EP1365759A2 - Chemotherapeutic microemulsion compositions of paclitaxel with improved oral bioavailability - Google Patents
Chemotherapeutic microemulsion compositions of paclitaxel with improved oral bioavailabilityInfo
- Publication number
- EP1365759A2 EP1365759A2 EP02718808A EP02718808A EP1365759A2 EP 1365759 A2 EP1365759 A2 EP 1365759A2 EP 02718808 A EP02718808 A EP 02718808A EP 02718808 A EP02718808 A EP 02718808A EP 1365759 A2 EP1365759 A2 EP 1365759A2
- Authority
- EP
- European Patent Office
- Prior art keywords
- composition
- paclitaxel
- cellulosic polymer
- surfactant
- group
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Withdrawn
Links
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- 229930012538 Paclitaxel Natural products 0.000 title claims abstract description 99
- 229960001592 paclitaxel Drugs 0.000 title claims abstract description 99
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- UFVKGYZPFZQRLF-UHFFFAOYSA-N hydroxypropyl methyl cellulose Chemical group OC1C(O)C(OC)OC(CO)C1OC1C(O)C(O)C(OC2C(C(O)C(OC3C(C(O)C(O)C(CO)O3)O)C(CO)O2)O)C(CO)O1 UFVKGYZPFZQRLF-UHFFFAOYSA-N 0.000 claims description 52
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Classifications
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Definitions
- the present invention relates generally to formulations of chemotherapeutic agents and more specifically to formulations of paclitaxel and analogs thereof for oral administration.
- Paclitaxel is a clinically effective chemotherapeutic agent approved for the treatment of various cancers.
- paclitaxel has very low water solubility ( ⁇ 10 ⁇ g/ml) which, due to a lack in suitable chemical functionality for salt formation, cannot be increased by pH adjustment, formulation of paclitaxel has proven difficult.
- most of the formulation work known in the art has been based on the use of co-solvents, surfactants and excipients (i.e., cyclodextrin) for intravenous (IV) formulations.
- IV intravenous
- Taxol® contains 6 mg/ml of paclitaxel, 527 mg/ml of a surfactant, (Cremophor EL, a polyethoxylated castor oil), and 49.7% (v/v) of absolute ethanol. This formulation requires a 5 to 20 fold dilution with either 5% dextrose or 0.9% NaCl solution which is then delivered by an intravenous infusion into the patient.
- paclitaxel/cremophor formulations patients are often required to receive premedication and/or prolonged paclitaxel infusion duration time of up to 24 hours.
- These measures carry significant disadvantages.
- the long infusion duration is inconvenient for patients, and is expensive due to the need to monitor the patients for the entire 6 to 24-hour infusion duration and the patient's prolonged stay in a hospital or treatment clinic.
- premedication increases patient discomfort and increases the expense and duration of treatment.
- such measures normally would not completely eliminate the side effects.
- U.S. Patent No. 5,641,803 to Canetta et. al. discloses a method of administering paclitaxel dosages of about 135 mg/m 2 via infusions of less than 6 hours duration. This method requires pretreatment of the patients with steroids, antihistamines, and H 2 -receptor antagonists sufficient to prevent fatal anaphylactic-like reactions.
- U.S. Patent No. 5.648,090 to Rahman et. al. discloses a liposomal-encapsulated paclitaxel or an anti-neoplastic derivative thereof that is used to effect a therapeutically enhanced method of treating cancer, and may be used advantageously in combination with hyperthermia.
- the liposomes confer enhanced stability and solubility characteristics to paclitaxel or derivatives thereof.
- U.S. Patent No. 5,415,869 to Straubinger et. al. discloses a pharmaceutical composition for use in treatment of cancer patients comprised of at least one taxane and a mixture of one or more negatively charged phospholipids and one or more zwitterion (i.e. neutral) phospholipids.
- This mixture entraps the taxane in what is believed to be a liposome.
- the mixture contains a ratio of negatively charged phospholipids to zwitterion phospholipids of 1 :9 to 7:3.
- the paclitaxel is present in an amount of 1.5-8.0 mole percent taxane.
- the composition is in the form of particles having a size of 0.025 to 10 microns with substantially no taxane crystals.
- One of the negatively charged phospholipids is diphosphatidyl choline, i.e. cardiolipin.
- U.S. Patent No. 5,683.715 to Boni et. al. discloses liposomal taxane formulations where the liposomal lipid is a phosphatidylcholine; these formulations are useful for treating animals afflicted with cancers.
- U.S. Patent No. 5,728,687 to Bissery discloses pharmaceutical compositions having therapeutic synergy comprising paclitaxel or taxotere or analogues thereof combined with at least one other therapeutically useful substance for treating neoplastic diseases.
- the other therapeutic substance is selected from the group consisting of an alkylating agent, epidophylloptoxin, an anti-metabolite or a vinca alkaloid.
- U.S. Patent No. 6,096,331 to Desai et. al. discloses and claims compositions and methods that are useful for the in-vivo delivery of taxane, wherein the taxane is formulated with a polymeric biocompatible material such as human serum albumin.
- the compositions are substantially cremophor-free and a variety of neoplastic tumors are treatable thereby.
- U.S. Patent No. 5,908,835 to Bissery discloses anti-tumor compositions comprising paclitaxel, taxotere or their derivatives in combination with an anthacycline antibiotic, the combination having a synergistic pharmacological activity greater than the expected additive effect of its individual components.
- U.S. Patent Nos. 5,916.596 and 5,439,686 to Desai et. al. disclose pharmaceutical compositions comprising emulsions of polymer-encapsulated pharmaceutical agents including protein encapsulated paclitaxel.
- the polymer is a protein, polysaccharide, polypeptide or polynucleic acid cross-linked by disulfide bonds.
- the emulsion is any one of a wide variety of organic solvents. Accordingly, there exists a clear need for oral compositions of paclitaxel that are easy to prepare, contain a high concentration of paclitaxel but a low surfactant level, cause fewer side effects, have improved stability and have high oral bioavailability.
- An object of the present invention is to provide pharmaceutical compositions containing paclitaxel and analogs thereof which possess high oral bioavailability.
- Another object of the present invention is to provide pharmaceutical compositions containing paclitaxel and analogs thereof which generate a supersaturated solution of the drag state in vivo whereby the oral bioavailability of paclitaxel is further enhanced.
- a further object of the present invention is to provide a pharmaceutical composition containing a high drug load of paclitaxel for convenient administration.
- Another object of the present invention is to provide pharmaceutical compositions which exhibit adequate physical and chemical stability as self-emulsifying formulations.
- Still another object of the present invention is to provide pharmaceutical formulations for paclitaxel which contain less polyethoxylated castor oil.
- the present invention provides pharmaceutical compositions of paclitaxel in a form of self-emulsifying liquid composition comprising: a) paclitaxel or an analog thereof, b) a pharmaceutically acceptable solvent, c) a pharmaceutically acceptable surfactant, and d) a substituted cellulosic polymer.
- compositions are self-emulsifying, capable of generating a supersaturated emulsion or a supersaturated microemulsion upon their exposure to an aqueous medium such as water or gastrointestinal fluid.
- the emulsion or a microemulsion permits rapid and efficient absorption of the paclitaxel resulting in enhanced bioavailibility of paclitaxel.
- the compositions of the present invention are primarily for oral administration. Li a particular embodiment, the compositions further comprise a diglyceride or a mixture of diglyceride and monoglyceride.
- the amount of paclitaxel in the compositions can be up to about 100 mg/g.
- the high paclitaxel load in the compositions permits a reduced volume of the composition to be administered to the patients.
- the preferred solvents of the present invention include polyethylene glycol (PEG series), propylene glycol, ethanol, or a mixture thereof.
- the preferred surfactants include polyoxyl 40 hydrogenated castor oil (Cremophor RH40®), polyoxyl 35 castor oil (Cremophor EL®), polyoxyethylene sorbitan fatty acid esters (polysorbates), poloxamers (Pluronics), and vitamin E-TPGS 1000, with the more preferred surfactant being Cremophor EL®.
- the ratio of paclitaxel to the surfactant such as Cremophor in the composition of the present invention is generally less than 1:20, that means that for each part of paclitaxel less than twenty parts of the surfactant is required in the composition.
- the reduced amount of the surfactant in the composition as compared with that in the Taxol® formulation would significantly and desirably reduce the side effects caused by the Cremophor.
- Figure 2 is a graph depicting the levels of paclitaxel in plasma samples taken over a period of 8 hours from groups of rats.
- the composition of Example 3 which contains HPMC was administered orally.
- the commercial formulation Taxol® was administered orally.
- a paclitaxel composition substantially similar to that of Example 3 with the major exception that it contained no HPMC was administered orally.
- the total dose of paclitaxel administered to each rat in each group was 10 mg/kg.
- Example 3 the composition of Example 3 which contains HPMC shows rapid absorption with a high Cmax of about 300 ng/ml as compared to a low Cmax (around 13 ng/ml) with a formulation of similar composition without HPMC (Example 6). Approximately a 20-fold enhancement in the Cmax is observed from the composition of Example 3 and this is attributed to the presence of HPMC.
- the commercial product, Taxol® (BMS) shows a Cmax only around 26 ng/ml (Group B in Figure 2) when it is dosed orally, and this is approximately 10-fold lower than that obtained with the compositions of the present invention.
- compositions of the present invention are self-emulsifying liquid formulations.
- self-emulsifying liquid formulations refers to concentrated liquid compositions capable of generating emulsions or microemulsions upon mixing with sufficient aqueous media such as water, infusion fluids, simulated gastric fluid, or actual gastrointestinal fluid.
- simulated gastric fluid used herein refers to an aqueous solution of about 0.01 M hydrochloric acid with about 0.15 M sodium chloride, having a pH of about 2.
- the size of the emulsion or microemulsion droplets generated by the compositions of the present invention are generally below 500 nm and preferably below 150 nm.
- the paclitaxel compositions of the present invention can contain paclitaxel generally in an amount up to about 100 mg/gm, preferably from about 10 to about 80 mg/gm, more preferably from about 30 to 70 mg/gm, and even more preferably from about 40 mg/gm to about 65 mg/gm.
- the pharmaceutically acceptable solvents suitable for the present invention include polyethylene glycol (PEG series such as PEG 300, 400, 600, etc), propylene glycol, efhanol, glycerol, triacetin, glycofurol, propylene carbonate, dimethyl acetamide, dimethyl isosorbide, N-methyl pyrrolidinone, or a mixture thereof.
- the preferred solvents of the present invention include polyethylene glycol (PEG series), propylene glycol, ethanol, or a mixture thereof.
- the total amount of the solvent present in the composition is generally from about 100 to about 700 mg/g and preferably from about 250 to about 400 mg/g.
- the pharmaceutically acceptable surfactants suitable for the present invention are non-ionic surfactants including polyoxyl 40 hydrogenated castor oil (sold under the trade name Cremophor RH40®), polyoxyl 35 castor oil (sold under the trade name Cremophor EL®), polyoxyethylene sorbitan fatty acid esters (polysorbates), poloxamers (Pluronics), vitamin E- TPGS 1000 (VE-TPGS 1000), polyoxyethylene alkyl ethers, Solutol HS-15, Tagat TO, Peglicol 6-oleate, polyoxyethylene sterates, or saturated polyglycolyzed glycerides, all of which are commercially available.
- non-ionic surfactants including polyoxyl 40 hydrogenated castor oil (sold under the trade name Cremophor RH40®), polyoxyl 35 castor oil (sold under the trade name Cremophor EL®), polyoxyethylene sorbitan fatty acid esters (polysorbates), poloxamers (Plur
- the preferred surfactants include polyoxyl 40 hydrogenated castor oil (Cremophor RH40®), polyoxyl 35 hydrogenated castor oil (Cremophor EL®), polyoxyethylene sorbitan fatty acid esters (polysorbates), poloxamers (Pluronics), and vitamin E-TPGS 1000.
- the total amount of the surfactant present in the composition is generally from about 100 to about 700 mg/g, and preferably from about 300 to about 500 mg/g.
- the weight ratio of paclitaxel to the surfactant, such as polyethoxylated castor oil, in the compositions of the present invention is preferably between 1:3 to 1:20, and more preferably between 1 :5 to 1 : 10 by weight.
- the content of polyethoxylated castor oil relative to the content of paclitaxel in the composition is considerably lower in the compositions of the present invention than that in the Taxol® formulation.
- substituted cellulosic polymer used herein refers to a cellulosic polymer having at least a portion of substitutable hydroxyl groups substituted with methoxyl and/or hydroxypropyl groups.
- compositions of the present invention comprise at least one substituted cellulosic polymer.
- the substituted cellulosic polymer is substantially water-soluble.
- Examples of the preferred substituted cellulosic polymers suitable in the present invention include hydroxypropyl methylcellulose (HPMC), hydroxypropyl cellulose (HPC), methylcellulose, hydroxyethylcellulose, maltodextrin, and povidones. More preferably, the substituted cellulosic polymer is HPMC, HPC, hydroxyethylcellulose, methylcellulose, and povidones. Even more preferably, the substituted cellulosic polymer is HPMC.
- Suitable HPMCs that are relatively hydrophilic in nature are illustratively available under the brand names MethocelTM (Dow Chemical Co.) and MetoloseTM (Shin-Etsu Chemical Co.).
- HPMC useful in the present invention preferably has a viscosity of about 1 to about 100,000 cps when the concentration is about 2% (w/w) in water.
- the low viscosity HPMC polymer is preferred.
- HPMC polymers that show a viscosity of 3 to 500 cps in water with 2% concentration is most preferred.
- HPMC polymers vary in the degree of substitution of available hydroxyl groups on the cellulosic backbone by methoxyl groups and by hydroxypropyl groups. With increasing hydroxypropyl substitution, the resulting HPMC becomes more hydrophilic in nature.
- the HPMC polymer preferably have about 15% to about 35%, more preferably about 19% to about 30%, and most preferably about 19% to about 24%, methoxyl substitution, and having about 3% to about 15%, more preferably about 4% to about 12%, and most preferably about 7% to about 12%, hydroxypropyl substitution.
- HPMC types 2208 and 2910 which have a normal viscosity of about 1 to 100,000 cps when the polymer concentration is 2% in water.
- An especially preferred HPMC type is 2910 denoting about 28% to 30% methoxyl substitution and about 7% to about 12% hydroxypropyl substitution, and with a nominal viscosity of about 2 to 4000 cps when the HPMC concentration is 2% in water (w/w).
- the cellulosic polymer can be suspended or dissolved in the liquid formulation of the invention, or alternatively, the substituted cellulosic polymer may be present as a component of the wall of the capsule wherein a liquid formulation of the invention is encapsulated.
- substantially no HPMC or other substituted cellulosic polymer is present in the liquid but the capsule wall comprises HPMC.
- the capsule wall preferably comprises predominantly of HPMC.
- the substituted cellulosic polymer is present in an amount sufficient to substantially either retard or inhibit drug precipitation and/or crystallization upon dilution of the composition in an aqueous medium.
- An amount sufficient to "substantially inhibit drag precipitation and/or crystallization” herein means an amount sufficient to prevent, slow, inhibit or delay precipitation of drug from solution and/or to prevent, or inhibit or retard, or delay formation of crystalline drug particles from dissolved drug.
- the specific amount required of the substituted cellulosic polymer type depends on factors such as the particular polymer type being used and the paclitaxel concentration in the composition.
- a volume of a test composition, either in unencapsulated or encapsulated form, having a polymer component is placed in a volume of simulated gastric fluid (SGF) to form a mixture having a fixed ratio of about 1 g to about 2 g of the composition per 100 ml of SGF.
- SGF simulated gastric fluid
- the mixture is maintained at a constant temperature of about 37°C and is stirred using type II paddles (USP 24) at a rate of 75 rpm for a period of 4 hours.
- type II paddles USP 24
- test is repeated identically with a comparative formulation that is substantially similar to the test formulation except that it lacks the polymer component.
- the polymer component in the test formulation is present as a component in the solvent liquid, it is replaced in the comparative formulation by polyethylene glycol.
- the polymer component in the test formulation is present as a component of a capsule wall, it is replaced in the comparative formulation with gelatin.
- the polymer component present in the test formulation is deemed to substantially inhibit precipitation and/or crystallization of the drag in simulated gastric fluid.
- a crystallization inhibitor such as HPMC when present in the formulation, is generally present in a total amount of about 1% to about 20%, preferably about 1% to about 15%, and most preferably about 1% to about 10%, by weight of the formulation.
- the higher the drug concentration in the composition the more of the cellulosic polymer will be required to provide a crystallization-inhibiting effect.
- the cellulosic polymer and drug are present in a ratio of about 50: 1 to about 0.1 : 1 , preferably about 10: 1 to about 0.1:1 and more preferably about 5:lto about 0.5:1, by weight.
- HPMC as a crystallization inhibitor as provided herein advantageously and substantially improves the bioavailability of paclitaxel and permits a reduction in the amount of the surfactant which is known to cause undesirable side effects when administered orally in large amounts.
- the composition of the present invention comprises: a) paclitaxel or an analog thereof at an amount of up to 100 mg/g; b) a pharmaceutically acceptable solvent selected from the group consisting of polyethylene glycol (PEG series), propylene glycol, ethanol, or a mixture thereof. c) a pharmaceutically acceptable surfactant selected from the group consisting of polyoxyl 40 hydrogenated castor oil, polyoxyl 35 castor oil, polyoxyethylene sorbitan fatty acid esters, poloxamers, and Vitamin E-TPGS 1000; and d) a substituted cellulosic polymer selected from the group consisting of HPMC, HPC, methylcellulose, hydroxyethylcellulose, and povidones.
- a pharmaceutically acceptable solvent selected from the group consisting of polyethylene glycol (PEG series), propylene glycol, ethanol, or a mixture thereof.
- the pharmaceutical compositions according to the present invention may further comprise a diglyceride or a mixture of diglyceride and monoglyceride.
- the diglycerides and monoglycerides suitable in the present invention are those that contain fatty acids of a carbon chain having 8 to 22 carbons with 0 to 3 double bonds.
- suitable fatty acids for the diglycerides and monoglycerides include caprylic acid, capric acid, lauric acid, myristic acid, palmitic acid, stearic acid, oleic acid, linoleic acid, linolenic acid, and docosahexaenoic acid.
- the fatty acids that are contained in the diglycerides and monoglycerides suitable for the present invention have a carbon chain of 16 to 18 carbons with 1-2 double bonds, such as oleic acid and linoleic acid.
- the preferred diglyceride is diolein, dilinoleate, or a mixture of diolein and dilinoleate.
- the most preferred diglyceride is diolein.
- the preferred monoglyceride is monoolein, monolinoleate, or a mixture of monoolein and monolinoleate.
- the most preferred monoglyceride is monoolein.
- the diglyceride in the absence of monoglyceride in the composition, or the mixture of the diglyceride and monoglyceride present in the composition is generally from about 10% to about 90%, preferably from about 40% to about 70%, and more preferably from about 50% to about 60%, by weight relative to the total weight of the composition.
- the ratio of diglyceride to monoglyceride (diglyceride : monoglyceride) by weight is preferably from about 9: 1 to about 6:4.
- compositions of the present invention for use by oral administration may further comprise a P-glycoprotein inhibitor.
- P-glycoprotein inhibitors Through the use of P-glycoprotein inhibitors, the paclitaxel more readily transverses the mucosal cells of the small intestine and is therefore more readily absorbed into the systemic circulation.
- compositions of the present invention comprises: a) paclitaxel or an analog thereof; b) a pharmaceutically acceptable surfactant; c) a pharmaceutically acceptable solvent; d) a substituted cellulosic polymer; and e) a P-glycoprotein inhibitor.
- composition containing a P-glycoprotein inhibitor as defined above further comprises a diglyceride or a mixture of diglyceride and monoglyceride.
- the P-glycoprotein inhibitors useful in the compositions of the present invention are those that are described in U.S. Pat. Nos 5,968,972 and 6,028,054.
- the compounds that may be used as p-glycoprotein inhibitors and the amounts of such compounds that are required to sufficiently inhibit p-glycoprotein can be identified by the method and process described in U.S. Pat. No. 6,028,054.
- the full disclosure of U.S. Pat. Nos 5,968,972 and 6,028,054 is incorporated herein by reference.
- compositions of the present invention may be prepared in a conventional manner, for example, by dissolving paclitaxel in the solvent, then adding the surfactant, the substituted cellulosic polymer, and optionally the diglyceride or the mixture of diglyceride and monoglyceride.
- the resulting solution can then be formulated into the desired dosage form such as, for example, soft elastic gelatin capsules or hard gelatin capsules by known manufacturing technology.
- the cellulosic polymer is not suspended in fill solution, but, instead, the cellulosic polymer is in the capsule shell as in an HPMC capsule.
- compositions of the present invention can be prepared in any one of a number of alternate delivery systems known in the art.
- the composition may be filled into a soft or hard gelatin capsule, or other oral dosage forms.
- Any suitable encapsulation material for example, gelatin or HPMC, can be used.
- HPMC can be an advantageous material for use in the capsule wall because it can act as a precipitation and/or crystallization inhibitor upon exposure of the composition to the gastrointestinal fluid.
- a substituted cellulosic polymer component such as HPMC is "present in the capsule wall” or is a “capsule wall component” as described herein if the polymer is (a) dispersed or mixed together with any other capsule wall component(s), (b) the only capsule wall component, or (c) present as a coating on the outside or inside of the capsule wall.
- a substituted cellulosic polymer as described hereinabove preferably HPMC
- HPMC a substituted cellulosic polymer as described hereinabove
- the suitable capsule wall can comprise any additional component useful in the art such as gelatin, starch, carrageenan, sodium alginate, plasticizers, potassium chloride, coloring agents, etc.
- the solution or solution/suspension contained therein can additionally, but optionally, comprise a further amount of the same polymer or a different substituted cellulosic polymer.
- Soft gelatin capsules can be manufactured in different shapes including round, oval, oblong, and tube-shape, among others. Additionally, by using two different ribbon colors, two-tone capsules can be produced.
- Capsules that comprise HPMC are known in the art and can be prepared, sealed and/or coated, by way of non-limiting illustration, according to processes disclosed in the patents and publications listed below, each of which is individually incorporated herein by reference.
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Abstract
Description
Claims
Applications Claiming Priority (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US26255501P | 2001-01-18 | 2001-01-18 | |
| US262555P | 2001-01-18 | ||
| PCT/US2002/000497 WO2002064132A2 (en) | 2001-01-18 | 2002-01-14 | Chemotherapeutic microemulsion compositions of paclitaxel with improved oral bioavailability |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP1365759A2 true EP1365759A2 (en) | 2003-12-03 |
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP02718808A Withdrawn EP1365759A2 (en) | 2001-01-18 | 2002-01-14 | Chemotherapeutic microemulsion compositions of paclitaxel with improved oral bioavailability |
Country Status (9)
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| EP (1) | EP1365759A2 (en) |
| JP (1) | JP2004520398A (en) |
| AR (1) | AR032642A1 (en) |
| CA (1) | CA2434641A1 (en) |
| MX (1) | MXPA03006404A (en) |
| NZ (1) | NZ539046A (en) |
| PE (1) | PE20020833A1 (en) |
| WO (1) | WO2002064132A2 (en) |
| ZA (1) | ZA200305086B (en) |
Families Citing this family (16)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US6750246B1 (en) | 2000-02-03 | 2004-06-15 | Bristol-Myers Squibb Company | C-4 carbonate taxanes |
| KR100533458B1 (en) | 2002-07-20 | 2005-12-07 | 대화제약 주식회사 | Composition for solubilization of paclitaxel and preparation method thereof |
| EP1498120A1 (en) * | 2003-07-18 | 2005-01-19 | Aventis Pharma S.A. | Semi-solid formulations for the oral administration of taxoids |
| EP1498143A1 (en) * | 2003-07-18 | 2005-01-19 | Aventis Pharma S.A. | Self-emulsifying and self-microemulsifying formulations for the oral administration of taxoids |
| EP1675548A4 (en) * | 2003-09-25 | 2008-08-13 | Activbiotics Inc | Rifalazil formulations |
| WO2006133510A1 (en) * | 2005-06-17 | 2006-12-21 | Hospira Australia Pty Ltd | Liquid pharmaceutical formulations of docetaxel |
| ES2895666T3 (en) * | 2006-10-27 | 2022-02-22 | Capsugel Belgium Nv | Hydroxypropylmethylcellulose hard capsules and manufacturing process |
| US20090088393A1 (en) * | 2007-09-28 | 2009-04-02 | Zomanex, Llc | Methods and formulations for converting intravenous and injectable drugs into oral dosage forms |
| KR101053780B1 (en) * | 2008-02-29 | 2011-08-02 | 동아제약주식회사 | Single liquid stable pharmaceutical composition containing docetaxel |
| ES2718090T3 (en) | 2010-11-08 | 2019-06-27 | Cadila Pharmaceuticals Ltd | Pharmaceutical composition of taxoids |
| CN103110581B (en) * | 2013-02-26 | 2015-07-22 | 西南大学 | Taxol microemulsion drug composition and preparation method thereof |
| KR101542364B1 (en) | 2014-10-31 | 2015-08-07 | 대화제약 주식회사 | Pharmaceutical composition for oral administration comprising taxanes |
| WO2017018635A1 (en) * | 2015-07-30 | 2017-02-02 | 대화제약 주식회사 | Pharmaceutical composition for oral administration comprising high concentration taxane |
| CN107028931A (en) * | 2016-02-04 | 2017-08-11 | 上海宣泰医药科技有限公司 | A kind of taxol drug composition and its pharmaceutical preparation, preparation method and purposes |
| EP3701943A1 (en) * | 2019-02-26 | 2020-09-02 | CAPNOMED GmbH | Delayed delivery of anticancer drugs |
| CN119173255A (en) * | 2022-05-11 | 2024-12-20 | 伊莱利利公司 | GLP1 pharmaceutical compositions |
Family Cites Families (10)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US6964946B1 (en) * | 1995-10-26 | 2005-11-15 | Baker Norton Pharmaceuticals, Inc. | Oral pharmaceutical compositions containing taxanes and methods of treatment employing the same |
| EP0868422A1 (en) * | 1996-09-24 | 1998-10-07 | Marigen S.A. | Ultramicroemulsion of spontaneously dispersible concentrates of esters of baccatin-iii compounds with antitumor and antiviral effect |
| CH688504A5 (en) * | 1997-03-26 | 1997-10-31 | Marigen Sa | Spontaneously dispersible concentrate containing a taxol analogue |
| CN1261275A (en) * | 1997-05-27 | 2000-07-26 | 巴克·诺顿药物有限公司 | Methods and compositions for oral administration of taxanes to a patient |
| JP2002505682A (en) * | 1997-06-20 | 2002-02-19 | ベーカー ノートン ファーマシューティカルズ インコーポレイテッド | Soluble prodrug of paclitaxel |
| IL131217A0 (en) * | 1998-03-10 | 2001-01-28 | Napro Biotherapeutics Inc | Novel methods and compositions for delivery of taxanes |
| US6436430B1 (en) * | 1998-12-11 | 2002-08-20 | Pharmasolutions, Inc. | Self-emulsifying compositions for drugs poorly soluble in water |
| DE60024811T3 (en) * | 1999-05-27 | 2010-01-07 | Acusphere, Inc., Watertown | POROUS DRUG MATERIALS AND THEIR MANUFACTURING METHOD |
| US6136846A (en) * | 1999-10-25 | 2000-10-24 | Supergen, Inc. | Formulation for paclitaxel |
| US6919370B2 (en) * | 2000-11-28 | 2005-07-19 | Transform Pharmaceuticals, Inc. | Pharmaceutical formulations comprising paclitaxel, derivatives, and pharmaceutically acceptable salts thereof |
-
2002
- 2002-01-14 MX MXPA03006404A patent/MXPA03006404A/en unknown
- 2002-01-14 NZ NZ539046A patent/NZ539046A/en unknown
- 2002-01-14 JP JP2002563926A patent/JP2004520398A/en active Pending
- 2002-01-14 EP EP02718808A patent/EP1365759A2/en not_active Withdrawn
- 2002-01-14 WO PCT/US2002/000497 patent/WO2002064132A2/en not_active Ceased
- 2002-01-14 CA CA002434641A patent/CA2434641A1/en not_active Abandoned
- 2002-01-17 PE PE2002000030A patent/PE20020833A1/en not_active Application Discontinuation
- 2002-01-17 AR ARP020100158A patent/AR032642A1/en unknown
-
2003
- 2003-06-30 ZA ZA200305086A patent/ZA200305086B/en unknown
Non-Patent Citations (1)
| Title |
|---|
| See references of WO02064132A2 * |
Also Published As
| Publication number | Publication date |
|---|---|
| PE20020833A1 (en) | 2002-09-19 |
| NZ539046A (en) | 2006-11-30 |
| AR032642A1 (en) | 2003-11-19 |
| JP2004520398A (en) | 2004-07-08 |
| MXPA03006404A (en) | 2004-12-02 |
| ZA200305086B (en) | 2004-06-30 |
| WO2002064132A2 (en) | 2002-08-22 |
| CA2434641A1 (en) | 2002-08-22 |
| WO2002064132A3 (en) | 2003-05-30 |
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