Title of Invention

"A PROCESS FOR THE PREPARATION OF THE HYDROCHLORIDE ETHANOL SOLVATE FORM OF(-)- CIS-2-(2-CHLOROPHENYL)-5, 7-DIHYDROXY-8 [4R-(3S-HYDROXY-1-METHYL]PIPERIDINYL]4H- 1-BENZOPYRAN-4-ONE (FORM II)"

Abstract An ethanol solvate form of (-)-cis-2-(2-chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1-methyl)piperidinyl]-4H-1-benzopyran-4-one (Form II), a method of making Form II and a composition comprising Form II.
Full Text Ethanol Solvate of (-)-cis-2-(2-chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1-methyl)piperidinyl]-4H-1-benzopyran-4-one
BACKGROUND OF THE INVENTION
The compound (-)-cis-2-(2-chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1-methyl)piperidinyI]-4H-1-benzopyran-4-one or one of its pharmaceuticaliy acceptable salt forms (known as "Flavopiridol") is an immunomodulator and antiinflammatory agent (U. S. Patent no. 4,900,727), and inhibitor of oncogene-encoded kinases or growth factor receptor tyrosine kinases (US Patent no. 5,284,856). Flavopiridol is a strong inhibitor of cyclin dependent kinases (CDKs) including CDK1, CDK2, CDK4, CDK6 and CDK7, (cdkl/clyclin B; cdk2/cyclin A; cdk2/cyclin E; cdk4/cyclinD; cdk6/cyclinD; cdk7/cyclin H) with the potential to cause inhibition of cell cycle progression in Gi and G2 by multiple mechanisms relatable to cdk inhibition. See International Journal of Oncology 9:1143-1168 (1996). Also, Flavopiridol has been shown to inhibit the EGF receptor family, the receptor associated SRC family kinases, and signal transducing kinases. In vitro and in vivo experiments have shown that Flavopiridol is able to inhibit a broad type range of human tumors, leukemias and lymphomas.
(-)-cis-2-(2-chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1-methyl)piperidinyl]-4H-1-benzopyran-4-one or a pharmaceuticaliy acceptable salt thereof crystallizes into numerous solvates with solvents such as ethanol, DMSO, methanol, acetonitrile/isopropanol, ethanol/isopropanol, and isopropanol and solvate hydrates such as ethanol/ and isopropanol/water combinations. The superior solvate form is the Flavopiridol hydrochloride ethanol solvate form (hereafter "Form II").
The use of ethanol over the other solvents used to produce solvates presents advantages of less toxictty (e.g., methanol, isopropanol solvates).
A subject of the instant invention is Form II of (-)-cis-2-(2-chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1 -methyl)piperidinyl]-4H-1 -benzopyran-4-one, this means the solvate of ethanol with (-}-cis-2-(2-chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1-methy!)piperidinyl]-4H-1-benzopyran-4-one hydrochloride. Said Form II can be described by x-ray powder diffraction in the following , obtained using Cu K-alpha radiation:

Form II can be used as a pharmaceutical, optionally together with pharmaceutically acceptable carriers and/or excipients. Furthermore, it can be used for the production of other polymorphs or pseudopolymorphs of (-)-cis-2-(2-chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1-methyl)piperidinyI]-4H-1-benzopyran-4-one.
Form II is hygroscopic. It can be used in water free form or in a form with a certain water content. The use in a form, which is essentially free from water is preferred.
Another subject of the instant invention is a process for the production of Form II of (-)-cis-2-(2-chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1 -methyl)piperidinyl]-4H-1-benzopyran-4-one-Steps of the production process of Form II of (-)-cis-2-(2-
chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1-methyl)piperidinyl]-4H-1-benzopyran-4-one are
a) dissolving a sufficient amount of (-)-cis-2-(2-chlorophenyl)-5,7-dihydroxy-
8[4R-(3S-hydroxy-1-methyl)piperidinyl]-4H-1-benzopyran-4-one hydrochloride in a
sufficient amount of ethanol thus forming a mixture,
b) heating the mixture to about 50 to about 80" C;
c) optionally filtering off undissolved material from the mixture thus forming a
solution
d) concentrating the solution until about 50 to about 90% of the volatiles are
removed,
e) cooling the solution, for example, to about 0 to 10° C and optionally
isolating (-)-cis-2-(2-chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1-
methyl)piperidinyl]-4H-1-benzopyran-4-one hydrochloride crystals thus obtained; and
f) optionally drying the crystals.
A "sufficient amount" of (-)-cis-2-(2-chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1-methyl)piperidinyl]-4H-1-benzopyran-4-one hydrochloride is that amount sufficient to be dissolved and heated according to the steps of the invention to form enough crystals to be recovered. Likewise, a "sufficient amount" of ethanol is that amount sufficient to dissolve at least a portion of the (-)-cis-2-(2-chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1 -methyl)piperidinyl]-4H-1 -benzopyran-4-one hydrochloride added thereto in order to dissolve a portion thereof. These amounts can be experimentally determined.
The "volatiles" are those agents which may be evaporated during heating such as ethanol and/or water.
The present invention also includes a pharmaceutical composition comprising a therapeutically effective amount of Form II and a pharmaceutically acceptable carrier.
A "pharmaceutically acceptable carrier" is an agent which is non-toxic, does not interfere with the therapeutic profile of Form I! and is appropriate to the method of administration. Form II is preferably administered by the intravenous route over an appropriate period of time for cancer chemotherapy. Preferably, Form II is mixed with one or more pharmaceutically acceptable carriers. For example, Form II may be mixed with iso-ismotic and pH controlled liquids such as water, dextrose/water or saline/water for injection intravenously into the patient.
A "therapeutically effective amount" of Form II and will vary with the individual, concomitant therapy, the disease, and other variable factors. Typically, this amount will be about 0.001mg/kg to 100 mg/kg per day.
Form II is useful as a protein kinase inhibitor and 'cyclin dependent kinase inhibitor, and is useful in the treatment for various forms of cancer.
SYNTHESIS
In step a) of the said production process one part of (-)-cis-2-(2-chlorophenyl>-5,7-dihydroxy-8[4R-(3S-hydroxy-1-methyl)piperidinyl]-4H-1-benzopyran-4-oneis dissolved in 10 to 30, preferably 15 to 25 in particular 19 to 21 parts of ethanol. Preferably, ethanol which is essentially free from water is used. (-)-cis-2-(2-Chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1-methyl)piperidinyI]-4H-1-benzopyran-4-one can be obtained as disclosed in US 5,284,856; preferably, (-)-cis-2-(2-chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1-methyl)piperidinyl]-4H-1-benzopyran-4-one is produced as outlined in Example 1 below.
The heating of the obtained mixture is carried out for preferably about one hour to 50 to 80, preferably 60 to 80, and in particular 70 to 79 °C. If solid substance is observed in the solution, it can be filtered off, preferably while the solution is still hot.
The obtained solution is concentrated by methods known to a person skilled in the art, preferably by distillation under atmospheric or under reduced pressure. Concentration is carried out until 50 to 90 %, preferably 55 to 85 %, in particular 60 to 80 % of the volatiles have been removed.
The remaining suspension is subsequently cooled, preferably to about 0 to 10 °C and the obtained crystals are removed from the suspension, preferably by filtration.
The obtained crystals can be dried, preferably under reduced pressure.
EXAMPLE 1
Synthesis of Form II
A reactor is charged under nitrogen atmosphere with (-)-cis-1-methyl-4R-(2,4,6-trimethoxyphenyl)-3S-piperidinol) and acetic anhydride. Boron trifluoride etherate is added at a constant rate while stirring and cooling the resulting solution to 8-20°C. After the addition is complete the resulting mixture is stirred at 20-30°C for 3-5 hours. The reaction mixture is cooled to 8-12°C and ice-water is added while stirring followed by addition of aqueous sodium hydroxide until pH 10-11 is attained. The mixture is extracted with ethyl acetate. The ethyl acetate extracts are pooled and concentrated under vacuum. The residue is taken up in methanol and water. Then sodium hydroxide (about 50% aqueous solution) is added. The reaction mixture is stirred at 20-30°C for 2-3 hours. The mixture is evaporated under reduced pressure at ((-)-cis-1-methyl-4-(3-acetyl-4,6-dimethbxy-2-hydroxy)phenyl-3-piperidinol) is then added portionwise to a stirred suspension of potassium tert. butoxide in dry N.N-dimethylforamide at such a rate that the temperature does not exceed 20°C. After the addition is complete the resulting mixture is stirred for one hour at Methyl 2-chlorobenzoate is added at such a rate, that the temperature does not exceed 30°C. the resulting mixture is stirred at 20-30°C for 4-6 hours. Demineraiized water is added, followed by concentrated hydrochloric acid until the pH of the mixture reaches 6-8. The mixture is extracted two times using chloroform. The chloroform extracts are pooled together and concentrated under reduced pressure.
After cooling the remaining oil to To(-)-cis-2-(2-ChlorophenyI)-5,7-dimethoxy-8-[4R-(3S-hydroxy-1-methyI)-piperidinyl]-4H-1-benzopyran-4-one, quinoline and pyridine hydrochloride are added. The resulting mixture is heated to 160-190°C while stirring. Stirring is continued while maintaining the temperature at 160-190°C for 2 hours. After cooling the reaction mixture to 90-110°C water is added. The resulting mixture is basified to pH 7.5-8.5 using saturated sodium carbonate solution. A mixture of ethanol twice with a mixture of ethanol and chloroform. The combined extracts are evaporated to dryness to obtain (+)-cis-2-(2-chloropheny)-5,7-dihydroxy-8-[4R-(3S-hydroxy-1-methyl)piperidinyl]-4H-1-benzopyran-4-one crude as a brown gum, which is purified as follows.
To (+)-cis-2-(2-chloropheny)-5,7-dihydroxy-8-[4R-(3S-hydroxy-1-methyl)piperidinyl]-4H-1-benzopyran-4-one crude, acetone is added. The resulting mixture is stirred at 55-60°C for 30-60 minute, then cooled to 15-20°C and stirred for another 1-2 hours. The precipitated solid is isolated by filtration, washed twice with acetone and dried under reduced pressure to give (+)-cis-2-(2-chloropheny)-5,7-

dihydroxy-8-[4R-(3S-hydroxy-1-methyl)piperidinyl]-4H-1-benzopyran-4-one in a purified form.
The free base from the previous step is suspended in ethanol and acidified using concentrated hydrochloric acid at such a rate that the temperature does not exceed 30°C. During this process initially all of the solid dissolves and then the hydrochloride precipitates. The suspension is cooled to 0-10°C and stirred for 1 hour while maintaining the temperature. The crystals are isolated by filtration and washed with cold ethanol to yield (-)-cis-2-(2-chloropheyl)-5,7-dihydroxy-8-[4R-(3S-hydroxy-1-methyl)piperidinyI]-4-H-1-benzopyran-4-one hydrochloride, crude.
To (-)-cts-2-(2-chloropheyl)-5,7-dihydroxy-8-[4R-(3S-hydroxy-1 -methyl)piperidinyf]-4-H-1-benzopyran-4-one hydrochloride, crude, ethanol is added. The resulting mixture is heated to 70-79°C, stirred for 1 hour while maintaining the temperature and then filtered while still hot. The filter is rinsed with hot ethanol. The filtrate is concentrated by atmospheric distillation, until about 50% to about 90% of the volatiles have been removed. The remaining suspension is then cooled to 0-10°C while isolated by filtration and dried under reduced pressure to give the ethano! solvate of (-)-cis-2-(2-chloropheyl)-5,7-dihydroxy-8-[4R-(3S-hydroxy-1 -methyl)piperidinyl]-4-H-1-benzopyran-4-one hydrochloride, purified as a yellow solid.
Flavopiridol is useful in treating a number of conditions or diseases that benefit from inhibition of protein kinases, and more particularly cyclin dependent kinases as previously described herein. Flavopiridol is expected to be useful in treating a broad range of cancers including, for example, leukemia, mesothelioma and cancers of the lung (large cell, small, cell and non-small cell), colorectal, breast, ovarian, prostate melanoma, renal, uterine body and central nervous system.
All articles and patents cited herein are hereby incorporated herein by reference.

What is claimed is:
1. Form II of (-)-cis-2-(2-chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1-methyl)piperidinyl]-4H-1-benzopyran-4-one.
2. Form II of (-)-cis-2-(2-chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1-methyl)piperidinyl]-4H-1-benzopyran-4-one, wherein Form II is characterized by the following x-ray powder diffraction pattern, obtained using Cu K-alpha radiation:
D Space- A
12.763
6.389
3.194
13.244
4.259.
3. Form II of (-)-cis-2-(2-chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1-methy[)piperidinyl]-4H-1-benzopyran-4-one, wherein Form II is characterized by the following x-ray powder diffraction pattern, obtained using Cu K-alpha radiation:

4. Form II of (-)-cis-2-(2-chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1 -methyl)piperidinyl]-4H-1-benzopyran-4-one, wherein Form II is characterized by the following x-ray powder diffraction pattern, obtained using Cu K-alpha radiation:

5. A process for the preparation of Form II of (-)-cis'-2-(2-chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1-methyl)piperidinyl]-4H-1-benzopyran-4-one, comprising the following steps:
a) dissolving a sufficient amount of (-)-cis-2-(2-chlorophenyl)-5,7-dihydroxy-
8[4R-(3S-hydroxy-1-methyl)piperidinyI]-4H-1-benzopyran-4-one hydrochloride in a
sufficient amount of ethanol thus forming a mixture,
b) heating the mixture to about 50 to about 80° C,
c) optionally filtering off undissolved material from the mixture, thus forming a
solution,
d) concentrating the solution until about 50 to about 90% of the volatiles are
removed,
e) cooling the solution and optionally isolating the obtained (-)-cis-2-(2-
chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1-methyl)piperidinyl]-4H-1-
benzopyran-4-one hydrochloride crystals, and
f) optionally drying the obtained crystals.
6. The process of claim 5 wherein the cooling of the solution is to about 0 to
about 10°C.
7. Form II of (-)-cis-2-(2-chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1-
methyl)piperidinyl]-4H-1-benzopyran-4-one, prepared by the process of the following
steps:

a) dissolving a sufficient amount of (-)-cis-2-(2-chiorophenyI)-5,7-dihydroxy-
8[4R-(3S-hydroxy-1-methyl)piperidinyI]-4H-1-benzopyran-4-one hydrochloride in a
sufficient amount of ethanol thus forming a mixture,
b) heating the mixture to about 50 to about 80° C,
c) optionally filtering off undissolved material from the mixture, thus forming a.
solution,
d) concentrating the solution until about 50 to about 90% of the volatiles are
removed,
e) cooling the solution and optionally isolating the obtained (-)-cis-2-(2-
chlorophenyI)-5,7-dihydroxy-8[4R-(3S-hydroxy-1-methyl)piperidinyl]-4H-1-
benzopyran-4-one hydrochloride crystals, and
f) optionally drying the obtained crystals.
8. A pharmaceutical composition comprising a therapeutically effective amount of
Form II of (-)-cis-2-(2-chlorophenyl)-5,7-dihydroxy-8[4R-(3S-hydroxy-1-
methyl)piperidinyl]-4H-1-benzopyran-4-one and a pharmaceutically acceptable
carrier.
9. The use of Form II of claims 1, 2, 3 or 4 for preparation of a pharmaceutical
composition for treating a patient for cancer.
10. The use of Form li of claims 1, 2, 3 or 4 as a pharmaceutically active
compound.

Documents:

in-pct-2002-00700-del-abstract-(20-02-2008).pdf

in-pct-2002-00700-del-abstract.pdf

IN-PCT-2002-00700-DEL-Claims-(15-02-2008).pdf

in-pct-2002-00700-del-claims-(20-02-2008).pdf

in-pct-2002-00700-del-claims.pdf

IN-PCT-2002-00700-DEL-Correspondence-Others-(15-02-2008).pdf

in-pct-2002-00700-del-correspondence-others.pdf

IN-PCT-2002-00700-DEL-Description (Complete)-(15-02-2008).pdf

in-pct-2002-00700-del-description (complete)-(20-02-2008).pdf

in-pct-2002-00700-del-description (complete).pdf

in-pct-2002-00700-del-form-1(20-02-2008).pdf

IN-PCT-2002-00700-DEL-Form-1-(15-02-2008).pdf

in-pct-2002-00700-del-form-1.pdf

in-pct-2002-00700-del-form-18.pdf

in-pct-2002-00700-del-form-2(20-02-2008).pdf

IN-PCT-2002-00700-DEL-Form-2-(15-02-2008).pdf

in-pct-2002-00700-del-form-2.pdf

in-pct-2002-00700-del-form-3.pdf

in-pct-2002-00700-del-form-5.pdf

in-pct-2002-00700-del-gpa.pdf

in-pct-2002-00700-del-pct-220.pdf

in-pct-2002-00700-del-pct-308.pdf

in-pct-2002-00700-del-pct-332.pdf

in-pct-2002-00700-del-pct-409.pdf

in-pct-2002-00700-del-pct-416.pdf

in-pct-2002-00700-del-pct-search report.pdf

IN-PCT-2002-700-DEL-Abstract (27-11-2007).pdf

IN-PCT-2002-700-DEL-Claims (27-11-2007).pdf

IN-PCT-2002-700-DEL-Correspondence-Others (27-11-2007).pdf

IN-PCT-2002-700-DEL-Description (Complete) (27-11-2007).pdf

IN-PCT-2002-700-DEL-Form-1 (27-11-2007).pdf

IN-PCT-2002-700-DEL-Form-2 (27-11-2007).pdf

IN-PCT-2002-700-DEL-Form-3 (27-11-2007).pdf

IN-PCT-2002-700-DEL-GPA (27-11-2007).pdf

IN-PCT-2002-700-DEL-Other Document (27-11-2007).pdf


Patent Number 215628
Indian Patent Application Number IN/PCT/2002/00700/DEL
PG Journal Number 11/2008
Publication Date 14-Mar-2008
Grant Date 28-Feb-2008
Date of Filing 16-Jul-2002
Name of Patentee AVENTIS PHARMACEUTICALS INC,
Applicant Address MAIL STOP EMC G1, ROUTE 202-206, P.O. BOX 6800, BRIDGEWATER, NJ 08807-0800, USA
Inventors:
# Inventor's Name Inventor's Address
1 KURT KESSELER FLOERSHEIMER STRASSE 9, 65719 HOFHEIM, GERMANY,
PCT International Classification Number C07D 405/04
PCT International Application Number PCT/US01/00520
PCT International Filing date 2001-01-08
PCT Conventions:
# PCT Application Number Date of Convention Priority Country
1 09/487,815 2000-01-18 U.S.A.