1-hydroxyalkyl-3-alkylxanthines and pharmaceutical compositions containing them
2 claims: 1 independent, 1 dependent
- 1A compound corresponding to the following formula (I) in which Ry is a C 2 c 5 ω-hydroxy-n-alkyl group or a C 3 ־C 5 ( ω )-hydroxy-n-alkyl group, R^ is a Cy-C^ alkyl group, R_ is H, methyl or ethyl and the sum of the carbon atoms in o Ry and Ry is between 4 and 9, or a physiologically acceptable salt of this compound.
- 2A compound as claimed in Claim 1, characterized in that it is selected from the group comprising:1-(2-Hydroxyethyl)-3-propyl xanthine, 1-(2-Hydroxyethyl)-3-isObutyl xanthine 1-(2-Hydroxyethyl)-3-isobutyl-8-methyl xanthine, 1- (2-Hydroxypropyl) -3-propyl xanthine, 1-(Hydroxypropyl)-3-propyl-8-methyl xanthine, 1-|2-Hydroxypropyl)-3-butyl xanthine, 1-(3-Hydroxypropyl)-3-propyl xanthine, 1-(3-Hydroxypropyl)-3-propyl-8-methyl xanthine, 1-(3-Hydroxypropyl)-3-propyl-8-ethyl xanthine, 1-(3-Hydroxypropyl)-3-butyl xanthine, 1-(3-hydroxypropyl)-3-isobutyl xanthine, 1-(3-Hydroxypropyl)-3-isobutyl-8-methyl xanthine, 1-(3-Hydroxybutyl)-3-methyl xanthine, 1-(3-Hydroxybutyl)-3-ethyl xanthine, 1-(3-Hydroxybutyl)-3-ethyl-8-methyl xanthine, 1- (3-Hydroxybutyl ).-3-propyl xanthine, 1- (3-Hydroxybutyl) -3-isobutyl xanthine, 1-(4-Hydroxybutyl)-3-ethyl xanthine, 1-(4-Hydroxybutyl)-3-propyl xanthine, 1-(4-Hydroxybutyl )-3-propyl-8-methyl xanthine, 1-(4־ Hydroxybutyl)-3-butyl xanthine, l-(4* Hydroxybutyl)-3-isobutyl-8-methyl xanthine, 1-(4-Hydroxypentyl)~3-methyl xanthine, 1-(4-Hydroxypentyl)-3-propyl xanthine, 1-(5-Hydroxypentyl)-3-methyl xanthine, 1-(5-Hydroxypentyl)-3-propyl xanthine, 1- (5-Hydroxypentyl)-3-propyl-8-methyl xanthine. 3y. A pharmaceutical composition, characterized in that it . contains a compound corresponding to the following formula (I) in which is a Cj-C 5 ω-hydroxy-n-alkyl group or a C 3 ־C 5 (ω-D-hydroxy-n-alkyl group, R 3 is a R q is H, methyl or ethyl and the sum o R^ and R 3 is between 4 and 9, or a physiologically acceptable salt C 1 ־C 4 alkyl group, of the carbon atoms in of this compound in conjunction with a pharmaceutically acceptable excipient. -5'-. A pharmaceutical composition as claimed in Claim-57 3 characterized in that it contains a compound of the type claimed in Claim 1 or 2.
Independent claims2
214 paragraphs in 6 sections, as filed
l-HYDROXYALKYL-S-ALKYEXANTHINES AND treDTC-AMENTS־ CONTAINING THEM
SOCIETE DES PRODUITS NESTLE SA
Tnis invention relates to a new class of xanthines, namely 1-hydroxyalkyl xanthines and to a medicament containing tnem.
From US Patent No.4.515.795 (Hinze) there are known xanthines intended for
1,3,7-substitutedVameliorating the cerebral blood flow.
The present invention relates to similar compounds which are not substituted in the 7-position. Said compounds are eff on the peripherte organs.
U.S.Patent No.25 17410 (Papesch) claims similar compounds to those of the present invention but specifically describes only 3-hydroxyalkylxyanthines. It contends that the compounds (embraced by it have vasodilator activities, but this has not been proven. The compounds according to the present invention are effective for inotropic (cardiotonic) activity.
U.S.Patent 4.108.995(M0hler) claims 1,3,or 7 nydroxy hexyl compounds which are not embraced by the present invention. All other compounds embraced by the general formula of said invention are substituted in the 7-position.
EP 39780(Israel Patent 62641) relates to 1,3- or 1,3,8substituted xanthines showing sedative and anxiolytic properties. These compounds were developed with a view to enhancing or making
. ' ׳ '
- la - 84266/2 more specific certain therapeutically useful physiological effects of natural xanthines, such as caffeine or theophylline. Despite their undeniable neuroleptic and anxiolytic character, the compounds according to the abovementioned patent show side effects, particularly on the cardiovascular function. By contrast, the cardiostimulant activity of these compounds, taken on its own, opened up a new channel of investigation in that direction.
The present invention relates to a new class of xanthines, namely 1-hydroxyalkyl xanthines, which show in particular cardiovascular activity. The compounds according to the invention are xanthines corresponding to the following general formula
<img file="IL84266A_D0001.tif" />
in which is a ω-hydroxy-n-alkyl group or a C^-C^ (ω-1)- 2 1 hydroxy-n-alkyl group, Rg is a C^-C^ alkyl group, Rg is H, methyl or ethyl and the sum of the carbon atoms in Rg and Rg is between 4 and 9, or physiologically acceptable salts thereof.
More precisely, the following compounds are more specifically claimed:
1- (2-Hydroxyethyl)-3-propyl xanthine,
1- (2-Hydroxyethyl)-3-isobutyl xanthine,
1-(2-Hydroxyethyl)-3-isobutyl-8-methyl xanthine,
1- (2-Hydroxypropyl)-3-propyl xanthine,
1-(2-Hydroxypropyl)-3-propyl-8-methyl xanthine,
1- (2-Hydroxypropyl)-3-butyl xanthine,
1-(3-Hydroxypropyl)-3-propyl xanthine,
1- (3-Hydroxypropyl)-3-propyl-8-methyl xanthine,
1-(3-Hydroxypropyl)-3-propyl-8-ethyl xanthine,
1-(3-Hydroxypropyl)-3-butyl xanthine,
1-(3-Hydroxypropyl)-3-isobutyl xanthine,
1-(3-Hydroxypropyl)-3-isobutyl-8-methyl xanthine,
1- (3-Hydroxybutyl)-3-methyl xanthine,
1- (3-Hydroxybutyl)-3-ethyl xanthine,
1-(3-Hydroxybutyl)-3-ethyl-8-methyl xanthine,
1-(3-Hydroxybutyl)-3-propyl xanthine,
1- (3-Hydroxybutyl)-3-isobutyl xanthine,
1- (4-Hydroxybutyl)-3-ethyl xanthine,
1-(4-Hydroxybutyl)-3-propyl xanthine,
1- (4-Hydroxybutyl)-3-propyl-8-methyl xanthine,
1-(4-Hydroxybutyl)-3-butyl xanthine,
1- (4-Hydroxybutyl)-3-isobutyl-8-methyl xanthine,
1-(4-Hydroxypentyl)-3-methyl xanthine
1-(4-Hydroxypentyl)-3-propyl xanthine,
1-(5-Hydroxypenty1)-3-methy1 xanthine, 1-(5-Hydroxypenty1-3-propyl xanthine.et 1-(5-Hydroxypenty1)-3-propyl-8-methyl xanthine.
Physiologically acceptable salts of the compounds corresponding to general formula (I) are understood to be the salts which these compounds form with pharmaceutically acceptable bases. The salts in question are salts of which the cations are harmless with respect to animal organisms and do not produce any side effects in therapeutic doses. Salts such as these include the salts of alkali metals, such as sodium, potassium, pharmaceutically acceptable salts of ammonium and amines known to the expert. These salts are prepared by heating the compound corresponding to general formula (I) in the presence of the appropriate base and in the presence or absence of a solvent, preferably followed by recrystallization.
The compounds according to the invention are prepared by one of the following processes:
A) A uracil corresponding to the following formula
II NH-C-R״ o (II) NH<sub>2</sub>
<img file="IL84266A_D0002.tif" />
is reacted with an alkylating agent of the formula R^-X, where R., R- and R<sub>o</sub> are as defined in general formula (I), 1 צ o except that is not ω-hydroxybutyl, and where X is a halogen atom, preferably bromine, or monosulfate or disulfate or p-toluenesulfonate, <sup>1</sup>in a solvent suitable for all the reactants, such as for example dimethylformamide (DMF), dimethylsulfoxide (DMSO) or hexamethylphosphorotriamide (HMPT), at a temperature in the range from 20 to 40’C and in the presence of an alkali metal, hydroxide, for example sodium hydroxide in solid form. The reaction is preferably carried out in DMF at 20<sup>e</sup>C in accordance with the following scheme:
<img file="IL84266A_D0003.tif" />
R^X ---------j,
<img file="IL84266A_D0004.tif" />
(III)
The product corresponding to general formula (III) is then cyclized at 20 to 100*C in an alkali metal hydroxide solution in accordance with the following reaction scheme:
<img file="IL84266A_D0005.tif" />
Although it is possible to isolate the derivative of general formula (III), it is preferred to carry out cycliZation directly without isolating or purifying the derivative in question. To this end, the reaction medium is neutralized and the solvent evaporated, after which the residue is dissolved in an alkali hydroxide solution and the resulting solution heated to reflux temperature.
B) In a variant of this process, the uracil(II) is alkylated with agent containing a function which may be
35.
converted into a hydroxyl group, for example a -COO-R^ function, in accordance with the following reaction scheme:
<img file="IL84266A_D0006.tif" />
+ X-(CH<sub>2</sub>)<sub>y</sub>־COO-R<sub>4</sub>
<img file="IL84266A_D0007.tif" />
(IV) in which R,, R<sub>o</sub> and X are as defined above, y is a number of from 1 to 4 and R<sub>4</sub> is an alkyl group. This alkylation reaction is carried out in the same way as for A) in a solvent suitable for all the reactants, such as DMF, DMSO or HMPT, at a temperature of from 20 to 40<sup>e</sup>C and in the presence of an alkali metal hydroxide in solid form. The alkylation step is followed by cyclization and simultaneous )hydrolysis of the ester (IV) at 20 to 100°C in an alkali metal hydroxide solution in accordance with the following reaction scheme:
<img file="IL84266A_D0008.tif" />
<img file="IL84266A_D0009.tif" />
Although the acid (V) may be directly reduced to alcohol, it is preferred to re-esterify the acid (V) with an alcohol such as methanol, ethanol or propanol, under reflux to obtain the corresponding ester which is then reduced in known manner, for example in the presence of LiAlH^ in THF, to obtain the following product according to the invention:
<img file="IL84266A_D0010.tif" />
(I)
Accordingly, it can be seen that ω-hydroxyalkyl xanthines are always obtained in this second embodiment of the process according to the invention.
for preparation of compounds
C) In a final embodiment of the process/according to the invention, (ω-l)-hydroxyalkyl xanthines are prepared by alkylation of the uracil (II)
<img file="IL84266A_D0011.tif" />
(ID with an alkylating agent of the formula R<sub>5</sub>X, where R<sub>3׳</sub> R<sub>g</sub> ' and X are as defined above and R^ is a C^-C^ (ω-l)-alkenyl group. The alkylation reaction is carried out under the same conditions as for A) and B), namely in a solvent suitable for all the reactants, such as DMF, DMSO or HMPT, at a temperature in the range from 20 to 40°C and in the presence of an alkali metal hydroxide in solid form. The intermediate product obtained is then cyclized at 20 to 100°C in an alkali metal hydroxide solution in accordance with the following reaction scheme:
<img file="IL84266A_D0012.tif" />
<img file="IL84266A_D0013.tif" />
The final step comprises hydration of the double bond of r_ by an addition reaction of the Markownikoff type. This 5 addition may be carried out in two ways:
Method A: using dilute sulfuric acid at a temperature of approximately 100<sup>e</sup>C over a period of several days.
Method B: by the reductive oxymercuration-demercuration method in the presence of mercury acetate and then NaBH^ (Larock, R.C.: Solvomercuration/Demercuration Reactions in Organic Synthesis, Springer Verlag, Berlin, 1986, Chap. 2).
The.present invention also relates to a pharmaceutical composition containing a compound of general formula (I) in combination with an inert, pharmaceutically acceptable support.
The medicament according to the invention may be made up in various pharmaceutical forms containing the usual excipients or vehicles, such as tablets, capsules, suppositories, solutions, suspensions, and may be administered orally, sublingually, rectally, subcutaneously, intramuscularly, intravenqfously or by inhalation.
Before actual examples of the synthesis of the compounds according to the invention are given, Table I below shows the method of preparation and the alkylating agent to be used for 27 compounds according to the invention. Table II shows the melting point and recrystallization solvent for these same 27 compounds and Table III the 13 C NMR values.
Table I
<td> Xanthine no.</td><td> Canpouncl according to the invention</td><td> Preparation</td><td> Alkylating agent</td>
<td> 1</td><td> l-(2-Hydroxyethyl)-3-propyl xanthine</td><td> Method A</td><td> 2-Branoethanol</td>
<td> 2</td><td> l-(2-Hydroxyethyl)3־-isobutyl xanthine</td><td> Method A</td><td> 2-Branoethanol</td>
<td> 3</td><td> l-(2“Hydroxyethyl)־3־isobutyl-81־nethyl xanthine</td><td> Method A</td><td> 2-Branoethanol</td>
<td> 4</td><td> l-(2-Hydroxypropyl)־3־p10pyl xanthine</td><td> Method C/Variant B</td><td> Allyl branide</td>
<td> 5</td><td> l-(2־Hydroxypropyl)-3-propyl-81rethyl xanthine</td><td> Method C/Variant A</td><td> Allyl branide</td>
<td> 6</td><td> l-(2־Hycbx)xypropyl)-3-butyl xanthine</td><td> Method C/Variant B</td><td> Allyl branide</td>
<td> 7</td><td> l-(3-Hydroxypropyl)־3־propyl xanthine</td><td> Method A</td><td> 3-Brano-l-piopanol</td>
<td> 8</td><td> l-(3-Hydroxypropyl)-3־propyl8־-i11ethyl xanthine</td><td> Method A</td><td> 3-Brano־l־propanol</td>
<td> 9</td><td> l-(3־Hydroxypropyl)3־-propyl8־-ethyl xantine</td><td> Method A</td><td> 3-Brano-l-propanol</td>
<td> 10</td><td> l־3)־Hydroxyprqjyl)־3־totyl xanthine</td><td> Method A</td><td> 3-Brano-l-propanol</td>
<td> 11</td><td> l-(3-HydK)xypropyl)-3-isotutyl xanthine</td><td> Method A</td><td> 3-Brano-l-propanol</td>
<td> 12</td><td> l-(3-lfydroxypropyl)3־-isobutyl־8־methyl xanthine</td><td> Method A</td><td> 3-Brano-l-propanol</td>
<td> 13</td><td> l3)־-Hytaxybutyl|-3-!1ethyl xanthine</td><td> . Method C/Variant A</td><td> 4־Brano־l־butene</td>
<td> 14</td><td> l-(3-Hydroxybutyl)-3־ethyl xanthine</td><td> Method C/Variant A</td><td> 4-Brano-l-butene</td>
<td> 15</td><td> l-(3־Hydroxybutyl)־3־ethyl8־-nethyl xanthine</td><td> Method C/Variant A</td><td> 4-Brano-l-butene</td>
<td> 16</td><td> l-0־Hydroxytatyl)-3־propyl xanthine</td><td> Method C/Variant A</td><td> 4-Brano-l-butene</td>
<td> 17</td><td> l-(3-Hydrojqtotyl)3־-isobutyl xanthine</td><td> Method C/Variant A</td><td> 4-BraiD-l-butene</td>
<td> 18</td><td> l־4)־Hydroxybutyl)־3־ethyl xanthine</td><td> Method B</td><td> Ethyl 4-branobutyrate</td>
<td> 19</td><td> l-(4-Hydroxybutyl|3־-propyl xanthine</td><td> Method B</td><td> Ethyl 4-branobutyrate</td>
<td> 20</td><td> l־H־Hydraqi»tyl)־3־propyl11־8־ethyl xanthine</td><td> Method B</td><td> Ethyl 4-bxanobutyrate</td>
<td> 21</td><td> 14)־-Hydroxjtotyl)־3־butyl xanthine</td><td> Methods</td><td> Ethyl 4-branobutyrate</td>
<td> 22</td><td> l-(4־Hydroxybutyl)־3־isotutyl־8־methyl xanthine</td><td> Method B</td><td> Ethyl 4-branobutyrate</td>
<td> 23</td><td> l־4)־Hydroxypentyl)־3־n1ethyl xanthine</td><td> Method C/Variant A</td><td> 5-Brano-l־pentene</td>
<td> 24</td><td> l־4)־Hydroxypentyl)־3־propyl xanthine</td><td> Method C/Variant B</td><td> 5-Brano-l-pentene</td>
<td> 25</td><td> l-(5־Hydroxypentyl)3־-n1ethyl xanthine</td><td> Method A</td><td> 5-Brano־l-pentanol</td>
<td> 26</td><td> l-|5-Hydroxypentyl)-3־propyl xanthine</td><td> Method A</td><td> 5-Brano-l-pentanol</td>
<td> 27</td><td> l-|5-Hydroxypentyl)-3־propyl8־-nBthyl xanthine</td><td> Method A</td><td> 5-Brano-l־pentanol</td>
Table II
Xanthine No.
Mp. (״C)
Recrystallization solvent
<td> 1</td><td> 178-179</td><td> Acetone</td>
<td> 2</td><td> 200-202</td><td> Acetone</td>
<td> 3</td><td> 227-229</td><td> Chloroform</td>
<td> 4</td><td> 150-152</td><td> Chloroform</td>
<td> 5</td><td> . 196-197</td><td> Methanol</td>
<td> 6</td><td> 157-158</td><td> Water</td>
<td> 7</td><td> 145-146</td><td> Methanol</td>
<td> 8</td><td> 222־221</td><td> Methanol</td>
<td> 9</td><td> 196-198</td><td> Water</td>
<td> 10</td><td> 112־111</td><td> Water</td>
<td> 11</td><td> 159-160</td><td> Acetone</td>
<td> 12</td><td> 248-250</td><td> Ethanol</td>
<td> 13</td><td> 200-201</td><td> Acetone</td>
<td> 14</td><td> 217-218</td><td> Water</td>
<td> 15</td><td> 212-213</td><td> Water</td>
<td> 16</td><td> 163-164</td><td> Acetone</td>
<td> 17</td><td> 142־141</td><td> Acetone</td>
<td> 18</td><td> 207-208</td><td> Water</td>
<td> 19</td><td> 173-174</td><td> Acetone</td>
<td> 20</td><td> 192-193</td><td> Water</td>
<td> 21</td><td> 122-123</td><td> Acetone</td>
<td> 22</td><td> 211-212</td><td> Methanol</td>
<td> 23</td><td> 180-181</td><td> Acetone</td>
<td> 24</td><td> 153-154</td><td> Acetone</td>
<td> 25</td><td> 190-191</td><td> Water</td>
<td> 26</td><td> 151-152</td><td> Water</td>
<td> 27</td><td> 184-185</td><td> Dioxane</td>
<td> Table III:</td><td colspan="4"> ^c-NMR values (δρριη; solvent:DMSO-d^; temperature! ambient, except *! 80°C)</td>
<td> Xanthine no.</td><td> Purine ring</td><td> Substituents</td><td> 1</td><td></td>
<td></td><td> C-2 C-4 C-5 C-6 C-8</td><td> R-l</td><td> R3־</td><td> R-8</td>
<td> 1</td><td> 150.8 147.7 106.5 154.4 140.4</td><td> 42.6 57.9</td><td> 44.4 20.8 10.9</td><td></td>
<td> 2</td><td> 151.0 147.9 106.5 154.4 140.3</td><td> 42.7 57.9</td><td> 49.9 26.9 19.8(2x)</td><td></td>
<td> 3</td><td> 151.0 148.2 106,1 153,8 150.3</td><td> 42.5 57.9</td><td> 49.8 26.8 19.7(2x)</td><td> 14.2</td>
<td> 4</td><td> 151.0 147.7 106.6 154.6 140.5</td><td> 47.5 63.7 20.9</td><td> 44.4 20.9 10.9</td><td></td>
<td> 5</td><td> 151.0 147.9 106.2 154.0 150.4</td><td> 47.3 63.6 20.9</td><td> 44.4 20.9 10.9</td><td> 14.2</td>
<td> 6</td><td> 151.0 147.6 106.6 154.5 140.4</td><td> 47.5 63.7 20,9</td><td> 42.6 29.6 19.3 13.5</td><td></td>
<td> 7</td><td> 150.6 147.6 106.5 154.2 140.5</td><td> 38.4 31.0 58.8</td><td> 44.4 20.8 10.9</td><td></td>
<td> 8</td><td> 150.7 147.9 106.2 153.8 150.5</td><td> 38.3 31.1 58.9</td><td> 44.4 20.9 10.9</td><td> 14.2</td>
<td> 9</td><td> 150.7 147.8 106.2 153.9 155.4</td><td> 38.3 31.1 58.9</td><td> 44.3 20.8 10.9</td><td> 21.7 12.2</td>
<td> 10</td><td> 150.7 147.6 106.6 154.3 140.5</td><td> 38.4 31.1 58.9</td><td> 42.6 29.6 19.4 13.5</td><td> t</td>
<td> 11</td><td> 150.8 147.7 106.3 154.1 139.9</td><td> 38.1 30.9 58.7</td><td> 49.7 26.6 19.4(2x1</td><td> Λ</td>
<td> 1 <sup>12</sup></td><td> 150.8 148.0 106.0 153.6 150.0</td><td> 37.9 30.9 58.6</td><td> 49.5 26.5 19.3(2x1</td><td> 13.8</td>
<td> h 13</td><td> 150.9 147.8 106.5 154.3 140.4</td><td> 38.4 37.2 64.3 23.5</td><td> 29.6</td><td> «</td>
<td> 1 14</td><td> 150.4 147.3 106.6 154.3 140.6</td><td> 38.3 37.2 64.3 23.5</td><td> 38.0 13.1</td><td></td>
<td> 15</td><td> 150,4 147.6 106.3 153.7 150.5</td><td> 38.4 37.2 64.3 23.4</td><td> 38.0 13.1</td><td> 14,2</td>
<td> 16</td><td> 150.7 147.6 106.3 154.3 140.5</td><td> 38.3 37.2 64.4 23.4</td><td> 44.4 20.8 10.9</td><td> t</td>
<td> 17</td><td> 150.8 147.9 106.4 154.2 140.3</td><td> 38.4 37.2 64.3 23.4</td><td> 49.8 26.8 19.7(2x)</td><td></td>
<td> 18</td><td> 150.3 147.1 106.4 154.0 140.0</td><td> 40.5 24.2 29.7 60.4</td><td> 37.7 12.7</td><td> ־</td>
<td> 19</td><td> 150.6 147.6 106.5 154.3 140.5</td><td> 40.5 24.1 30.0 60.6</td><td> 44.4 20.8 10.9</td><td></td>
<td> 20</td><td> 150.5 147.9 106.2 153.8 150.5</td><td> 40.5 24.5 30.0 60.6</td><td> 44.3 20.9 10.9</td><td> 14,2</td>
<td> 21</td><td> 150.6 147.7 106.6 154.3 140.5</td><td> 40.6 24.5 30.0 60.7</td><td> 42.6 29.7 19.4 13.5</td><td> .י</td>
<td> 22 0</td><td> 150.8 148.0 106.0 153.6 150.0</td><td> 40.2 24.2 29.7 60.5</td><td> 49.6 26.5 19.4(2x1</td><td> 13.8*</td>
<td> 23</td><td> 150.9 147.9 106.4 154.2 140.4</td><td colspan="2"> 40.8 24.2 36.2 65.7 23.5 29.6</td><td> *</td>
<td><sup>24</sup></td><td> 150.6 147.6 106.5 154.2 140.4</td><td colspan="2"> 40.6 24.1 36.2 65.7 23.5 44.4 20.8 10.9</td><td></td>
<td> 25</td><td> 150.9 147.8 106.5 154.2 140.3</td><td colspan="2"> 40.6 27.4 22.9 32.2 60.6 29.6</td><td> W</td>
<td> • . 26</td><td> 150.6 147.6 106.3 154.2 140.4</td><td colspan="2"> 40.6 27.4 22.9 32.1 60.5 44.4 20.8 10.9</td><td></td>
<td> \ , ' 27 ׳־ i 4 ' ׳» / .!</td><td> 150.5 147.9 106.1 153.7 150.5</td><td colspan="2"> 40,5 27.4 22.9 32.2 60.5 44.3 20.8 10.9</td><td> 14.2</td>
The invention is illustrated by the following Examples in which the quantities are by weight, unless otherwise indicated.
EXAMPLE 1-(5-hydroxypentyl)-3- propy1-8-methyl xanthine (Method A: xanthine no. 27)
22.6 g (0.1 mole) of l-propyl-5-acetylamino-6-aminouracil (II) (R<sub>3</sub> = methyl, Rg = methyl) are suspended under nitrogen in 200 ml of anhydrous dimethyl formamide (DMF). 21.7 g (0.13 mole) of 5-bromo-l-pentanol are then added, after which 6 g (0.15 mole) of powder-form solid NaOH are added with stirring in portions of 1 g at a time at intervals of 1 hour. After the third addition, the suspension is completely dissolved. The solution is left standing overnight to complete the reaction. The solvent is evaporated in a rotary evaporator at 40<sup>e</sup>C/0.1 mm Hg. The oily residue, which is the uracil (III) (R<sub>x</sub> = 5-hydroxvpentyl, R<sub>3</sub> = propyl, Rg = methyl), which is not purified, is dissolved in 100 ml of 10% NaOH and the solution heated under reflux for 2 hours. The solution is then cooled in a ice bath and neutralized to pH 5 with acetic acid. The product precipitated is filtered, washed with cold water and then dried in a vacuum oven. The dried product is dissolved in 500 ml of ethanol and the solution is decoloured overnight with active carbon. The product is precipitated by addition of 1 litre of water, filtered and the treatment with active carbon repeated. The dried product is recrystallized twice with 120 ml of dioxane. Yield: 23.5 g (80%); colourless crystals; Mp. 184 - 185°C.
EXAMPLE 1-(4-hydroxybutyl)-3-butyl xanthine (Method B, xanthine no. 21)
11.3 g (0.05 mole) of l-butyl-5-formylamino-6-amino uracil (II) (Κ<sub>χ</sub> = butyl, Ηθ = H) are dissolved under nitrogen in 200 nil of DMF. 10.6 ml (0.075 mole) of ethyl 4-bromobutyrate are added, after which 2 g (0.05 mole) of solid powder-form NaOH is added with thorough stirring in portions of 0.5 g at intervals of 1 hour. On completion of the addition, the mixture is left to react overnight. The solvent is then evaporated and the oily residue of (IV) (substituent in the !-position = (CHji^COOEt) is dissolved in 100 ml of 10% NaOH. This solution is then heated under reflux for 0.5 hour and then cooled, neutralized to pH 5 with acetic acid and filtered. The precipitate formed is dried. Yield: 9.2 g (60%) of crude xanthine (V) (substituent in the !-position = (CH2)3COOH, = butyl, Ηθ = H).
Without purification, the product is esterified under reflux for 5 hours with 200 ml of methanol containing 1 ml of concentrated sulfuric acid. The solution is concentrated to a small volume and 50 ml of water are added. The ester precipitate formed (substituent in the 1-position = (C^)^־ COOMe) is filtered, washed and dried. Yield: 9 g (93%).
Without purification, this product is dissolved in 200 ml of anhydrous tetrahydrofuran (THF), cooled to between 0 and -10°C and added dropwise to a solution containing 2.13 g (0.056 mole) of LiAlH^ in 150 ml of anhydrous THF. On completion of the addition, the mixture is left to react for another 2 hours at 0’C, after which the excess LiAlH^ is destroyed by addition of 50 ml of water. The mixture is acidified to pH 2 with concentrated HC1, after which the THF is evaporated. The residual aqueous solution is continuously extracted overnight with dichloromethane. The organic extract is dried and the solvent evaporated. The slightly coloured solid residue (6.1 g) is recrystallized twice from acetone. Yield: 4.6 g (33% from II); colourless crystals; Mp. 122 - 123°C.
EXAMPLE
1-(3-hydroxybutyl)-3-isobutyl xanthine (Method C/Variant A, xanthine no. 17)
11.3 g (0.05 mole) of l-isobutyl-5-formylamino-6-aminouracil (II) (R<sub>3</sub> = isobutyl, R<sub>g</sub> = H) are dissolved in 220 ml of DMF. 8.8 g (0.065 mole) of 4-bromo-l-butene are added, after which 3 g (0.075 mole) of powder-form NaOH are added with stirring in portions of 0.5 g at intervals of 1 hour. The mixture is left standing overnight, after which the solvent is evaporated in vacuo. The crude residue (R<sub>g</sub> 3-butenyl). is taken up in 100 ml of 10% NaOH and heated under reflux for 0.5 hour. The solution is then cooled and neutralized to pH 5 with acetic acid, after which the precipitate formed is filtered and dried. 8.5 g of crude solid product (VI) (R<sub>g</sub> = 3-butenyl, R<sub>g</sub> = isobutyl, R<sub>g</sub> = H) are obtained. This product is. purified by passage through a column of silica (85 g) using chloroform as eluent: 6.5 g of colourless product.
A mixture containing 6 g of the above compound in 100 ml of 20% sulfuric acid is heated at 100°C for 4 days, cooled and neutralized to pH 5 with 50% KOH. The solution is evaporated to dryness, the residue is taken up in 100 ml of boiling absolute ethanol and the insoluble fraction is filtered. The filtrate is freed from the solvent, leaving a coloured solid residue (6.4 g) which is passed through a column of silica (650 g) eluted with a gradient of chloroform/methanol (0-5% methanol). The xanthine is recrystallized twice from acetone. Yield: 4.5 g (33% based on II)ן Mp. = 141 - 142’C.
EXAMPLE
1- (2-hydroxypropyl)-3-butyl xanthine (Method C:Variant B, xanthine no. 6) g (0.050 mole) of mercury (II) acetate are dissolved in 250 ml water. 12.4 g (0.05 mole) of l-allyl-3-butyl xanthine (prepared as described above from l-butyl-5-formylamino-6-aminouracil.and allyl bromide) dissolved in 250 ml of THF are added dropwise with stirring over a period of 10 minutes. After a few minutes, a precipitate is formed. Stirring is continued for 30 minutes, after which the mixture is cooled in an ice bath. 68 ml of 3 N NaOH are added, followed by the dropwise addition of 60 ml of a freshly prepared 0.5 M solution of NaBH^ in 3 N NaOH. On completion of the addition, stirring is continued for another 15 minutes. The solution is neutralized to pH 4-5 with 6 N HC1 (approximately 60 ml), saturated with NaCl and the xanthine extracted with dichloromethane (3 x 200 ml). The organic extract is dried and the solvent is evaporated: 12.9 g of crude product containing 20% of starting product. The products -are separated by passing the mixture through a column of silica using chloroform as eluent for the starting product and chloroform/methanol (95/5) for the hydroxylated xanthine (9.5 g). The xanthine is recrystallized twice from water: 8.5 g (64%); Mp. 157 - 158<sup>e</sup>C.
EXAMPLE 5
The compounds (I) according to the invention have been found to show low toxicity and have little or no effect on the central nervous system. By contrast, they were found to be active in the in vitro tests for inotropic (cardiotonic) activity. Table IV shows the results of these tests.
Table (IV)
<td> Xanthine No.</td><td> Cardiotonic activity^ (minimum effective concentration in yg/ml producing a significant response)</td>
<td> 1</td><td> 1</td>
<td> 2</td><td> 2.5</td>
<td> 3</td><td> 2</td>
<td> 4</td><td> 3.3</td>
<td> 5</td><td> 0.6</td>
<td> 6</td><td> 4.2</td>
<td> 7</td><td> 1.3</td>
<td> 8</td><td> 4.2</td>
<td> 9</td><td> 2</td>
<td> 10</td><td> 0.4</td>
<td> 11</td><td> 0.7</td>
<td> 12</td><td> 0.5</td>
<td> 13</td><td> 50</td>
<td> 14</td><td> 0.8</td>
<td> 15</td><td> 0.6</td>
<td> 16</td><td> 0.1</td>
<td> 17</td><td> 1.3</td>
<td> 18</td><td> 3.3</td>
<td> 19</td><td> 0.4</td>
<td> 20</td><td> 0.7</td>
<td> 21</td><td> 2</td>
<td> 22</td><td> 25</td>
<td> 23</td><td> 33.3</td>
<td> 24</td><td> 0.7</td>
<td> 25</td><td> 6.7</td>
<td> 26</td><td> 0.2</td>
<td> 27</td><td> 0.3</td>
References
Theophylline 2) Amrinone
2) Milrinone ibmx<sup>3)</sup>
0.5
0.5
1) Measurement of the force of contraction of the isolated and electrically stimulated left auricle of a guinea pig in accordance with Erjavek, F. and Adamic, S., Arch. Int. Pharmacodyn. 155: 251, 1965. A response is considered to be significant when the basic contraction force is increased by more than 40%.
2) Prior art cardio stimulant medicament.
3) l-methyl-3-isobutylxanthine.
Contents6
15 sheets
Sheet 1 Sheet 2 Sheet 3 Sheet 4 Sheet 5 Sheet 6 Sheet 7 Sheet 8 Sheet 9 Sheet 10 Sheet 11 Sheet 12 Sheet 13 Sheet 14 Sheet 15
24 members in 14 offices
Priority claims4
| Document | Office | Kind | Date |
|---|---|---|---|
| 425386 | Switzerland | A | |
| 425386 | Switzerland | A | |
| 425386 | – | – | – |
| CH19860004253 | – | – | – |
Members24
| Document | Office | Kind | |
|---|---|---|---|
| DK551487D0 | Denmark | D0 | |
| IL84266A0 | Israel | A0 | |
| IL84266D0 | Israel | D0 | |
| ZA877851B | South Africa | B | |
| AU7998087A | Australia | A | |
| DK551487A | Denmark | A | |
| JPS63122683A | Japan | A | |
| EP0269841A1 | European Patent Office (EPO) | A1 | |
| KR880005131A | Republic of Korea | A | |
| CH670090A5 | Switzerland | A5 | |
| AU604767B2 | Australia | B2 | |
| IL84266AThis record | Israel | A | |
| CA1296001C | Canada | C | |
| EP0269841B1 | European Patent Office (EPO) | B1 | |
| AT82289T | Austria | T | |
| ATE82289T1 | Austria | T1 | |
| DE3782619D1 | Germany | D1 | |
| DE3782619T2 | Germany | T2 | |
| GR3006223T3 | Greece | T3 | |
| KR930010559B1 | Republic of Korea | B1 | |
| ES2043631T3 | Spain | T3 | |
| US5338741A | United States of America | A | |
| DK169336B1 | Denmark | B1 | |
| JP2527769B2 | Japan | B2 |
2 legal events, as the office reported them to INPADOC
Over the term
Point at a mark for the eventEvents
| Event | Code | |
|---|---|---|
| Patent not in force due to non-payment of renewal feesMM9K | MM9K | |
| Patent renewedKB | KB |
Numbers
- Publication, DOCDB
- 84266
- Publication, EPODOC
- IL84266
- Application
- 84266
- Application, DOCDB
- 8426687
- Application, EPODOC
- IL19870084266
Titles
- English
- 1-HYDROXYALKYL-3-ALKYLXANTHINES AND PHARMACEUTICAL COMPOSITIONS CONTAINING THEM
Classification
- CPC, 3
- C07D473/06
- C07D473/08
- A61P9/04
- IPC, 5
- A61K31 52
- A61K31 522
- A61P9 04
- C07D473 04
- C07D473 06
