Multiple Sclerosis Clinical Trial
Official title:
Cladribine Tablets After Treatment With Natalizumab (CLADRINA)
Verified date | January 2024 |
Source | University of Texas Southwestern Medical Center |
Contact | n/a |
Is FDA regulated | No |
Health authority | |
Study type | Interventional |
The purpose of this study is to generate hypotheses regarding the safety, efficacy, and immunological impact of cladribine tablets after treatment with natalizumab in patients with relapsing-remitting multiple sclerosis (RRMS) and active secondary progressive multiple sclerosis (active SPMS).
Status | Active, not recruiting |
Enrollment | 40 |
Est. completion date | December 2026 |
Est. primary completion date | August 30, 2024 |
Accepts healthy volunteers | No |
Gender | All |
Age group | 18 Years to 60 Years |
Eligibility | Inclusion Criteria: Patients who meet the following inclusion criteria will be eligible for enrollment in the study: 1. Age between 18 and 60 years, inclusive. 2. Diagnosis of relapsing forms of MS, to include RRMS and active SPMS, diagnosed with McDonald Criteria 2005, 2010, and/or 2017 (1-3) 3. EDSS 0 - 5.5 (Functional system changes in cerebral (or mental) functions and in bowel and bladder functions not used in determining EDSS for protocol eligibility). 4. Has had a minimum of 12 months of continuous natalizumab therapy (300 mg/d), including patients receiving extended interval dosing of natalizumab (e.g., less frequently than every-4-week infusion). 5. Negative history for any relapses at least 28 days prior to enrollment. 6. Weighing between 40 kilograms or more. 7. Female subjects of childbearing potential must use effective methods of contraception to prevent pregnancy for 4 weeks before initiation of cladribine tablets and must agree to continue to practice adequate contraception for at least 6 months after the last dose. Women using systemically acting hormonal contraceptives should add a barrier method during cladribine treatment and for at least 4 weeks after the last dose in each treatment year. 8. Female subjects must not be pregnant; female subjects must not be lactating or breast-feeding at least 10 days after the last dose. 9. Male subjects must be willing to use a condom during dosing and for six months after the last dose. Alternatively, their female partner must use another form of contraception (such as an intra-uterine device [IUD], barrier method with spermicide, or hormonal contraceptive [e.g., implant, injectable, patch or oral]) during dosing and for six months after last dose. 10. Understands and is capable of following through with study protocol requirements and assessments. 11. Willing to provide voluntary and informed consent based on the Health Insurance Portability and Accountability Act (HIPPA). Exclusion Criteria: Patients who meet any of the following exclusion criteria will not be eligible for enrollment in the study: 1. Natalizumab failure based on clinician's discretion. 2. Not active progressive MS (4). 3. A diagnosis of PML or any suspicion of PML. 4. A diagnosis of Clinically Isolated Syndrome 5. Known hypersensitivity to cladribine. 6. Any prior exposure to cladribine. 7. Lymphocyte count not within normal limits of the local, hospital laboratory. 8. Previous or current exposure to mitoxantrone, azathioprine, methotrexate, cyclophosphamide, myelosuppressive treatments, total lymphoid irradiation. 9. Receiving oral or systemic corticosteroid treatments within the 28 days prior to enrollment. 10. Receiving cytokine base treatment, Intra Venous Immuno Globulin (IVIG) or Plasma pheresis, 3 months prior to enrollment in the study. 11. Having platelet count or neutrophil count below the lower limit of the normal range within the 28 days prior to enrollment in the study. 12. Positive for HIV, or positive hepatitis C antibody test or hepatitis B surface antigen test and/or core antibody test for IgG and/or IgM. 13. History of tuberculosis (TB), presence of active tuberculosis, or latent tuberculosis as detected by local standard of practice like imaging (e.g., chest X-ray, chest CT scan, MRI) and/or positive QuantiFERON-TB Gold test and/or skin test and/or clinical examination or has had latent TB disease at any time in the past. 14. Immunocompromised subjects, including subjects currently receiving immunosuppressive or myelosuppressive therapy with, e.g., monoclonal antibodies, methotrexate, cyclophosphamide, cyclosporine or azathioprine, or chronic use of corticosteroids. 15. Active malignancy or history of malignancy. 16. Received a live vaccine within 6 weeks prior to cladribine tablet administration or intends to receive a live vaccination during the trial. After the last dose of cladribine tablets, the subject should avoid live vaccine as long as the subject's white blood cell counts are not within normal limits. 17. Allergy or hypersensitivity to gadolinium and/or any other contraindication to perform an MRI. 18. Has any renal condition that would preclude the administration of gadolinium (e.g. acute or chronic severe renal insufficiency (GFR < 30 mL/min/1.73m2) - |
Country | Name | City | State |
---|---|---|---|
United States | UT Southwestern Medical center | Dallas | Texas |
United States | College Park Family Care Center Physicians Group | Overland Park | Kansas |
Lead Sponsor | Collaborator |
---|---|
University of Texas Southwestern Medical Center | EMD Serono |
United States,
Berger JR, Fox RJ. Erratum to: Reassessing the risk of natalizumab-associated PML. J Neurovirol. 2016 Aug;22(4):536-537. doi: 10.1007/s13365-016-0431-x. No abstract available. — View Citation
Berger JR, Fox RJ. Reassessing the risk of natalizumab-associated PML. J Neurovirol. 2016 Aug;22(4):533-5. doi: 10.1007/s13365-016-0427-6. Epub 2016 Feb 3. Erratum In: J Neurovirol. 2016 Aug;22(4):536-7. — View Citation
Carson DA, Kaye J, Seegmiller JE. Lymphospecific toxicity in adenosine deaminase deficiency and purine nucleoside phosphorylase deficiency: possible role of nucleoside kinase(s). Proc Natl Acad Sci U S A. 1977 Dec;74(12):5677-81. doi: 10.1073/pnas.74.12.5677. — View Citation
Carson DA, Wasson DB, Taetle R, Yu A. Specific toxicity of 2-chlorodeoxyadenosine toward resting and proliferating human lymphocytes. Blood. 1983 Oct;62(4):737-43. — View Citation
Comi G, Cook S, Rammohan K, Soelberg Sorensen P, Vermersch P, Adeniji AK, Dangond F, Giovannoni G. Long-term effects of cladribine tablets on MRI activity outcomes in patients with relapsing-remitting multiple sclerosis: the CLARITY Extension study. Ther Adv Neurol Disord. 2018 Jan 23;11:1756285617753365. doi: 10.1177/1756285617753365. eCollection 2018. — View Citation
Comi G, Cook SD, Giovannoni G, Rammohan K, Rieckmann P, Sorensen PS, Vermersch P, Hamlett AC, Viglietta V, Greenberg SJ. MRI outcomes with cladribine tablets for multiple sclerosis in the CLARITY study. J Neurol. 2013 Apr;260(4):1136-46. doi: 10.1007/s00415-012-6775-0. Epub 2012 Dec 21. — View Citation
Cutter GR, Stuve O. Does risk stratification decrease the risk of natalizumab-associated PML? Where is the evidence? Mult Scler. 2014 Sep;20(10):1304-5. doi: 10.1177/1352458514531843. Epub 2014 May 8. — View Citation
De Stefano N, Giorgio A, Battaglini M, De Leucio A, Hicking C, Dangond F, Giovannoni G, Sormani MP. Reduced brain atrophy rates are associated with lower risk of disability progression in patients with relapsing multiple sclerosis treated with cladribine tablets. Mult Scler. 2018 Feb;24(2):222-226. doi: 10.1177/1352458517690269. Epub 2017 Jan 31. — View Citation
del Pilar Martin M, Cravens PD, Winger R, Frohman EM, Racke MK, Eagar TN, Zamvil SS, Weber MS, Hemmer B, Karandikar NJ, Kleinschmidt-DeMasters BK, Stuve O. Decrease in the numbers of dendritic cells and CD4+ T cells in cerebral perivascular spaces due to natalizumab. Arch Neurol. 2008 Dec;65(12):1596-603. doi: 10.1001/archneur.65.12.noc80051. Epub 2008 Oct 13. — View Citation
Freedman MS, Leist TP, Comi G, Cree BA, Coyle PK, Hartung HP, Vermersch P, Damian D, Dangond F. The efficacy of cladribine tablets in CIS patients retrospectively assigned the diagnosis of MS using modern criteria: Results from the ORACLE-MS study. Mult Scler J Exp Transl Clin. 2017 Oct 9;3(4):2055217317732802. doi: 10.1177/2055217317732802. eCollection 2017 Oct-Dec. — View Citation
Giovannoni G, Comi G, Cook S, Rammohan K, Rieckmann P, Soelberg Sorensen P, Vermersch P, Chang P, Hamlett A, Musch B, Greenberg SJ; CLARITY Study Group. A placebo-controlled trial of oral cladribine for relapsing multiple sclerosis. N Engl J Med. 2010 Feb 4;362(5):416-26. doi: 10.1056/NEJMoa0902533. Epub 2010 Jan 20. — View Citation
Giovannoni G, Soelberg Sorensen P, Cook S, Rammohan K, Rieckmann P, Comi G, Dangond F, Adeniji AK, Vermersch P. Safety and efficacy of cladribine tablets in patients with relapsing-remitting multiple sclerosis: Results from the randomized extension trial of the CLARITY study. Mult Scler. 2018 Oct;24(12):1594-1604. doi: 10.1177/1352458517727603. Epub 2017 Sep 5. — View Citation
Griffig J, Koob R, Blakley RL. Mechanisms of inhibition of DNA synthesis by 2-chlorodeoxyadenosine in human lymphoblastic cells. Cancer Res. 1989 Dec 15;49(24 Pt 1):6923-8. — View Citation
Hartung HP, Graf J, Aktas O, Mares J, Barnett MH. Diagnosis of multiple sclerosis: revisions of the McDonald criteria 2017 - continuity and change. Curr Opin Neurol. 2019 Jun;32(3):327-337. doi: 10.1097/WCO.0000000000000699. — View Citation
Janiec K, Wajgt A, Kondera-Anasz Z. Effect of immunosuppressive cladribine treatment on serum leucocytes system in two-year clinical trial in patients with chronic progressive multiple sclerosis. Med Sci Monit. 2001 Jan-Feb;7(1):93-8. — View Citation
Kawasaki H, Carrera CJ, Piro LD, Saven A, Kipps TJ, Carson DA. Relationship of deoxycytidine kinase and cytoplasmic 5'-nucleotidase to the chemotherapeutic efficacy of 2-chlorodeoxyadenosine. Blood. 1993 Feb 1;81(3):597-601. — View Citation
Kivisakk P, Healy BC, Viglietta V, Quintana FJ, Hootstein MA, Weiner HL, Khoury SJ. Natalizumab treatment is associated with peripheral sequestration of proinflammatory T cells. Neurology. 2009 Jun 2;72(22):1922-30. doi: 10.1212/WNL.0b013e3181a8266f. — View Citation
Kopadze T, Dehmel T, Hartung HP, Stuve O, Kieseier BC. Inhibition by mitoxantrone of in vitro migration of immunocompetent cells: a possible mechanism for therapeutic efficacy in the treatment of multiple sclerosis. Arch Neurol. 2006 Nov;63(11):1572-8. doi: 10.1001/archneur.63.11.1572. — View Citation
Krumbholz M, Meinl I, Kumpfel T, Hohlfeld R, Meinl E. Natalizumab disproportionately increases circulating pre-B and B cells in multiple sclerosis. Neurology. 2008 Oct 21;71(17):1350-4. doi: 10.1212/01.wnl.0000327671.91357.96. — View Citation
Kurtzke JF. Rating neurologic impairment in multiple sclerosis: an expanded disability status scale (EDSS). Neurology. 1983 Nov;33(11):1444-52. doi: 10.1212/wnl.33.11.1444. — View Citation
Leist TP, Comi G, Cree BA, Coyle PK, Freedman MS, Hartung HP, Vermersch P, Casset-Semanaz F, Scaramozza M; oral cladribine for early MS (ORACLE MS) Study Group. Effect of oral cladribine on time to conversion to clinically definite multiple sclerosis in patients with a first demyelinating event (ORACLE MS): a phase 3 randomised trial. Lancet Neurol. 2014 Mar;13(3):257-67. doi: 10.1016/S1474-4422(14)70005-5. Epub 2014 Feb 4. — View Citation
Leist TP, Vermersch P. The potential role for cladribine in the treatment of multiple sclerosis: clinical experience and development of an oral tablet formulation. Curr Med Res Opin. 2007 Nov;23(11):2667-76. doi: 10.1185/030079907x233142. — View Citation
Liliemark J. The clinical pharmacokinetics of cladribine. Clin Pharmacokinet. 1997 Feb;32(2):120-31. doi: 10.2165/00003088-199732020-00003. — View Citation
Lublin FD, Reingold SC, Cohen JA, Cutter GR, Sorensen PS, Thompson AJ, Wolinsky JS, Balcer LJ, Banwell B, Barkhof F, Bebo B Jr, Calabresi PA, Clanet M, Comi G, Fox RJ, Freedman MS, Goodman AD, Inglese M, Kappos L, Kieseier BC, Lincoln JA, Lubetzki C, Miller AE, Montalban X, O'Connor PW, Petkau J, Pozzilli C, Rudick RA, Sormani MP, Stuve O, Waubant E, Polman CH. Defining the clinical course of multiple sclerosis: the 2013 revisions. Neurology. 2014 Jul 15;83(3):278-86. doi: 10.1212/WNL.0000000000000560. Epub 2014 May 28. — View Citation
Meyer-Moock S, Feng YS, Maeurer M, Dippel FW, Kohlmann T. Systematic literature review and validity evaluation of the Expanded Disability Status Scale (EDSS) and the Multiple Sclerosis Functional Composite (MSFC) in patients with multiple sclerosis. BMC Neurol. 2014 Mar 25;14:58. doi: 10.1186/1471-2377-14-58. — View Citation
Mitosek-Szewczyk K, Stelmasiak Z, Bartosik-Psujek H, Belniak E. Impact of cladribine on soluble adhesion molecules in multiple sclerosis. Acta Neurol Scand. 2010 Dec;122(6):409-13. doi: 10.1111/j.1600-0404.2010.01330.x. — View Citation
Polman CH, O'Connor PW, Havrdova E, Hutchinson M, Kappos L, Miller DH, Phillips JT, Lublin FD, Giovannoni G, Wajgt A, Toal M, Lynn F, Panzara MA, Sandrock AW; AFFIRM Investigators. A randomized, placebo-controlled trial of natalizumab for relapsing multiple sclerosis. N Engl J Med. 2006 Mar 2;354(9):899-910. doi: 10.1056/NEJMoa044397. — View Citation
Polman CH, Reingold SC, Banwell B, Clanet M, Cohen JA, Filippi M, Fujihara K, Havrdova E, Hutchinson M, Kappos L, Lublin FD, Montalban X, O'Connor P, Sandberg-Wollheim M, Thompson AJ, Waubant E, Weinshenker B, Wolinsky JS. Diagnostic criteria for multiple sclerosis: 2010 revisions to the McDonald criteria. Ann Neurol. 2011 Feb;69(2):292-302. doi: 10.1002/ana.22366. — View Citation
Polman CH, Reingold SC, Edan G, Filippi M, Hartung HP, Kappos L, Lublin FD, Metz LM, McFarland HF, O'Connor PW, Sandberg-Wollheim M, Thompson AJ, Weinshenker BG, Wolinsky JS. Diagnostic criteria for multiple sclerosis: 2005 revisions to the "McDonald Criteria". Ann Neurol. 2005 Dec;58(6):840-6. doi: 10.1002/ana.20703. — View Citation
Rudick RA, Stuart WH, Calabresi PA, Confavreux C, Galetta SL, Radue EW, Lublin FD, Weinstock-Guttman B, Wynn DR, Lynn F, Panzara MA, Sandrock AW; SENTINEL Investigators. Natalizumab plus interferon beta-1a for relapsing multiple sclerosis. N Engl J Med. 2006 Mar 2;354(9):911-23. doi: 10.1056/NEJMoa044396. — View Citation
Shirani A, Stuve O. Natalizumab for Multiple Sclerosis: A Case in Point for the Impact of Translational Neuroimmunology. J Immunol. 2017 Feb 15;198(4):1381-1386. doi: 10.4049/jimmunol.1601358. — View Citation
Shirani A, Stuve O. Natalizumab: Perspectives from the Bench to Bedside. Cold Spring Harb Perspect Med. 2018 Dec 3;8(12):a029066. doi: 10.1101/cshperspect.a029066. — View Citation
Sipe JC. Cladribine tablets: a potential new short-course annual treatment for relapsing multiple sclerosis. Expert Rev Neurother. 2010 Mar;10(3):365-75. doi: 10.1586/ern.10.12. — View Citation
Stuve O, Bennett JL. Pharmacological properties, toxicology and scientific rationale for the use of natalizumab (Tysabri) in inflammatory diseases. CNS Drug Rev. 2007 Spring;13(1):79-95. doi: 10.1111/j.1527-3458.2007.00003.x. — View Citation
Stuve O, Cravens PD, Frohman EM, Phillips JT, Remington GM, von Geldern G, Cepok S, Singh MP, Tervaert JW, De Baets M, MacManus D, Miller DH, Radu EW, Cameron EM, Monson NL, Zhang S, Kim R, Hemmer B, Racke MK. Immunologic, clinical, and radiologic status 14 months after cessation of natalizumab therapy. Neurology. 2009 Feb 3;72(5):396-401. doi: 10.1212/01.wnl.0000327341.89587.76. Epub 2008 Nov 5. — View Citation
Stuve O, Marra CM, Bar-Or A, Niino M, Cravens PD, Cepok S, Frohman EM, Phillips JT, Arendt G, Jerome KR, Cook L, Grand'Maison F, Hemmer B, Monson NL, Racke MK. Altered CD4+/CD8+ T-cell ratios in cerebrospinal fluid of natalizumab-treated patients with multiple sclerosis. Arch Neurol. 2006 Oct;63(10):1383-7. doi: 10.1001/archneur.63.10.1383. — View Citation
Stuve O, Marra CM, Jerome KR, Cook L, Cravens PD, Cepok S, Frohman EM, Phillips JT, Arendt G, Hemmer B, Monson NL, Racke MK. Immune surveillance in multiple sclerosis patients treated with natalizumab. Ann Neurol. 2006 May;59(5):743-7. doi: 10.1002/ana.20858. — View Citation
Warnke C, Wiendl H, Hartung HP, Stuve O, Kieseier BC. Identification of targets and new developments in the treatment of multiple sclerosis--focus on cladribine. Drug Des Devel Ther. 2010 Jul 21;4:117-26. doi: 10.2147/dddt.s6627. — View Citation
Yao K, Gagnon S, Akhyani N, Williams E, Fotheringham J, Frohman E, Stuve O, Monson N, Racke MK, Jacobson S. Reactivation of human herpesvirus-6 in natalizumab treated multiple sclerosis patients. PLoS One. 2008 Apr 30;3(4):e2028. doi: 10.1371/journal.pone.0002028. — View Citation
* Note: There are 39 references in all — Click here to view all references
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Other | The Expanded Disability Status Scale : Neurological disability outcome | The Expanded Disability Status Scale (EDSS) will be utilized to measure the accumulation of neurological disability.
The change in EDSS from baseline will be reported at month 12 and month 24. The EDSS scale ranges from 0 to 10 in 0.5 unit increments that represent higher levels of disability. EDSS steps 1.0 to 4.5 refer to people with MS who are able to walk without any aid and is based on measures of impairment in eight functional systems (FS): muscle weakness or difficulty moving limbs, ataxia, loss of balance, coordination or tremor, problems with speech, swallowing and nystagmus, numbness or loss of sensations, bowel and bladder function, problems with sight, problems with thinking and memory, other A functional system (FS) represents a network of neurons in the brain with responsibility for particular tasks. Each FS is scored on a scale of 0 (no disability) to 5 or 6 (more severe disability). EDSS steps 5.0 to 9.5 are defined by the impairment to walking. |
24 months | |
Other | Magnetic Resonance imaging (MRI) outcomes | The mean number of new or new/ enlarging T2 lesions, and the number of gadolinium (Gd)-enhancing lesions. | 24 months | |
Primary | Absolute and percent change of T cells, B cells, DC subset and NfL levels in blood. | The absolute and percent change from baseline will be presented for each time point for CD3+ T lymphocytes, CD19+ B lymphocytes, CD11c+ DC subsets, NfL levels in blood, with a two-sided 95% CI and p value. As these data are not expected to be normally distributed, the nonparametric Wilcoxon signed rank test will be used to compare each biomarker at baseline and during treatment. Spearman rank correlations will be used to examine the relationship between biomarkers and clinical/safety endpoints. | 24 months | |
Secondary | Annualized Relapse Rate (ARR) | The ARR over the 12- and 24-month periods will be presented, accompanied by the respective 95% CIs. The proportion (and 95% CI) of participants experiencing a relapse over the 12 month and 24-month periods will also be presented. | 12 months |
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