Pharmaceutical parenteral composition containing a biphosphonate
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8 claims: 5 independent, 3 dependent
- 1150549/3 -16- XCLAIMS/ 1. A parenteral composition having pH from about 6 to about 8 comprising (1) a bisphosphonate, selected from the group consisting of a) N-methyl-4-amino-l-hydroxybutylidene-l,l-bisphosphonic acid, b) 4- (Ν,Ν-dimethylamino) -1 -hydroxybutylidene-1,1 -bis-phosphonic acid, c) 3-amino-l-hydroxypropylidene-l,l-bisphosphonic acid (pamidronate), d) 3-(N-methyl-N-pentyl) ammo-1-hydroxypropane-1,1-bisphosphonic acid (ibandronic acid), e) 3-(N-methyl-N-pentyl) amino-l-hydroxypropane-l,l-bisphosphonic acid, monosodium salt, monohydrate (ibandronate), f) l-hydroxy-3-(N-methyl-N-pentylamino)propylidene-l,l-bisposphonic acid, g) l-hydroxy-2-[3-pyridinyl]ethylidene-l,l-bisphosphonic acid (risedronate), h) 4-(hydroxymethylene-l,l-bisphosphonic acid)piperidine, i) cycloheptylaminomethylene-l,l-bisposphonic acid (cimadronate), j) l,l-dichloromethylene-l,l-diphosphonic acid and the.dissodium salt (clodronate), k) l-hydroxy-3-(l-pyrrolidinyl)-propylidene-l,l-bisphosphonic acid (EB-1053), l) 1-hydroxyethane-1,1-diphosphonic acid (etidronic acid), m) 6-amino-l-hydroxyhexylidene-1,1-bisphosphonic acid (neridronate), n) 3-(dimethylamino)-l-hydroxypropylidene-l,l-bisphosphonic acid (olpadronate), o) [2-(2-pyridinyl)ethylidene]-l,l-bisphosphonic acid (piridronate), p) (4-chlorophenyl)thiomethane-l,l-diphosponic acid (tiludronate), q) l-hydroxy-2-(lH-imidazol-l-yl)ethylidene-l,l-bisphosphonic acid (zolendronate), r) [(cycloheptylamino)-methylene]-bisphosphonic acid (icadronate), and s) [l-hydroxy-2imidazo-(l,2-a) pyridin-3-ylethylidene]-bisphosphonic acid and pharmaceutically acceptable salts thereof;(2) a pharmaceutically acceptable chelating agent selected from EDTA and DTPA and pharmaceutically acceptable salt thereof;and (3) a pharmaceutically acceptable excipient.
- 313. The composition according to any of claims 1-12 wherein the pH is about 7.4.
- 414. The composition according to any of claims 1-13 being a parenteral composition comprising a) 0.1 - 10 mg 3-(N-methyl-N-pentyl) amino-1-hydroxypropane-1,1-bisphosphonic acid, monosodium salt, monohydrate and 10 b) 0.5 - 50 mg EDTA,Na2,2H2O.
- 616. The composition according to any of claims 1-15 comprising about 1.125 mg ibandronate sodium salt, about 10 mg EDTA, Na2, 2H2O, about 9.0 mg sodium 20 chloride, sodium hydroxide q.s. to pH 7.4 and water for injection q.s. to 1.0 ml. 17· The composition according to any of claims 1-16 comprising about 1.125 mg ibandronate sodium salt, about 10 mg EDTA, Na2, 2H2O, about 5.78 mg lidocaine hydrochloride, about 9.0 mg sodium chloride, sodium hydroxide q.s. to pH 7.4 and water for injection q.s. to 1.0 ml. 25 18. A process for preparing a composition according to any of claims 1-17, comprising mixing at least one bisphosphonate with at least one pharmaceutically acceptable chelating agent.
- 820. Device for local and systemic sustained release comprising a composition according to any of claims 1-17. •-'Ήάττο By , crrixan rwzn arn pnow pnszn irn nr “|»ob ,Ρ’ηη ηχΰ- πώοβπβ mzrna π^πιώώ np’ioz .zruwan ms rnp’nn pmi1? oxnm □ιηπη Pi? _____88°4003 21 J' ·®0T 1121:46+0200 .(moiB nzrnn) cras 'an nwa
Independent claims5
84 paragraphs in 2 sections, as filed
14903/02 UN]13O13O ΡΌΟΠ ilpITilZl Πϋωΐϊΐ7 JTlTlpl1 VUJOn
PHARMACEUTICAL PARENTERAL COMPOSITION CONTAINING A BIPHOSPHONATE 150549/2
The present invention relates to a parenteral composition comprising a 5 bisphosphonic acid or a pharmaceutically acceptable salt thereof (bisphosphonate) as active component, a pharmaceutically acceptable chelating agent and pharmaceutically acceptable excipients, processes of the preparation of this composition, and methods of their use in the treatment and prevention of diseases involving bone resorption, especially osteoporosis, Paget’s disease, hypercalcemia of malignancy, and metabolic bone disease. 10 The compositions are especially useful for improving the local tolerance of the active component when administered parenterally, especially by the subcutaneous route.
Bisphosphonates, i.e. bisphosphonic acids or soluble, pharmaceutically acceptable salts thereof, are synthetic analogs of the naturally occurring pyrophosphate. Due to their marked affinity for solid-phase calcium phosphate, bisphosphonates bind strongly to bone 15 mineral. Pharmacologically active bisphosphonates are well known in the art and are potent inhibitors of bone resorption and are therefore useful in the treatment and prevention of diseases involving abnormal bone resorption, especially osteoporosis,
Paget’s disease, hypercalcemia of malignancy, and metabolic bone disease.
Bisphosphonates as pharmaceutical agentsare described for example in EP-A- 20 170,228, EP-A-197,478, EP-A-22,751; EP-A-252,504, EP-A- 252,505, EP-A-258,618, EP- A-350,002, EP-A-273,190, WO-A-90/00798, etc. EP 203,649 discloses pharmaceutic compositions for the treatment of arthrosis. These compositions, diluted in a suitable aqueous or lypholized carrier, are administered intraarticularly to bodies in need of such treatment. US 4,666,895 discloses a diphosphonic acid derivative compound and a pharmaceutical composition for treatment of calcium metabolism disturbances comprising an effective amount of said compound. In addition, US 4,666,895 relates to method of treatment of calcium metabolism disturbances comprising administering an effective amount of said compound.
Diphosphonic compounds are related to also in US 4,719,203, which discloses such compounds, processes for their preparation and pharmaceutical compositions containing them. The pharmaceutical compositions disclosed in US 4,719,203 are useful for treating calcium metabolism disorders. 150549/1 -la- WO 95/31203 and corresponding IL 113,651 disclose a therapy protocol for treating and preventing bone loss. They specifically relate to the treatment of patients who have difficulty in swallowing, by administering a liquid formulation of alendronate which can be easily swallowed. In addition they describe pharmaceutical dosage forms of a syrup, an aqueous solution, a solution formed from a reconstituted powder and of alderose for carrying out the therapeutic method. WO 01/52859. .: -1..- PCT/EPOl/00417 s^^fei^n-’vs^wsiiiKiPhiirrnaceuticabforrn^ofimarketed'bisphosphonates ~are:oralTbrmulationsi(tabletS;OR^'i.> capsules) or solutions for intravenous injection or infusion. They are systemically well tolerated when administered at therapeutic doses. However, bisphosphonates as a class are irritant to skin and mucous membranes resulting in digestive tract side effects, e.g. 5 esophageal adverse events or gastrointestinal disturbances. In consequence, the oral route of administration has to follow inconvenient recommendations of us.e for the patient. The intravenous route of administration is complicated by adverse events in case of application failure. If the vein is not exactly met or if the drug is administered inadvertently by the paravenous route, severe local tissue reaction are induced including necroses. Thus, there 10 is a substantial need to improve the pharmaceutical formulation of bisphosphonates in order to reduce or avoid tissue damage after parenteral administration, especially by the subcutaneous route.
The pathophysiological mechanism of bisphosphonate induced tissue damage is unknown. As the local reactions are similar for different bisphosphonates, at least those 15 induced by nitrogen-containing bisphosphonates (amino-bisphosphonates), a common mechanism must be assumed. The delay in onset and progress of local reactions may indicate the involvement of the unspecific immune defense system.
Attempts were made to improve tissue tolerance of bisphosphonates by developing suspensions of insoluble or poorly soluble salts of bisphosphonates providing local 20 sustained release, e.g. described in EP-A-913007740, DE-A-4244422 and DE-A-4244423. However, this approach proved to improve only slightly the local tolerance.
The problem underlying the present invention is therefore to provide a composition which is able to minimize or suppress the above mentioned disadvantages.
The problem is solved, according to the present invention, by a parenteral 25 composition comprising a bisphosphonate, a pharmaceutically acceptable chelating agent and a pharmaceutically acceptable excipient.
It has surprisingly been found that administering a bisphosphonate in a composition comprising a pharmaceutically acceptable chelating agent clearly improves the duration, frequency and intensity of side effects. The presence of an additional bivalent cation 30 chelator, especially EDTA and DTPA, substantially improved the adverse local reaction at the application sites when compared with the corresponding formulation without this additional bivalent cation chelator. WO 01/52859 PCT/EP01/00417 ..-3- 10 15 •'vi^ddriless'q theiwis&ind ie^^Ae’{^lowi^g;defimtions-are. se t-fo r th to .illustrate and .,. define the meaning and scope of the various terms used to describe the invention herein.
The term "bisphosphonate" means compounds characterised by two C-PO.?’ bonds.
If the two bonds are located on the same carbon atom> the compounds are called geminal bisphosphonates. It should be noted that the term "bisphosphonate" as used herein in referring to the therapeutic agents of the present invention are meant to also encompass diphosphonates, biphosphonic acids, and diphosphonic acids, as well as salts and derivatives of these materials. The use of a specific nomenclature in referring to the bisphosphonate or bisphosphonates is not meant to limit the scope of the present invention, unless specifically indicated.
The term "chelating agent" or "chelator" means an organic or inorganic compound, which forms via two or more of its functional groups stable ring-shaped complexes with metal cations. It should be noted that bisphosphonates have also chelating activity. The term “chelating agent” is therefore understood to be a chelator which sequesters metal ions competitively to the bisphosphonate used as the active component in the pharmaceutical composition.
The term "pharmaceutically acceptable" as used herein means that the salts or chelating agents are acceptable from a toxicity viewpoint.
The term "pharmaceutically acceptable salt" refers to ammonium salts, alkali metal 20 salts such as potassium and sodium (including mono, di- and tri-sodium) salts (which are preferred), alkaline earth metal salts such as calcium and magnesium salts, salts with organic bases such as dicyclohexylamine salts, N-methyl-D-glucamine, and salts with amino acids such as arginine, lysine, and so forth.
The term “alkyl”, alone or in combination, means a straight-chain, branched-chain, 25 or cyclic alkyl group containing a maximum of 30, preferably a maximum of 10, and more preferably a maximum of 7, carbon atoms, e.g., methyl, ethyl, n-propyl, 2-methylpropyl (iso-butyl), 1-methylethyl (iso-propyl), n-butyl, 1,1-dimethylethyl (t-butyl), and pentyl.
The term "alkyl" also comprises the above defined groups, optionally substituted with phenyl, pyridyl, furanyl, pyrrolidinyl, imidazolyl, amino, mono- or dialkylamino, hydroxy, 30 SH, and alkoxy.
The term "diluent" means an ingredient in a medicinal preparation which lacks pharmacological activity but is pharmaceutically necessary or desirable. For example a diluent may be a liquid for the dissolution of drug(s) to be injected, e.g. water. 150549/2 - 4 - .The term "solvents" refers to a liquid .that.holds. another substance in solution·, he., dissolves it, e.g. water
The term "preservatives" refers to a substance added to a pharmaceutical preparation to prevent bacterial growth.
The term "device" means a contrivance for a specific purpose. In the present invention the purpose is to enable, support or facilitate parenteral drug administration.
The term “local anaesthetic” refers to a compound that reversibly depresses neuronal function at the site of application, producing loss of ability to perceive pain and/or other sensations, e.g. lidocaine hydrochloride.
In more detail, the present invention is directed to a parenteral composition comprising a bisphosphonate and a pharmaceutically acceptable chelating agent. The parenteral compositions may have the form of a liquid, e.g. an aqueous solution, or a steril powder and/or lyophilisate. A liquid, e.g. water, maybe added to the steril powder and/or lyophilisate to give a solution for administration.
In a preferred embodiment of the present invention, the above composition is a liquid, preferably an aqueous solution.
Bisphosphonates as pharmaceutical agents are described for example in US Patent 4,509,612, US Patent 4,666,895, US Patent 4,719,203, EP-A-252,504, EP-A-252,505, US Patent No. 4,777,163, US Patent No. 5,002,937, US Patent No. 4,971,958 and US Patent No. 4,958,839.
Methods for the preparation,of bisphosphonic acids may be found in, e.g., US Patent No. 3,962,432; US Patent No. 4,054,598; US Patent No. 4,267,108; US Patent No. 4,327,039; US Patent No. 4,407,761; US Patent No. 4,621,077; US Patent No. 4,624,947; US Patent No. 4,746,654 and IL 69347; US Patent No. 4,922,077; US Patent No. 4,970,335; US Patent No. 5,019,651 and LL 98462; US Patent No. 4,761,406; US Patent No. 4,876,248; J. Org. Chem. 32, 4111 (1967) and EP-A- 252,504. The pharmaceutically acceptable salts of bisphosphonic acids may also be employed in the instant invention. Examples of base salts of bisphosphonic acids include ammonium salts, alkali metal salts such as potassium and sodium (including mono, di- and tri-sodium) salts (which are preferred), alkaline earth metal salts such as calcium and.magnesium salts, salts with organic.bases such as dicyclohexylamine salts, N-methyl-D-giucamine, and salts with amino acids such as arginine, lysine, and so forth. The non-toxic, physiologically acceptable salts are preferred. The salts· maybe prepared by WO 01/52859 PCT/EP01/00417 -5- , r > ?, rnethoHs’known in the;art,vsuchiasidescribed in-European Eatent.Pub. No.252,504 US Patent No. 4,922,077.
In a preferred embodiment of the present invention, the term "bisphosphonate" of the present invention corresponds to compounds of general formula P(0)(OH)2
P(O)(OH)j-V
X (i) wherein A and X are independently selected from the group consisting of hydrogen, hydroxy, halogen, amino, SH, phenyl, alkyl, mono- or dialkylamino, mono- or dialkylaminoalkyl, alkoxy, thioalkyl, thiophenyl, and aryl or heteroaryl moieties selected from the group consisting of phenyl, pyridyl, furanyl, pyrrolidinyl, imidazolyl, and benzyl, 10 wherein the aryl or heteroaryl moiety is optionally substituted with alkyl.
In the foregoing chemical formula, A can include X and X include A such that the two moieties can form part of the same cyclic structure.
The foregoing chemical formula is also intended to encompass carbocyclic, aromatic and heteroaromatic structures for the A and/or X substituents, e.g. naphthyl, quinolyl, 15 isoquinolyl, adamantyl, and chlorophenylthio.
Preferred structures are those in which A is selected from the group consisting of hydrogen, hydroxy, and halogen, an X is selected from the group consisting of alkyl, halogen, thiophenyl, thioalkyl and dialkylaminoalkyl.
More preferred structures are those in which A is selected from the group consisting 20 of hydrogen, hydroxy, and Cl and X is selected from the group consisting of alkyl, Cl, chlorophenylthio and dialkylaminoalkyl.
Even more preferred structures refer to the above defined compounds with the proviso that alendronate is not included.
Most preferred is when A is hydroxy and X is (N-methyl-N-pentyl)amino-ethyl, i.e. 25 ibandronate. WO 01/52859 PCT/EP01/00417 -6- · . i- «· Examples ofbisphosphonates, i.e<ibisphosphonic acids and pharmaceutically/i acceptable salts thereof which maybe employed as active ingredients in the instant invention include: 10 15 20 25 a) 4-amino-l-hydroxybutylidene-l,l-bisphosphonic acid (alendronate), b) N-methyl-4-amino-l-hydroxybutylidene-l,l-bisphosphonic acid, c) 4-(N,N-dimethylamino)-l-hydroxybutylidene-l,l-bis-phosphonic acid, d) 3-amino-l-hydroxypropylidene-l,l-bisphosphonic acid (pamidronate), e) 3-(N-methyl-N-pentyl) amino-1 -hydroxypropane-1,1-bisphosphonic acid (ibandronic acid), f) (3-(N-methyl-N-pentyl) amino-1-hydroxypropane-1,1-bisphosphonic acid, monosodium salt, monohydrate] (ibandronate), g) l-hydroxy-3-(N-methyl-N-pentylamino)propylidene-l,l-bisposphonic acid, h) l-hydroxy-2-[3-pyridinyl]ethylidene-l, 1-bisphosphonic acid (risedronate), i) 4-(hyroxymethylene-l,1-bisphosphonic acid)piperidine, j) cycloheptylaminomethylene-l,l-bisposphonic acid (cimadronate), k) l,l-dichloromethylene-l,l-diphosphonic acid and the dissodium salt (clodronate), l) l-hydroxy-3-(l-pyrrolidinyl)-propylidene-l,1-bisphosphonic acid (EB-1053), m) l-hydroxyethane-l,l-diphosphonic acid (etidronic acid), n) 6-amino-l-hydroxyhexylidene-l, 1-bisphosphonic acid (neridronate), o) 3-(dimethylamino)-l-hydroxypropylidene-l, 1-bisphosphonic acid (olpadronate), p) [2-(2-pyridinyl)ethylidene]-l,1-bisphosphonic acid (piridronate), q) (4-chlorophenyl)thiomethane-l,l-diphosponic acid (tiludronate), r) l-hydroxy-2-(lH-imidazol-l-yl)ethylidene-l,1-bisphosphonic acid (zolendronate). s) [(cycloheptylamino)-methylene]-bisphosphonic acid (icadronate), and/or t) [l-Hydroxy-2imidazo-(l,2-a) pyridin-3-ylethylidene]-bisphosphonic acid and pharmaceutically acceptable salts thereof. 30 In a preferred embodiment of the invention, bisphosphonates may be selected from the group consisting of compounds b) to t) and pharmaceutically acceptable salts thereof.
Preferred are bisphosphonates selected from the group consisting of cimadronate, clodronate, tiludronate, etidronate, ibandronate, risedronate, piridronate, pamidronate, zolendronate and pharmaceutically acceptable salts thereof. WO 01/52859 PCT/EP01/00417 7- „ vς; ' ·,Μ·, - ilnia more,preferred embosdiment;of;the; present invention, the bisphosphonate is 3- .....- -.. ,-,- (N-methyl-N-pentyl) amino-1-hydroxypropane-1,1-bisphosphonic acid (ibandronic acid) or pharmaceutically acceptable salts thereof, or even more preferably 3-(N-methyl-N-pentyl) amino-l-hydroxypropane-l,l-bisphosphonic acid, monosodium salt, 5 monohydrate.
The pharmaceutically chelating agent or chelator or a pharmaceutically acceptable salt thereof according to the present invention is a compound, which forms via two or more of its functional groups stable ring-shaped complexes with metal cations, e.g. preferably a polyacetic acid or a pharmaceutically acceptable salt thereof like EDTA and 10 DTPA. Chelating agents are complexes, which unlike simple ligands, e.g. ferrocyanide (Fe(CN)64')»which form complex salts by a single bond provided by a lone electron pair, are capable of forming more than one bond. Ethylene diamine, for example, is bidentate (two links), tripyridyl is tridentate (three) and ethylene diamine tetraacetic acid (EDTA) is hexadentate (six) which makes it particularly effective as a pharmaceutical chelating agent. 15 One of the consequence of chelation is the formation of a cyclic structure which has high thermodynamic and thermal stability analogous to aromatic rings. Furthermore, the chelate complex is usually more stable than the ligand, since two bonds must rupture, and although one may break, reformation occurs before the other can. This is known as the chelate effect. 20 Preferably the chelating agent is a bivalent cation chelator and more preferably, the chelator is selected from the group consisting of ethylenediaminetetraacetic acid (EDTA), diethylenetriaminepentaacetic acid (DTPA), ethylene glycol-bis(P-aminoethyl ether)-tetraacetic acid (EGTA), N (hydroxyethyl) ethylenediaminetriacetic acid (HEDTA), nitrilotriacetic acid (NTA), triethanolamine, 8-hydroxyquinoline, citric acid, tartaric acid, 25 phosphoric acid, gluconic acid, saccharic acid, thiodipropionic acid, acetonic dicarboxylic acid, lecithin, di(hydroxyethyl)glycine, phenylalanine, tryptophan, glycerin, sorbitol and pharmaceutically acceptable salts thereof.
More preferably the chelating agent is selected from the group consisting of EDTA, DTPA, citric acid, tartaric acid, phosphoric acid, gluconic acid or a pharmaceutically 30 acceptable salt thereof and even more preferably the pharmaceutically chelating agent is EDTA and DTPA or a pharmaceutically acceptable salt thereof.
In a preferred embodiment of the present invention the molar ratio between the bisphosphonate and the pharmaceutically acceptable chelating agent is about 1: 0.01 to WO 01/52859 PCT/EP01/00417 -8- ^^«fe\?^^about4feli5O0i;more preferabl^atout^SrO.^id.iahQiifclji.SOi.and.eYenimoreipreferably’iSKa;??® about 1:10.
For example, a formulation containing 1 mg ibandronate / ml physiological saline adjusted to pH 7.4. EDTA was added to the ibandronate solution at a concentration range 5 of 0.1 to 10 mg/ml. This corresponds to molar ibandronate to EDTA ratios of approximately 1 : 0.1 to 1 : 10. The improving effect of EDTA was shown to be dose-related . At the lowest ratio of 1 : 0.1 there was still some beneficial effect and at the highest ratio of 1 : 10, the local adverse reactions were still not completely abolished. Thus, much higher and lower molar ratios can be expected to be also useful to improve the local 10 tolerance of parenterally administered bisphosphonate formulations. In addition, the effect of EDTA on alendronate induced local reaction as well as the efficacy of DTPA as chelating agent could also be demonstrated.
The composition as defined above may contain one or more additional pharmaceutically acceptable chelating agent(s) as defined above. 15 The excipients may be selected diluents, solvents and/or preservatives, e.g. water, alcohols, polyols, glycerine, and vegetable oils. The compositions according to the present invention may comprise one or more of these pharmaceutically acceptable excipients.
In a preferred embodiment of the present invention the composition as defined above may comprise a bisphosphonate or a pharmaceutically acceptable salt thereof, a 20 pharmaceutically acceptable chelating agent, a tonicity agent (a tonicity adjusting agent as described below), a pH adjusting agent (i.e. acid, base, buffer as described below), and a solvent. Optionally these compositions may contain in addition a local anaesthetic.
In a more preferred embodiment of the present invention, the pH of the solution of the above defined compositions is in the range of 2 -10, preferably 4-9, more preferably 6 25 - 8, and most preferably 7-8, e.g. about 7.4.
In an even more preferred embodiment of the present invention the above defined composition is a parenteral composition comprising a) 0.1 -10 mg3-(N-methyl-N-pentyl) amino-l-hydroxypropane-1,1-bisphosphonic acid, monosodium salt, monohydrate and 30 b) 0.5 - 50 mg EDTA.Naj^HiO.
For example, the above composition may comprise a) 0.1 -10 mg3-(N-methyl-N-pentyl) amino-l-hydroxypropane-1,1-bisphosphonic acid, monosodium salt, monohydrate; b) 0.5 - 50 mg EDTA.Na2.2H2O; WO 01/52859 PCT/EP01/00417 -9- v.. ''v„':;x),abOAt9O'mg^odium^hldr4'd'e; d) sodium hydroxide q.s. to about pH 7.4; and e) water for injection q.s. to 0.5 or 1.0 ml.
In more detail, a parenteral composition may comprise about 1.125 mg ibandronate 5 sodium salt, about 10 mg EDTA, Na2, 2H2O, about 9.0 mg sodium chloride, sodium hydroxide q.s. to pH 7.4 and water for injection q.s. to 1.0 ml.
Preferably, a parenteral composition may comprise about 1.125 mg ibandronate sodium salt, about 10 mg EDTA, Na2, 2H2O, about 5.78 mg lidocaine hydrochloride, about 9.0 mg sodium chloride, sodium hydroxide q.s. to pH 7.4 and water for injection 10 q.s. to 1.0 ml.
Further the invention comprises a process for preparing a composition as defined above, comprising mixing at least one bisphosphonate with at least one pharmaceutically acceptable chelating agent and a pharmaceutically acceptable excipient.
The invention also comprises a process for preparing a composition as defined above 15 by mixing at least one bisphosphonate with at least one pharmaceutically acceptable chelating agent and a local anaesthetic.
The compositions of the present invention are useful for the treatment and prevention of diseases involving bone resorption, especially osteoporosis, Paget’s disease, hypercalcemia of malignancy, and metabolic bone disease. The invention further 20 comprises a method for the treatment and prevention of diseases involving bone resorption, especially osteoporosis, Paget’s disease, hypercalcemia of malignancy, and metabolic bone disease comprising the step of administering to a patient a composition as defined above.
The invention further includes devices for local and systemic sustained release 25 comprising a composition as defined above.
In more detail, the composition as defined above may contain additional excipients selected from solvents and co-solvents (water for injection, ethanol, glycerol, propylene glycol, polyethylene glycol, different oils), solubilising, wetting, suspending, emulsifying or thickening agents (carboxymethylcellulose, Cremophore EL, desoxycholate sodium, 30 gelatin, lecithin, polysorbate 20 and 80, poloxamer), antioxidants and reducing agents (ascorbic acid, bisulfite sodium, metabisulfite sodium), antimicrobial preservatives (benzyl alcohol, paraben propyl and methyl), buffers and pH adjusting agents (acetate, citrate, lactate, hydrochloric acid, sodium hydroxyde), bulking agents, protectants, and tonicity WO 01/52859 PCT/EP01/00417 - 10- ^X5uM;*«^i^<adJustors;;(s0diumxhloride;:glucose,jnannitol),v.;or'.a^oc^^ benzocaine, buvieaine, procaine, tetracaine).
In a preferred embodiment of the present invention the composition is a parenteral composition comprising a bisphosphonate and a pharmaceutically acceptable chelating 5 agent(s) as defined above.
The parenteral route of administration of the compositions as defined above generally comprises subcutaneous, intramuscular, intravenous, transdermal, intradermal, intranasal, intraarterial and intraperitoneal injection or infusion. Preferably the parenteral route comprises subcutaneous, intramuscular and intravenous injection or infusion, and 10 more preferable the subcutaneous injection or infusion.
Further, the invention refers to the use of the above defined compositions for the preparation of medicaments useful for treatment and prevention of diseases involving bone resorption, especially osteoporosis, Paget’s disease, hypercalcemia of malignancy, and metabolic bone disease. The invention also relates to the use of the above composition for 15 the preparation of medicaments useful for the prevention of tissue damage after parenteral administration of bisphosphonates, preferably by administration of an aqueous solution.
In addition, the invention also refers to a device for local and systemic sustained release comprising a composition as defined above. For example, such devices may consist of implanted osmotic pumps or externally portable infusion pumps connected to a supply 20 tube and/or a subcutaneously inserted cannula.
Further, the invention also refers to a device for enabling, facilitating or supporting parenteral administration of a composition as defined above. For example, the device may be used to achieve local and systemic sustained release comprising portable infusion pumps connected to a supply tube and/or a subcutaneously inserted cannula (e.g. Portable 25 Injection Appliance; US Patent No. 4,886,499) or to reduce local pain caused by the injection, for example needle free injectors (e.g. MicroPor , Medi-jector 4 ).
Further the invention also relates to injectable formulations, which release a composition as defined above in a sustained fashion and may reduce local pain caused by injection. For example, the sustained release formulation may comprise depot forming 30 compounds such as different pharmaceutically acceptable oils, thickening agents (carboxymethylcellulose, poloxamer, gelatin), biodegradable microparticle forming polymers (lactide/glycolide polymers, polyanhydrides, chitosan) or pharmaceutically acceptable polyelectrolytes (Albumin, Protamin). PCT/EP01/00417 WO 01/52859 - 11 - .· ·. ? invention will-be nowdllustrated-in details by the following examples and figures. WO 01/52859 PCT/EP01/00417 ... -12-
T ...... . . EXAMPLES
Example 1: Local Tolerance Test I
Groups of 3 rats were treated with test formulations containing 1 mg ibandronate / 5 ml physiological saline buffered at pH 7.4. One group of rats received the test formulation without any additional additive, another group received the test solution with 1 mg EDTA /ml as an additive. The back of the rat was shaved one day before treatment. A volume of 0.5 ml each was injected subcutaneously at three different sites of the right part of shaved back. The left side of the back was treated with the corresponding formulation without 10 ibandronate (placebo). Local reactions were assessed by a scoring system for swelling: 0 = no reaction, 0.5 = barely perceptible swelling, 1 = slight swelling, 2 = moderate swelling, 3 = marked swelling, 4 = severe swelling. The animals were observed over 9 days and thereafter necropsied. At necropsy, the diameter of subcutaneous lesions, mainly consisting of reddening or swelling, was measured. The results are presented in figures 1 15 and 2.
Example 2: Local Tolerance Test II
The same study design as described in example 1 was applied to examine the concentration dependence of the EDTA effect. EDTA was added at concentrations of 0.1, 20 1.0 and 10 mg/ml. The results are presented in figures 3 and 4.
Example 3: Local Tolerance Test III
The same study design as described in example 1 was applied to examine the efficacy of DTPA on local reaction to s.c. injected ibandronate. DTPA was added at a 25 concentration of 10 mg/ml. The results are presented in figures 5 and 6. WO 01/52859 PCT/EP01/00417 13-
ν:ί '<?'E^mp1e 4: to^l Toferarice Test IV
The same study design as described in example 1 was applied to examine the efficacy of EDTA on local reaction to s.c. injected alendronate. The test formulations contained 3 mg alendronate / ml physiological saline buffered at pH 7.4. EDTA was added at a 5 concentration of 10 mg/ml. The results are presented in figures 7 and-8.
In conclusion, there is dear evidence that the presence of a chelating agent, as EDTA or DTPA, in injectable formulations of bisphosphonates, as alendronate or ibandronate, reduces both the intensity and duration of local swelling at the injection site and the severity of subcutaneous findings at necropsy after 9 days. 10
Example 5: Parenteral Composition I
Ibandronate sodium salt 1.125 mg EDTA, Na2,2H2O 10.0 mg Sodium chloride 9.0 mg Sodium hydroxyde q.s. to pH 7.4 Water for Injection q.s. to 1.0 ml 15
Example 6: Parenteral Composition II
Ibandronate sodium salt 1.125 mg DTPA 10.0 mg Sodium chloride 9.0 mg Sodium hydroxyde q.s. to pH 7.4 Water for Injection q.s. to 1.0 ml OF? WO 01/52859 PCT/EP01/00417 - -14-
·'* ^••Example;7:-Pafenteral Composition III
Alendronate 3.0 mg EDTA, Na2,2H2O 10.0 mg Sodium chloride 9.0 mg Sodium hydroxyde q.s. to pH 7.4 Water for Injection q.s. to 1.0 ml
Example 8: Parenteral Composition IV
Ibandronate sodium salt 1.125 mg EDTA, Na2) 2H2O 10.0 mg Lidocaine hydrochloride 5.78 mg Sodium chloride 9.0 mg Sodium hydroxyde q.s. to PH 7·4 Water for Injection q.s. to 1.0 ml WO 01/52859 PCT/EP01/00417 -15-
Figures: .-
Fig. 1: Mean grade of swelling after s.c. injection of ibandronate solution, pH 7.4 with and without 0.1% EDTA (n = 9);
Fig. 2: Mean diameter of subcutaneous findings 9 days after s.c. injection of 5 ibandronate solution, pH 7.4 with and without 0.1% EDTA (n = 9);
Fig. 3: Mean grade of swelling after s.c. injection of ibandronate solution, pH 7.4 with and without EDTA (n = 9). Data with 0.1% EDTA are combined with results of the first test (n = 18);
Fig. 4: Mean diameter of subcutaneous findings 9 days after s.c. injection of 10 ibandronate solution, pH 7.4 with and without EDTA (n = 9). Data with 0.1% EDTA are combined with results of the first test (n = 18).
Fig. 5: Mean grade of swelling after s.c. injection of ibandronate solution, pH 7.4 with and without 1% DTPA (n = 12).
Fig. 6: Mean diameter of subcutaneous findings 9 days after s.c. injection of 15 ibandronate solution, pH 7.4 with and without DTPA (n = 12).
Fig. 7: Mean grade of swelling after s.c. injection of alendronate solution, pH 7.4 with and without 1% EDTA (n = 9 ).
Fig. 8: Mean diameter of subcutaneous findings 9 days after s.c. injection of alendronate solution, pH 7.4 with and without EDTA (n = 9). 150549/3 -17- risedronate, piridronate, pamidronate, zolendronate, and pharmaceutically acceptable salts thereof. 3. The composition according to claim 1 or 2 wherein the bisphosphonate is 3-(N-methyl-N-pentyl) amino-l-hydroxypropane-l,l-bisphosphonic acid (ibandronic acid) or a pharmaceutically acceptable salt thereof. 4. The composition according to any of claims 1-3 wherein the bisphosphonate is 3-(N-methyl-N-pentyl) amino-l-hydroxypropane-l,l-bisphosphonic acid, monosodium salt, monohydrate. 5. The composition according to any of claims 1-4 wherein the molar ratio between the bisphosphonate and the pharmaceutically acceptable chelating agent is from about 1:0.01 to about 1 : 500. 6. The composition according to any of claims 1-5 wherein the molar ratio between the bisphosphonate and the pharmaceutically acceptable chelating agent is from about 1:0.1 to about 1 : 50. 7. The composition according to any of claims 1-6 wherein the molar ratio between the bisphosphonate and the pharmaceutically acceptable chelating agent is about 1: 10. 8. The composition according to any of claims 1-7 wherein the composition comprises one or more additional pharmaceutically acceptable chelating agent(s). 9. The composition according to claim 8 wherein the excipients are selected from diluents, solvents and/or preservatives. 10. The composition according to claim 1-9 comprising a bisphosphonate or a pharmaceutically acceptable salt thereof, a pharmaceutically acceptable chelating agent, a tonicity agent, a pH adjusting agent, and a solvent. 11. The composition according to any of claims 1-10 comprising in addition a local anaesthetic. , crrixan rwzn arn pnow pnszn irn nr “|»ob ,Ρ’ηη ηχΰ- πώοβπβ mzrna π^πιώώ np’ioz .zruwan ms rnp’nn pmi1? oxnm □ιηπη Pi? _____88°4003 21 J' ·®0T 1121:46+0200 .(moiB nzrnn) cras&amp;'an nwa
Contents2
44 members in 29 offices
Priority claims8
| Document | Office | Kind | Date |
|---|---|---|---|
| 00101044 | European Patent Office (EPO) | A | |
| 00101044 | European Patent Office (EPO) | A | |
| 0100417 | European Patent Office (EPO) | W | |
| 0100417 | European Patent Office (EPO) | W | |
| 001010446 | – | – | – |
| EP20000101044 | – | – | – |
| PCTEP2001000417 | – | – | – |
| WO2001EP00417 | – | – | – |
Members44
| Document | Office | Kind | |
|---|---|---|---|
| CA2406798A1 | Canada | A1 | |
| WO0152859A1 | World Intellectual Property Organization (WIPO) | A1 | |
| AU2516501A | Australia | A | |
| US2001011082A1 | United States of America | A1 | |
| NO20023469D0 | Norway | D0 | |
| NO20023469L | Norway | L | |
| KR20020073509A | Republic of Korea | A | |
| EP1251857A1 | European Patent Office (EPO) | A1 | |
| BR0107755A | Brazil | A | |
| MXPA02007057A | Mexico | A | |
| CN1396830A | China | A | |
| IL150549D0 | Israel | D0 | |
| AR027245A1 | Argentina | A1 | |
| HU0204114A2 | Hungary | A2 | |
| JP2003520240A | Japan | A | |
| ZA200205241B | South Africa | B | |
| US6677320B2 | United States of America | B2 | |
| PL357675A1 | Poland | A1 | |
| HRP20020594A2 | Croatia | A2 | |
| RU2238736C2 | Russian Federation | C2 | |
| MA26865A1 | Morocco | A1 | |
| AU779677B2 | Australia | B2 | |
| HU0204114A3 | Hungary | A3 | |
| NZ519881A | New Zealand | A | |
| KR100518391B1 | Republic of Korea | B1 | |
| YU54802A | Yugoslavia, later Serbia and Montenegro (until 2006) | A | |
| EP1251857B1 | European Patent Office (EPO) | B1 | |
| AT318137T | Austria | T | |
| DE60117362D1 | Germany | D1 | |
| DK1251857T3 | Denmark | T3 | |
| PT1251857E | Portugal | E | |
| SI1251857T1 | Slovenia | T1 | |
| ES2258070T3 | Spain | T3 | |
| DE60117362T2 | Germany | T2 | |
| CN1311835C | China | C | |
| IL150549AThis record | Israel | A | |
| JP3933933B2 | Japan | B2 | |
| CA2406798C | Canada | C | |
| PL199784B1 | Poland | B1 | |
| RS50166B | Serbia | B | |
| CZ301961B6 | Czechia | B6 | |
| NO329930B1 | Norway | B1 | |
| HRP20020594B1 | Croatia | B1 | |
| HU229054B1 | Hungary | B1 |
3 legal events, as the office reported them to INPADOC
Over the term
Point at a mark for the eventEvents
| Event | Code | |
|---|---|---|
| Patent not in force due to non-payment of renewal feesMM9K | MM9K | |
| Patent renewedKB | KB | |
| Patent renewedKB | KB |
Numbers
- Publication, DOCDB
- 150549
- Publication, EPODOC
- IL150549
- Application
- 150549
- Application, DOCDB
- 15054902
- Application, EPODOC
- IL20020150549
Titles
- English
- PHARMACEUTICAL PARENTERAL COMPOSITION CONTAINING A BIPHOSPHONATE
Classification
- CPC, 11
- A61K31/663
- A61K47/18
- A61K9/0019
- A61K31/66
- A61K47/183
- A61P19/00
- A61P19/08
- A61P19/10
- A61P23/02
- A61P3/14
- A61P39/00
- IPC, 17
- A61K47 04
- A61K9 08
- A61K31 66
- A61K31 663
- A61K31 675
- A61K45 00
- A61K47 10
- A61K47 12
- A61K47 18
- A61K47 20
- A61K47 22
- A61K47 24
- A61K47 26
- A61P3 14
- A61P19 08
- A61P19 10
- A61P23 02