Palbociclib tablet

The use of glutamic acid in the palbociclib tablet formulation addresses pH-dependent solubility and decomposition issues, ensuring stable and effective drug delivery by enhancing dissolution and storage stability.

JP2025182687APending Publication Date: 2025-12-15NIPPON KAYAKU CO LTD
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
JP2025089409
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-06-03
Filing Date
2025-05-29
Publication Date
2025-12-15

AI Technical Summary

Technical Problem

Palbociclib free base exhibits pH-dependent solubility, leading to reduced dissolution in neutral pH ranges and potential decomposition when combined with water-soluble acids, resulting in the formation of related substances during storage.

Method used

A pharmaceutical tablet formulation containing palbociclib and glutamic acid or its salts, with specific ratios and particle sizes, to enhance dissolution and stability, using a granulation process that includes mixing palbociclib with excipients and disintegrants, and optionally coating the tablets.

Benefits of technology

The formulation suppresses the formation of related substances and ensures excellent storage stability and dissolution of palbociclib in neutral pH ranges, maintaining effective drug delivery.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 2025182687000001
    Figure 2025182687000001
  • Figure 2025182687000002
    Figure 2025182687000002
  • Figure 2025182687000003
    Figure 2025182687000003
Patent Text Reader

Abstract

To provide a pharmaceutical tablet in which generation of related substances after storage is suppressed, addressing the problem that since a palbociclib free base has pH-dependent solubility, dissolution in a neutral region of pH 5.5 or higher is markedly reduced as compared with dissolution in an acidic region, though application of a water-soluble acid such as succinic acid is known in order to address the problem, it is also known that palbociclib undergoes degradation by a water-soluble acid to generate related substances in a formulation, and therefore a pharmaceutical tablet containing palbociclib and a water-soluble acid and having excellent storage stability is required.SOLUTION: In a pharmaceutical tablet containing palbociclib as an active ingredient, formulating glutamic acid makes it possible to prepare a pharmaceutical tablet suppressing generation of related substances under storage.SELECTED DRAWING: None
Need to check novelty before this filing date? Find Prior Art

Description

[Technical Field]

[0001] The present invention relates to a pharmaceutical tablet composition containing palbociclib or a salt thereof as an active ingredient. [Background technology]

[0002] Palbociclib is a kinase inhibitor that selectively inhibits cyclin-dependent kinases 4 and 6 (CDK4 / 6), and is clinically used as a therapeutic agent for hormone receptor-positive, HER2-negative inoperable or recurrent breast cancer. Palbociclib is available on the market in capsule formulations containing crystalline cellulose, lactose hydrate, sodium starch glycolate, light anhydrous silicic acid, and magnesium stearate, as well as in tablets containing crystalline cellulose, light anhydrous silicic acid, crospovidone, succinic acid, magnesium stearate, etc. (Non-Patent Document 1). Regarding palbociclib tablets, Patent Document 1 describes tablets containing 10-80% palbociclib or a salt thereof, as well as a disintegrant, diluent, lubricant, surfactant, and binder. Patent Document 2 describes pharmaceutical tablets containing palbociclib free base, whose solubility is pH-dependent, as the active ingredient, and describes the incorporation of water-soluble acids such as succinic acid, malic acid, and tartaric acid to produce stable pharmaceutical tablets that are unaffected by food or have no adverse interactions with proton pump inhibitors (PPIs) and enable substantially pH-independent delivery of palbociclib. Patent Document 3 similarly describes pharmaceutical tablets containing fumaric acid, aspartic acid, and benzoic acid. [Prior art documents] [Non-patent literature]

[0003] [Non-Patent Document 1] Pharmaceutical Interview Form "Ibrance (registered trademark) Capsules 25 mg 125 mg, Ibrance (registered trademark) Tablets 25 mg 125 mg January 2024 revised edition (13th edition)" [Patent documents]

[0004] [Patent Document 1] Special Publication No. 2017-532347 [Patent Document 2] Japanese Patent Application Publication No. 2017-2034 [Patent Document 3] Japanese Patent Application Publication No. 2023-152768 Summary of the Invention [Problem to be solved by the invention]

[0005] Palbociclib free base has a pH-dependent solubility, resulting in a problem of significantly reduced dissolution in the neutral pH range of 5.5 or higher compared to dissolution in the acidic range. To address this issue, the use of a water-soluble acid such as succinic acid is known. However, it is also known that palbociclib is decomposed by the water-soluble acid, resulting in the formation of related substances in the formulation. Therefore, there is a need for a pharmaceutical tablet containing palbociclib and a water-soluble acid and having excellent storage stability. In particular, the objective is to provide a pharmaceutical tablet in which the formation of related substances is suppressed after storage. [Means for solving the problem]

[0006] [1] A pharmaceutical tablet containing palbociclib, glutamic acid or its salts. [2] The pharmaceutical tablet according to [1], which comprises a granulation product containing palbociclib, an excipient, a disintegrant, and glutamic acid or a salt thereof. [3] The pharmaceutical tablet according to [1] or [2], wherein the content of glutamic acid is 0.2 to 2.0 parts by mass per part by mass of palbociclib. [4] The pharmaceutical tablet according to any one of [1] to [3], comprising 10 to 45 parts by mass of palbociclib, 5 to 45 parts by mass of glutamic acid, 40 to 75 parts by mass of an excipient, 4 to 12 parts by mass of a disintegrant, and 0.5 to 4 parts by mass of a lubricant. [5] A method for producing a pharmaceutical tablet containing palbociclib as an active ingredient, comprising: preparing a granulation comprising palbociclib, an excipient, and a disintegrant; mixing the granules with glutamic acid or a salt thereof and an excipient; molding the mixture to prepare tablets; A method for producing a pharmaceutical tablet, comprising: [6] A method for producing a pharmaceutical tablet containing palbociclib as an active ingredient, comprising: preparing a granulation containing palbociclib, an excipient, a disintegrant, and glutamic acid or a salt thereof; mixing the granules with an excipient; molding the mixture to prepare tablets; A method for producing a pharmaceutical tablet, comprising: [7] The method for producing a pharmaceutical tablet according to [6], wherein glutamic acid is contained in an amount of 0.5 to 2.0 parts by mass per part by mass of palbociclib. [Effects of the Invention]

[0007] The pharmaceutical tablet of the present invention containing palbociclib and glutamic acid or a salt thereof suppresses the production of related substances, and can provide a pharmaceutical tablet with excellent stability. DETAILED DESCRIPTION OF THE INVENTION

[0008] The present invention relates to a pharmaceutical tablet containing palbociclib, glutamic acid or a salt thereof, and also includes a method for producing the pharmaceutical tablet containing palbociclib, glutamic acid or a salt thereof.

[0009] The pharmaceutical tablet of the present invention contains palbociclib as an active ingredient. Palbociclib has the chemical name 6-acetyl-8-cyclopentyl-5-methyl-2-{[5-(piperazin-1-yl)pyridin-2-yl]amino}pyrido[2,3-d]pyrimidin-7(8H)-one. Palbociclib is a dibasic compound and can form salts with various conjugate acids. The present invention uses palbociclib free base as an active ingredient. It is desirable to use palbociclib as a compound of a quality level suitable for use as an active ingredient in pharmaceuticals. Palbociclib is preferably contained in the pharmaceutical tablet at 10% by mass or more and 45% by mass or less, more preferably 15% by mass or more and 40% by mass or less, and more preferably 15% by mass or more and 34% by mass or less.

[0010] The pharmaceutical tablet of the present invention contains glutamic acid or a salt thereof. Glutamic acid may be used in the form of a free acid or a salt such as a sodium salt, potassium salt, or ammonium salt. Glutamic acid (free acid) is preferably used. The amount of glutamic acid or a salt thereof contained in the pharmaceutical tablet, in terms of the amount equivalent to the free base of glutamic acid, is preferably 5% by mass to 45% by mass, more preferably 5% by mass to 35% by mass, and even more preferably 5% by mass to 30% by mass. Furthermore, because glutamic acid improves the dissolution of palbociclib, it is important to apply it in an amount relative to palbociclib. It is preferable to apply 0.2 to 2.0 parts by mass of glutamic acid (free acid equivalent) per 1 part by mass of palbociclib. Preferably, 0.2 to 1.0 parts by mass of glutamic acid (free acid equivalent), and more preferably 0.3 to 0.8 parts by mass of glutamic acid (free acid equivalent), per 1 part by mass of palbociclib. The particle size of glutamic acid or a salt thereof can be used without any particular limitation. It is preferable to use glutamic acid or a salt thereof having a particle size D[4,3] measured by laser diffraction of 10 to 200 μm. To highly control the dissolution of palbociclib, it is sufficient to use glutamic acid or a salt thereof having a small particle size, preferably a D[4,3] of 10 to 40 μm, more preferably 10 to 30 μm. The particle size of glutamic acid or a salt thereof can be adjusted using an appropriate sieving method or pulverization method.

[0011] The pharmaceutical tablet of the present invention preferably contains an excipient, a disintegrant, and a lubricant. These additives may be appropriately selected from additives commonly used for pharmaceutical tablets.

[0012] Examples of excipients include celluloses such as crystalline cellulose, sugars such as lactose, mannitol, maltose, sucrose, sorbitol, xylitol, and inositol, starches such as corn starch, and inorganic salts such as magnesium aluminometasilicate and anhydrous calcium phosphate. These may be used alone or in combination of two or more. Preferred are crystalline cellulose, lactose, and mannitol, and excipients containing one or more of these. Preferably, crystalline cellulose is used. The excipient content in a pharmaceutical tablet is preferably 40% by mass to 75% by mass, more preferably 45% by mass to 70% by mass. When aiming for a miniaturized tablet, the excipient content may be reduced, preferably 40% by mass to 65% by mass, more preferably 40% by mass to 60% by mass.

[0013] Examples of disintegrants include croscarmellose sodium, carboxymethyl starch sodium, crospovidone, carmellose, carmellose calcium, and low-substituted carboxymethyl starch sodium. These may be used alone or in combination of two or more. Preferred are croscarmellose sodium, carboxymethyl starch sodium, and crospovidone. More preferred is crospovidone. When a disintegrant is used, it is preferably used in an amount of 2% by mass to 12% by mass in the pharmaceutical tablet, more preferably 3% by mass to 10% by mass, and particularly preferably 4% by mass to 7% by mass.

[0014] Examples of lubricants include magnesium stearate, stearic acid, zinc stearate, aluminum stearate, glycerin monostearate, sodium stearyl fumarate, calcium stearate, talc, carnauba wax, etc., and it is preferable to use these alone or in combination of two or more. When a lubricant is used, it is preferably used in an amount of 0.5% by mass to 4% by mass in the pharmaceutical tablet, more preferably 0.5% by mass to 3% by mass, and particularly preferably 1.0% by mass to 3% by mass.

[0015] The pharmaceutical tablet of the present invention may contain other formulation additives such as binders, glidants, solubilizers, stabilizers, and the like. Examples of binders include hydroxypropyl cellulose, hydroxypropyl methylcellulose, povidone, copolyvidone, carmellose sodium, methylcellulose, partially pregelatinized starch, and polyvinyl alcohol, and these may be used alone or in combination of two or more. Preferred are hydroxypropyl cellulose, hydroxypropyl methylcellulose, povidone, copolyvidone, carmellose sodium, and methylcellulose. When a binder is used, it is preferably used in an amount of 0.5% by mass to 10% by mass in the pharmaceutical tablet, and more preferably 0.5% by mass to 5% by mass.

[0016] Examples of the fluidizing agent include silicic anhydride, talc, and hydrous silicon dioxide. When a fluidizing agent is used, it is preferably used in an amount of 0.1% by mass to 10% by mass in the pharmaceutical tablet, and more preferably 0.1% by mass to 5% by mass. Examples of solubilizers include sodium lauryl sulfate, soybean lecithin, refined soybean lecithin, sorbitan fatty acid ester, soybean oil, lauromacrogol, polyoxyethylene-polyoxypropylene-polyoxyethylene block copolymer, and the like. The solubilizer is preferably used in a pharmaceutical tablet in an amount of 0.5% by mass to 5% by mass, more preferably 1.0% by mass to 5% by mass. Examples of stabilizers include dibutylhydroxytoluene, tocopherol, ascorbic acid, sulfites, and the like. The stabilizer is preferably used in an amount of 0.5% by mass to 5% by mass in the pharmaceutical tablet, and more preferably 1.0% by mass to 5% by mass.

[0017] A preferred embodiment of the palbociclib-containing tablet of the present invention is a pharmaceutical tablet containing 10 to 45 parts by mass of palbociclib, 5 to 45 parts by mass of glutamic acid, 40 to 75 parts by mass of an excipient, 4 to 12 parts by mass of a disintegrant, and 0.5 to 4 parts by mass of a lubricant. More preferred are 15 to 40 parts by mass of palbociclib, 5 to 35 parts by mass of glutamic acid, 45 to 70 parts by mass of an excipient, 4 to 10 parts by mass of a disintegrant, and 0.5 to 3 parts by mass of a lubricant. Even more preferred are 15 to 40 parts by mass of palbociclib, 5 to 35 parts by mass of glutamic acid, 45 to 70 parts by mass of an excipient, 4 to 7 parts by mass of a disintegrant, and 1.0 to 3 parts by mass of a lubricant.

[0018] The tablets containing palbociclib of the present invention are in the form of ordinary tablets, orally disintegrating tablets, etc. They may also be film-coated tablets with a coating film containing a suitable coating agent and any suitable plasticizer, light-blocking agent, colorant, etc.

[0019] Examples of coating agents include hydroxypropyl methylcellulose, hydroxypropyl cellulose, polyvinyl alcohol (partially saponified), polyvinyl alcohol-polyethylene glycol-graft copolymer, ethyl acrylate-methyl methacrylate copolymer, polyvinyl alcohol-acrylic acid-methyl methacrylate copolymer, etc. These are preferably used alone or in combination of two or more. Hydroxypropyl methylcellulose, hydroxypropyl cellulose, or polyvinyl alcohol (partially saponified) is preferred, with polyvinyl alcohol (partially saponified) being more preferred. The coating agent is preferably used in an amount of 0.1% by mass to 10% by mass, and more preferably 0.2% by mass to 5% by mass, based on the total weight of the pharmaceutical tablet.

[0020] Examples of plasticizers include triacetin, triethyl citrate, glycerin, propylene glycol, macrogol, polysorbate, D-sorbitol, and liquid paraffin, and these are preferably used alone or in combination of two or more. Triacetin or macrogol is preferred, and examples of macrogol include Macrogol 4000 and Macrogol 6000. When a plasticizer is used, it is preferably used in an amount of 0.01% by mass or more and 2% by mass or less, more preferably 0.02% by mass or more and 2% by mass or less, based on the total weight of the pharmaceutical tablet.

[0021] Examples of light-blocking agents and colorants include titanium oxide, ferric oxide, talc, yellow iron oxide, yellow iron oxide, black iron oxide, zinc oxide, brown iron oxide, food yellow dyes, food blue dyes, food red dyes, etc. Titanium oxide and ferric oxide are preferred. When a light-shielding agent or coloring agent is used, it is preferable to use it in an amount of 0.001% by mass or more and 2% by mass or less, and more preferably 0.002% by mass or more and 2% by mass or less, based on the total amount of the pharmaceutical tablet.

[0022] The pharmaceutical tablet containing palbociclib of the present invention can be produced by the following steps. (Step A) preparing a granulation containing palbociclib, an excipient, and a disintegrant; (Step B) mixing the granules with glutamic acid or a salt thereof and an excipient; (Step C) forming the mixture into tablets; A method for producing a pharmaceutical tablet containing palbociclib as an active ingredient, comprising: Optionally, (Step D) may be added, in which the tablets obtained in Step C are subjected to a coating treatment to prepare film-coated tablets.

[0023] (Step A) is a step of preparing granules by mixing palbociclib, excipients, and a disintegrant, and subjecting the mixture to a mechanical operation such as compression or rolling. This mixture may optionally contain other additives such as a flow agent, a binder, a solubilizer, and a lubricant. Palbociclib is mixed with formulation additives, and then the mixture containing the active ingredient and various additives adheres to itself to form a granular product having a consistent particle size. The granulation process may be dry or wet granulation. Dry granulation is a granulation method in which water is not added during granulation. Wet granulation is a process in which an appropriate amount of an aqueous medium, such as water, an organic solvent (e.g., ethanol, methanol), or a mixture thereof, is added to the mixture, and mechanical pressure, such as a mixing process, is applied to cause the mixture to adhere to itself and granulate into a granular product. Examples of granulation processes include compression granulation, melt granulation, roller compactor granulation, tumbling granulation, fluidized bed granulation, agitation granulation, and extrusion granulation. The granulation process of the present invention can be appropriately selected from these methods to prepare the granules.

[0024] (Step B) is a step of mixing the granules prepared in (Step A) with glutamic acid or a salt thereof and an excipient. At this time, other additives such as a disintegrant, a flow agent, a solubilizer, a lubricant, etc. may be added. Specifically, an embodiment may include adding a lubricant together with glutamic acid or a salt thereof and an excipient. Another embodiment may include adding a disintegrant and a lubricant together with glutamic acid or a salt thereof and an excipient.

[0025] (Step C) is a step of preparing tablets by molding the mixture prepared in (Step B). Methods for molding the pharmaceutical tablets include rotary tableting and single-shot tableting, and pharmaceutical tablets are prepared by molding using these methods.

[0026] The resulting tablets may optionally be subjected to a coating treatment (Step D) to prepare film-coated tablets. When coating is performed, the film-coated portion, which is the exterior of the pharmaceutical tablet, can be film-coated by dissolving any additives used in the coating agent in a water-soluble solvent containing water or an organic solvent that can be mixed with water in any ratio, pouring or spraying the solution into a coating pan containing the uncoated tablets, which are the interior of the tablet, and then blowing hot air onto the tablet surface to remove the solvent from the tablet surface and dry it. The drying step is preferably performed at room temperature to about 80°C. Drying may also be performed under reduced pressure to volatilize the aqueous solvent.

[0027] Another example of a manufacturing method for pharmaceutical tablets is the following process. (Step A2) preparing a granulation containing palbociclib, an excipient, a disintegrant, and glutamic acid or a salt thereof; (Step B2) mixing the granules with an excipient; (Step C2) forming the mixture into tablets; A method for producing a pharmaceutical tablet containing palbociclib as an active ingredient, comprising: Optionally, (Step D2) a step of preparing film-coated tablets by coating the tablets obtained in Step C2 may be added. The above alternative method relates to a pharmaceutical tablet in which glutamic acid or a salt thereof is a constituent component of the granulation product prepared in the above (Step A). ​​By granulating the glutamic acid component together with palbociclib, the dissolution of palbociclib can be controlled to increase. Furthermore, this is a preferred embodiment because it ensures uniformity of dissolution and ensures the quality of the pharmaceutical tablet.

[0028] (Step A2) is a step of preparing a granulated product by adding glutamic acid or a salt thereof to (Step A). ​​The granulation step is the same as described above.

[0029] (Step B2) is a step of mixing the granules prepared in (Step A2) with an excipient. At this time, other additives such as a disintegrant, a flow agent, a solubilizer, a lubricant, etc. may be added. Specifically, an embodiment in which a lubricant is added together with the excipient may be mentioned. Another embodiment in which a disintegrant and a lubricant are added together with the excipient may be mentioned.

[0030] Then, (Step C2) and optional (Step D2) are the same operations as the above (Step C) and (Step D).

[0031] The pharmaceutical tablet of the present invention has formulation properties that ensure dissolution in the neutral range of pH 5.5 or higher. For example, in a dissolution test according to Method 2 (paddle method) of the Pharmacopoeia Dissolution Test, using 900 mL of water as the test solution, the dissolution rate of the active ingredient of the tablet of the present invention is 50 to 70% at 15 minutes from the start of the test, and 55 to 80% at 30 minutes. Therefore, dissolution in the neutral range can be ensured for pharmaceutical tablets of palbociclib, whose solubility is pH-dependent. [Example]

[0032] The present invention will be described in more detail below with reference to Production Examples and Examples. In the following Examples, % represents % by mass unless otherwise specified.

[0033] [Manufacturing Example 1] The following procedure was used to prepare stability test compositions: 200 mg of palbociclib was mixed with 200 mg of various water-soluble acids to prepare stability test compositions. The water-soluble acids used in the test compositions are listed in Table 1.

[0034] [Table 1] TIFF2025182687000001.tif4576

[0035] [Test Example 1] The stability test compositions of Preparation Example 1 were each placed in an amber vial, sealed, and allowed to stand at 60°C and 40°C for 28 days. The amount of total related substances of palbociclib in each test composition before and after standing was measured by the measurement method shown below.

[0036] <Method for measuring the amount of total related substances> (Preparation of sample solution for HPLC) 200 mL of acetonitrile was added to 800 mL of water and mixed well, and then 1 mL of trifluoroacetic acid was added to prepare a solvent. 40 mg of the stability test composition was placed in a 20 mL measuring flask and dissolved in the prepared solvent to make exactly 20 mL, which was used as the sample solution.

[0037] (Measurement of total related substances by HPLC) The total related substances were measured by HPLC under the conditions shown below. Column: X-Bridge BEH C18, 3.5 μm, 4.6 mm x 150 mm Column temperature: 30℃ Mobile phase A: Dissolve 1.36 g of potassium dihydrogen phosphate in 1000 mL of water, add 1 mL of triethylamine, and then add phosphoric acid to adjust the pH to 4.7. Add 100 mL of acetonitrile to 900 mL of this solution. Mobile phase B: Acetonitrile ·Flow rate: 1.0mL / min ·Measurement wavelength: 254nm The gradients of mobile phases A and B used in the above HPLC measurements are shown in Table 2.

[0038] [Table 2] TIFF2025182687000002.tif35113

[0039] The measurement results of the total amount of related substances of palbociclib are shown in Table 3. In Table 3, "Initial" refers to the test results of the stability test composition before storage under the above conditions. "60°C / 28 days" and "40°C / 28 days" refer to the test results of the test composition after storage under the above conditions. The total amount of related substances (%) at "Initial," "60°C / 28 days," and "40°C / 28 days" is the percentage when the amount of drug substance is taken as 100%. "Increase (%)" refers to the value obtained by subtracting the total amount of related substances (%) at the initial time from the total amount of related substances (%) at 60°C / 28 days or 40°C / 28 days.

[0040] [Table 3] TIFF2025182687000003.tif64137

[0041] As shown in Table 3, the composition using tartaric acid and glutamic acid was found to have a significant inhibitory effect on the increase of related substances compared to the composition using succinic acid, which is used in commercially available palbociclib formulations.

[0042] [Example 1 and Comparative Examples 1 and 2] The tablets of Example 1 and Comparative Examples 1 and 2 were formed using the following procedure. Microcrystalline cellulose, light anhydrous silicic acid, intragranular crospovidone, and palbociclib were blended and passed through a Comill for homogenization. Next, intragranular magnesium stearate was blended. The mixture was then dry granulated using a roller compactor and a speed mill to prepare granules. The granules were mixed with sieved water-soluble acid, microcrystalline cellulose, and extragranular crospovidone. Then, extragranular magnesium stearate was mixed in as a tableting lubricant. The mixture was formed into tablets using a rotary tablet press with pre-compression. The final composition per tablet is shown in Table 4.

[0043] [Table 4] TIFF2025182687000004.tif109114

[0044] [Test Example 2] The tablets of Example 1 and Comparative Examples 1 and 2 were each placed in an amber vial, sealed, and left to stand for 14 days at 60°C. The amount of total related substances of palbociclib in each formulation before and after standing was measured by the measurement method shown below.

[0045] <Method for measuring the amount of total related substances> (Preparation of sample solution for HPLC) 1.36 g of potassium dihydrogen phosphate was dissolved in 1000 mL of water, and 2 mL of triethylamine was added. After that, phosphoric acid was added to adjust the pH to 2.2, and 700 mL of the solution was mixed with 300 mL of a 4:1 acetonitrile / methanol mixture to prepare a solvent.

[0046] One test tablet was taken, 40 mL of the prepared solvent was added, and the tablet was dispersed by ultrasonic treatment, followed by the addition of the prepared solvent to make exactly 50 mL. This solution was filtered through a membrane filter with a pore size of 0.45 μm or less, and the first filtrate (5 mL or more) was removed, and the next filtrate was used as the sample solution.

[0047] (Measurement of total related substances by HPLC) The total related substances were measured by HPLC under the conditions shown below. Column: InertSustain C18, 3.0 μm, 4.6 mm x 150 mm Column temperature: 40℃ Mobile phase A: Dissolve 1.36 g of potassium dihydrogen phosphate in 1000 mL of water, add 2 mL of triethylamine, and then add phosphoric acid to adjust the pH to 2.2. Mobile phase B: Acetonitrile / methanol mixture (4:1) Flow rate: Adjust so that the retention time of palbociclib is approximately 7 minutes. ·Measurement wavelength: 290nm The gradients of mobile phases A and B used in the above HPLC measurements are shown in Table 5.

[0048] [Table 5] TIFF2025182687000005.tif35113

[0049] Table 6 shows the measurement results of the total amount of related substances of palbociclib in the tablets of Example 1 and Comparative Examples 1 and 2. In Table 6, "Initial" refers to the test result of the formulation before standing under the above conditions. "60°C / 14 days" refers to the test result of the test composition after standing under the above conditions. The total amount of related substances (%) at "Initial" and "60°C / 14 days" is the percentage when the amount of the drug substance is taken as 100%. "Increase (%)" refers to the value obtained by subtracting the total amount of related substances (%) at the initial time from the total amount of related substances (%) at 60°C / 14 days.

[0050] [Table 6] TIFF2025182687000006.tif32114

[0051] As shown in Table 6, it was found that the formulation using glutamic acid showed a significant inhibitory effect on the increase of related substances compared to the formulation using succinic acid, which is used in commercially available palbociclib formulations.

[0052] [Test Example 3] The dissolution rates of the tablets of Example 1 and Comparative Examples 1 and 2 were evaluated by the Japanese Pharmacopoeia Dissolution Test Method 2 (paddle method) using water as a test liquid. The detailed conditions for the dissolution test were set as follows: Dissolution tester: NTR-6400A, manufactured by Toyama Sangyo Co., Ltd. Test volume: 900 mL Test liquid temperature: 37±0.5℃ Paddle rotation speed: 50 rpm

[0053] The dissolution rate was measured by the following method. <Method for measuring dissolution rate> (Preparation of sample solution for HPLC) 1.36 g of potassium dihydrogen phosphate was dissolved in water to make 1000 mL, and 2 mL of triethylamine was added. After that, 700 mL of the solution was adjusted to pH 4.0 by adding diluted phosphoric acid (10-fold dilution), and this solution was mixed with 300 mL of acetonitrile to prepare the solvent.

[0054] At each sampling time, the solution was filtered through a membrane filter with a pore size of 0.45 μm or less, and 2 mL of the filtrate was accurately measured, to which 2 mL of the preparation solvent was added to prepare a sample solution.

[0055] (Measurement of dissolution rate by HPLC) The dissolution rate was measured by HPLC under the following conditions. Column: InertSustain C18, 3.0 μm, 4.6 mm x 150 mm Column temperature: 40℃ Mobile phase A: Dissolve 1.36 g of potassium dihydrogen phosphate in water to make 1000 mL, add 2 mL of triethylamine, and then add diluted phosphoric acid (10 times diluted) to adjust the pH to 4.0. Mobile phase B: Acetonitrile Mobile phase flow: Mobile phase A: Mobile phase B = 72.5:27.5 ·Flow rate: 1.0mL / min ·Measurement wavelength: 290nm

[0056] The measurement results of the dissolution rates of the tablets of Example 1 and Comparative Examples 1 and 2 are shown in Table 7.

[0057] [Table 7] TIFF2025182687000007.tif25170

[0058] As shown in Table 7, it was confirmed that Example 1, which used glutamic acid, can ensure dissolution in the neutral range in pharmaceutical tablets of palbociclib, whose solubility is pH-dependent.

[0059] As described above, it was demonstrated that a formulation containing glutamic acid is effective in ensuring the dissolution of palbociclib, which exhibits pH-dependent solubility, while also ensuring storage stability in tablets.

[0060] [Example 2] Microcrystalline cellulose, light anhydrous silicic acid, intragranular crospovidone, and palbociclib were blended and passed through a Comill for homogenization. Next, intragranular magnesium stearate was blended. The mixture was then dry granulated using a roller compactor and a speed mill to prepare granules. Sieved glutamic acid, microcrystalline cellulose, extragranular crospovidone and light anhydrous silicic acid were mixed with the granules. Then, extragranular magnesium stearate was mixed in as a tableting lubricant. This mixture was formed into tablets using a rotary tablet press with pre-compression. The final composition per tablet is shown in Table 8.

[0061] [Example 3] Sieved glutamic acid, microcrystalline cellulose, light anhydrous silicic acid, intragranular crospovidone, and palbociclib were mixed and passed through a Comill for homogenization. Next, intragranular magnesium stearate was mixed. The mixture was then dry granulated using a roller compactor and a speed mill to prepare granules. Microcrystalline cellulose, extragranular crospovidone and light anhydrous silicic acid were mixed into the granules. Then, extragranular magnesium stearate was mixed in as a tableting lubricant. This mixture was formed into tablets using a rotary tablet press with pre-compression. The final composition per tablet is shown in Table 8.

[0062] [Example 4] Glutamic acid was ground using a pin mill. The above-mentioned milled glutamic acid, microcrystalline cellulose, light anhydrous silicic acid, intragranular crospovidone, and palbociclib were mixed and passed through a Comill for homogenization. Next, intragranular magnesium stearate was mixed. The mixture was then dry granulated using a roller compactor and a speed mill to prepare granules. Microcrystalline cellulose, extragranular crospovidone and light anhydrous silicic acid were mixed into the granules. Then, extragranular magnesium stearate was mixed in as a tableting lubricant. This mixture was formed into tablets using a rotary tablet press with pre-compression. The final composition per tablet is shown in Table 8.

[0063] [Table 8] TIFF2025182687000008.tif115114

[0064] The particle size of the glutamic acid used in Examples 2 to 4 was measured by laser diffraction technology. The detailed measurement conditions were set as follows: Particle size analyzer: Mastersizer 3000, manufactured by Marvern Particle refractive index: 1.520 Particle absorption rate: 0.010 Dispersion liquid: Ethanol Light scattering model: Mie theory Analysis model: General purpose The measurement results of the particle size of glutamic acid are shown in Table 9.

[0065] [Table 9] TIFF2025182687000009.tif23119

[0066] [Test Example 4] The test liquid was changed to the second dissolution test liquid (pH 6.8), and the dissolution rate was evaluated in the same manner as in Test Example 3. The measurement results of the dissolution rates of the tablets of Examples 2 to 4 are shown in Table 10.

[0067] [Table 10] TIFF2025182687000010.tif25170

[0068] As shown in Table 10, it was confirmed that Example 3, in which glutamic acid was used as an intragranular component, showed superior dissolution in the neutral range in pharmaceutical tablets of palbociclib, whose solubility is pH-dependent, compared to Example 2, in which glutamic acid was used as an extragranular component. Furthermore, it was confirmed that Example 4, in which the intragranular glutamic acid was pulverized to make the particles finer, showed superior dissolution properties.

[0069] [Example 5] Microcrystalline cellulose, light anhydrous silicic acid, intragranular crospovidone, and palbociclib were blended and passed through a Comil for homogenization. Next, intragranular magnesium stearate was blended. The blend was then dry granulated using a roller compactor and an oscillator to prepare granules. The granules were mixed with glutamic acid, microcrystalline cellulose, and extragranular crospovidone, which had been milled using a pin mill. Then, extragranular magnesium stearate was mixed in as a tableting lubricant. This mixture was formed into tablets using a rotary tablet press with pre-compression. The final composition per tablet is shown in Table 11.

[0070] [Example 6] The crushed glutamic acid, microcrystalline cellulose, light anhydrous silicic acid, intragranular crospovidone, and palbociclib were mixed using a pin pill and passed through a Comil for homogenization. Next, intragranular magnesium stearate was mixed. The mixture was then dry granulated using a roller compactor and an oscillator to prepare granules. Microcrystalline cellulose and extragranular crospovidone were mixed into the granules. Then, extragranular magnesium stearate was mixed in as a tableting lubricant. This mixture was formed into tablets using a rotary tablet press with pre-compression. The final composition per tablet is shown in Table 11.

[0071] [Table 11] TIFF2025182687000011.tif10292

[0072] [Test Example 5] The test liquid was changed to a diluted McIlvine aqueous solution (pH 4.0), and the dissolution rate was evaluated in the same manner as in Test Example 3. The tablets of Examples 5 and 6 were tested at n=6, and the variation in dissolution rate in each formulation example was evaluated using the standard deviation. The measurement results of the dissolution rates of the tablets of Examples 5 and 6 are shown in Table 12, and the standard deviations are shown in Table 13.

[0073] [Table 12] TIFF2025182687000012.tif20139

[0074] [Table 13] TIFF2025182687000013.tif20139

[0075] As shown in Table 13, it was confirmed that Example 6, in which glutamic acid was used as an intragranular component, had a smaller standard deviation than Example 5, in which glutamic acid was used as an extragranular component.

Claims

1. A pharmaceutical tablet containing palbociclib, glutamic acid or a salt thereof.

2. The pharmaceutical tablet according to claim 1 , comprising a granulation comprising palbociclib, an excipient, a disintegrant, and glutamic acid or a salt thereof.

3. The pharmaceutical tablet according to claim 1 or 2, wherein the content of glutamic acid is 0.2 to 2.0 parts by mass per part by mass of palbociclib.

4. 3. The pharmaceutical tablet according to claim 1 or 2, comprising 10 to 45 parts by weight of palbociclib, 5 to 45 parts by weight of glutamic acid, 40 to 75 parts by weight of an excipient, 4 to 12 parts by weight of a disintegrant, and 0.5 to 4 parts by weight of a lubricant.

5. A method for producing a pharmaceutical tablet containing palbociclib as an active ingredient, comprising: preparing a granulation comprising palbociclib, an excipient, and a disintegrant; mixing the granules with glutamic acid or a salt thereof and an excipient; molding the mixture to prepare tablets; A method for producing a pharmaceutical tablet, comprising:

6. A method for producing a pharmaceutical tablet containing palbociclib as an active ingredient, comprising: preparing a granulation containing palbociclib, an excipient, a disintegrant, and glutamic acid or a salt thereof; mixing the granules with an excipient; molding the mixture to prepare tablets; A method for producing a pharmaceutical tablet, comprising:

7. The method for producing a pharmaceutical tablet according to claim 5 or 6, wherein glutamic acid is contained in an amount of 0.5 to 2.0 parts by mass per part by mass of palbociclib.

Citation Information

Patent Citations

  • Solid dosage form of palbociclib

    JP2017002034A

  • Pharmaceutical formulation containing a cyclin inhibitor and method for producing the same

    JP2017532347A

  • Solid preparation, method for producing solid preparation, and method for stabilizing solid preparation

    JP2023152768A