Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “THALIDOMIDE”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 217 records · Page 12Linked to original sources

Adjunctive thalidomide therapy for childhood tuberculous meningitis: results of a randomized study.

Childhood tuberculous meningitis is associated with serious long-term sequelae, including mental retardation, behavior disturbances, and motor handicap. Brain damage in tuberculous meningitis results from a cytokine-mediated inflammatory response, which causes vasculitis and obstructive hydrocephalus. Thalidomide, a potent tumor necrosis factor alpha inhibitor, was well tolerated and possibly showed some clinical benefit in children with tuberculous meningitis during a pilot study. The purpose of the present study was to assess the effect of adjunctive thalidomide in addition to standard antituberculosis and corticosteroid therapy on the outcome of tuberculous meningitis. Thalidomide (24 mg/kg/day orally) or placebo was administered in a double-blind randomized fashion for 1 month to patients with stage 2 or 3 tuberculous meningitis. The study was terminated early because all adverse events and deaths occurred in one arm of the study (thalidomide group). Thirty of the 47 children enrolled received adjunctive thalidomide, of whom 6 (20%) developed a skin rash, 8 (26%) hepatitis, and 2 (6%) neutropenia or thrombocytopenia. Four deaths (13%) occurred in patients with very severe neurologic compromise at baseline; two deaths were associated with a rash. Motor outcome after 6 months of antituberculosis therapy was similar in the two groups, even though the thalidomide group showed greater neurologic compromise on admission. In addition, the mean IQ of the two treatment groups did not differ significantly (mean IQ thalidomide group 57.8 versus mean IQ control group 67.5; P = .16). These results do not support the use of adjunctive high-dose thalidomide therapy in the treatment of tuberculous meningitis.

Adrenal Cortex Hormones↗

Thalidomide reduces IL-18, IL-8 and TNF-alpha release from alveolar macrophages in interstitial lung disease.

Thalidomide exhibits diverse actions of anti-inflammation, immunomodulation and anti-angiogenesis. The efficacy of thalidomide treatment in sarcoidosis with lupus pernio is thought to be due to inhibition of tumour necrosis factor (TNF)-alpha. The mechanisms that underlie the properties of thalidomide are still unclear in interstitial lung disease. The current authors investigated the potential inhibitory effects of thalidomide at concentrations of 0.1, 0.01 and 0.001 mM on the production of transforming growth factor-beta, TNF-alpha, interleukin (IL)-1beta, IL-6, IL-8, IL-10, IL-12p70, IL-12p40 and IL-18 by alveolar macrophages from bronchoalveolar lavage in patients with sarcoidosis (n = 8), hypersensitivity pneumonitis (HP; n = 8) and idiopathic pulmonary fibrosis (IPF; n = 12). In sarcoidosis and HP patients, thalidomide induced a dose-dependent, partial suppression of lipopolysacchride (LPS)-stimulated TNF-alpha, IL-12p40 and IL-18 release. At the highest thalidomide concentration (0.1 mM), LPS-stimulated IL-8 production was also suppressed. In IPF patients, although spontaneous production of TNF-alpha, IL-12p40, IL-18 and IL-8 was lower than in sarcoidosis and HP patients, with LPS stimulation the cytokines were significantly elevated and also partially inhibited by thalidomide. In conclusion, thalidomide has the potential to improve the therapeutic regimens for sarcoidosis, hypersensitivity pneumonitis and idiopathic pulmonary fibrosis by reducing tumour necrosis factor-alpha, interleukin-12p40, interleukin-18 and interleukin-8 production.

Aged↗

Thalidomide alone or with dexamethasone for previously untreated multiple myeloma.

PURPOSE: To evaluate the activity of thalidomide in patients with asymptomatic multiple myeloma and of thalidomide-dexamethasone in patients with previously untreated symptomatic myeloma. PATIENTS AND METHODS: Twenty-eight patients with previously untreated asymptomatic myeloma were treated with thalidomide 100 to 200 mg orally (PO) at bedtime (qhs) with serial increments of 50 to 100 mg at weekly intervals, as tolerated to a maximum of 600 mg PO qhs. Forty consecutive previously untreated patients with symptomatic myeloma were also treated as above (maximum dose 400 mg) and received dexamethasone 20 mg/m(2) for 4 days beginning on days 1, 9, and 17; the second and third cycles of repeated dexamethasone were begun on day 30. Both groups of patients were treated for at least 3 months. RESULTS: The response rate was 36% for patients treated with thalidomide alone and 72% for patients treated with thalidomide-dexamethasone, the latter including complete remission in 16% of patients. The median time to remission was 4.2 months with thalidomide alone and 0.7 months with thalidomide-dexamethasone. Grade 3 toxicity included infections (nine patients) and thrombotic/embolic events (seven patients). Five deaths have occurred as a result of multiple myeloma (two patients), infection (one patient), unknown cause (one patient), and a possible thromboembolic event (one patient). CONCLUSION: Thalidomide alone was effective in patients with newly diagnosed myeloma. The combination with dexamethasone induced a high frequency of response, rapid onset of remission, and low incidence of serious irreversible toxicity. These observations support further studies of this promising combination for patients with newly diagnosed multiple myeloma.

Angiogenesis Inhibitors↗

Development of neuropathy in patients with myeloma treated with thalidomide: patterns of occurrence and the role of electrophysiologic monitoring.

PURPOSE: Peripheral neuropathy frequently limits the duration of treatment with thalidomide for patients with multiple myeloma. We assessed the time course of occurrence, possible predictive factors, and the utility of serial nerve electrophysiological studies (NES) for detecting onset of neuropathy. PATIENTS AND METHODS: Seventy-five patients with relapsed/refractory myeloma were enrolled onto a multicenter trial of dose-escalating thalidomide with or without interferon. Patients underwent clinical assessment plus NES at baseline and every 3 months. Time to development of neuropathy according to clinical or NES criteria was compared. Patient and treatment-related factors were compared as predictors of neuropathy. RESULTS: Thirty-nine percent had some NES abnormalities at baseline. Patients received thalidomide at a median dose-intensity of 373 mg/d. Thirty-one of 75 patients (41%) developed neuropathy during thalidomide treatment; 11 patients (15%) discontinued treatment with thalidomide due to neuropathy. The actuarial incidence of neuropathy increased from 38% at 6 months to 73% at 12 months, with 81% of responding patients developing this complication. Serial NES did not reliably predict the imminent development of clinical neuropathy requiring thalidomide cessation, nor were patient age, sex, or prior therapy predictive. Patients who developed neuropathy had a longer duration of thalidomide exposure (median, 268 v 89 days; P = .0001). Cumulative dose or dose-intensity received was not predictive. CONCLUSION: The majority of patients will develop peripheral neuropathy given sufficient length of treatment with thalidomide. To minimize the risk of neurotoxicity, therapy should be limited to less than 6 months. Electrophysiologic monitoring provides no clear benefit versus careful clinical evaluation for the development of clinically significant neuropathy.

Aged↗

Pharmacokinetics of thalidomide in patients with impaired renal function and while on and off dialysis.

There is a renewed interest in thalidomide for use in malignancies and systemic inflammatory diseases. Reduced renal function is not uncommon among patients with these disease states but the pharmacokinetics has not been fully investigated. The aim of this study was to investigate the pharmacokinetics of thalidomide in haemodialysis patients while on and off dialysis and in myeloma patients with varying degrees of renal function. Two studies were performed. To establish the pharmacokinetics of thalidomide in patients with mild to moderate renal failure, blood samples were taken over 12 weeks from 40 patients with multiple myeloma. A second study was performed in six patients with end-stage renal disease both on a non-dialysis day and before and during a haemodialysis session. Thalidomide concentration was determined by HPLC. A one-compartment open model with first-order absorption and elimination was used to fit total thalidomide concentration to population pharmacokinetics and statistical models using the NONMEM program. Clearance and volumes were slightly below 10 L h-1 and 1 L kg-1, respectively, in both patient groups. The inter- and intra-patient variability was low. Clearance was doubled during dialysis. There was no correlation between thalidomide clearance and renal function. In conclusion, the pharmacokinetics of thalidomide in patients with renal failure are very similar to values reported by others for patients with normal renal function. Although clearance during dialysis is doubled, thalidomide dose need not be changed for patients with decreased kidney function. There is also no need for a supplementary dose due to haemodialysis.

Adult↗

Thalidomide in children undergoing bone marrow transplantation: series at a single institution and review of the literature.

Thalidomide has one of the most notorious drug histories because of its teratogenicity. Its widespread use in the 1960s led to a worldwide epidemic of phocomelia in inborns; this in turn led to its complete ban in most of the world. However, it has now been licensed for selected indications including graft-versus-host-disease (GVHD) after bone marrow transplantation, wasting associated with tuberculosis and human immunodeficiency virus infection, and leprosy. Little is known, however, about its use in children in these settings. Therefore, we report our experience and review the literature on thalidomide in children for GVHD after bone marrow transplantation. We studied 6 patients, 2 with chronic GVHD, 2 with acute GVHD, and 2 with acute GVHD progressing into chronic disease. One patient with chronic GVHD had a complete response, whereas the other had a partial response. Side effects consisted primarily of sedation and constipation, which are reported previously and well known side effects. None had neuropathy. One patient had rash, eosinophilia, and early pancreatitis that began shortly after initiation of thalidomide, persisted, and resolved only after discontinuation of thalidomide. Eosinophilia and pancreatitis are both previously unreported side effects or associated findings of thalidomide treatment. Review of the literature reveals three major studies of thalidomide in GVHD; of these two included children and adults together, and one in which age range of patients was not mentioned. In addition, four series of children receiving only thalidomide are reported. These series contained 1 to 14 patients each. Results show efficacy in at least 50% of children with chronic GVHD and little or no efficacy in children with exclusively acute GVHD. Side effects are similar to those reported in adults and consisted mostly of sedation and constipation, both of which subsided over time and resolved after discontinuing the drug. We speculate on the reasons for which thalidomide is more effective in chronic, compared with acute, GVHD in children, and make recommendations for future study.

Acute Disease↗

Thalidomide in advanced hepatocellular carcinoma with optional low-dose interferon-alpha2a upon progression.

PURPOSE: To evaluate thalidomide in advanced hepatocellular carcinoma (HCC) and to evaluate combined thalidomide and low-dose interferon-alpha2a (IFN-alpha2a) after tumor progression on thalidomide. Systemic therapy is minimally effective in HCC and tumor angiogenesis is a potential therapeutic target. PATIENTS AND METHODS: Patients with unresectable HCC were eligible if they had preserved hepatic and renal function. The initial thalidomide dosage was 200 mg daily and was adjusted for toxicity. Upon progression, patients could continue thalidomide with additional low-dosage (one million units twice daily) IFN-alpha2a. RESULTS: Thirty-eight enrolled patients were predominantly hepatitis C virus infected (53%), Child-Pugh class A (79%), and Eastern Cooperative Oncology Group performance status 0-1 (92%); 60% had extrahepatic metastasis. Confirmed disease control was seen in seven patients (18%) and included one complete and one partial response (5% response rate). The median progression-free survival was 2.1 months, and median overall survival was 5.5 months. Tumor invasion of the portal vein or vena cava, large (>10 cm) tumor, and younger age were associated with shorter overall survival. Toxicity included fatigue in 74% of patients. Six patients stopped therapy because of side effects, including two patients (5%) with grade 4 arteriothrombotic events. Five patients continued thalidomide upon progression with the addition of IFN-alpha2a; there was no disease control and 80% had grade 3 toxicity. CONCLUSIONS: Thalidomide is not well tolerated and confers limited disease control in advanced HCC. Combination thalidomide and low-dose IFN-alpha2a is neither safe nor efficacious in this population.

Adult↗

Thalidomide in gastrointestinal disorders.

Thalidomide was originally marketed as a sedative, but was removed from the market in 1961 after it was associated with an epidemic of severe birth defects. Subsequently, it has been shown to have therapeutic efficacy in a number of the gastrointestinal tract conditions characterised by immune dysregulation. The exact mechanism of the immunosuppressive effects of thalidomide is unknown; proposed mechanisms include inhibition of tumour necrosis factor alpha release and inhibition of angiogenesis. In chronic graft versus host disease, use of high dose thalidomide (1200 mg/day) may bring about a response in 20% of patients with refractory disease. Thalidomide 200 mg/day helps eradicate ulcers in 50% of patients with HIV-associated oral aphthous ulceration. In Behçet's disease, thalidomide 100 to 300 mg/day can decrease the number of mucocutaneous ulcers, although full remission occurs in less than 20% of patients. In Crohn's disease, thalidomide 50 to 300 mg/day may decrease the severity of mucosal disease and prompt closure of fistulae. Patients to be placed on thalidomide therapy must practice either abstinence or strict birth control; women must undergo regular pregnancy testing and utilise 2 forms of contraception. Other adverse effects include sedation (present in nearly all patients), symptomatic neuropathy (present in approximately 20%), and skin rashes. Given the potential toxicity, thalidomide use should generally be limited to clinical protocols with institutional review board oversight.

Behcet Syndrome↗

Thalidomide in cutaneous lupus erythematosus.

For nearly 50 years, thalidomide has struggled between success and controversy. After causing an epidemic of phocomelia and other birth defects during the 1960s, affecting thousands of neonates, thalidomide was used as a sedative in selective disorders including leprosy. The potent anti-inflammatory properties of thalidomide were serendipitously discovered while treating patients with erythema nodosum leprosum, and the drug is now approved by the US FDA for the treatment of this disease. Subsequently, the immunosuppressant effects of thalidomide, including the complex modulation of many cytokines, have been recognized. One promising application of thalidomide has been the treatment of cutaneous lupus erythematosus. Among the largest series reviewed, the drug has been found to ameliorate cutaneous lupus erythematosus in 90% of patients, on average. Remission is achieved in approximately 15-20% of patients with cutaneous lupus erythematosus at doses between 50-400 mg daily. Contraceptive concerns and the recognized neuropathic effects of thalidomide limit the use of the drug in patients with cutaneous lupus. Physicians who prescribe thalidomide in the US must be registered with the drug manufacturer. With appropriate control of drug access and close physician monitoring, thalidomide provides a needed therapeutic option for the treatment of refractory cases of cutaneous lupus erythematosus.

Dermatologic Agents↗

Thalidomide as an immunotherapeutic agent: the effects on neutrophil-mediated inflammation.

Thalidomide was developed in the 1950s as a sedative drug and withdrawn in 1961 because of its teratogenic effects, but has been rediscovered as an immuno-modifying drug. It has been administered successfully for the treatment of erythema nodosum leprosum, aphthous ulceration in HIV disease, inflammatory bowel diseases, and multiple myeloma. So far, investigations into the mode of action of thalidomide have focused on lymphocytes and vascular endothelial cells and have shown that this agent inhibits the production of tumor necrosis factor (TNF)-alpha and is an inhibitor of tumor angiogenesis. Recently, other immunological effects of this drug have been gaining attention, including attenuation of neutrophil activation and inhibition of myelo-proliferative responses. In autoimmune diseases, inflammation is characterized by an influx of granulocytes, and the association of granulocytes with gastrointestinal ulcer formation or rheumatic arthritis has been well documented. The suppressive effect of thalidomide on the activation of the nuclear transcription factor NF-(kappa)B may explain these effects of thalidomide. NF-(kappa)B is retained in the cytoplasm with I(kappa)B(alpha), and is activated by a wide variety of inflammatory stimuli including TNF, IL-1 and endotoxin followed by its translocation to the nucleus. Constitutive activation of NF-(kappa)B has been detected in various inflammatory diseases, while angiogenesis and organogenesis also require NF-(kappa)B activation. Thalidomide, on the other hand, has been shown to selectively suppress NF-(kappa)B activation induced by inflammatory mediators. NF-(kappa)B is known to be located downstream of proliferative and/or survival signaling induced by growth factors, which regulate anti-apoptotic genes. Myeloid cells in vitro, however, have been found to proceed to apoptosis as the result of the treatment with thalidomide and subsequent inactivation of NF-(kappa)B. These findings are consistent with clinical symptoms that showed the recovery from leukocytosis and/or neutrophilia after the administration of thalidomide. These findings shed new light on the anti-inflammatory properties of thalidomide and suggested that they may inhibit granulocyte-mediated tissue injury.

Animals↗

Effect of thalidomide on growth and metastasis of canine osteosarcoma cells after xenotransplantation in athymic mice.

OBJECTIVE: To determine whether thalidomide inhibits the growth of primary and pulmonary metastatic canine osteosarcoma in mice after xenotransplantation. ANIMALS: Athymic nude mice. PROCEDURE: Canine osteosarcoma cells were injected SC in 50 mice. Mice were randomly placed into the following groups: control group (n = 13; DMSO [drug vehicle] alone [0.1 mL/d, IP]); low-dose group (12; thalidomide [100 mg/kg, IP]), mid-dose group (13; thalidomide [200 mg/kg, IP]); and high-dose group (12; thalidomide [400 mg/kg, IP]). Starting on day 8, treatments were administered daily and tumor measurements were performed for 20 days. On day 28, mice were euthanatized and primary tumors were weighed. Lungs were examined histologically to determine the number of mice with metastasis and tumor emboli. Mean area of the pulmonary micrometastatic foci was determined for mice from each group. RESULTS: Primary tumor size and weight were not significantly different among groups. The number of mice in the mid-dose (200 mg/kg) and high-dose (400 mg/kg) groups with micrometastasis was significantly less than the number of control group mice; however, the number of mice with tumor emboli was not affected by thalidomide treatment. Size of micrometastasis lesions was not affected by thalidomide treatment. CONCLUSIONS AND CLINICAL RELEVANCE: Mean area of micrometastases was not affected by treatment; however, growth of micrometastases had not yet reached an angiogenesis-dependent size. Although thalidomide did not affect growth of primary tumors in mice after xenotransplantation of canine osteosarcoma cells, our findings indicate that thalidomide may interfere with the ability of embolic tumor cells to complete the metastatic process within the lungs.

Angiogenesis Inhibitors↗

Thalidomide in the treatment of the mucocutaneous lesions of the Behçet syndrome. A randomized, double-blind, placebo-controlled trial.

BACKGROUND: Recurrent oral and genital ulcers are the most frequent problem in the management of the Behçet syndrome. Uncontrolled experience suggests that thalidomide may help prevent recurrences of these ulcers. OBJECTIVE: To determine the efficacy of two thalidomide dosages in the treatment of mucocutaneous lesions of the Behçet syndrome. DESIGN: Randomized, double-blind, placebo-controlled trial. SETTING: Specialist outpatient clinic for the Behçet syndrome in Turkey. PATIENTS: 96 male patients with the Behçet syndrome who primarily had mucocutaneous lesions without major organ involvement. INTERVENTION: Thalidomide, 100 mg/d or 300 mg/d, or placebo for 24 weeks. MEASUREMENTS: Sustained absence of any oral and genital ulceration during treatment (complete response) and changes in the number of mucocutaneous lesions. An additional evaluation was done 4 weeks after treatment ended. RESULTS: A complete response occurred in 2 of the 32 patients (6% [95% CI, 0.8% to 20.8%]) receiving thalidomide, 100 mg/d; in 5 of the 31 patients (16% [CI, 5.5% to 33.7%]) receiving thalidomide, 300 mg/d; and in none of the 32 patients (0% [CI, 0% to 10.9%]) receiving placebo (P = 0.031). The suppressive effect of thalidomide with either dosage was evident at 4 weeks for oral ulcers (P < 0.001) and at 8 weeks for genital ulcers (P < 0.001) and follicular lesions (P = 0.008). This effect persisted during treatment but diminished rapidly after treatment was discontinued. Both thalidomide dosages led to significant increases in the number of erythema nodosum lesions during the first 8 weeks of treatment (P = 0.03). Polyneuropathy developed in 4 patients (1 in the 100-mg/d group and 3 in the 300-mg/d group); in 3 of these patients, the condition was diagnosed after the trial had ended. CONCLUSIONS: Thalidomide is effective for treating the oral and genital ulcers and follicular lesions of the Behçet syndrome. A dosage of 100 mg/d is as effective as a dosage of 300 mg/day.

Adolescent↗

Thalidomide in the treatment of cutaneous lupus refractory to conventional therapy.

OBJECTIVE: We describe a prospective treatment study of thalidomide in a series of 22 patients with cutaneous lupus refractory to other treatments. METHODS: From 1992 to 1998, 22 patients with cutaneous lupus (9 with discoid lupus erythematosus, 7 with subacute cutaneous lupus, 4 with profundus lupus, 2 with nonspecific rash) were treated with thalidomide. Initial treatment was started at 100 mg daily. If the cutaneous lesions vanished, the dose was lowered to 50-25 mg daily as a maintenance therapy and it was considered a complete remission. If the lesions improved but remained, this was considered a partial response and treatment was continued until the lesions were not further modified. Periodically, adverse effects were evaluated. RESULTS: Three patients discontinued treatment because of side effects such as vertigo, persistent drowsiness, or paresthesia. Rash improved in 16/19 patients (84%). Complete remission occurred in 12/16 (75%). In 9 (65%) the rash resolved, but recurred 4-16 weeks after withdrawal of thalidomide; when it was used again, they improved. Partial response was achieved in 4/16 (25%) patients. No response occurred in 3/19 (16%). Many patients noted improvement within 2 weeks after starting thalidomide and maximum benefit was achieved within 3 months. Five of the 14 women had amenorrhea during the treatment with thalidomide. CONCLUSION: Thalidomide is effective in the treatment of cutaneous lupus refractory to other treatments. However, only some patients had a remission; the remainder relapsed when treatment was withdrawn, or required low doses of thalidomide to preserve inactive lesions. Amenorrhea was observed as a new secondary effect of thalidomide.

Adolescent↗

Limited efficacy of thalidomide in the treatment of febrile attacks of the hyper-IgD and periodic fever syndrome: a randomized, double-blind, placebo-controlled trial.

Hyper-IgD and periodic fever syndrome (HIDS) is an autosomal recessive disorder featured by recurrent febrile attacks. Previous unpublished experience (J. van der Meer and R. Powell) suggested that thalidomide may prevent febrile attacks. Six HIDS patients (5 male and 1 female) who had at least one febrile attack every 6 weeks, entered a randomized, double-blind, placebo-controlled crossover trial to explore the efficacy of a daily 200-mg thalidomide dose in the treatment of recurrent febrile attacks of HIDS. The patients received either thalidomide, 200-mg daily, or placebo for 16 weeks, followed by a 4-week washout period and another 16-week treatment (crossover) with either thalidomide or placebo. Patients completed a weekly diary card noting attacks and side effects. During the study, C-reactive protein (CRP), serum amyloid A (SAA), interleukin (IL)-6, tumor necrosis factor (TNF)-alpha, IL-1 receptor antagonist, soluble TNF receptor p55 and p75, and lipopolysaccharide-stimulated IL-1 beta and TNF-alpha production were measured at six different points, whereas urine neopterin levels were measured weekly. During the active treatment with thalidomide, there were 10 attacks compared with 13 attacks with placebo. Thalidomide resulted in a nonsignificant decrease of CRP and SAA, but the concentrations of other inflammatory mediators, including urine neopterin, remained unchanged. One patient developed sensory polyneuropathy, but this resolved when thalidomide administration was stopped. The effect of thalidomide in HIDS is limited to a decrease in acute phase protein synthesis without an effect on the attack rate.

Acute-Phase Reaction↗

Thalidomide and tuberculosis.

The anti-inflammatory and immunomodulatory effects of thalidomide have led scientists to explore its clinical therapeutic values. Thalidomide is now being considered as an adjuvant treatment for tuberculosis. This literature review examines the drug's mechanism of action and clinical applications. Thalidomide affects cytokine production and T lymphocyte proliferation. It appears that thalidomide suppresses TNF-alpha production by macrophages and thereby reduces inflammatory response. Thalidomide elevates the IFN-gamma level and modulates several other cytokines as well, noteworthily IL-2 and IL-12. Thalidomide costimulates T lymphocytes, with greater effect on CD8+ than on CD4+ T cells. This finding is important, since CD8+ T cells have been shown to be contributory to the protective immune response to Mycobacterium tuberculosis infection. The clinical application of thalidomide as part of standard tuberculosis therapy is inconclusive amid variability among reports. However, thalidomide has been shown to be an effective adjuvant for tuberculosis patients complicated with severe inflammatory reaction or wasting conditions.

Animals↗

[Thalidomide: new uses for an old drug].

Thalidomide was withdrawn from the market in the early sixties because of its teratogenic effects. Despite forty years of research, the mechanism of thalidomide embryopathy has remained unsolved. Thalidomide has various immunomodulatory effects. Thalidomide inhibits TNF alpha production, has T-cell costimulatory properties and modulates the expression of cell surface molecules on leukocytes in vivo. Thalidomide also has anti-angiogenic activity in vivo. Angiogenesis plays an important role in the pathogenesis of both solid tumours and hematologic malignancies such as multiple myeloma and lymphoma. In clinical studies, thalidomide has been used as an inhibitor of angiogenesis. Erythema nodosum leprosum is the only registered indication for the use of thalidomide in the United States of America. Thalidomide is also effective in the treatment of chronic graft-versus-host disease, mucocutaneous lesions in Behçet's syndrome and HIV infections, and multiple myeloma.

Angiogenesis Inhibitors↗

[Thalidomide in the treatment of refractory multiple myeloma: a Dutch study of 72 patients: an antitumor effect in 45%].

OBJECTIVE: To determine the efficacy and side effects of thalidomide in the treatment of refractory multiple myeloma. DESIGN: Retrospective, descriptive. METHOD: Data were obtained by means of case research on patients with refractory multiple myeloma who were treated with thalidomide at four regional hematological centres in the period from 1 May 1999 to 31 May 2001. The patients had previously been treated with one, two or three schedules of chemotherapy. The starting dose of thalidomide was 200 mg per day and the dose was increased gradually to a maximum of 800 mg per day depending on the tolerance. RESULTS: The 72 patients included 43 men and 29 women with an average age of 62 years (range: 38-82 years). The median follow-up was 13 months (range: 2-25). Thalidomide as a single agent was prescribed for 64 patients, of whom 29 (45%) responded; a complete response was achieved in 3 patients, a partial response in 18, and a minor response in 8. In 4 of 11 patients with an extramedullary plasmacytoma a decrease in size was observed. The median duration of the response was 9 months (range: from 2 till > 24). The median overall survival from the start of thalidomide treatment was 9 months. Thalidomide plus dexamethasone was given to 9 patients who did not respond to thalidomide alone, and in 6 of them a reduction of M-protein was then observed. The most frequent adverse effects were constipation, drowsiness, somnolence, dizziness, venous thrombosis and polyneuropathy. Doses of up to 400 mg per day were generally well tolerated. CONCLUSION: Thalidomide has antitumour activity in refractory multiple myeloma.

Adult↗

[Thalidomide treatment of patients with refractory myeloma in the institutes participating in the Japan Myeloma Study Group].

Thalidomide was used in 73 patients with refractory myeloma in 15 of 45 institutes participating in the Japan Myeloma Study Group. The mean age and male/female ratio were 63.8 years and 0.92 (35/38), respectively. Thirty-four patients (47%) were treated with only thalidomide, 27 patients (37%) were treated with thalidomide and steroids, and 12 (16%) were treated with thalidomide and chemotherapy. The mean initial, maximum, and maintenances dose of thalidomide were 111.0, 204.8, and 163.0 mg/day, respectively. Almost all of the patients were maintained on low-dose thalidomide between 100-200 mg/day. Complete, near complete and partial response was obtained in 31 patients (42.5%). The progression-free and overall survivals after thalidomide therapy were 9.8 and 21.3 months, respectively. The most common adverse effects were gastrointestinal disturbance, peripheral neuropathy, psychological signs, and skin eruption. In contrast to reports from Europe and America, no deep vein thrombosis was observed in this study. On the other hand, leukopenia was relatively frequently observed, and might be recognized as a serious adverse effect in myeloma patients. In conclusion, low-dose thalidomide is a useful and safe tool for the treatment of refractory myeloma.

Female↗