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Thalidomide Celgene (previously Thalidomide Pharmion) - summary of medicine characteristics

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Summary of medicine characteristics - Thalidomide Celgene (previously Thalidomide Pharmion)

1. NAME OF THE MEDICINAL PRODUCT

Thalidomide Celgene 50 mg hard capsules

2. QUALITATIVE AND QUANTITATIVE COMPOSITION

Each capsule contains 50 mg of thalidomide.

For the full list of excipients, see section 6.1.

3. PHARMACEUTICAL FORM

Hard capsule.

White opaque capsules marked “Thalidomide Celgene 50 mg”.

4. CLINICAL PARTICULARS4.1 Therapeutic indications

Thalidomide Celgene in combination with melphalan and prednisone is indicated as first line treatment of patients with untreated multiple myeloma, aged > 65 years or ineligible for high dose chemotherapy.

Thalidomide Celgene is prescribed and dispensed according to the Thalidomide Celgene Pregnancy Prevention Programme (see section 4.4).

4.2 Posology and method of administration

Treatment must be initiated and monitored under the supervision of physicians with expertise in managing immunomodulatory or chemotherapeutic agents and a full understanding of the risks of thalidomide therapy and monitoring requirements (see section 4.4).

Posology

The recommended dose of thalidomide is 200 mg orally per day.

A maximum number of 12 cycles of 6 weeks (42 days) should be used.

Table 1: Starting doses for thalidomide in combination with melphalan and prednisone

Age (years)

ANC * (W

Platelet Count (/pL)

Thalidomidea,b

Melphalanc,d,e

Prednisone f

< 75

> 1,500

AND

> 100,000

200 mg daily

0.25 mg/kg daily

2 mg/kg daily

< 75

< 1,500 but

> 1,000

OR

< 100,000 but > 50,000

200 mg daily

0.125 mg/kg daily

2 mg/kg daily

> 75

> 1,500

AND

> 100,000

100 mg daily

0.20 mg/kg daily

2 mg/kg daily

> 75

< 1,500 but

> 1,000

OR

< 100,000 but > 50,000

100 mg daily

0.10 mg/kg daily

2 mg/kg daily

* ANC: Absolute Neutrophil Count

a Thalidomide dosed once daily at bedtime on Days 1 to 42 of each 42-day cycle.

b Due to the sedative effect associated with thalidomide, administration at bedtime is known to generally improve tolerability.

c Melphalan dosed once daily on Days 1 to 4 of each 42-day cycle.

d Melphalan dosing: reduce by 50 % for moderate (creatinine clearance: > 30 but < 50 mL/min) or severe (CrCl: < 30mL/min) renal insufficiency

eMaximum daily melphalan dose: 24 mg (subjects < 75 years old) or 20 mg (subjects > 75 years old).

f Prednisone dosed once daily on Days 1 to 4 of each 42-day cycle.

Patients should be monitored for: thromboembolic events, peripheral neuropathy, severe skin reactions, bradycardia, syncope, somnolence, neutropenia and thrombocytopenia (see sections 4.4 and 4.8). Dose delay, reduction or discontinuation, dependent upon the NCI CTC (National Cancer Institute Common Toxicity Criteria) grade, may be necessary.

If less than 12 hours has elapsed since missing a dose, the patient can take the dose. If more than 12 hours has elapsed since missing a dose at the normal time, the patient should not take the dose, but take the next dose at the normal time on the following day.

Thromboembolic events

Thromboprophylaxis should be administered for at least the first 5 months of treatment especially in patients with additional thrombotic risk factors. Prophylactic antithrombotic medicinal products, such as low molecular weight heparins or warfarin, should be recommended. The decision to take antithrombotic prophylactic measures should be made after careful assessment of an individual patient’s under­lying risk factors (see sections 4.4, 4.5 and 4.8).

If the patient experiences any thromboembolic events, treatment must be discontinued and standard anticoagulation therapy started. Once the patient has been stabilised on the anticoagulation treatment and any complications of the thromboembolic event have been managed, the thalidomide treatment may be restarted at the original dose dependent upon a benefit-risk assessment. The patient should continue anticoagulation therapy during the course of thalidomide treatment.

Neutropenia

White blood cell count and differential should be monitored on an ongoing basis, in accordance with oncology guidelines, especially in patients who may be more prone to neutropenia. Dose delay, reduction or discontinuation, dependent upon the NCI CTC grade, may be necessary.

Thrombocytopenia

Platelet counts should be monitored on an ongoing basis, in accordance with oncology guidelines. Dose delay, reduction or discontinuation, dependent upon the NCI CTC grade, may be necessary.

Peripheral neuropathy

Dose modifications due to peripheral neuropathy are described in Table 2.

Table 2: Recommended dose modifications for thalidomide -related neuropathy in first line treatment of multiple myeloma

Severity of neuropathy

Modification of dose and regimen

Grade 1 (paraesthesia, weakness and/or loss of reflexes) with no loss of function

Continue to monitor the patient with clinical examination. Consider reducing dose if symptoms worsen. However, dose reduction is not necessarily followed by improvement of symptoms.

Grade 2 (interfering with function but not with activities of daily living)

Reduce dose or interrupt treatment and continue to monitor the patient with clinical and neurological examination. If no improvement or continued worsening of the neuropathy, discontinue treatment. If the neuropathy resolves to Grade 1 or better, the treatment may be restarted, if the benefit/risk is favourable.

Grade 3 (interfering with activities of daily living)

Discontinue treatment

Grade 4 (neuropathy which is disabling)

Discontinue treatment

Allergic reactions and severe skin reactions

Thalidomide interruption or discontinuation should be considered for Grade 2–3 skin rash.

Thalidomide must be discontinued for angioedema, anaphylactic reaction, Grade 4 rash, exfoliative or bullous rash, or if Stevens-Johnson syndrome (SJS), toxic epidermal necrolysis (TEN) or drug reaction with eosinophilia and systemic symptoms (DRESS) is suspected and should not be resumed following discontinuation for these reactions.

Elderly population

No specific dose adjustments are recommended for the elderly < 75 years of age. For patients > 75 years of age, the thalidomide recommended starting dose is 100 mg per day. The initial dose of melphalan is reduced for elderly > 75 years of age considering baseline bone marrow reserve and renal function. The melphalan recommended starting dose is 0.1 to 0.2 mg/kg daily according to bone marrow reserve along with a further 50 % dose reduction for moderate (creatinine clearance: > 30 but < 50 mL/minute) or severe (CrCl: < 30 mL/minute) renal insufficiency. The maximum daily melphalan dose is 20 mg in patients > 75 years of age (see Table 1).

Patients with renal or hepatic impairment

Thalidomide Celgene has not formally been studied in patients with impaired renal or hepatic function. No specific dose recommendations for these patient populations are available. Patients with severe organ impairment should be carefully monitored for adverse reactions.

Paediatric population

There is no relevant use of Thalidomide Celgene in the paediatric population in the indication of multiple myeloma.

Method of administration

Thalidomide Celgene should be taken as a single dose at bedtime, to reduce the impact of somnolence. Capsules should not be opened or crushed (see section 6.6).

It is recommended to press only on one end of the capsule to remove it from the blister, thereby reducing the risk of capsule deformation or breakage.

4.3 Contraindications

  • • Hypersensitivity to thalidomide or to any of the excipients listed in section 6.1.
  • • Women who are pregnant (see section 4.6).
  • • Women of childbearing potential unless all the conditions of the Pregnancy Prevention Programme are met (see sections 4.4 and 4.6).
  • • Male patients unable to follow or comply with the required contraceptive measures (see section 4.4).

4.4 Special warnings and precautions for use

Teratogenic effects

Thalidomide is a powerful human teratogen, inducing a high frequency of severe and lifethreatening birth defects. Thalidomide must never be used by women who are pregnant or by women who could become pregnant unless all the conditions of the Pregnancy Prevention Programme are met. The conditions of the Pregnancy Prevention Programme must be fulfilled for all male and female patients.

Criteria for women of non-childbearing potential

A female patient or a female partner of a male patient is considered to have childbearing potential unless she meets at least one of the following criteria:

  • • Age > 50 years and naturally amenorrhoeic for > 1 year (Amenorrhoea following cancer therapy or during breast-feeding does not rule out childbearing potential).
  • • Premature ovarian failure confirmed by a specialist gynaecologist.
  • • Previous bilateral salpingo-oophorectomy, or hysterectomy.
  • • XY genotype, Turner’s syndrome, uterine agenesis.

Counselling

For women of childbearing potential, thalidomide is contraindicated unless all of the following conditions are met:

  • • She understands the teratogenic risk to the unborn child
  • • She understands the need for effective contraception, without interruption, at least 4 weeks

before starting treatment, throughout the entire duration of treatment, and at least 4 weeks after the end of treatment

  • • Even if a woman of childbearing potential has amenorrhea she must follow all the advice on effective contraception
  • • She should be capable of complying with effective contraceptive measures
  • • She is informed and understands the potential consequences of pregnancy and the need to rapidly consult her doctor if there is a risk of pregnancy
  • • She understands the need to commence the treatment as soon as thalidomide is dispensed following a negative pregnancy test
  • • She understands the need and accepts to undergo pregnancy testing every 4 weeks except in case of confirmed tubal sterilisation
  • • She acknowledges that she understands the hazards and necessary precautions associated with the use of thalidomide.

As thalidomide is found in semen, as a precaution all male patients taking thalidomide must meet the following conditions:

  • • He understands the teratogenic risk if engaged in sexual activity with a pregnant woman or a woman of childbearing potential.
  • • He understands the need for the use of a condom if engaged in sexual activity with a pregnant woman or a woman of childbearing potential not using effective contraception (even if the man has had a vasectomy), during treatment, during dose interruption and for at least 7 days following discontinuation of treatment.
  • • He understands that if his female partner becomes pregnant whilst he is taking thalidomide or 7 days after he has stopped taking thalidomide, he should inform his treating physician immediately and that it is recommended to refer the female partner to a physician specialised or experienced in teratology for evaluation and advice.

The prescriber must ensure that:

  • • The patient complies with the conditions of the Pregnancy Prevention Programme including confirmation that she has an adequate level of understanding
  • • The patient has acknowledged the aforementioned conditions.

Contraception

Women of childbearing potential must use one effective method of contraception for at least 4 weeks before start of treatment, during treatment, and until at least 4 weeks after thalidomide treatment and even in case of dose interruption unless the patient commits to absolute and continuous abstinence confirmed on a monthly basis. If not established on effective contraception, the patient must be referred preferably to an appropriately trained healthcare professional for contraceptive advice in order that contraception can be initiated.

The following can be considered to be examples of effective methods of contraception:

  • • Implant
  • • Levonorgestrel-releasing intrauterine system (IUS)
  • • Medroxyprogesterone acetate depot
  • • Tubal sterilisation
  • • Sexual intercourse with a vasectomised male partner only; vasectomy must be confirmed by two negative semen analyses
  • • Ovulation inhibitory progesterone-only pills (i.e. desogestrel)

4.5 Interaction with other medicinal products and other forms of interaction

Thalidomide is a poor substrate for cytochrome P450 isoenzymes and therefore clinically important interactions with medicinal products that are inhibitors and/or inducers of this enzyme system are unlikely. Non-enzymatic hydrolysis of thalidomide, being the primary clearance mechanism, suggests that the potential for drug-drug interactions with thalidomide is low.

Increase of sedative effects of other medicinal products

Thalidomide has sedative properties, thus may enhance the sedation induced by anxiolytics, hypnotics, antipsychotics, H1 antihistamines, opiate derivatives, barbiturates and alcohol. Caution should be used when thalidomide is given in combination with medicinal products that cause drowsiness.

Bradycardic effect

Due to thalidomide’s po­tential to induce bradycardia, caution should be exercised with medicinal products having the same pharmacodynamic effect such as active substances known to induce torsade de pointes, beta blockers or anticholinesterase agents.

Medicinal products known to cause peripheral neuropathy

Medicinal products known to be associated with peripheral neuropathy (e.g. vincristine and bortezomib) should be used with caution in patients receiving thalidomide.

Hormonal contraceptives

Thalidomide does not interact with hormonal contraceptives. In 10 healthy women, the pharmacokinetic profiles of norethindrone and ethinyl estradiol following administration of a single dose containing 1.0 mg of norethindrone acetate and 0.75 mg of ethinyl estradiol were studied. The results were similar with and without co-administration of thalidomide 200 mg/day to steady-state levels. However, combined hormonal contraceptives are not recommended due to the increased risk of venous thromboembolic disease.

Warfarin

Multiple dose administration of 200 mg thalidomide q.d. for 4 days had no effect on the international normalized ratio (INR) in healthy volunteers. However, due to the increased risk of thrombosis in cancer patients, and a potentially accelerated metabolism of warfarin with corticosteroids, close monitoring of INR values is advised during thalidomide-prednisone combination treatment as well as during the first weeks after ending these treatments.

Digoxin

Thalidomide does not interact with digoxin. In 18 healthy male volunteers, multiple dose administration of 200 mg thalidomide had no apparent effect on the single dose pharmacokinetics of digoxin. In addition, single dose administration of 0.5 mg digoxin had no apparent effect on thalidomide pharmacokinetics. It is not known whether the effect will be different in multiple myeloma patients.

4.6 Fertility, pregnancy and lactation

Women of childbearing potential/Con­traception in males and females

Women of childbearing potential must use one effective method of contraception for at least 4 weeks before start of treatment, during treatment including during dose interruptions, and until at least 4 weeks after thalidomide treatment (see section 4.4). If pregnancy occurs in a woman treated with thalidomide, treatment must be stopped immediately and the patient should be referred to a physician specialised or experienced in teratology for evaluation and advice.

As thalidomide is found in semen, as a precaution all male patients must use condoms during treatment, during dose interruption and for at least 7 days following discontinuation of treatment when having sexual intercourse with a pregnant woman or with a woman of childbearing potential who is not using effective contraception. This applies even if the man has had a vasectomy.

If pregnancy occurs in a partner of a male patient taking thalidomide, the female partner should be referred to a physician specialised or experienced in teratology for evaluation and advice.

Pregnancy

Thalidomide is contraindicated during pregnancy and in women of childbearing potential unless all the conditions of the Pregnancy Prevention Programme are met (see section 4.3)

Thalidomide is a powerful human teratogen, inducing a high frequency (about 30 %) of severe and live-threatening birth defects such as: ectromelia (amelia, phocomelia, hemimelia) of the upper and/or lower extremities, microtia with abnormality of the external acoustic meatus (blind or absent), middle and internal ear lesions (less frequent), ocular lesions (anophthalmia, microphthalmia), congenital heart disease, renal abnormalities. Other less frequent abnormalities have also been described.

Breast-feeding

It is unknown whether thalidomide is excreted in human breast milk. Animal studies have shown excretion of thalidomide in breast milk. Therefore breast-feeding should be discontinued during treatment with thalidomide.

Fertility

A study in rabbits demonstrated no effect on fertility indices in males or females although testicular degeneration was observed in males.

4.7 Effects on ability to drive and use machines

Thalidomide Celgene as per the recommended posology has minor or moderate influence on the ability to drive and use machines.

Thalidomide may cause fatigue (very common), dizziness (very common), somnolence (very common) and blurred vision (common) (see section 4.8). Patients should be instructed not to drive cars, use machines or perform hazardous tasks while being treated with thalidomide if they feel tired, dizzy, sleepy or have blurred vison.

4.8 Undesirable effects

Summary of the safety profile

Most patients taking thalidomide can be expected to experience adverse reactions.

The most commonly observed adverse reactions associated with the use of thalidomide in combination with melphalan and prednisone are: neutropenia, leukopenia, constipation, somnolence, paraesthesia, peripheral neuropathy, anaemia, lymphopenia, thrombocytopenia, dizziness, dysaesthesia, tremor and peripheral oedema.

In addition to the adverse reactions outlined above, thalidomide in combination with dexamethasone in other clinical studies led to the very common adverse reaction of fatigue; common adverse reactions of transient ischaemic event, syncope, vertigo, hypotension, mood altered, anxiety, blurred vision, nausea and dyspepsia; and uncommon adverse reactions of cerebrovascular accident, diverticular perforation, peritonitis, orthostatic hypotension and bronchitis.

The most clinically important adverse reactions associated with the use of thalidomide in combination with melphalan and prednisone or dexamethasone include: deep vein thrombosis and pulmonary embolism, peripheral neuropathy, severe skin reactions including Stevens-Johnson syndrome, toxic epidermal necrolysis and drug reaction with eosinophilia and systemic symptoms, syncope, bradycardia, and dizziness (see sections 4.2, 4.4 and 4.5).

Tabulated list of adverse reactions

Table 3 contains only the adverse reactions for which a causal relationship with medicinal product treatment could reasonably be established observed in the pivotal study and from post-marketing experience. Frequencies given are based on the observations during a pivotal comparative clinical study investigating the effect of thalidomide in combination with melphalan and prednisone in previously untreated multiple myeloma patients.

Frequencies are defined as: very common (> 1/10); common (> 1/100 to < 1/10); uncommon (> 1/1000 to < 1/100); rare (> 1/10,000 to < 1/1000); very rare (< 1/10,000) and not known (cannot be estimated from the available data). Within each frequency grouping, adverse reactions are presented in order of decreasing seriousness.

Table 3: Adverse drug reactions (ADRs) reported in pivotal clinical study with thalidomide in combination with melphalan and prednisone and from post marketing use

System Organ Class

Frequency

Adverse reaction

Infections and infestations

Common

Pneumonia

Not Known

Severe infections (e.g. fatal sepsis including septic shock)1', Viral infections, including herpes zoster and hepatitis B virus reactivation1

Neoplasms benign, malignant and unspecified (incl cysts and polyps)

Common

Acute myeloid leukaemia*,A

Uncommon

Myelodysplastic syndrome*,A

Not Known

Tumour lysis syndrome1

Blood and lymphatic system disorders

Very Common

Neutropenia, Leukopenia, Anaemia, Lymphopenia, Thrombocytopenia

Common

Febrile neutropenia1, Pancytopenia1

Immune System Disorders

Not Known

Allergic reactions (hypersensitivity, angioedema, anaphylactic reaction, urticaria) 1

Endocrine Disorders

Not Known

Hypothyroidism1

Psychiatric disorders

Common

Confusional state, Depression

Nervous system disorders

Very Common

Peripheral neuropathy*, Tremor, Dizziness, Paraesthesia, Dysaesthesia, Somnolence

Common

Convulsions1, Abnormal coordination

Not Known

Posterior reversible encephalopathy syndrome (PRES),1, Worsening of Parkinson’s disease symptoms1

Ear and labyrinth disorders

Common

Hearing impaired or deafness1

Cardiac disorders

Common

Cardiac failure, Bradycardia

Uncommon

Myocardial infarction1, Atrial fibrillation1, Atrioventricu­lar block1

Vascular disorders

Common

Deep vein thrombosis

Respiratory, thoracic and mediastinal disorders

Common

Pulmonary embolism*, Interstitial lung disease, Bronchopneumopathy, Dyspnea

Not Known

Pulmonary hypertension1

System Organ Class

Frequency

Adverse reaction

Gastrointestinal disorders

Very Common

Constipation

Common

Vomiting, Dry mouth

Uncommon

Intestinal obstruction1

Not Known

Gastrointestinal perforation1', Pancreatitis1, Gastrointestinal haemorrhage1

Hepatobiliary disorders

Not Known

Hepatic disorders1

Skin and subcutaneous tissue disorders

Common

Toxic skin eruption, Rash, Dry skin

Not Known

Stevens-Johnson syndrome*,1, Toxic epidermal necrolysis*,1, Drug reaction with eosinophilia and systemic symptoms*,1, Leukocytoclastic vasculitis1

Renal and urinary disorders

Common

Renal failure1

Reproductive System and Breast Disorders

Not Known

Sexual dysfunction1, Menstrual disorders including amenorrhea1

General disorders and administration site conditions

Very Common

Peripheral oedema

Common

Pyrexia, Asthenia, Malaise

* see section 4.8 description of selected adverse reactions

r identified from post marketing data

A Acute myeloid leukaemia and Myelodysplastic syndrome were reported in one clinical study in patients with previously untreated MM receiving the combination of melphalan, prednisone and thalidomide (MPT)

Description of selected adverse reactions

Blood and lymphatic system disorders

Adverse reactions for haematological disorders are provided compared to the comparator arm, as the

comparator has a significant effect on these disorders (Table 4).

Table 4: Comparison of haematological disorders for the melphalan, prednisone (MP) and melphalan, prednisone, thalidomide (MPT) combinations in study IFM 99–06 (see section 5.1)

n (% of patients)

MP (n=193)

MPT (n=124)

Grades 3 and 4*

Neutropenia

57 (29.5)

53 (42.7)

Leukopenia

32 (16.6)

32 (25.8)

Anaemia

28 (14.5)

17 (13.7)

Lymphopenia

14 (7.3)

15 (12.1)

Thrombocytopenia

19 (9.8)

14 (11.3)

* WHO Criteria

Additional adverse reactions from post-marketing experience with thalidomide and not seen in the pivotal study include febrile neutropenia and pancytopenia.

Teratogenicity

The risk of intra-uterine death or severe birth defects, primarily phocomelia, is extremely high.

Thalidomide must not be used at any time during pregnancy (see sections 4.4 and 4.6).

Venous and arterial thromboembolic events

An increased risk of venous thromboembolism (such as deep vein thrombosis and pulmonary embolism) and arterial thromboembolism (such as myocardial infarction and cerebrovascular event) has been reported in patients treated with thalidomide (see section 4.4).

Peripheral neuropathy

Peripheral neuropathy is a very common, potentially severe, adverse reaction of treatment with thalidomide that may result in irreversible damage (see section 4.4). Peripheral neuropathy generally occurs following chronic use over a period of months. However, reports following relatively shortterm use also exist. Incidence of neuropathy events leading to discontinuation, dose reduction or interruption increases with cumulative dose and duration of therapy. Symptoms may occur some time after thalidomide treatment has been stopped and may resolve slowly or not at all.

Posterior reversible encephalopathy syndrome (PRES)/ Reversible posterior leukoencephalopathy syndrome (RPLS)

Cases of PRES/RPLS have been reported. Signs and symptoms included visual disturbance, headache, seizures and altered mental status, with or without associated hypertension. A diagnosis of PRES/RPLS requires confirmation by brain imaging. The majority of the reported cases had recognized risk factors for PRES/RPLS, including hypertension, renal impairment and concomitant use of high dose corticosteroids and/or chemotherapy.

Acute myeloid leukaemia (AML) and myelodysplastic syndromes (MDS)

AML and MDS were reported in one clinical study in patients with previously untreated multiple myeloma receiving the combination of melphalan, prednisone, and thalidomide (see section 4.4).

Allergic reactions and severe skin reactions

Cases of allergic reactions including angioedema, anaphylactic reaction and severe cutaneous reactions including Stevens-Johnson syndrome, TEN and DRESS have been reported with the use of thalidomide therapy. If angioedema, anaphylactic reaction, Stevens-Johnson syndrome, TEN or DRESS is suspected, use of thalidomide should not be resumed (see section 4.2 and 4.4).

Elderly population

The adverse reaction profile reported in patients > 75 years of age treated with thalidomide 100 mg once daily was similar to the adverse reaction profile observed in patients < 75 years of age treated with thalidomide 200 mg once daily (see Table 3). However, patients with age > 75 years are potentially at risk for a higher frequency of serious adverse reactions.

Reporting of suspected adverse reactions

Reporting suspected adverse reactions after authorisation of the medicinal product is important. It allows continued monitoring of the benefit/risk balance of the medicinal product. Healthcare professionals are asked to report any suspected adverse reactions via the national reporting system listed in

4.9 Overdose

Eighteen cases of overdose have been reported in the literature concerning doses up to 14.4 grams. In thirteen of these cases, patients took thalidomide alone; amounts ranged from 350 mg to 4000 mg. These patients either exhibited no symptoms or exhibited symptoms of drowsiness, irritability, “sickness,” and/or headache. In one 2-year-old child who took 700 mg, there was an abnormal plantar response in addition to drowsiness and irritability. No fatalities have been reported and all overdose patients recovered without sequelae. There is no specific antidote for a thalidomide overdose. In the event of an overdose, the patient’s vital signs should be monitored and appropriate supportive care given to maintain blood pressure and respiratory status.

5. PHARMACOLOGICAL PROPERTIES5.1 Pharmacodynamic properties

Pharmacotherapeutic group: immunosuppressants, other immunosuppressants, ATC code: L04AX02.

Thalidomide has a chiral centre and is used clinically as a racemate of (+)-®- and (-)-(S)-thalidomide. The spectrum of activity of thalidomide is not fully characterised.

Mechanism of action

Thalidomide shows immunomodulatory, anti-inflammatory and potential anti-neoplastic activities. Data from in vitro studies and clinical trials suggest that the immunomodulatory, anti-inflammatory and anti-neoplastic effects of thalidomide may be related to suppression of excessive tumour necrosis factor-alpha (TNF-a) production, down-modulation of selected cell surface adhesion molecules involved in leukocyte migration and anti-angiogenic activity. Thalidomide is also a non-barbiturate centrally active hypnotic sedative. It has no antibacterial effects.

Clinical efficacy and safety

Results from IFM 99–06, a Phase 3, randomised, open label, parallel group, multicentre study have demonstrated a survival advantage when thalidomide is used in combination with melphalan and prednisone for 12 cycles of 6 weeks in the treatment of newly diagnosed multiple myeloma patients. In this study the age range of patients was 65–75 years, with 41 % (183/447) of patients 70 years old or older. The median dose of thalidomide was 217 mg and > 40 % of patients received 9 cycles.

Melphalan and prednisone were dosed at 0.25 mg/kg/day and 2 mg/kg/day respectively on days 1 to 4 of each 6 weeks cycle.

Further to the per protocol analysis, an update was conducted for the IFM 99–06 study providing an additional 15 months follow-up data. The median overall survival (OS) was 51.6 ± 4.5 and

33.2 ± 3.2 months in the MPT and MP groups, respectively (97.5 % CI 0.42 to 0.84). This 18 month difference was statistically significant with a hazard ratio of reduction of risk of death in the MPT arm of 0.59, 97.5 % confidence interval of 0.42–0.84 and p-value of < 0.001 (see Figure 1).

Proportion


Figure 1: Overall survival according to treatment

Time from randomization (month)


Paediatric Population

The European Medicines Agency has waived the obligation to submit the results of studies with thalidomide in all subsets of the paediatric population in multiple myeloma (see section 4.2 for information on paediatric use).

5.2 Pharmacokinetic properties

Absorption

Absorption of thalidomide is slow after oral administration. The maximum plasma concentrations are reached 1–5 hours after administration. Co-administration of food delayed absorption but did not alter the overall extent of absorption.

Distribution

The plasma protein binding of the (+)-® and (-)-(S) enantiomers was found to be 55 % and 65 % respectively. Thalidomide is present in the semen of male patients at levels similar to plasma concentrations (see section 4.4). The distribution of thalidomide is not influenced by age, gender, renal function and blood chemistry variables, to any significant level.

Biotransformation

Thalidomide is metabolised almost exclusively by non-enzymatic hydrolysis. In plasma, unchanged thalidomide represents 80 % of the circulatory components. Unchanged thalidomide was a minor component (< 3 % of the dose) in urine. In addition to thalidomide, hydrolytic products N-(o-carboxybenzoyl) glutarimide and phthaloyl isoglutamine formed via non-enzymatic processes are also present in plasma and in majority in urine. Oxidative metabolism does not contribute significantly to the overall metabolism of thalidomide. There is minimal cytochrome P450 catalysed hepatic metabolism of thalidomide. There are in vitro data indicating that prednisone may give rise to enzyme induction which could reduce the systemic exposure of concomitantly used medicinal products. The in vivo relevance of these findings is unknown.

Elimination

The mean elimination half-life of thalidomide in plasma following single oral doses between 50 mg and 400 mg was 5.5 to 7.3 hours. Following a single oral dose of 400 mg of radio-labelled thalidomide, the total mean recovery was 93.6 % of the administered dose by day 8. The majority of the radioactive dose was excreted within 48 hour following dose administration. The major route of excretion was via the urine (> 90 %) while faecal excretion was minor.

There is a linear relationship between body weight and estimated thalidomide clearance; in multiple myeloma patients with body weight from 47–133 kg, thalidomide clearance ranged from approximately 6–12 L/h, representing an increase in thalidomide clearance of 0.621 L/h per 10 kg body weight increase.

Linearity/non-linearity

Total systemic exposure (AUC) is proportional to dose at single-dose conditions. No time dependency of the pharmacokinetics has been observed.

Hepatic and renal impairment

The extent of thalidomide metabolism by the liver cytochrome P450 system is minimal and intact thalidomide is not excreted by the kidney. Measures of renal function (CrCl) and liver function (blood chemistry) indicate minimal effect of kidney and liver function on the pharmacokinetics of thalidomide. As such the metabolism of thalidomide is not expected to be affected by hepatic or renal dysfunction. Data from patients with end-stage renal disease suggest no impact of kidney function on thalidomide pharmacokinetics.

5.3 Preclinical safety data

In the male dog, after one year of dosing, reversible bile plugs in canaliculi were observed at exposures greater than 1.9-fold the human exposure.

Decreased platelet counts were noted in the mouse and rat studies. The latter appears to be related to thalidomide and occurred at exposures greater than 2.4-fold the human exposure. This decrease did not result in clinical signs.

In a one-year dog study, enlarged and/or blue discoloration of mammary glands and prolonged estrus were observed in females at exposures equal to 1.8 or greater than 3.6-fold the human exposure, respectively. The relevance to humans is unknown.

The effect of thalidomide on thyroid function was assessed in both rats and dogs. No effects were observed in dogs; however in rats, there was an apparent dose-dependent decrease in total and free T4 that was more consistent in the female.

No mutagenic or genotoxic effect has been revealed when thalidomide was assayed in a standard battery of genotoxicity tests. No evidence of carcinogenicity was observed at exposures approximately 15, 13 and 39 times the estimated clinical AUC at the recommended starting dose in mice, male rats and female rats respectively.

Animal studies have demonstrated differences in species susceptibility to the teratogenic effects of thalidomide. In humans, thalidomide is a proven teratogen.

A study in rabbits demonstrated no effect on fertility indices in males or females although testicular degeneration was observed in males.

A peri- and postnatal toxicity study performed in rabbits with thalidomide administered at doses up to 500 mg/kg/day resulted in abortions, increased stillbirths and decreased pup viability during lactation. Pups from mothers treated with thalidomide had increased abortions, reduced body weight gain, alterations in learning and memory, decreased fertility, and reduced pregnancy index.

6. PHARMACEUTICAL PARTICULARS6.1 List of excipients

Capsule contents

Starch, pregelatinised

Magnesium stearate

Capsule shell

Gelatin

Titanium dioxide (E171)

Printing ink

Shellac

Black iron oxide (E172)

Propylene glycol

6.2 Incompatibilities

Not applicable.

6.3 Shelf life

5 years

6.4 Special precautions for storage

This medicinal product does not require any special storage conditions.

6.5 Nature and contents of container

PVC/PCTFE/aluminium blister containing 14 capsules.

Pack sizes: 28 capsules (two blisters) in a wallet card.

6.6 Special precautions for disposal and other handling

Capsules should not be opened or crushed. If powder from thalidomide makes contact with the skin, the skin should be washed immediately and thoroughly with soap and water. If thalidomide makes contact with the mucous membranes, they should be thoroughly flushed with water.

Healthcare professionals and caregivers should wear disposable gloves when handling the blister or capsule. Gloves should then be removed carefully to prevent skin exposure, placed in a sealable plastic polyethylene bag and disposed of in accordance with local requirements. Hands should then be washed thoroughly with soap and water. Women who are pregnant or suspect they may be pregnant should not handle the blister or capsule (see section 4.4).

All unused capsules should be returned to the pharmacist at the end of treatment.

7. MARKETING AUTHORISATION HOLDER

Celgene Europe B.V.

Winthontlaan 6 N

3526 KV Utrecht

Netherlands

8. MARKETING AUTHORISATION NUMBER(S)

EU/1/08/443/001

9. DATE OF FIRST AUTHORISATION/RENEWAL OF THE AUTHORISATION

Date of first authorisation: 16 April 2008

Date of latest renewal: 08 February 2018