Document dkZd5pr9KebRdYjMOQ4w34gB

Treatment of Multiple Myeloma With Recombinant a-Interferon By Jorge A. Quesada, Raymond Alexanian, Michael Hawkins, Barthel Barlogie, Ernest Borden, Loretta Itri, and Jordan U. Gutterman Thirty-two patients with multiple myeloma were treated with recombinant a-interferon clone A (rlFNaA) daily by intramuscular injection with an initial dose of 1 2 x 10' U/m2. Of 27 patients evaluable for response, tumor responses were obtained in seven of 1 4 previously untreated patients (50%) and two of 1 3 who had relapsed or failed prior chemotherapy (1 5%). In all patients who had tumor response, there was restoration from subnormal levels of serum immunoglobulins, an effect infrequently observed with chemotherapy. The median duration of E ARLY CLINICAL STUDIES of partially purified a-interferon (IFNa) reported antitumor activity in patients with multiple myeloma."2 Subsequent studies have confirmed the activity of both partially purified and cloned IFNa in a limited number of patients. In this study we have examined the activity of high doses of recombinant DNA-derived a-interferon (rIFNaA) in patients with mul- tiple myeloma, including both previously untreated patients and those whose disease was refractory to prior chemothera- py. A high response rate was found among previously untreated patients but limited activity in patients with refractory myeloma. In addition, we present evidence that rIFNaA restored subnormal levels of serum immunogbobu- lins to normal levels in all responsive patients, an effect not frequently observed in patients responding to chemotherapy. MATERIALS AND METHODS Patient population and study design. Thirty-two patients were entered in the study. Criteria for a diagnosis of multiple myeboma included a monocbonal immunoglobulin in serum or monocbonal light chains in urine (or both) and at least one of the following: atypical bone marrow plasmacytosis of I 5% or more, osteolytic lesions on x-ray examinations related only to the increased plasma cells, or bone biopsy results revealing plasma cell proliferation. Eligibility criteria included a performance status of a60 (Karnofsky scale), an expected survival of I 2 weeks, preserved renal (creatinine level of 2.0 mg/mL) and liver function, granulocyte count above 1,500/ zL, and a platelet count above l00,000/zL. In all previously treated patients, we required that there were at least 4 weeks between the last treatment and the onset of interferon therapy. All patients had a clinical examination and staging of their disease before initiation of rIFNaA treatment. Tests performed within 1 week of the first injection included complete blood cell counts, differential count, platelet and reticulocyte counts, 12-channel blood chemistry, coagulation parameters, urinalysis, electrocardiogram, chest x-ray, serum and urine protein electrophoresis, bone marrow examinations, and bone surveys. Serum immunoglobulins were determined by quantitative nephebometry and Bence Jones protein by immunoclectrophoresis. Tumor mass was assessed according to conventional criteria.7'8 All patients were observed by physical examination every 4 to 8 weeks. Peripheral blood cell counts were repeated once or twice each week and blood chemistry, urinalysis, reticulocyte count, and coagulation profile were repeated once a week. Serum and urine electrophoresis were performed every 2 to 4 weeks and bone marrow and bone surveys every 2 to 4 months. The rIFNaA (Roferon) was provided by l-boffmann LaRoche, Inc (Nutley, Ni). The purified protein was made homogeneous by tumor responses exceeded 14 months (range, 6 to 20). Moderate-to-severe fatigue was the predominant side effect and necessitated dose reductions in all patients. We conclude that treatment of early stages of multiple myeloma with rlFNaA is beneficial because of the substan- tial response rate and the improvement in the synthesis of serum immunoglobulins. rIFNaA has a potential role in combination with other agents in the treatment of multiple myeloma. a 1986 by Grune & Stratton, Inc. sodium dodecyl sulfate-polyacrylamide gel electrophoresis, with a specific activity of 2 to 4 x 108 U/mg of protein. All patients signed an informed consent to participate in the study according to institu- tional policies. All patients received an initial dose of 12 x 106 U/m2 by intramuscular injection. Treatment was given daily and con- tinued for a minimum of I 2 weeks. A 50% reduction in dose was allowed in the event of evidence of excessive toxicity. Patients who responded continued to receive daily treatment until either tumor progression or the completion of I 2 months of treatment. Criteria of response. Tumor response was defined as a a50% reduction of serum myeboma protein and disappearance of Bence iones proteinuria. Response in one patient with nonsecretory multi- plc myeboma was confirmed when previously marked plasma cell infiltrates disappeared on multiple bone marrow specimens. Serum immunoglobulin response was defined as an increase in 1gM of a40 mg/I00 mL to the normal value (a50 mg/lOO mL), an increase in IgA of a60 mg/l00 mL to the normal value (90 mg/l00 mL), and an increase in lgG of a400 mg/tOO mL to the normal value (a650 mg/l00 mL). RESULTS Table I summarizes the characteristics of the study popu- lation, which included 26 patients at the University of Texas M.D. Anderson Hospital and six at Wisconsin Clinical Cancer Center. The extent of tumor mass was low or intermediate in all but four of the previously treated patients. Of the I S previously untreated patients, eight were asymp- tomatic, and seven had symptoms referable to lytic lesions. From the Departments of Clinical Immunology and Biological Therapy and the Department of Hematology, The University of Texas M.D. Anderson Hospital and Tumor institute at Houston; the Division ofHuman Oncology and Medicine. Wisconsin Clinical Cancer Center, Madison; and Hoffmann LaRoche, Inc. Nutley, NJ. Supported by a grant from Hoffmann LaRoche, Inc. Research conducted in part by the Clayton Foundationfor Research and the James E. Lyon Medical Research Foundation. Dr Gutterman is a Senior Clayton Foundation investigator. Dr Hawkins is now affiliated with the Cancer Therapy and Evaluation Program, National Cancer Institute, Bethesda, MD. Submitted May 22. /985; accepted July 27. /985. Address reprint requests to Dr Jorge R. Quesada. Department of Clinical Immunology and Biological Therapy. The University of Texas M.D. Anderson Hospital and Tumor Institute at Houston, 6723 Bertner Aye, Houston, TX 77030. S / 986 by Grune & Stratton, Inc. 0006-497//86/6702-0004$03.00/0 Blood, Vol 67, No 2 (February), 1986: 275-278 275 276 QUESADA ET AL Table 1 . Patient Characteristics No. of patients Median age Male/female Protein type lgG gA Others Tumor mass High Intermediate Low Untreated 15 57 1 1 /4 10 2 3 0 5 10 Prior Chemotherapy 17 58 9/8 11 5 1 4 5 8 None of these I 5 had hypoalbuminemia, hypercalcemia, or azotemia, but three had a hemoglobin value of <10 g/dL. Thus, most met the criteria for indolent myeloma.8 All previously treated patients had received combination chemo- therapy with intermittent courses of melphalan and predni- sone or combinations of alkylating agents and doxorubicin. Four patients were treated upon relapse from prior successful therapy. The remaining patients had disease refractory to preceding combinations Tumor responses. of chemotherapy. Twenty-seven patients were evaluable for tumor response. Five were not evaluable because they received treatment for less than 2 weeks because of evidence of excessive toxicity. Table 2 shows the results of treatment. Tumor responses were obtained in seven of I 4 previously untreated patients (50%), whereas only two of I 3 patients responded after failing prior chemotherapy (15%). Among the nine who had responses, seven had a low-tumor mass, and two had an intermediate-tumor mass; five had IgG myeloma protein, three had IgA myeloma protein, and one had a nonsecretory myeloma. Tumor responses occurred within 1 to 4 months (median, 2 months) and lasted from 6 to 20+ months (median, 14+ months). Three previously untreated patients maintained tumor remission beyond 1 2 months without further interferon therapy. Five of seven previously untreated patients who did not respond to rIFNaA achieved tumor responses with subsequent chemotherapy. Immunoglobulin response. Restoration of depressed 1ev- els of one or two of the normal serum immunoglobulins was observed in all patients who had tumor responses (Fig 1). The time needed to achieve normal immunoglobulin levels in these patients ranged from 3 to 10 months (median, 4.5 months). Restoration was observed in six of six patients with subnormal IgA levels, in seven of nine with with subnormal Table 2. Tumor Responses of Multiple Interferon Myeloma in Recombinant Results of Treatment Tumor response No change Progressive disease Total evaluable patients No. Pa tients (%) Untreated Prior Chemotherapy 7 (50) 5 (36) 2 ( 1 4) 14 ( 1 00) 2 (15) 7 (54) 4 (31) 1 3 (100) 1:it a, Fig 1 . Nonparaprotein serum immunoglobulins in patients with tumor response. Data show pretreatment values and maxi- mum posttreatment serum levels for nine patients with tumor response. Open circles indicate previously untreated patients and closed circles those who had received prior chemotherapy. 1gM, and in four of four with subnormal IgG. Figure 2 depicts the pattern of immunoglobulin response in one patient. Concurrent with the reduction of the myeloma protein in this patient, recovery of serum IgA and 1gM was first observed after 3 months, with normal levels achieved after 6 months of treatment. In contrast, none of the patients who did not have a tumor response showed a detectable increase in serum immunoglobulins. Toxicity. All patients were evaluable for toxicity, which was similar to that described in cancer patients receiving daily administration of rIFNaA.5 Fatigue and asthenia were the most common symptoms and accounted for most treat- ment interruptions, dose reductions, or drug discontinua- tions. A 50% dose reduction was indicated within 8 weeks of initiation of treatment in 20 patients (62%) and within 24 weeks in the remaining 12. Hematologic toxicity included decrements of hemoglobin of 1 to 3 g/dL (median, 1 .8 g/dL) within 4 to 1 2 weeks of treatment in 23 patients (72%). Transient severe granulocy- topenia (1,S00 cells per jtL) occurred in five patients (I 6%). A mild and slow decrease in platelet counts (between 50 and I 00,000/tL) was observed in eight patients (25%), in keeping with prior observations.5 However, rapid onset of thrombocytopenia (within 2 weeks counts below 50,000 cells per .tL) consistent with an autoimmune phenomenon but reversible with discontinuation of rIFNaA developed in four other patients.9 These four patients, as well as one other with high-tumor mass who developed acute tubular necrosis after three doses of rIFNaA, received treatment for less than 2 weeks and were considered to be inevaluable for tumor response. Lastly, mild elevations of serum glutamic oxalo- E a .5 0a 3 E E Months Fig 2. Pattern of recovery of nonparaprotein globulins in a patient with tumor response. serum immuno- INTERFERON FOR MULTIPLE MYELOMA 277 acetic transaminase patients (50%). (42 to 103 U/mL) were found in 16 DISCUSSION This study confirmed the therapeutic activity of rIFNaA in patients with multiple myeloma; such activity has been previously noted with partially purified IFNa interferon. We used a highly purified, single-molecular species of IFNa, which has also been effective in inducing remission of other B cell malignancies, including low-grade lymphomas and hairy cell leukemia.'#{176}'3 The 50% untreated patients is superior recently reported in a study response rate among our to the 14% response rate that used partially purified lFNa at lower doses (3 x 106 U/d).4 The greater activity in our study may be related to the type of interferon, the higher dose, or our selection of patients with early disease. A dose response effect to rIFNaA has been suggested in patients with Kaposi's sarcoma or renal cell carcinoma.'4"5 However, that the present response rate in refractory myeloma is not better than that of other studies and that a higher response rate can be obtained in low-tumor mass myeloma with chemotherapy'6 suggests that patient selection played a predominant Noteworthy is the disparity role in our results. in the responsiveness among several relative B cell lymphoid malignancies to IFNa, resistance of intermediate- and high-grade from the lympho- mas or advanced chronic lymphocytic leukemia,'17 to moder- ate sensitivity of low-grade lymphomas and multiple myelo- ma, and to high susceptibility in hairy cell leukemia.'2 There is at present no information that may relate these different levels of sensitivity with the stage of differentiation or the expression of cellular receptors in the malignant cells. Of interest, however, is the recent finding of plasma cell- associated antigens on hairy cells'8 that provides a pheno- typic link between these two IFNa-sensitive tumors. The recovery of normal levels of serum immunoglobulins in all patients with tumor response contrasts with a similar recovery in only 25% of comparable patients responding to chemotherapy.'9 The deficiency in immunoglobulin synthesis in patients with multiple myeloma has been attributed to macrophage-derived suppressive factors.20'2' In a murine plasmocytoma was induced model, the inordinate activity of macrophages by a plasma cell-derived activating factor.22 Consequently, the restoration of normal levels of immunoglo- bulins in patients with tumor response may be explained by the reduction in tumor mass. However, in contrast to results with chemotherapy, responsive patients the consistency of the effect in the suggests that IFNaA elicited, in addi- tion, favorable cellular interactions between regulatory and immunoglobulin-producing cells. In this regard, both IFNa and highly purified rIFNaA stimulate immunoglobulin pro- duction in vitro.23'24 Such stimulation was dependent on the presence of T helper cells and seemed to be related to the ability of IFNa to enhance the response helper-derived soluble factors.23 of B cells to T We conclude that further studies of rIFNaA in patients with early stages of multiple myeloma are justified because of an adequate response rate associated with restoration of synthesis of serum immunoglobulins; further, rIFNaA does not preclude a later tumor response to chemotherapy. In fact, the tolerance by reduction to subsequent chemotherapy of the risk of infections may be improved in patients with a restored humoral immune response. The rIFNaA had acceptable toxicity at an average daily dose of 6 x 106 U/m2. It is unknown whether lower and perhaps less toxic doses might achieve comparable results. The low response rate in patients previously treated with chemotherapy was similar to our previous observations on rIFNaA in refractory multiple myeloma.5 However, our findings offer promise for further developments with rIFNaA as part of combination therapies. In this regard, in vitro synergism of IFNa with either 7-interferon, difluoro- methylornithine, double-stranded RNA, or some chemother- apeutic agents has already been demonstrated.229 Further, in view of the antitumor activity of high doses of glucocorti- coids in refractory myeloma,#{176} clinical studies combining steroids and rIFNaA are of interest, both because of poten- tial enhancement of the therapeutic activity of either agent and because of possible improvement in the tolerance to high doses of rIFNaA. ACKNOWLEDGMENT The authors wish to acknowledge the assistance of the nursing staff: Andrea Linder, Donnah Jones, Paula DeAvies, Margaret Harle, Sue Schmidt (M.D. Anderson Hospital and Tumor Insti- tute), and Jill Aughey (Wisconsin Clinical Cancer Center). They also express their gratitude to John Kolsbun, a physician assistant; data managers Marion Stringer, Elaine Stehr, Sandra Ictech, and Brigetta Burgess; and to Linda Reckeweg for her impeccable secretarial assistance. REFERENCES 1. Gutterman JU, Blumenschein GR, Alexanian R, Yap HY, Buzdar AU, Cabanillas F, Hortobagyi GN, Hersh EM, Rasmussen SL, Harmon M, Kramer M, Pestka 5: Leukocyte interferon-induced tumor regression in human metastatic breast cancer, multiple myeloma, and malignant lymphoma. Ann Intern Med 93:399, 1980 2. Mellstedt H, Bjorkholm M, Johansson B, et al: Interferon therapy in myelomatosis. Lancet 1:245, 1979 3. Alexanian R, Gutterman JU, Levy H: Interferon treatment for multiple myeloma. Clin Haematol 11:211, 1982 4. Ahre A, Bjorkholm M, Mellstedt H, et al: Human leukocyte interferon and intermittent high-dose melphalan-prednisone admin- istration in the treatment of multiple myeloma: A randomized clinical trial from the Myeloma group of Central Sweden. Cancer TreatRep68:1331, 1984 5. Quesada JR, Hawkins M, Horning 5, Alexanian R, Borden E, Merigan T, Adams F, Gutterman of recombinant DNA-produced JU: Collaborative phase I-lI study leukocyte interferon (clone A) in metastatic breast cancer, malignant lymphoma, and multiple myelo- ma. Am i Med 77:427, 1984 6. Costanzi ii, Cooper RM, Scarffe JH, et al: Phase II study of recombinant alpha-2 interferon in resistant multiple myeloma. i Clin Oncol 3:654, 1985 7. Dune BGM, Salmon SE: A clinical staging system for multiple myeloma. Correlation of measured myeloma cell mass with present- 278 QUESADA ET AL ing clinical features, response to treatment and survival. Cancer 36:842, 1975 8. 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Krown SE, Real FX, Cunningham-Rundles 5, Ct al: Prelimi- nary observations on the effect of recombinant leukocyte A inter- feron in homosexual men with Kaposi's sarcoma. N Engl J Med 308:1071, 1983 15. Quesada JR, Gutterman JU, Rios of renal cell carcinoma with recombinant Assoc Cancer Res 24:195, 1983 (abstr) A: Investigational alpha interferon. therapy Proc Am 16. Barlogie tions of tumor Blood 66:338, B, Alexanian R, Smith L, et al: Prognostic cell DNA and RNA content in multiple 1985 implicamyeloma. 17. Foon KA, Bottino GC, Abrams PG. Ct al: Phase recombinant leukocyte A interferon in patients with chronic lymphocytic leukemia. Am J Med 78:216, 1985 II trial of advanced 18. Anderson KC, Boyd AW, Fisher DC, et al: Hairy cell leukemia: A tumor of pre-plasma cells. Blood 65:620, 198S 19. Alexanian R, Migliore Pi: Normal immunoglobulins in mul- tiple myeloma: Effect of melphalan chemotherapy. J Lab Clin Med 75:225, 1970 20. Broder 5, Humphrey R, Durm M, et al: Impaired synthesis of polyclonal (non-paraprotein) immunoglobulins by circulating lym- phocytes from patients with multiple myeloma. N EngI J Med 293:887, 1975 21. Twomey ii, Laughter AH, Rice L, Ford Ri: Suppression of lymphocyte responses by monocytes with untreated and treated multiple myeloma. Blood 60:316, 1982 22. Ullrich 5, Zolla-Pazner 5: Immunoregulatory circuits in myeloma. Clin Haematol 1 1 :87, 1982 23. Rodriguez MA, Prinz WA, Sibbitt WL, Bankhurst AD, Williams cultured RC: a-interferon increases immunoglobulin production in human mononuclear leukocytes. J Immunol 130:1215, 1983 24. Neubauer RH, Goldstein L, Rabin H, Stebbing N: Stimula- tion of in vitro immunoglobulin Immunol 134:299, 1985 production by interferon-a. i 25. Czarniecki CW, ral and antiproliferative human alpha, beta and Fennie CW, Powers DB: Synergistic antivi- activities of Escherichia coli-derived gamma interferons. J Virol 49:490, 1983 26. Rosenblum MG, Gutterman JU: Synergistic antiproliferative activity of leukocyte interferon in combination with a-difluoro- methylornithine against human cells in culture. Cancer Res 44:2339, 1984 27. Hubbell human tumor HR. Liu RS, Maxwell cell lines to interferon BL: Independent sensitivity of and double-stranded RNA. Cancer Res 44:3252, 1984 28. Aapro MS, Alberts DS, Salmon SE: Interactions of human leukocyte interferon with Vinca alkaloids and other chemothera- peutic agents against Chemother Pharmacol human tumors 10:161, 1983 in clonogenic assay. Cancer 29. human tumor 30. Balkwill FR, Moodie EM: Positive interactions between interferon and cyclophosphamide or Adriamycin in a human model system. Cancer Res 44:904, 1984 Alexanian R, Yap BS, Bodey GP: Prednisone pulse therapy for refractory myeloma. Blood 62:572, 1983