专利摘要:
Reaction of cis-1-hydroxy-3-substituted-6,6-dimethyl-6,6a,7,8,10,10a-hexahydro-9H- dibenzo[b,d]pyran-9-ones with an aluminum halide in an unreactive organic solvent effects complete epimerization to provide the corresponding trans-1-hydroxy-3-substituted-6,6-dimethyl-6,6a,7,8,10,10a-hexahydro-9 H-dibenzo[b,d]pyran-9-one.
公开号:SU778711A3
申请号:SU772497361
申请日:1977-06-04
公开日:1980-11-07
发明作者:Беван Блэнчард Вильям;Вильбур Риан Чарльз
申请人:Эли Лилли Энд Компани (Фирма);
IPC主号:
专利说明:

.
f.
  Jira

I,.
..; rf- "t
iv .. like a bar and yuar-cis. In addition, both hydrogen atoms attached at positions 6a and 10a may be located below the plane of the molecule, in which case their absolute configuration is denoted as baa and аaa-cis.
A mirror image of this orientation is also covered by the term "6a, Ya-trans, in which case the hydrogen atom attached at the 6a position is below the plane of the molecule and is indicated as baa, and the hydrogen atom attached at the 10a position is above the plane of the molecule and is referred to as Yua-p.
The description does not indicate the absolute configuration of the hydrogen atom attached to the polar regions of 6a and 10a; the definition of “6a, 10a-trans includes individual mirror isomers of compounds having the above formula, as well as a mixture of these mirror isomers. Thus, it should be borne in mind that the 6a, 10a-trans compound obtained but the proposed method includes the baar, yoar isomer, as well as the bar, yaa isomer, or a mixture of these mirror isomers. This mixture of mirror isomers is denoted right and left rotated with the mixture.
The process is carried out with an excess of aluminum halide. Typically, this excess of aluminum halide used in this reaction is from 3 to 4 mol, however, if desired, may be greater.
As an inert organic solvent, a halogenated hydrocarbon is used, such as dichloromethane, chloroform, 1,1-dichloroethane, 1,2-dichloroethane, bromomethane, 1,2-dibromoethane, 1-bromo-2-chloroethane, 1-bromopropane, 1D-dibromoethane , 2-chloropropane, 1-iodopropane, 1-bromo-2-chloroethane, chlorobenzene and 1,2-dichlorobenzene; aromatic hydrocarbons such as benzene, nitrobenzene, toluene and xylene; and ethers, such as diethyl ether, methyl ethyl ether, dimethyl ether and diisopropyl ether, preferred solvents are gas-forming hydrocarbons such as dichloroethane, dichloromethane.
The duration of the reaction is not a critical factor for this process, although usually the reaction proceeds almost completely within 10 minutes to 6 hours. A longer reaction time does not adversely affect the resulting 6a, Yu-trans product. Usually, the reaction is carried out until isomerization of 6a, Ua-cis-dibenzo (b, d) pyranone into the corresponding 6a, 10a-transdibenzo (b, d) pyranone, is determined, which is determined.
for example, by monitoring the progress of the process by conventional methods, such as thin layer chromatography.
The desired product is easily separated by removing excess aluminum halide, for example, by washing the reaction mixture with water or an aqueous solution of an acid, such as hydrochloric acid or sulfuric acid. This solvent can
be removed from the reaction mixture by, for example, evaporation. As a result, the desired product remains, which is usually in the form of a racemic mixture of right- and left-growing isomers. The product thus formed is practically free of contaminants, but, if desired, may be further purified by known methods such as adsorption chromatography, thin layer chromatography and recrystallization from common solvents, for example, hexaia and cyclohexane.
Example 1. Right- and left-rotating-ba, 10a-trans-1-oxn-3- (1,1-dimethylhept1gl) -6,6-dimethyl-6.6a, 7, 8, 10, 10a-1-hexahydro 9P-dibenzo (b, d) Niran-9-one.
A solution of 1.0 g of right- and left-rotating 6a, 10a-cis-1-hydroxy-3- (1,1-dimethylheptyl) -6,6-dimethyl-6,6a, 7, 8, 10, Yu-hexahydro -9H-dibenzo (b, d) pyran-9-one in 40 ml of industrial dichloromethane is stirred at 24 ° C with simultaneous addition of 1.0 g of aluminum chloride in one portion. This reaction mixture
stirred at 24 ° C for 5 h. Then it is washed with 1 n. solution of hydrochloric acid in water. After drying the organic solution, the solvent is removed from it by evaporation under reduced pressure, to give 994 mg of product as a solid. The solid thus formed is recrystallized from hexane. In rezl late receive 761 mg
right- and left-rotating 6a, 10a-trans1-hydroxy-3- (1,1-dimethylheptyl) -6,6-dimethyl6, 6a, 7, 8, 10, 10a-hexahydro-9H-dibenzo (b, d) piran-9-she with t. pl. 160-YUGS. NMR spectrum: (CDCls) 67 Hz (S, 3N, C-6
methyl) 68 Hz (S, ZP, C-6 methyl).
Example 2. Right and left-rotating-ba-Yua-trans-1-hydroxy-3-n-pentyl-6, 6-dimethyl-6, 6a, 7, 8, 10, 10a-hexahydro-9H-dibenzo ( B, d) Cyran-9-one.
Solution 400 mg of right- and left-rotating-ba, 1 Oa-cis-1-oxy-3-n-pentyl-6,6-dimethyl-6, 6a, 7, 8, 10, 10a-hexahydr-9H-dnbenzo (B, d) pyran-9-one in 200 ml of dichloromethane containing 1 ml of cyclohexane,
stirred at 24 ° C, at the same time 600 ml of aluminum chloride are added in one portion. Then the reaction mixture was displaced at 24 ° C for 2 h. After the reaction mixture was washed with water
and subsequent organic matter ra
The solvent is removed by evaporation under pressure and the resulting product remains as a solid.
The solid thus formed is crystallized from i-hexaia. As a result, 220 mg of right-rotating 6a, 10a-trais-1-hydroxy-3-n-pectyl-6, 6-dimethyl-6, 6a, 7, 8, 10, 10a-hexahydro-9Y-dibenzo (B, d) pira-9ona with m. Pl. 146-150 C.
NMR spectrum (CDCla); 67 Hz (S, 3N, C-6 methyl) 88 Hz (S, 3N, C-6 methyl).
Example 3. Right and left-rotated-ba, 10a-trans-1-hydroxy-3- (1,1-dimethylheptyl) -6,6-dimethyl-6, 6a, 7, 8, 10, 10a-hexahydro 9H-dibenzo (b, c1 pyran-9-one.
To a solution of 1.0 g of iravo-and left-rotate, ero-6a, 10a-cis-1-hydroxy-3- (1,1-dpmethylheptyl) -6,6-dimethyl-6, 6a, 7, 8, 10 , - 10a-hexahydro-9H-dibenzo (b, d) pira-9-oa to 40 ml of dichlorometap is added in one portion of 1.0 g of aluminum bromide. The reaction mixture is stirred for 5 hours at a temperature of 24 ° C, and then washed with a 1N solution of hydrochloric acid and water. The reaction mixture was dried and the solvent was removed by evaporation under increased pressure. The result is a right-handed rotary-ba, 10atrans-1-oxy 3- (1,1-single methylheptyl) -6,6-dimethyl-6, 6a, 7, 8, 10, 10a-hexahydro-9H-dibenzo (B, d) piran-9-one.
Nuclear Magnetic Resonance Spectrum (CDCls): 67 Hz (S, 3N, C-6 methyl) 88 Hz, (S, 3N C-6 methyl).
Example 4. Right- and left-rotating tuba, 1 Oa-trans-1-hydroxy-3- (1,1-dimethylheptyl) -6,6-dimethyl-6, 6a, 7, 8, 10, 10a-hexahydro-9H -dnieiso (b, d piran-9-one.
The process is carried out according to example 1, using as starting materials 10 g of the indicated cis compound and 12.5 g of aluminum chloride. The reaction is carried out in an ice bath and temperature of 2 ° C and the mixture is stirred at the same temperature for 4 hours after the addition of aluminum chloride. Obtain the target product with a yield of 7.5 g with so pl. 160-162 ° C. The NMR spectrum of this product is similar to the NMR spectrum of the product obtained according to example 1.
Example 5. Right- and left-rotating-ba, 10a-tris-1-oxy-3- (1,1-dimethylheptyl) -6, 6-dimethyl-6,6a-7, 8, 10, 10a-hexagnd- 9H-dibeiso (b, d pyran-9-one.
100 mg of right-rotating-ba, 10a-cis-1-hydroxy-3 - (1,1-dimethyl hectyl) - 6,6 dimethyl-6, 6a, 7, 8, 10, 10a-hexahydro-9 Ndibenzo (b d) pyran-9-one is reacted with 0.1 g of aluminum chloride in 5 ml of 1,2-dichloroethane at a temperature of about 24 ° C for 5 hours. A target product is obtained, whose NMR spectrum is similar to the NMR spectrum of the product obtained according to example 1.
Example 6. Right and left-rotating-ba, 1 Oa-trans-1-hydroxy-3- (1,1-dimethyl heptyl) -6, 6-dimethyl-6, 6a, 7, 8, 10, 10a hexahydro-9H-dibenzo (b, d) pyra-9-one. The process is carried out according to Example 5 with the exception that the reaction proceeds at a boiling point of the reaction medium of 80 ° C. Within 15 minutes, the chemical transformation of the said source compound takes place into a target product, which
This analysis by the method of thin layer chromatography is similar to the product obtained according to Example 1.
Example 7. Right and left-rotating-ba, 1 Oa-trans-1-hydroxy-3- (1,1-dimethylheptyl) -6,6-dnmethyl-6, 6a, 7, 8, 10, 10a-hexa -hydro-9H-dibeiso (b, d} pyran-9-one.
The process of example 5 is carried out using chlorobenzene as a solvent. Within 1 h, chemical revolutions of the indicated starting compound occur in the target product, which is identical to the product obtained according to Example 1 according to Dane analysis by thin layer chromatography.
Example 8. Right- and left-rotate P1, i-6a, 1 Oa-trans-1-oxy-3- (1,1-dimethylheptyl) -6, 6-dimethyl-6, 6a, 7, 8, 10, 10a -hexahydro-9H-dibenzo (b, d pyran-9-oi.
0.3 g of the original product is the same as
and in example 1, is subjected to reaction with 0.3 g of aluminum chloride in 10 ml of benzene at a temperature of 24 ° C for 4 hours. As a result, the target product is obtained, which, according to analysis by the method of thin layer chromatography, is identical to the product obtained in Example 1.
Example 9. Right- and left-rotating-ba, 10a-trans-1-hydroxy-3- (l, l-dimethylhethyl) -6,6-dimethyl-6, 6a, 7, 8, 10, 10a-hexa- hydro-9H-dibeiso (b, d) pyran-9-one.
The process is carried out in the same manner as in Example 8, using ortho-chlorotoluene as the solvent. As a result, chemical transformation of the starting compound into the desired product occurs in a high yield, which according to the analysis by the method of single-layer chromatography is identical to the product obtained according to Example 1.
Example 10. Right and left-rotating-ba, 1 Oa-trans-1-hydroxy-3- (1,1-dimethylheptyl) -6, 6-dimethyl-6, 6a, 7, 8, 10, Yua-hexahydro -9H-dibeiso (b, d) pyran-9-one.
The process is carried out in the same manner as in Example 8, using 1, 1,2-trichloro-phase as the solvent. As a result, within 6 hours, the conversion of the starting compound into a target product with a high yield, which, according to thin layer chromatography analysis, is ideal for the compound obtained according to Example 1.
-.

4 f
Example 11. Right and left-rotating-ba, 1 Oa-trans-1-hydroxy-3- (1,1-dimethylheptyl) -6,6-dimethyl-6,6a, 7, 8, 10, Yu-hexahydro -9H-dibenzo (b, d} pyran-9-one.
The process is carried out in the same manner as in Example 8 using chloroform as solvent. As a result, within 6 hours, the desired product is obtained. This product according to the analysis by the method of thin-layer chromatography is identical to the product obtained according to example 1.
Example 12. Right and left-rotating-ba, 1 Oa-trans-1-hydroxy-3- (1,1-dimethylheptyl) -6, b-dimethyl-6, 6a, 7, 8, 10, 10 hexahydro-9H -dibenzo (b, d) -pyran-9-one.
The process is conducted according to example 8, using toluene as a solvent. As a result, the target product is obtained for 3 hours. This product according to the analysis by the method of thin-layer chromatography is identical to the product obtained according to example 1.
权利要求:
Claims (2)
[1]
Invention Formula
L Method for preparing 6a, 10a-trans-1-hydroxy-3-substituted-6, 6-dimethyl-6, 6a, 7, 8, 10, 10a-hexahydro-9H-dibenzo (b, d) pyran-9-ones general formula
11L, f7
HE
(I)
wherein R-alkyl is Cs-Syu, characterized in that, in order to simplify and increase the selectivity of the process, 6a, 10a-cis-1-hydroxy-3-substituted-6, 6-dimethyl-6, 6a, 7, 8, 10 , 10a-hexahydro-9H-dibenzo (b, d) pyran-9-one of formula I, where R has the above value, is reacted with aluminum bromide or aluminum chloride in an inert organic solvent at a temperature from 0 to 80 ° C.
[2]
2. A method according to claim 1, wherein a halogenated hydrocarbon or an aromatic hydrocarbon is used as the inert organic solvent.
Sources of information taken into account in the examination
1. K. E. Fahremholtr, M. Lurie, R. W. Krerstead “Total synthesis of dA A-Tetrahydrocannabinol, lACS, 1966 r, 38, c. 2079 (prototype).
类似技术:
公开号 | 公开日 | 专利标题
SU778711A3|1980-11-07|Method of preparing 6a,10a-trans-1-hydroxy-3-substituted-6,61-dimethyl-6,6a,7,8,10,10a-hexahydro-9h-dibenzo|-pyran-9-ones
Kraak et al.1968|The synthesis of cyclopentadithiophenes
Kawase et al.1989|Electrophilic aromatic substitution with N-methoxy-N-acylnitrenium ions generated from N-chloro-N-methoxy amides: Syntheses of nitrogen heterocyclic compounds bearing a N-methoxy amide group
Djura et al.1980|Some metabolites of the marine sponges Smenospongia aurea and Smenospongia | echina
US5227537A|1993-07-13|Method for the production of 6,12-dihydro-6-hydroxy-cannabidiol and the use thereof for the production of trans-delta-9-tetrahydrocannabinol
Yamamoto et al.1988|Synthesis and molecular structure of [7] circulene
Unson et al.1993|New polychlorinated amino acid derivatives from the marine sponge Dysidea herbacea
SU650498A3|1979-02-28|Method of obtaining optically active anthracyclinines
Zimmerman et al.1959|The Stereochemistry of Ketonization. IX. The 1, 9-Enol of 1-Decalone1, 2
Ainslie et al.1985|Structure of malyngamide C
Ziegler et al.1994|Cyclization of Chiral Carbon-Centered Aziridinyl Radicals: A New Route to Azirino [2', 3': 3, 4] pyrrolo [1, 2-a] indoles
Applequist et al.1963|The Brominative Decarboxylation of Optically Active Silver trans-1, 2-Cyclohexanedicarboxylate
Djerassi et al.1961|Optical Rotatory Dispersion Studies. XLI. 1 α-Haloketones |. 2 Bromination of Optically Active cis-1-Decalone. Demonstration of Conformational Mobility by Rotatory Dispersion3
Djerassi et al.1960|Optical Rotatory Dispersion Studies. XXVI. 1 α-Haloketones |. 2 Demonstration of Conformational Mobility in α-Halocyclohexanones3
Veldstra et al.1951|Partially hydrogenated naphthoic acids and α‐alkyl‐phenylacetic acids: Researches on plant growth regulators XIX. Structure/activity IV
Nishimura et al.1989|Intramolecular [2+ 2] Photocycloaddition. 5. Synthetic Methods toward [2. n]-,[3. n]-, and [4. n] Naphthalenophane Skeletons by Using α, ω-Bis | alkanes
US4034041A|1977-07-05|1,3-Bridged amino tetralins
Laarhoven et al.1973|Photodehydrocyclizations of stilbene‐like compounds VIII: Synthesis of hexaheliceno [3, 4‐c] hexahelicene
FR2731217A1|1996-09-06|NOVEL TRICYCLIC DERIVATIVES, THEIR PREPARATION, THEIR APPLICATION TO THE PREPARATION OF OPTICALLY ACTIVE OR RACEMIC COLCHICINE AND THIOCOLCHICINE AND ANALOGS OR DERIVATIVES AND INTERMEDIATES
Cativiela et al.1992|Asymmetric Diels-Alder reactions of chiral |-2-cyanocinnamates with cyclopentadiene
Román et al.2001|Generation of the new quirogane skeleton by a vinylogous retro-Michael type rearrangement of longipinene derivatives
Sun et al.1995|Syntheses, Structures, and Enzymic Evaluations of Conformationally Constrained, Analog Inhibitors of Carnitine Acetyltransferase:|-,|-,|-, and |-6-|-2-|-2, 4, 4-trimethylmorpholinium
Zeilstra et al.1973|Chemistry of α‐nitrosulfones. Part I: Sulfinate elimination from α‐sulfonylnitroalkane anion radicals
US4314939A|1982-02-09|Process for the preparation of 15-hydroxyimino-E-homoeburnane and intermediates therefor
TAMURA et al.1981|Synthesis and Photocyclization of 2-Aroyl-3-methylcyclohex-2-enones
同族专利:
公开号 | 公开日
NL7707460A|1978-01-10|
AR213965A1|1979-04-11|
BG28060A3|1980-02-25|
PT66745B|1978-11-27|
JPS5943467B2|1984-10-22|
BE856411A|1978-01-04|
SE428019B|1983-05-30|
ES460385A1|1978-08-16|
FR2357556B1|1980-12-26|
IL52422D0|1977-08-31|
GR66429B|1981-03-23|
DK143401B|1981-08-17|
IE45245L|1978-01-06|
DK301077A|1978-01-07|
CS193581B2|1979-10-31|
DE2729818A1|1978-01-12|
PH13925A|1980-11-04|
AT351532B|1979-07-25|
FR2357556A1|1978-02-03|
GB1582566A|1981-01-14|
YU163577A|1982-06-30|
PL199363A1|1978-04-10|
NZ184527A|1978-09-20|
MX4952E|1983-01-12|
US4054582A|1977-10-18|
MY8500786A|1985-12-31|
DD131648A5|1978-07-12|
ZA773959B|1979-02-28|
IL52422A|1980-09-16|
AU2667977A|1979-01-04|
IE45245B1|1982-07-14|
PT66745A|1977-06-30|
CH633787A5|1982-12-31|
SE7707632L|1978-01-07|
RO72581A|1981-04-30|
HU176774B|1981-05-28|
PL104312B1|1979-08-31|
AU511626B2|1980-08-28|
CA1088082A|1980-10-21|
DK143401C|1981-12-21|
DE2729818C2|1982-08-05|
ATA483577A|1979-01-15|
JPS537679A|1978-01-24|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题

CA1096390A|1976-07-06|1981-02-24|Edward R. Lavagnino|PROCESS FOR PREPARING DL-CIS-1-HYDROXY-3-SUBSTITUTED- 6,6-DIMETHYL-6,6.alpha.,7,8,10,10.alpha.-HEXAHYDRO-9H- DIBENZOPYRAN-9-ONES|
US4395560A|1982-05-24|1983-07-26|Eli Lilly And Company|Preparation of 6a,10a-trans-hexahydrodibenzopyranones|
JPH029922Y2|1983-10-14|1990-03-13|
US4861886A|1987-07-10|1989-08-29|Ishahara Sangyo Kaisha Ltd|Method for isomerization of trans-form 2-methylspiro q|
US5498419A|1994-06-03|1996-03-12|Pars; Harry G.|Fumarate salt of 4--7,8,9,10-tetrahydro-6,6,9-trimethyl-6H-dibenzo[b,d]pyran-1-ol, 4- butyric|
CA2340445A1|1998-05-04|1999-11-11|The University Of Connecticut|Novel analgesic and immunomodulatory cannabinoids|
US7589220B2|1998-06-09|2009-09-15|University Of Connecticut|Inhibitors of the anandamide transporter|
US7897598B2|1998-06-09|2011-03-01|Alexandros Makriyannis|Inhibitors of the anandamide transporter|
US7161016B1|1998-11-24|2007-01-09|University Of Connecticut|Cannabimimetic lipid amides as useful medications|
US7276613B1|1998-11-24|2007-10-02|University Of Connecticut|Retro-anandamides, high affinity and stability cannabinoid receptor ligands|
US6943266B1|1999-10-18|2005-09-13|University Of Connecticut|Bicyclic cannabinoid agonists for the cannabinoid receptor|
US6900236B1|1999-10-18|2005-05-31|University Of Connecticut|Cannabimimetic indole derivatives|
US6995187B1|1999-10-18|2006-02-07|University Of Connecticut|Peripheral cannabinoid receptorselective ligands|
US8084467B2|1999-10-18|2011-12-27|University Of Connecticut|Pyrazole derivatives as cannabinoid receptor antagonists|
US7119108B1|1999-10-18|2006-10-10|University Of Connecticut|Pyrazole derivatives as cannabinoid receptor antagonists|
US7741365B2|1999-10-18|2010-06-22|University Of Connecticut|Peripheral cannabinoid receptorselective ligands|
CA2435409A1|2001-01-26|2002-08-01|University Of Connecticut|Novel cannabimimetic ligands|
EP1363632B1|2001-01-29|2010-08-25|The University of Connecticut|Receptor selective cannabimimetic aminoalkylindoles|
WO2003005960A2|2001-07-13|2003-01-23|University Of Connecticut|Novel bicyclic and tricyclic cannabinoids|
US7393842B2|2001-08-31|2008-07-01|University Of Connecticut|Pyrazole analogs acting on cannabinoid receptors|
US7666867B2|2001-10-26|2010-02-23|University Of Connecticut|Heteroindanes: a new class of potent cannabimimetic ligands|
CN1678303A|2002-08-23|2005-10-05|康涅狄格大学|Keto cannabinoids with therapeutic indications|
WO2007041167A2|2005-09-29|2007-04-12|Amr Technology, Inc.|Process for production of delta-9-tetrahydrocannabinol|
CA2638940C|2008-08-28|2009-09-15|Dalton Chemical Laboratories Inc.|Improved synthesis of hexahydrodibenzopyranones|
法律状态:
优先权:
申请号 | 申请日 | 专利标题
US05/702,807|US4054582A|1976-07-06|1976-07-06|Process for converting cis-hexahydrodibenzo[b,d]pyran-9-ones to trans-hexahydrodibenzo[b,d]-pyran-9-ones|
[返回顶部]