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Biomedical subjects

S V Rajkumar

Publications and source records attributed to S V Rajkumar.

At least 55 records · Page 3Linked to original sources

Thalidomide in the treatment of relapsed multiple myeloma.

OBJECTIVE: To describe the efficacy of therapy with thalidomide, a drug that has antiangiogenic properties, in patients with relapsed multiple myeloma. PATIENTS AND METHODS: We studied 16 patients (median age, 64 years) who received thalidomide for relapsed myeloma at the Mayo Clinic in Rochester, Minn, between November 1998 and August 1999. Treatment consisted of thalidomide given orally at a dose of 200 mg/d for 2 weeks, then increased by 200 mg/d every 2 weeks, up to a maximal dose of 800 mg/d. RESULTS: The stage of myeloma at treatment was Durie-Salmon IIIA in 9 patients (56%) and IIIB in 7 (44%). The median time from myeloma diagnosis to initiation of thalidomide therapy was 32 months. In 4 patients (25%) prior stem cell transplantation had failed, and 14 (88%) had received 2 or more prior chemotherapeutic regimens before institution of thalidomide. All patients were evaluable for response. Four (25%) achieved a partial response to therapy, with a greater than 50% reduction in the serum or urine M protein level. Responses lasted 2, 4+, 8, and 10+ months. Major adverse effects included constipation, sedation, rash, and peripheral neuropathy. CONCLUSION: Thalidomide is an active agent in the treatment of patients with advanced myeloma.

Administration, Oral↗

Prognostic value of bone marrow angiogenesis in multiple myeloma.

We studied the prognostic value of angiogenesis grading and microvessel density estimation in newly diagnosed multiple myeloma. Seventy-five patients with newly diagnosed myeloma, treated on Eastern Cooperative Oncology Protocol E9486 and Intergroup study 0141 (S9321) at the Mayo Clinic, were studied. Bone marrow microvessels were examined using immunohistochemical staining for von Willebrand factor. Determination of microvessel density and angiogenesis grading was done in a blinded manner. There was a strong correlation between microvessel density and the plasma cell labeling index, rho 0.42, P < 0.001. Angiogenesis grade was also significantly associated with the plasma cell labeling index. Fifteen % of patients with low-grade angiogenesis had a high labeling index (>1%). In contrast, 47% of patients with intermediate or high-grade angiogenesis had high labeling indices (P = 0.02). Overall survival was significantly different among those with high-, intermediate-, and low-grade angiogenesis, with median times of 2, 4, and 4.4 years, respectively (P = 0.02). Similarly, patients with microvessel density >50/x400 field had poorer survival compared with those with 50 or fewer microvessels/field, median survival 2.6 versus 5.1 years, respectively (P = 0.004). There was a strong association between angiogenesis grade and microvessel density (P < 0.001). We conclude that bone marrow angiogenesis is a predictor of poor survival in newly diagnosed myeloma. Angiogenesis is correlated with the plasma cell labeling index but not the bone marrow plasma cell percentage. A simple visual grading of angiogenesis is an efficient alternative to microvessel density estimation.

Bone Marrow↗

Thalidomide in multiple myeloma.

Recent evidence suggests that angiogenesis is increased in multiple myeloma and has prognostic value in the disease. Based on the increased angiogenesis observed in myeloma, thalidomide (Thalomid) has been studied as antiangiogenic therapy. Although its mechanism of action in myeloma is unclear, several trials show that thalidomide is active in 25% to 35% of patients with relapsed myeloma. Since many patients who respond have failed other active regimens, including transplantation, these results are impressive. Major toxicities include constipation, sedation, skin rash, fatigue, and peripheral neuropathy. Studies are ongoing to determine its role as initial treatment for myeloma. Trials are also underway combining thalidomide with other active agents. This article summarizes the current status of thalidomide therapy in myeloma.

Angiogenesis Inhibitors↗

Cytogenetic abnormalities correlate with the plasma cell labeling index and extent of bone marrow involvement in myeloma.

Chromosomal abnormalities have biologic and prognostic significance in multiple myeloma, especially among patients with relapsed disease. We report the relationship between chromosomal abnormalities and known prognostic factors such as plasma cell labeling index (PCLI) and bone marrow plasma cell involvement in 75 consecutive patients undergoing autologous stem cell transplantation for relapsed or refractory myeloma. Thirty of 70 patients (43%) had a chromosomally abnormal clone in their bone marrow, and in most cases the karyotype was complex (> 3 abnormalities). Patients with an abnormal clone on cytogenetic analysis had a higher PCLI (median, 1.4) than patients with a normal karyotype (0.2) (P < 0.001). Bone marrow plasma cell percentage also differed: median 48% versus 20%, respectively (P < 0.001). The PCLI and bone marrow plasma cell percentage correlated positively with the percentage of abnormal metaphases on conventional cytogenetic analysis: rho 0.60 (P < 0.001) and 0.46 (P < 0.001), respectively. We categorized patients into those with 20% or more abnormal metaphases, less than 20% abnormal metaphases, and only normal metaphases. The median PCLI values were 3.3, 1.1, and 0.3, respectively (P < 0.001). The bone marrow plasma cell percentage median values were 62%, 40%, and 25%, respectively (P = 0.003). Chromosomal abnormalities may offer a proliferative advantage to the neoplastic plasma cell, thereby leading to an unfavorable outcome.

Adult↗

Monoclonal gammopathies of undetermined significance.

Monoclonal gammopathy of undetermined significance is characterized by a serum M-protein level less than 3 g/dL, fewer than 10% plasma cells in the bone marrow, and no or only small amounts of M-protein in the urine; by the absence of lytic lesions, anemia, hypercalcemia, and renal insufficiency; and most importantly, by the stability of the M-protein and by the failure of other abnormalities to develop. Monoclonal gammopathy of undetermined significance is found in approximately 3% of persons older than 70 years and in 1% of those older than 50 years. Approximately one fourth of patients develop MM, AL, WM, or a similar malignant lymphoproliferative disorder during long-term follow-up. In a series of 241 patients at the Mayo Clinic, the actuarial rate of development of serious disease was 16% at 10 years and 40% at 25 years. The median interval from recognition of the M-protein to the diagnosis of MM was 10 years (range, 2-29 years). The plasma cell labeling index and the presence of circulating plasma cells in the peripheral blood suggest active disease. There are no findings at the time of recognition of MGUS that distinguish patients who will remain stable from those in whom a malignant plasma cell proliferative disorder will develop. Therefore, one must perform serial measurements of the M-protein and periodically evaluate the clinical and laboratory features.

Adult↗

Prognostic factors in multiple myeloma.

There is significant variation in the survival of patients with myeloma. This article reviews the major prognostic factors in myeloma and the evidence supporting their usefulness in clinical practice and research. The factors reviewed include serum beta 2-microglobulin, bone marrow plasma cell labeling index, cytogenetics, plasmablastic morphology, and other standard clinical laboratory variables. Novel factors such as bone marrow angiogenesis are also discussed. A combination of independent factors provides greater prognostic information than any one factor alone, and survival data using various combinations of prognostic factors are presented.

Aging↗

Beta2-microglobulin and bone marrow plasma cell involvement predict complete responders among patients undergoing blood cell transplantation for myeloma.

We studied the prognostic value of clinical and laboratory variables, measured before blood cell transplantation, in predicting complete response among patients undergoing autologous blood cell transplantation for relapsed or primary refractory myeloma. Sixty-seven patients who underwent transplantation for relapsed or primary refractory myeloma were studied. The overall response rate was 90%, and the complete response rate was 33%. Low beta2-microglobulin (< or =2.7 mg/l) was associated with a significantly better complete response rate compared with high levels (54 vs 19%, P = 0.002). Similarly, the complete response rate was 39% when the bone marrow plasma cell percentage was low (<40%) and 21% with greater involvement (P = 0.04). Complete response rate was 50% when beta2-microglobulin and bone marrow plasma cell percentage were low, 36% if either was high, and 12% when both were high (P = 0.01). Median survival measured from initial diagnosis of myeloma was 51 months. Overall survival after transplantation was better among responders who achieved complete response than those who did not: median survival, 24 vs 11 months, P = 0.04 (log-rank) and 0.009 (Gehan-Wilcoxon). Attainment of a complete response independently predicted better survival in a multivariate analysis. beta2-Microglobulin and bone marrow plasma cell percentage predict complete responders among patients undergoing transplantation for myeloma.

Adult↗

Autologous stem cell transplantation for relapsed and primary refractory myeloma.

The aim of this study was to evaluate the effectiveness of autologous stem cell transplantation for patients with relapsed or primary chemotherapy-refractory myeloma. Seventy-five patients, 50 men and 25 women, ages 33-68 years (median, 53 years), who underwent transplantation for relapsed or primary refractory myeloma were studied. Patients underwent transplantation 5-88 months (median, 23 months) after diagnosis of myeloma. The time to transplantation was significantly shorter in patients with refractory disease than for those with relapsed myeloma (median, 8 and 32 months, respectively; P < 0.001). Patients with primary refractory myeloma had a significantly lower plasma cell labeling index than those with relapsed disease (P = 0.008). There were no differences in overall and complete response rates between patients with primary refractory and relapsed disease. The median survival of the entire cohort from diagnosis was 53 months. Overall survival from transplantation among patients with relapsed myeloma receiving therapy, relapsed myeloma off therapy, and primary refractory myeloma was significantly different (P = 0.04), with median times of 12, 21 and 30 months, respectively. Progression-free survival also was different (P < 0.001), with median times of 7, 13, and 26 months, respectively. We conclude that overall and progression-free survival in patients with primary refractory myeloma appear better than in patients with relapsed disease and need further study.

Adult↗

Bone marrow angiogenesis in patients achieving complete response after stem cell transplantation for multiple myeloma.

Although most of the initial studies in angiogenesis were done on solid tumors, there is now data suggesting the importance of angiogenesis in hematologic malignancies. We estimated bone marrow microvessel density before autologous stem cell transplantation and at the time of response in 13 patients with myeloma (seven complete and six partial responders) using an immunohistochemical stain for factor VIII-related antigen (von Willebrand factor). Baseline microvessel density was significantly different between bone marrow samples from patients with myeloma and morphologically normal, staging marrows from patients with limited stage Hodgkin's disease, mean (+/- s.d.) 294 (+/-115)/mm2 vs 93 (+/-26/mm2, respectively, P = 0.001. After transplantation, microvessel density continued to be high in myeloma samples compared to samples from control patients with limited stage Hodgkin's disease, mean (+/- s.d.) 230 (+/-68)/mm2, P = 0.003. There was no difference in microvessel density at the time of complete or partial response compared to values prior to transplantation. This report confirms that increased angiogenesis is found in myeloma bone marrow prior to transplantation, and suggests that increased angiogenesis persists even after complete response.

Adult↗

Clinical significance of the translocation (11;14)(q13;q32) in multiple myeloma.

The most common chromosomal translocation in multiple myeloma (MM) is t(11;14)(q13;q32). Here, we describe the clinical characteristics of patients with MM who have this translocation. We have identified 24 patients at our institution who had t(11;14)(q13;q32) as determined by standard cytogenetic analysis (CC). Seven patients had the translocation detected at the time of original diagnosis and 17 at the time of relapse. Median survival in all patients after original diagnosis was 43 months; median survival after the translocation was detected was 11.9 months. Four patients had a clinical diagnosis of plasma cell leukemia. Most patients had an elevated beta2-microglobulin (13/20 had >4 microg/ml). The bone marrow (BM) labeling index (LI) of patients, at the time of translocation detection, was elevated in most (median 1.4%, 17/23 patients had BMLI > or = 1%). Of the 24 patients, 19 (79%) died of disease progression and 5 (21%) were alive with disease at last follow-up. Lytic lesions, bone pain, or compression fractures eventually developed in all patients. Patients with MM who have t(11;14)(q13;q32) detected by standard cytogenetics seem to have an aggressive clinical course.

Antineoplastic Combined Chemotherapy Protocols↗

Phase II North Central Cancer Treatment Group study of 2-cholorodeoxyadenosine in patients with recurrent glioma.

There is no standard treatment for patients with recurrent gliomas, and their prognosis remains poor. 2-Chlorodeoxyadenosine is a purine analogue that has significant activity in many low-grade lymphoproliferative disorders. The authors conducted a phase II study to determine the efficacy of 2-chlorodeoxyadenosine in patients with recurrent gliomas. Patients with a histologically confirmed primary brain tumor with evidence of progression after radiation therapy were eligible. Protocol treatment consisted of 2-chlorodeoxyadenosine 7.0 mg/m2 intravenously on days 1 through 5 every 28 days. For those with a history of prior nitrosourea therapy, the dose of 2-chlorodeoxyadenosine was reduced to 5.6 mg/m2 on days 1 through 5. Treatment was continued until progression or a maximum of 12 cycles. Fifteen patients with recurrent astrocytomas or oligoastrocytomas of all grades were entered in the study. Treatment was well tolerated. Major toxicities were myelosuppression and neurotoxicity. No responses were seen. The authors conclude that although 2-chlorodeoxyadenosine is well tolerated, no demonstrable activity in patients with recurrent gliomas was established.

Adult↗

Screening mammography in women aged 40-49 years.

Screening mammography in women aged 40-49 years reduces breast cancer mortality by 16%-18%, and is recommended by various national organizations. However, one must be aware of the recognized limitations of the approach. The actual benefit appears to be small (absolute risk reduction, 0.07%; the number of women who need to be screened to prevent 1 woman from dying of breast cancer, about 1,500-2,500), and there are associated risks and costs with this approach. The medical and scientific communities, in partnership with advocacy groups, must continue to work to improve our breast diagnostic capabilities, especially in younger women. Since this is an emotional and controversial issue, each woman will need to consider, with the aid of her primary caregiver, whether the risks of screening outweigh its potential benefits, and make an informed decision regarding screening.

Adult↗

Phase I evaluation of preirradiation chemotherapy with carmustine and cisplatin and accelerated radiation therapy in patients with high-grade gliomas.

OBJECTIVE: A Phase I study was conducted to determine the safety, toxicity, and maximum tolerated dose of preirradiation chemotherapy using carmustine (BCNU) and cisplatin in the treatment of high-grade gliomas. METHODS: Patients with newly diagnosed high-grade gliomas received BCNU and cisplatin after surgery, both before and during definitive radiation therapy. Preirradiation chemotherapy consisted of an administration of 40 mg/m2 BCNU on Days 1 through 3 and 30 mg/m2 cisplatin on Days 1 through 3 and 29 through 31 and repeated at 8 weeks to coincide with the start of radiation therapy. Postradiation chemotherapy consisted of an administration of 200 mg/m2 BCNU once every 8 weeks for four cycles. Radiation therapy consisted of 160-cGy fractions administered twice daily for 15 days, yielding a total dose of 4800 cGy. Dose escalation of BCNU was planned. If hematological toxicity was mild, the dose of cisplatin was to be held constant and BCNU dose escalated to 50 mg/m2 on Days 1 through 3. RESULTS: Eighteen patients were studied. The hematological toxicity was dose-limiting. Grade 3 or 4 leukopenia occurred in each of 10 patients (56%), and Grade 3 or 4 thrombocytopenia occurred in each of 9 patients (50%). Other toxicities included anorexia (94%), nausea (83%), emesis (33%), alopecia (94%), mild ototoxicity (50%), and, in one patient, death as a result of BCNU pulmonary toxicity. The median survival time was 14 months. Objective responses occurred in 45% of the patients evaluable for response. The maximum tolerated dose of this combination was 50 mg/m2 BCNU on Days 1 through 3 and 30 mg/m2 cisplatin on Days 1 through 3 and 29 through 31 before radiation and repeated in 8 weeks to coincide with the start of radiation. CONCLUSION: This schedule of the preirradiation administration of BCNU and cisplatin with accelerated hyper-fractionated radiation therapy for the treatment of high-grade gliomas provides a less toxic alternative to that of previous studies of preirradiation chemotherapy with these agents and merits further investigation.

Adult↗

Plasmablastic morphology is an independent predictor of poor survival after autologous stem-cell transplantation for multiple myeloma.

PURPOSE: To study the prognostic value of plasmablastic morphology after autologous stem-cell transplantation for relapsed or primary refractory myeloma. PATIENTS AND METHODS: Seventy-five patients were studied. Investigators blinded to the clinical details of the individual cases reviewed bone marrow aspirate slides to determine plasmablastic classification. Plasmablasts were defined using strict, well-described criteria. Plasmablastic morphology was considered to be present (plasmablastic myeloma) when 2% or more plasmablasts were present in the plasma-cell population. RESULTS: Patients underwent transplantation 5 to 88 months (median, 20 months) after the initial diagnosis of myeloma. Twenty-eight percent of patients had plasmablostic morphology. A significantly greater proportion of patients with plasmablastic morphology had abnormal cytogenetics compared with those with nonplasmablastic classification (73% v 31%, respectively; P = .003). The overall survival rate measured from the time of transplantation was significantly worse in patients with plasmablastic morphology compared with those without (median survival time, 5 months v 24 months, respectively; P < .001). Progression-free survival time was shortened also, with a median time of 4 months compared with 12 months, respectively (P < .001). In the multivariate analysis, plasmablastic classification was the most powerful prognostic factor after transplantation for both overall (P = .001) and progression-free survival rates (P < .001). We also identified three risk groups based on plasmablastic morphology: plasma-cell labeling index, lactate dehydrogenase, and cytogenetics. The median overall survival time was 38 months when none of these factors was abnormal, 17 months with one abnormal factor, and 8 months with two or more abnormal factors (P < .001). CONCLUSION: Plasmablastic morphology is a powerful independent predictor of poor survival rate after autologous stem-cell transplantation for relapsed or primary refractory myeloma.

Adult↗

Phase I and pharmacokinetic study of preirradiation chemotherapy with BCNU, cisplatin, etoposide, and accelerated radiation therapy in patients with high-grade glioma.

PURPOSE: We conducted a Phase I study of bischloroethylnitrosourea (BCNU), cisplatin, and oral etoposide administered prior to and during accelerated hyperfractionated radiation therapy in newly diagnosed high-grade glioma. Pharmacokinetic studies of oral etoposide were also done. METHODS AND MATERIALS: Patients started chemotherapy after surgery but prior to definitive radiation therapy (160 cGy twice daily x 15 days; 4800 cGy total). Initial chemotherapy consisted of BCNU 40 mg/m2 days 1-3, cisplatin 30 mg/m2 days 1-3 and 29-31, and etoposide 50 mg orally days 1-14 and 29-42, repeated in 8 weeks concurrent with radiation therapy. BCNU 200 mg/m2 every 8 weeks x 4 cycles was given after radiation therapy. RESULTS: Sixteen patients, 5 with grade 3 anaplastic astrocytoma and 11 with glioblastoma were studied. Grade 3-4 leukopenia (38%) and thrombocytopenia (31%) were dose-limiting. Other toxicities were anorexia (81%), nausea (94%), emesis (56%), alopecia (88%), and ototoxicity (38%). The maximum tolerated dose was BCNU 40 mg/m2 days 1-3, cisplatin 20 mg/m2 days 1-3 and 29-31, and oral etoposide 50 mg days 1-21 and 29-49 prior to radiation therapy and repeated in 8 weeks with the start of radiation therapy followed by BCNU 200 mg/m2 every 8 weeks for 4 cycles. Median time to progression and survival were 13 and 14 months respectively. Responses occurred in 2 of 9 (22%) patients with evaluable disease. In pharmacokinetic studies, all patients achieved plasma concentrations of >0.1 microg/ml etoposide (the in vitro radiosensitizing threshold), following a 50 mg oral dose. The mean +/- SD 2 hr and 6 hr plasma concentrations were 0.92 +/- 0.43 microg/ml and 0.36 +/- 0.12 microg/ml, respectively. Estimated duration of exposure to >0.1 microg/ml etoposide was 10-17 hr. CONCLUSIONS: Preirradiation chemotherapy with BCNU, cisplatin, and oral etoposide with accelerated hyperfractionated radiation therapy in high-grade gliomas is feasible and merits further investigation. Sustained radiosensitizing concentrations can be achieved with low oral doses of etoposide.

Adult↗

Primary systemic amyloidosis with delayed progression to multiple myeloma.

BACKGROUND: Primary systemic amyloidosis (AL) and multiple myeloma both are clonal plasma cell proliferative disorders. Although 10-15% of patients with myeloma have coexisting primary amyloidosis, it is unusual for patients with primary amyloidosis to progress to myeloma at a later date. The authors describe a case series of six patients in whom such progression occurred. METHODS: A computerized search was done of the medical records of all patients seen at the Mayo Clinic between January 1, 1960 and December 31, 1994 with a diagnosis of AL. Of 1596 patients with AL, 6 patients (age range, 60-74 years; median age, 68 years) with biopsy-proven AL were reviewed in whom delayed (at least 6 months after the diagnosis of AL) progression to multiple myeloma occurred. RESULTS: At the time of the diagnosis of AL, none of the six patients had evidence of multiple myeloma. The dominant manifestation of AL was peripheral neuropathy in three patients and cutaneous AL, renal AL, and amyloid arthropathy in one patient each. The diagnosis of multiple myeloma was made 10-81 months after the diagnosis of AL, based on the demonstration of multiple osteolytic lesions (4 patients) or marked bone marrow infiltration (> or = 50%) by plasma cells (5 patients). Two patients had received chemotherapy (melphalan and prednisone) for AL. Five patients received chemotherapy (four patients) or high dose methylprednisolone (one patient) after the diagnosis of multiple myeloma. Five patients died, and the median actuarial survival after the diagnosis of multiple myeloma was 20 months. Multiple myeloma was the cause of death in four patients; one patient died of systemic amyloidosis. In 2 patients death occurred within 3 months. CONCLUSIONS: AL occasionally progresses to overt multiple myeloma. These cases usually occur in patients without significant cardiac or hepatic AL who live long enough to develop multiple myeloma.

Aged↗

Phase I evaluation of radiation combined with recombinant interferon alpha-2a and BCNU for patients with high-grade glioma.

PURPOSE: A Phase I study to determine the safety, toxicity, and maximum tolerated dose (MTD) of carmustine (BCNU) and interferon alpha-2a (IFN-a) when combined with radiation as initial therapy in high-grade glioma. METHODS AND MATERIALS: Patients with newly diagnosed Grade 3 or 4 astrocytoma, oligoastrocytoma, or gliosarcoma were enrolled after surgery. All received radiation therapy to the brain (64.8 Gy/36 fractions), combined with a single dose of BCNU (200 mg/m2) at the start of radiation. Chemotherapy after completing radiation consisted of BCNU 150 mg/m2 once every 7 weeks, and IFN-a 12 x 10(6) units/m2 subcutaneously Days 1-3 each week of a 7-week cycle. Subsequent dose modification was based on constitutional symptoms for IFN-a and on myelosuppression for BCNU. RESULTS: Fifteen patients were entered on the study. Four were excluded because they did not receive IFN-a (3 refused treatment and 1 patient left the study due to multiple medical problems). Eleven were evaluable for toxicity and efficacy. Nonhematological toxicity, mainly lethargy and flu-like symptoms, were dose-limiting for IFN-a. After the first 6 patients were treated per the initial protocol, the frequency of IFN-a administration was decreased to Days 1-3 on weeks 1, 3, and 5 of the 7-week cycle for 5 additional patients. Lethargy, fever, chills, myalgias, alopecia, and anorexia occurred in all patients. Other toxicities included nausea and vomiting (91%), central-nervous-system depression or mood changes (64%), headaches (55%), and elevation of liver enzymes (36%). Grade 3-4 leukopenia occurred in 4 (45%) of 11 patients, and Grade 3-4 thrombocytopenia in 3 (27%) of 11 patients. Due to myelosuppressive effects, BCNU dose was not escalated. Median survival of the cohort was 44 months. Objective responses occurred in 5 (56%) of 9 patients and median duration of response was 33 months. The MTD of this combination after radiation therapy is IFN-a 12 x 10(6) units/m2 Days 1-3, on Weeks 1, 3, and 5 of a 7-week cycle and BCNU 150 mg/m2 Day 1, every 7 weeks. CONCLUSIONS: Treatment with radiation, IFN-a, and BCNU is feasible and effective in patients with high-grade gliomas, although constitutional symptoms from IFN-a are substantial.

Adult↗