  Cancer: Metastasis risk after anti-macrophage therapy.

Authors:  Ioanna Keklikoglou; Michele De Palma
Journal:  Nature       Date:  2014-10-22       Impact factor: 49.962

8.  Enhancement of paclitaxel and carboplatin therapies by CCL2 blockade in ovarian cancers.

Authors:  Francois Moisan; Edgar B Francisco; Anamaria Brozovic; George E Duran; Yan C Wang; Shalini Chaturvedi; Shobha Seetharam; Linda A Snyder; Parul Doshi; Branimir I Sikic
Journal:  Mol Oncol       Date:  2014-04-18       Impact factor: 6.603

Review 9.  Tumor-associated macrophages and anti-tumor therapies: complex links.

Authors:  Cristina Belgiovine; Maurizio D'Incalci; Paola Allavena; Roberta Frapolli
Journal:  Cell Mol Life Sci       Date:  2016-03-08       Impact factor: 9.261

Review 10.  The chemokine MCP-1 (CCL2) in the host interaction with cancer: a foe or ally?

Authors:  Teizo Yoshimura
Journal:  Cell Mol Immunol       Date:  2018-01-29       Impact factor: 11.530

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