AU2001288535A1 - Crystalline forms of carbapenem intermediates - Google Patents
Crystalline forms of carbapenem intermediatesInfo
- Publication number
- AU2001288535A1 AU2001288535A1 AU2001288535A AU8853501A AU2001288535A1 AU 2001288535 A1 AU2001288535 A1 AU 2001288535A1 AU 2001288535 A AU2001288535 A AU 2001288535A AU 8853501 A AU8853501 A AU 8853501A AU 2001288535 A1 AU2001288535 A1 AU 2001288535A1
- Authority
- AU
- Australia
- Prior art keywords
- ray powder
- powder diffraction
- methyl
- crystalline
- crystal according
- 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.)
- Abandoned
Links
Classifications
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07D—HETEROCYCLIC COMPOUNDS
- C07D205/00—Heterocyclic compounds containing four-membered rings with one nitrogen atom as the only ring hetero atom
- C07D205/02—Heterocyclic compounds containing four-membered rings with one nitrogen atom as the only ring hetero atom not condensed with other rings
- C07D205/06—Heterocyclic compounds containing four-membered rings with one nitrogen atom as the only ring hetero atom not condensed with other rings having one double bond between ring members or between a ring member and a non-ring member
- C07D205/08—Heterocyclic compounds containing four-membered rings with one nitrogen atom as the only ring hetero atom not condensed with other rings having one double bond between ring members or between a ring member and a non-ring member with one oxygen atom directly attached in position 2, e.g. beta-lactams
Landscapes
- Chemical & Material Sciences (AREA)
- Organic Chemistry (AREA)
- Pharmaceuticals Containing Other Organic And Inorganic Compounds (AREA)
- Nitrogen Condensed Heterocyclic Rings (AREA)
- Plural Heterocyclic Compounds (AREA)
Description
TITLE OF THE INVENTION
CRYSTALLINE FORMS OF CARBAPENEM INTERMEDIATES
BACKGROUND OF THE INVENTION
Azetidinones are inherently unstable compounds that tend to hydrolyze. For this reason it is particularly advantageous to produce a stable crystalline form of any azetidinone that will be prepared on production scale requiring handling, storage, and shipping. Additionally, crystalline forms of intermediates for carbapenem antibiotics are desirable from a stability and purity standpoint. These compounds facilitate the synthesis of carbapenem antibiotics on a commercial scale.
In the present invention, crystalline forms of the compound [2R-[2 (R*),3β(R*)]]-3-(l-hydroxyethyI)-γ-methyI-β,4-dioxo-2- azetidinebutanoic acid (4-nitrophenyl)methyl and (γ R,2R,3S)-α-diazo-3-[(lR)-l- hydroxyethyl]-γ-methyl-β,4-dioxo-2-azetidinebutanoic acid (4-nitrophenyl)methyl ester have been discovered and characterized. The compounds can generally be synthesized taking into account the disclosures of U. S. Patent Nos.4,312,871 granted on January 26, 1982; 5,998,612, granted on December 7, 1999; 4,350,631, granted on September 21, 1982; 4,454,332, granted on June 12, 1984; and 4,994,568, granted on February 19, 1991, all herein incorporated by reference.
SUMMARY OF THE INVENTION
Crystalline forms of [2R-[2α(R*),3β(R*)]]-3-(l-hydroxyethyl)-γ- methyI-β,4-dioxo-2-azetidinebutanoic acid (4-nitrophenyl)methyl ester (compound of formula I) and crystalline (γ R,2R,3S)- -diazo-3-[(lR)-l-hydroxyethyl]-γ-methyl-β,4- dioxo-2-azetidinebutanoic acid (4-nitrophenyl)methyl ester (compound of formula II) are disclosed.
DESCRIPTION OF THE FIGURES
Fig. 1. depicts the X-ray powder diffraction (XRPD) pattern of Form A and Form B, the crystal forms of [2R-[2 (R*),3β(R*)]]-3-(l-hydroxyethyl)-γ-methyl- β,4-dioxo-2-azetidinebutanoic acid (4-nitrophenyl)methyl ester (formula I).
Fig. 2. Depicts the X-ray powder diffraction pattern of the crystal form of the compound of formula II, (γ R,2R,3S)-α-diazo-3-[(lR)-l-hydroxyethyl]-γ- methyl-β,4-dioxo-2-azetidinebutanoic acid (4-nitrophenyl)methyl ester.
DETAILED DESCRIPTION OF THE INVENTION
The compounds have the following structural formulas:
and
I I
The crystalline forms of the compounds are characterized below by virtue of their X-Ray Powder Diffraction (XRPD) patterns. The XRPD patterns were collected using CuKα radiation with an accelerating potential of 45 kV and a filament emission of 40 mA. Diffraction patterns were collected from 2 to 40 °2Theta.
The crystalline Form A of the compound of formula I is unambiguously characterized as having an XRPD pattern at 7.9, 7.5, 7.0, 5.2, 4.8, 4.4, 3.9, 3.7, 3.6, 3.5, 3.3, 3.2, 3.1, 3.0, and 2.9 angstroms. More complete XRPD data pertaining to the compound is shown below in Table 1.
TABLE 1
Form A: The melting point was measured using DSC thermography. The DSC was determined using a heating rate of 10 °C/min under a nitrogen atmosphere from room temperature to 200 °C. A major endotherm (melting endotherm) was detected with a peak temperature of about 105 °C, an extrapolated onset temperature of 103 °C, and a heat of melting of 102 Joules/g.
The crystalline Form B of the compound of formula I is unambiguously characterized as having an XRPD pattern at 9.5, 7.8, 6.5, 5.9, 5.5, 4.9, 4.5, 4.3, 3.9, 3.8, 3.6, 3.5, 3.3, 3.1, 2.9 angstroms. More complete XRPD data pertaining to the compound is shown below in Table 2. TABLE 2
Form B: The melting point was measured using DSC thermography. The DSC was determined using a heating rate of 10 °C/min under a nitrogen atmosphere from room temperature to 200 °C. A major endotherm (melting endotherm) was detected with a peak temperature of about 101 °C, an extrapolated onset temperature of 99 °C, and a heat of melting of 82 Joules/g.
The crystalline form of the compound of formula II is unambiguously characterized as having an XRPD pattern at 8.3, 5.7, 5.6, 5.4, 4.9, 4.5, 4.1, 4.0, 3.8, 3.7, 3.6, 3.5, 3.4, 3.2, 3.1, 3.0, 2.7, and 2.5 angstroms. More complete XRPD data pertaining to the solvate is shown below in Table 3.
TABLE 3
The melting point was measured using DSC thermography. The DSC was determined using a heating rate of 10 °C/min under a nitrogen atmosphere from room temperature to 140 °C. A major endotherm (melting endotherm) was detected with a peak temperature of about 106 °C, an extrapolated onset temperature of 102 °C, and a heat of melting of 70 Joules/g.
The crystalline compounds of this invention are useful as intermediates in the preparation of carbapenem antibiotics, which are useful for the treatment of bacterial infections in animal and human subjects.
The compounds can be produced in accordance with the following non-limiting examples.
EXAMPLE 1
To a solution of the azetidinone carboxylic acid (1, prepared according to the teachings of Heterocycles 1984, 21, 29; U.S. Pat. Nos. 4,454,332 and 5,998,612 or a combination thereof) in acetonitrile (80 mL) was charged CDI (11.4 g) at 20 °C. The resulting solution was added to a mixture containing acetonitrile (120 mL), magnesium chloride (5.7 g), and p-nitrobenzyl malonate (27.0 g), and the mixture was warmed to 45 °C. After the reaction was complete, the mixture was cooled to 20 °C and 2.1 N HC1 (114 mL) was added with agitation. The mixture was allowed to settle and the layers were separated. To the organic layer was added aqueous HC1 (2.1 N, 22.8 mL) with agitation. Isopropyl acetate (230 mL) followed by 20% potassium bicarbonate (200 mL) were added and the layers were separated. The organic solution was washed with aqueous sodium chloride (5%, 100 mL) and water (50 mL), then concentrated to 100 mL under vacuum. Heptane (100 mL) was added to crystallize
the product, which was isolated by filtration. Vacuum drying provided 19.4 g of product as a crystalline solid.
EXAMPLE TWO
II
The compound of formula I (10.0 g) was dissolved in toluene (82 mL) and the resulting solution was added to a solution of dodecylbenzenesulfonylazide (DDBSA) in toluene (295 g/L, 38 mL). Triethylamine (0.5 mL) was added while maintain a temperature of below 25 °C. The mixture was aged then seeded. The resulting slurry was aged then heptane (240 mL) was added to crystallize the product, which was isolated by filtration. Drying under vacuum afforded 8.6 g of product.
Claims
1. Crystalline [2R-[2α(R*),3β(R*)]]-3-(l-hydroxyethyl)-γ-methyl-β,4- dioxo-2-azetidinebutanoic acid (4-nitrophenyl)methyl ester, which is characterized by a solid state x-ray powder diffraction (XRPD) pattern having the following d- spacings: 7.9, 7.5, 7.0, 5.2, 4.8, 4.4, 3.9, 3.7, 3.6, 3.5, 3.3, 3.2, 3.1, 3.0, and 2.9 angstroms.
2. A crystal according to claim 1, having an x-ray powder diffraction pattern in accordance with Figure 1, Form A.
3. A crystal according to claim 1, which is further characterized by an endotherm with an extrapolated onset temperature of 103 °C, a peak temperature of about 105 °C, and a heat of melting of 102 Joules/g.
4. Crystalline t2R-[2α(R*),3β(R*)]]-3-(l-hydroxyethyl)-γ-methyl-β,4- dioxo-2-azetidinebutanoic acid (4-nitrophenyl)methyl ester, which is characterized by a solid state x-ray powder diffraction (XRPD) pattern having the following d- spacings: 9.5, 7.8, 6.5, 5.9, 5.5, 4.9, 4.5, 4.3, 3.9, 3.8, 3.6, 3.5, 3.3, 3.1, 2.9 angstroms.
5. A crystal according to claim 4, having an x-ray powder diffraction pattern in accordance with Figure 1, Form B.
6. A crystal according to claim 4, which is further characterized by an endotherm with an extrapolated onset temperature of 99 °C, a peak temperature of about 101 °C, and a heat of melting of 82 Joules/g.
7. Crystalline (γ R,2R,3S)-α-diazo-3-[(lR)-l-hydroxyethyl]-γ-methyl- β,4-dioxo-2-azetidinebutanoic acid (4-nitrophenyl)methyl ester, which is characterized by a solid state x-ray powder diffraction (XRPD) pattern having the following d-spacings: 8.3, 5.7, 5.6, 5.4, 4.9, 4.5, 4.1, 4.0, 3.8, 3.7, 3.6, 3.5, 3.4, 3.2, 3.1, 3.0, 2.7, and 2.5 angstroms.
8. A crystal according to claim 7, having an x-ray powder diffraction pattern in accordance with Figure 2.
9. A crystal according to claim 7, which is further characterized by an endotherm with an extrapolated onset temperature of 102 °C, a peak temperature of about 106 °C, and a heat of melting of 70 Joules/g.
Applications Claiming Priority (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US23060500P | 2000-09-06 | 2000-09-06 | |
| US60230605 | 2000-09-06 | ||
| PCT/US2001/027014 WO2002020476A2 (en) | 2000-09-06 | 2001-08-30 | Crystalline forms of carbapenem intermediates |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| AU2001288535A1 true AU2001288535A1 (en) | 2002-03-22 |
Family
ID=22865857
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| AU2001288535A Abandoned AU2001288535A1 (en) | 2000-09-06 | 2001-08-30 | Crystalline forms of carbapenem intermediates |
Country Status (4)
| Country | Link |
|---|---|
| US (2) | US20020049315A1 (en) |
| AU (1) | AU2001288535A1 (en) |
| CA (1) | CA2421116A1 (en) |
| WO (1) | WO2002020476A2 (en) |
Families Citing this family (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2010013223A1 (en) | 2008-07-30 | 2010-02-04 | Ranbaxy Laboratories Limited | Process for the preparation of carbapenem compounds |
| WO2011048583A1 (en) | 2009-10-23 | 2011-04-28 | Ranbaxy Laboratories Limited | Process for the preparation of carbapenem compounds |
Family Cites Families (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| ES8404184A1 (en) * | 1981-08-03 | 1984-04-16 | Merck & Co Inc | A PROCEDURE FOR THE PREPARATION OF NEW 2-CARBAMIMIDOIL-1-, CARBADESTIAPEN-2-EN-3-CARBOXYLATED ACID DERIVATIVES. |
| EP0113101A1 (en) * | 1982-12-30 | 1984-07-11 | Merck & Co. Inc. | 6-(1-Hydroxyethyl)-2-SR8-1-methyl-1-carbadethiapen-2-em-3-carboxylic acid esters |
| US5602118A (en) * | 1993-03-16 | 1997-02-11 | American Cyanamid Company | 2-thiosubstituted carbapenems |
-
2001
- 2001-08-02 US US09/921,221 patent/US20020049315A1/en not_active Abandoned
- 2001-08-30 CA CA002421116A patent/CA2421116A1/en not_active Abandoned
- 2001-08-30 WO PCT/US2001/027014 patent/WO2002020476A2/en not_active Ceased
- 2001-08-30 AU AU2001288535A patent/AU2001288535A1/en not_active Abandoned
-
2002
- 2002-09-12 US US10/242,222 patent/US20030045709A1/en not_active Abandoned
Also Published As
| Publication number | Publication date |
|---|---|
| WO2002020476A3 (en) | 2002-09-06 |
| WO2002020476A2 (en) | 2002-03-14 |
| US20020049315A1 (en) | 2002-04-25 |
| US20030045709A1 (en) | 2003-03-06 |
| CA2421116A1 (en) | 2002-03-14 |
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