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Long-term Effects of Thalidomide for Recurrent Gastrointestinal Bleeding Due to Vascular Malformation

Long-term Effects of Thalidomide for Recurrent Gastrointestinal Bleeding Due to Vascular Malformation : An Open-label, Randomized, Parallel Controlled Study

Status
Completed
Phases
Phase 2
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT00964496
Enrollment
55
Registered
2009-08-25
Start date
2004-11-30
Completion date
2009-08-31
Last updated
2015-12-17

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Angiodysplasia, Gastric Antral Vascular Ectasia, Obscure Gastrointestinal Bleeding, Thalidomide

Keywords

vascular malformation, gastrointestinal bleeding, thalidomide

Brief summary

Background: Repeated episodes of bleeding from gastrointestinal vascular malformations refractory to endoscopic or surgical therapy often pose a major therapeutic challenge. Methods: The investigators performed a randomized, parallel controlled study of thalidomide as a therapy for recurrent gastrointestinal bleeding due to vascular malformation. Patients with at least six episodes of bleeding in the prior year due to vascular malformation were randomly grouped, prescribed a four-month regimen of either 25 mg of thalidomide or 100 mg of iron orally four times daily, and monitored for at least one year. The primary end point was defined as the patients whose rebleeds decreased from baseline by ≥ 50% at 12 months and the cessation of bleeding. Rebleeding was defined based on a positive fecal occult blood test (FOBT) (monoclonal colloidal gold color technology) at any visit after treatment. Secondary outcomes included the participants dependent on blood transfusions and changes from baseline in transfused packed red cell units, bleeding episodes, bleeding durations, and hemoglobin levels at 12 months. Statistical significance was defined at P \< 0.05.

Detailed description

Protocol Description: This is an exploratory, randomized, parallel controlled study of thalidomide for recurrent gastrointestinal bleeding from vascular malformations. Informed consent was taken from all subjects and the Institute Ethics Committee approved the study protocol. All procedures were in accordance with the Declaration of Helsinki. The study was supported by no pharmaceutical funding. Study design and Intervention: From Nov. 2004 to Nov. 2007, patients with repeated episodes of chronic gastro-intestinal bleeding due to vascular malformations identified by oesophagogastroduodenoscopy, capsule endoscope or double-balloon endoscope were enrolled (according our enrollment criteria). The patients were randomly assigned to receive a four-month course of either 25 mg of thalidomide or 100mg iron orally at daily time 6 a.m.,12 noon,6 p.m. and 10 p.m., respectively. Randomization was performed through the proc plan procedure of Statistical Analysis Software (SAS), using the method of randomly permuted blocks of 4. Within each block, the number of patients allocated to each of the two treatments was equal. Each patient who met the inclusion criteria was consecutively assigned a random number in chronological order, which allocated him or her to one of the treatment groups. A blinded research nurse supervised patient randomization and drug administration. In the case of an adverse event, the study medication was temporarily or permanently discontinued based on subject inclination and toxicity intolerance. Concomitant therapies, such as blood transfusions and other symptomatic treatments like iron supplementation, were performed in both groups as necessary during the four-month treatment and subsequent follow-up periods. Blood transfusion was indicated and recorded when the hemoglobin (Hb) level reached \< 7.0 g/dl. Red-cell transfusions were administered according to patient Hb level as follows: 2 units were administered for 6.1 g/dl ≥ Hb ≤ 7.0 g/dl, 3 units for 5.1 g/dl ≥ Hb ≤ 6.0 g/dl, and 4 units for Hb \< 5.0 g/dl. Iron was provided for patients with 7.0 g/dl ≥ Hb ≤ 11.0 g/dl. After the four-month treatment course, all patients discontinued study medications except for cases where symptomatic treatments were necessary as described above. Assessment of response and adverse events: The primary end point was defined as the patients whose rebleeds decreased from baseline by ≥ 50% at 12 months and the cessation of bleeding. Rebleeding was defined based on a positive fecal occult blood test (FOBT) (monoclonal colloidal gold color technology) at any visit after treatment. Secondary outcomes included the participants dependent on blood transfusions and changes from baseline in transfused packed red cell units, bleeding episodes, bleeding durations, and hemoglobin levels at 12 months. Adverse events included any unfavorable change in health, including abnormal laboratory findings, during the study or follow-up period. Evaluation of Patients and Follow-up: * Certified research nurses collected information on the demographics and medical and social histories of all patients enrolled in the study. * After screening and baseline evaluations, the patients were closely monitored in the hospital for at least one week. They were then followed twice monthly during the four-mouth course of treatment and once a month thereafter. * Clinical follow-up was performed by qualified doctors. At all visits, the bleeding-related parameters (number and duration), a physical examination was performed and laboratory values were obtained for FOBT, complete blood counts, serum chemistries, and hepatic and renal function. Neuropathy and other adverse events were also assessed. * Patients were advised to refrain from any other non-prescribed medicines, especially rebleeding-related medications such as aspirin, nonsteroidal antiinflammatory drugs (NSAIDs), anti-platelet drugs, anticoagulants, and Chinese medications (with salicylates), gingko, or Echinacea. Measurement of Vascular Endothelial Growth Factor (VEGF) in Sera: Laboratory assays for VEGF were performed at baseline and after the four-month treatment course in the thalidomide group, by a technician blinded to the assignment and final assessment. Three milliliters of serum of peripheral venous blood samples were centrifuged (3000 r/min at 4°C, 10 min), extracted, separated into freezing tubes, and stored at -70°C for no more than 4 months. Plasma VEGF levels (in pg/ml) were determined in duplicate using sandwich ELISA kits (R&D Systems, USA) in a laboratory of the Shanghai Research Institute of Digestive Disease. Samples from each patient were batch-tested in a single run. For quality control, all samples were retested two more times in a subsequent run to confirm the results of the first run. Statistical Analysis: To our knowledge, no similar such study has previously been performed, and we were thus unable to refer to published studies to determine our samples. To this end, we performed an unpublished preliminary study. Response in the iron-control group and thalidomide group reached 10% and 80%, due to loose inclusion criteria (bleeding history was not restricted). For this study, we estimated that the primary outcome (the proportion of subjects whose number of yearly bleeds had decreased by ≥ 50%) would occur in 10% of the control group and 80% of the thalidomide group patients. An equally divided sample of 11 subjects was deemed sufficient for detecting the primary end point, with a type I error (two-sided) of 5% and a power of 90%. Assuming a 10% volunteer attrition rate to follow-up, we established a target sample size of 13 per group (calculated with nquery advisor software 5.0). Analyses of the responses and adverse events were performed on all registered patients according to the intention-to-treat principle. Statistical analysis was performed by a blinded biostatistician with the Statistical Product and Service Solutions (SPSS) 13.0 software package. We simultaneously analyzed the primary endpoint of the full analysis set (FAS) and per protocol set (PPS). Continuous variables were compared using a two-sample independent t-test or Wilcoxon rank-sum test. Categorical variables were compared using the chi-squared and Fisher's exact tests. A paired t-test was employed to compare differences in plasma VEGF levels before and after thalidomide treatment. The Breslow-Day test was used to test for the heterogeneity of treatment effects across strata. All reported P-values are two-sided. Data are reported as the mean ± standard deviation (SD) or median (range) for continuous variables and number (%) for categorical variables. Since adjustments to the control group were minimal, we also reported point estimates and 95% confidence intervals (CIs). For all outcomes, a P-value of \< 0.05 was considered statistically significant.

Interventions

DRUGThalidomide

Patients were randomly assigned to receive a four-month course of 25 mg of thalidomide (Pharmaceutical Co., Ltd. of Chang-zhou, China). Medications were taken orally four times daily at 6 a.m., 12 noon, 6 p.m., and 10 p.m.

DRUGIron

Patients were randomly assigned to receive a four-month course of 100 mg of iron (Pharmaceutical Co., Ltd. of Nanjing, China). Medications were taken orally four times daily at 6 a.m., 12 noon, 6 p.m., and 10 p.m.

Sponsors

Shanghai Jiao Tong University School of Medicine
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
40 Years to 85 Years
Healthy volunteers
No

Inclusion criteria

* Age between 40-85 years; women were post-menopausal, post-tubal ligation, or on some form of birth control like long-term laying up contraceptive ring or using condom; * History of at least six documented gastrointestinal bleeding episodes in the year prior to randomization, which were refractory or inaccessible to endoscopic therapy or surgical ectomy; * Confirmed diagnosis of vascular malformation by esophagogastroduodenoscopy (EGD), capsule endoscope (CE), double-balloon endoscope (DBE), or colonoscopy, but no obvious infectious, neoplastic, or other specific diagnosis; * Angiodysplasia at endoscopy characterized by focal or diffused venous/capillary lesions presenting as bright red ectatic vessels or pulsatile red protrusions, with surrounding venous dilatation or patchy erythema with or without oozing; * Endoscopic appearance of GAVE (also known as watermelon stomach), indicated by longitudinal antral folds converging on the pylorus, containing visible columns of tortuous red ecstatic vessels.

Exclusion criteria

* Patients were excluded if their bleeding history were less than 1 year; * if they had cirrhotic or portal hypertension gastropathy; severe co-morbidities of cardiac, pulmonary, renal, liver, hematological, rheumatologic disorders, or uncontrollable diabetes mellitus or hypertension; * if they had a history of severe bilateral peripheral neuropathy or seizure activity, thromboembolic disease, known thalidomide or iron allergy, or prior treatment of gastrointestinal bleeding with thalidomide; * if they had a history of treatment with any dose of systemic or oral topical corticosteroids or aspirin, NSAIDs, anti-platelet drugs, anticoagulants, or Chinese medications (with salicylates), gingko, or Echinacea, or other putative immunomodulators or anti-angiogenic agents; * Currently pregnant or lactating or currently undergoing systemic cancer chemotherapy or receiving radiation * if they were undergoing systemic cancer chemotherapy or receiving radiation.

Design outcomes

Primary

MeasureTime frameDescription
Participants Whose Rebleeds Decreased From Baseline by ≥ 50% at 12 Monthsbaseline and 12 monthsThe primary end point was defined as the patients whose rebleeds decreased from baseline by ≥ 50% at 12 months. Reduction of rebleeds = \[(total bleeding episode at 12 months - total bleeding episodes at a year before randomization)/total bleeding episodes at a year before randomization(baseline)\]\*100%. Rebleeding was defined based on a positive fecal occult blood test (FOBT) (monoclonal colloidal gold color technology) at any visit after treatment.
Cessation of Bleeding52 monthsThe cessation of bleeding was defined as repeated negative faecal occult blood test (FOBT) (monoclonal colloidal gold color technology) during our observation period. Rebleeding was defined based on a positive FOBT at any visit after treatment.

Secondary

MeasureTime frameDescription
Change From Baseline in Bleeding Duration at 12 Monthsbaseline and 12 monthsThe change from baseline in bleeding duration at 12 months
Change From Baseline in Hemoglobin (Hb) Level at 12 Monthsbaseline and 12 monthsThe change from baseline in average hemoglobin (Hb) level(tested every month) at 12 months.
Change From Baseline in Total Transfused Red Cell Requirements at 12 Monthsbaseline and 12 monthsChange of total transfused red cell requirements at 12 months after randomization from one year before baseline in transfusion dependent patients
Participants Dependent on Blood Transfusions52 monthsNumbers of participants dependent on blood transfusions
Change From Baseline in Bleeding Episodes at 12 Monthsbaseline and 12 monthsThe Change from baseline in bleeding episodes at 12 months

Participant flow

Recruitment details

From November 2004 to November 2007, a total of 59 subjects were assessed for eligibility at Shanghai Ren Ji Hospital, China.

Pre-assignment details

Among the 59 patients, two refused to enter the protocol and two other were excluded owing to severe associated disease with short life expectancy. Therefore, 55 patients were enrolled in our study.

Participants by arm

ArmCount
Thalidomide Group
interventions administered (dosage, 100mg; dosage form, 25mg; frequency of administration, 4 times daily at 6 a.m., 12 noon, 6 p.m., and 10 p.m)
28
Iron-controlled Group
interventions administered (dosage, 400mg; dosage form, 100mg; frequency of administration, 4 times daily at 6 a.m., 12 noon, 6 p.m., and 10 p.m)
27
Total55

Baseline characteristics

CharacteristicIron-controlled GroupThalidomide GroupTotal
Activated partial thromboplastin time (APTT)28.0667 seconds
STANDARD_DEVIATION 5.9947
27.4929 seconds
STANDARD_DEVIATION 6.443
27.7745 seconds
STANDARD_DEVIATION 6.176
Age, Categorical
<=18 years
0 Participants0 Participants0 Participants
Age, Categorical
>=65 years
7 Participants8 Participants15 Participants
Age, Categorical
Between 18 and 65 years
20 Participants20 Participants40 Participants
Follow-up time36.1481 months
STANDARD_DEVIATION 13.49274
34.9286 months
STANDARD_DEVIATION 13.7381
35.5273 months
STANDARD_DEVIATION 13.50563
Glutamic-pyruvic transaminase (GPT)25.2019 IU/L
STANDARD_DEVIATION 14.1123
24.8143 IU/L
STANDARD_DEVIATION 13.4963
25.0045 IU/L
STANDARD_DEVIATION 12.4753
History of bleeding time3 years
FULL_RANGE 4.4331
5 years
FULL_RANGE 4.1404
5 years
FULL_RANGE 4.2552
Location
Multiple
14 participants13 participants27 participants
Location
Single
13 participants15 participants28 participants
Mean Corpuscular Hemoglobin Concentration299.0000 g/L
STANDARD_DEVIATION 13.3012
295.8571 g/L
STANDARD_DEVIATION 15.2624
297.4000 g/L
STANDARD_DEVIATION 14.2888
Mean corpuscular volume (MCV)75.2444 femtoliter
STANDARD_DEVIATION 4.413
76.8000 femtoliter
STANDARD_DEVIATION 3.9711
76.0364 femtoliter
STANDARD_DEVIATION 4.2282
Outcome
Completion of study
26 participants26 participants52 participants
Outcome
Incomplete study
1 participants2 participants3 participants
Platelet count (PLT)197.7111 10^9/L
STANDARD_DEVIATION 60.0851
206.4536 10^9/L
STANDARD_DEVIATION 53.1686
202.1618 10^9/L
STANDARD_DEVIATION 56.3131
Pre-bleeding duration8.7407 days
STANDARD_DEVIATION 4.5029
8.8214 days
STANDARD_DEVIATION 3.0799
8.7818 days
STANDARD_DEVIATION 3.8088
pre-bleeding episodes per year13.96 bleeding episodes
STANDARD_DEVIATION 3.469
13.96 bleeding episodes
STANDARD_DEVIATION 3.383
13.96 bleeding episodes
STANDARD_DEVIATION 3.394
Pre- packed red cell units transfused per year1985.71 milliliter
STANDARD_DEVIATION 766.47
1928.57 milliliter
STANDARD_DEVIATION 763.02
1957.14 milliliter
STANDARD_DEVIATION 751.01
Pre-treatment hemoglobin level5.9919 g/dl
STANDARD_DEVIATION 1.5304
6.4000 g/dl
STANDARD_DEVIATION 1.7904
6.1996 g/dl
STANDARD_DEVIATION 1.6652
Prothrombin time-international normalized ratio (PT-INR)1.0989 seconds
STANDARD_DEVIATION 0.1533
1.0550 seconds
STANDARD_DEVIATION 0.153
1.0765 seconds
STANDARD_DEVIATION 0.1534
Region of Enrollment
China
27 participants28 participants55 participants
Serum creatinine88.9296 mg/dl
STANDARD_DEVIATION 24.2665
77.5536 mg/dl
STANDARD_DEVIATION 20.9532
83.1382 mg/dl
STANDARD_DEVIATION 23.1514
Sex: Female, Male
Female
22 Participants24 Participants46 Participants
Sex: Female, Male
Male
5 Participants4 Participants9 Participants
Total bilirubin9.1407 μmol/L
STANDARD_DEVIATION 4.1196
9.1607 μmol/L
STANDARD_DEVIATION 4.4212
9.1509 μmol/L
STANDARD_DEVIATION 4.2361
Transfusion dependence
dependent
14 participants14 participants28 participants
Transfusion dependence
independent
13 participants14 participants27 participants
Ways of diagnose
Capsule endoscopy
24 participants24 participants48 participants
Ways of diagnose
Enteroscopies
2 participants2 participants4 participants
Ways of diagnose
Gastroscopy
1 participants2 participants3 participants
White blood cell (WBC)6.5926 10^9/L
STANDARD_DEVIATION 1.7389
6.4429 10^9/L
STANDARD_DEVIATION 1.5704
6.5164 10^9/L
STANDARD_DEVIATION 1.6416

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
— / —— / —
other
Total, other adverse events
20 / 289 / 27
serious
Total, serious adverse events
0 / 280 / 27

Outcome results

Primary

Cessation of Bleeding

The cessation of bleeding was defined as repeated negative faecal occult blood test (FOBT) (monoclonal colloidal gold color technology) during our observation period. Rebleeding was defined based on a positive FOBT at any visit after treatment.

Time frame: 52 months

ArmMeasureValue (NUMBER)
Thalidomide GroupCessation of Bleeding13 participants
Iron-controlled GroupCessation of Bleeding0 participants
Comparison: Null hypothesis (H0): Thalidomide 100 mg per day is equivalence to iron 400 mg per day with regard to the cessation of bleeding.~Alternative hypothesis (Ha): Thalidomide 100 mg per day is non-equivalent to iron 400 mg per day with regard to the cessation of bleeding.~Comparisons were performed with the use of the chi-square test, Fisher's exact test.p-value: 0.0000396295% CI: [0.28, 0.649]Fisher Exact
Primary

Participants Whose Rebleeds Decreased From Baseline by ≥ 50% at 12 Months

The primary end point was defined as the patients whose rebleeds decreased from baseline by ≥ 50% at 12 months. Reduction of rebleeds = \[(total bleeding episode at 12 months - total bleeding episodes at a year before randomization)/total bleeding episodes at a year before randomization(baseline)\]\*100%. Rebleeding was defined based on a positive fecal occult blood test (FOBT) (monoclonal colloidal gold color technology) at any visit after treatment.

Time frame: baseline and 12 months

ArmMeasureValue (NUMBER)
Thalidomide GroupParticipants Whose Rebleeds Decreased From Baseline by ≥ 50% at 12 Months20 participants
Iron-controlled GroupParticipants Whose Rebleeds Decreased From Baseline by ≥ 50% at 12 Months1 participants
Comparison: Null hypothesis (H0): Thalidomide 100 mg per day is equivalence to iron 400 mg per day with regard to the participants whose rebleeds decreased from baseline by ≥ 50% at 12 months.~Alternative hypothesis (Ha): Thalidomide 100 mg per day is non-equivalent to iron 400 mg per day with regard to the participants whose rebleeds decreased from baseline by ≥ 50% at 12 months.~Comparisons were performed with the use of the chi-square test, Fisher's exact test.p-value: 1.3e-795% CI: [0.547, 0.807]Fisher Exact
Secondary

Change From Baseline in Bleeding Duration at 12 Months

The change from baseline in bleeding duration at 12 months

Time frame: baseline and 12 months

ArmMeasureValue (MEAN)Dispersion
Thalidomide GroupChange From Baseline in Bleeding Duration at 12 Months5.2 daysStandard Deviation 3
Iron-controlled GroupChange From Baseline in Bleeding Duration at 12 Months0.8 daysStandard Deviation 5.1
Comparison: Null hypothesis (H0): Thalidomide 100 mg per day is equivalence to iron 400 mg per day with regard to the change from baseline in bleeding duration at 12 months.~Alternative hypothesis (Ha): Thalidomide 100 mg per day is non-equivalent to iron 400 mg per day with regard to the change from baseline in bleeding duration at 12 months.~Comparisons were performed with the use of the independent-samples t test.p-value: 0.000247495% CI: [2.15, 6.64]t-test, 2 sided
Secondary

Change From Baseline in Bleeding Episodes at 12 Months

The Change from baseline in bleeding episodes at 12 months

Time frame: baseline and 12 months

ArmMeasureValue (MEAN)Dispersion
Thalidomide GroupChange From Baseline in Bleeding Episodes at 12 Months-9.36 bleeding episodesStandard Deviation 4.31
Iron-controlled GroupChange From Baseline in Bleeding Episodes at 12 Months1.41 bleeding episodesStandard Deviation 2.74
Comparison: Null hypothesis (H0): Thalidomide 100 mg per day is equivalence to iron 400 mg per day with regard to the change from baseline in bleeding episodes at 12 months.~Alternative hypothesis (Ha): Thalidomide 100 mg per day is non-equivalent to iron 400 mg per day with regard to the change from baseline in bleeding episodes at 12 months.~Comparisons were performed with the use of the independent-samples t test.p-value: <0.0195% CI: [6, 9.9]t-test, 2 sided
Secondary

Change From Baseline in Hemoglobin (Hb) Level at 12 Months

The change from baseline in average hemoglobin (Hb) level(tested every month) at 12 months.

Time frame: baseline and 12 months

ArmMeasureValue (MEAN)Dispersion
Thalidomide GroupChange From Baseline in Hemoglobin (Hb) Level at 12 Months3.06 g/LStandard Deviation 2.08
Iron-controlled GroupChange From Baseline in Hemoglobin (Hb) Level at 12 Months-0.01 g/LStandard Deviation 1.32
Comparison: Null hypothesis (H0): Thalidomide 100 mg per day is equivalence to iron 400 mg per day with regard to the change from baseline in hemoglobin level at 12 months.~Alternative hypothesis (Ha): Thalidomide 100 mg per day is non-equivalent to iron 400 mg per day with regard to the change from baseline in hemoglobin level at 12 months.~Comparisons were performed with the use of the independent-samples t test.p-value: <0.00195% CI: [-4.02, -2.13]t-test, 2 sided
Secondary

Change From Baseline in Total Transfused Red Cell Requirements at 12 Months

Change of total transfused red cell requirements at 12 months after randomization from one year before baseline in transfusion dependent patients

Time frame: baseline and 12 months

Population: There are 14 participants depended on blood transfusion in each group

ArmMeasureValue (MEAN)Dispersion
Thalidomide GroupChange From Baseline in Total Transfused Red Cell Requirements at 12 Months-1585.71 milliliterStandard Deviation 446.97
Iron-controlled GroupChange From Baseline in Total Transfused Red Cell Requirements at 12 Months-28.57 milliliterStandard Deviation 106.9
Comparison: Null hypothesis (H0): Thalidomide 100 mg per day is equivalence to iron 400 mg per day with regard to the change from baseline in total transfused red cell requirements at 12 months.~Alternative hypothesis (Ha): Thalidomide 100 mg per day is non-equivalent to iron 400 mg per day with regard to the change from baseline in total transfused red cell requirements at 12 months.~Comparisons were performed with the use of the independent-samples t test.p-value: <0.0195% CI: [1294.53, 1819.76]t-test, 2 sided
Secondary

Participants Dependent on Blood Transfusions

Numbers of participants dependent on blood transfusions

Time frame: 52 months

Population: 55 patients were enrolled in our study. One in iron-controlled group refused to continue for personal reason after 8 months, two other in thalidomide plus iron group refused to take study medications after 4 weeks treatment due to leukopenia and unexplained somnolence. Analysis was performed according to Intention-to-Treat principle.

ArmMeasureValue (NUMBER)
Thalidomide GroupParticipants Dependent on Blood Transfusions3 participants
Iron-controlled GroupParticipants Dependent on Blood Transfusions13 participants
Comparison: Null hypothesis (H0): Thalidomide 100 mg per day is equivalence to iron 400 mg per day with regard to the participants dependent on blood transfusions.~Alternative hypothesis (Ha): Thalidomide 100 mg per day is non-equivalent to iron 400 mg per day with regard to the participants dependent on blood transfusions.~Comparisons were performed with the use of the chi-square test, Fisher's exact test.p-value: 0.0029888195% CI: [-0.563, -0.185]Fisher Exact

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026