Crystal Form of Tolebrutinib, Preparation Method Therefor and Use Thereof
The present invention relates to a new crystal form of tolebrutinib (hereinafter referred to as “compound I”), a preparation method therefor, a pharmaceutical composition containing the crystal form, and the use of same in the preparation of a BTK inhibitor drug and a drug for treating multiple sclerosis. The crystal form of tolebrutinib provided has one or more improved properties compared with the prior art, and is of great value to the optimization and development of drugs in the future.
1 . A crystalline form of Compound I, wherein the X-ray powder diffraction pattern comprises characteristic peaks at 2theta values of 4.1°±0.2°, 10.2°±0.2° and 22.6°±0.2° using CuKα radiation.
2 . The crystalline form of Compound I according to claim 1 , wherein the X-ray powder diffraction pattern comprises at least one characteristic peak at 2theta values of 11.3°±0.2°, 16.5°±0.2° and 17.8°±0.2° using CuKα radiation.
3 . The crystalline form of Compound I according to claim 1 , wherein the X-ray powder diffraction pattern comprises at least one characteristic peak at 2theta values of 8.2°±0.2°, 10.8°±0.2° and 24.7°±0.2° using CuKα radiation.
4 . The crystalline form of Compound I according to claim 2 , wherein the X-ray powder diffraction pattern comprises at least one characteristic peak at 2theta values of 8.2°±0.2°, 10.8°±0.2° and 24.7°±0.2° using CuKα radiation.
5 . The crystalline form of Compound I according to claim 1 , wherein the X-ray powder diffraction pattern is substantially as depicted in FIG. 1 using CuKα radiation.
6 . A process for preparing crystalline form according to claim 1 , wherein the process comprises: adding the solid of Compound I into an alchol solvent to form a suspension, stirring, and separating to obtain a solid, high temperature vaccum drying the solid to obtain the crystalline form.
7 . The process according to claim 6 , wherein said alcohol solvent is an alcohol of C1-C4, and a temperature of stirring is 0-50° C.
8 . A crystalline form of Compound I, wherein the X-ray powder diffraction pattern comprises characteristic peaks at 2theta values of 4.2°±0.2°, 11.1°±0.2° and 21.7°±0.2° using CuKα radiation.
9 . The crystalline form of Compound I according to claim 8 , wherein the X-ray powder diffraction pattern comprises at least one characteristic peak at 2theta values of 20.6°±0.2°, 21.0°±0.2° and 22.2°±0.2° using CuKα radiation.
10 . The crystalline form of Compound I according to claim 8 , wherein the X-ray powder diffraction pattern comprises at least one characteristic peak at 2theta values of 10.4°±0.2°, 17.7°±0.2° and 23.1°±0.2° using CuKα radiation.
11 . The crystalline form of Compound I according to claim 9 , wherein the X-ray powder diffraction pattern comprises at least one characteristic peak at 2theta values of 10.4°±0.2°, 17.7°±0.2° and 23.1°±0.2° using CuKα radiation.
12 . The crystalline form of Compound I according to claim 8 , wherein the X-ray powder diffraction pattern is substantially as depicted in FIG. 6 using CuKα radiation.
13 . A process for preparing crystalline form according to claim 8 , wherein the process comprises: adding the solid of Compound I into acetone to form a suspension, then stirring to obtain the crystalline form.
14 . The process according to claim 13 , wherein a temperature of stirring is 0-50° C.
15 . A crystalline form of Compound I, wherein the X-ray powder diffraction pattern comprises characteristic peaks at 2theta values of 8.5°±0.2°, 18.6°±0.2° and 22.0°±0.2° using CuKα radiation.
16 . The crystalline form of Compound I according to claim 15 , wherein the X-ray powder diffraction pattern comprises at least one characteristic peak at 2theta values of 12.9°±0.2°, 19.1°±0.2° and 23.3°±0.2° using CuKα radiation.
17 . The crystalline form of Compound I according to claim 15 , wherein the X-ray powder diffraction pattern comprises at least one characteristic peak at 2theta values of 13.2°±0.2°, 13.8°±0.2° and 21.1°±0.2° using CuKα radiation.
18 . The crystalline form of Compound I according to claim 16 , wherein the X-ray powder diffraction pattern comprises at least one characteristic peak at 2theta values of 13.2°±0.2°, 13.8°±0.2° and 21.1°±0.2° using CuKα radiation.
19 . The crystalline form of Compound I according to claim 15 , wherein the X-ray powder diffraction pattern is substantially as depicted in FIG. 11 using CuKα radiation.
20 . A process for preparing crystalline form according to claim 15 , wherein the process comprises: adding the solid of Compound I into an ether solvent or an aromatic hydrocarbon solvent to form a suspension, stirring at −20° C.-5° C. to obtain the crystalline form.
21 . The process according to claim 20 , wherein said ether solvent is an ether of C5, and aromatic hydrocarbon solvent is an aromatic hydrocarbon solvent of C9, the temperature of said stirring is −20° C.
22 . A pharmaceutical composition, wherein said pharmaceutical composition comprises a therapeutically effective amount of the crystalline form according to claim 1 , or the crystalline form according to claim 8 , or the crystalline form according to claim 15 , or any mixture of any two of the crystalline forms, or any mixture of the three crystalline forms; and pharmaceutically acceptable excipients.
23 . Use of the crystalline form according to claim 1 , or the crystalline form according to claim 8 , or the crystalline form according to claim 15 , or any mixture of any two of the crystalline forms, or any mixture of the three crystalline forms for the preparation of a BTK inhibitor drug.
24 . Use of the crystalline form according to claim 1 , or the crystalline form according to claim 8 , or the crystalline form according to claim 15 , or any mixture of any two of the crystalline forms, or any mixture of the three crystalline forms for the preparation of a drug for the treatment of multiple sclerosis.