‘Our client is considering whether to manufacture and/or import and/or sell atorvastatin calcium in the UK upon expiry of the data package exclusivity attaching to that pharmaceutical. The purpose of this letter is to ensure that our client's path is sufficiently cleared of patent issues prior to considering a launch and is sent pursuant tosection 71 of the Patents Act 1977 . Our client's atorvastatin calcium will comprise the single optically pure enantiomer [R-(R*,R*)]-2-(4-f1uorophenyl)-,-dihydroxy-5-(1-methylethyl)-3-phenyl-4-[(phenylamino)-carbonyl]-lH-pyrrole-1-heptanoic acid, calcium salt trihydrate. Our client requires acknowledgement from you that any acts including; manufacture, keeping, importing for disposal, sale and any other acts of the kind mentioned inSection 60 of the Patents Act 1977 and done in the United Kingdom would not constitute infringement of any of the claims of the '633 patent.’
“A compound of structural formula I wherein X is -CH 2-, -CH 2CH 2-, -CH 2CH 2CH 2- or -CH 2CH(CH 3)-; R 1 is 1-naphthyl; 2-naphthyl; cyclohexyl; norbornenyl; 2-, 3-, or 4-pyridinyl; phenyl, phenyl substituted with fluorine, chlorine, bromine, hydroxyl; trifluoromethyl; alkyl of from one to four carbon atoms, alkoxy of from one to four carbon atoms, or alkanoyloxy of from two to eight carbon atoms; either of R 2 or R 3 is -CONR 5R 6 where R 5 and R 6 are independently hydrogen; alkyl of from one to six carbon atoms; 2-, 3-, or 4-pyridinyl; phenyl; phenyl substituted with fluorine, chlorine, bromine, cyano, trifluoromethyl, or carboalkoxy of from three to eight carbon atoms; and the other of R 2 or R 3 is hydrogen; alkyl of from one to six carbon atoms; cyclopropyl; cyclobutyl, cyclopentyl, cyclohexyl; phenyl; or phenyl substituted with fluorine, chlorine, bromine, hydroxyl; trifluoromethyl; alkyl of from one to four carbon atoms, alkoxy of from one to four carbon atoms, or alkanoyloxy of from two to eight carbon atoms; R 4 is alkyl of from one to six carbon atoms; cyclopropyl; cyclobutyl; cyclopentyl; cyclohexyl; or trifluoromethyl; or a hydroxy acid or pharmaceutically acceptable salts thereof, derived from the opening of the lactone ring of the compounds of structural formula I and having the formula X where X, R 1, R 2, R 3 and R 4 are as defined above.” where X, R 1, R 2, R 3 and R 4 are as defined above.”
‘15. For many years it has been recognised that the vast majority of drugs exert their activity by binding to a protein receptor to form a drug-receptor complex. Although there are exceptions, this process is usually readily reversible and does not generally involve the formation of covalent bonds. The drug receptor complex is formed by a combination of hydrogen bonds, π-π stacking between aromatic rings, salt bridge formation between carboxylic acids and amines and hydrophobic binding. The particular parts of a drug that cause it to bind to its receptor are together termed the pharmacophore. Since the protein receptors are composed of a complex array of chiral amino acids it follows that the drug's binding site is in a chiral environment (although the drug itself may or may not be chiral). 16. However, in circumstances where the drug substance does have an asymmetric carbon atom or atoms, the binding efficiency to a given receptor and therefore the biological activity of the enantiomers or diastereoisomers will be different. Within a chiral environment the two enantiomers of a racemate are totally different compounds and very often the majority of the biological activity observed for a racemate resides within a single enantiomer. Sometimes both the enantiomers of a racemate are biologically active but act at different receptors and cause different effects. 17. One of the most unfortunate and best known examples of this was the mild sedative and anti-emetic Thalidomide. The drug has an asymmetric centre but was marketed as the racemate. The R-isomer is a non-mutagenic sedative, whilst the S-isomer is mutagenic and caused widespread deformities amongst those children whose mothers took the drug during pregnancy …. Although this is a specific example, the principle was well understood by the skilled person at the30 May 1986 priority date of the '633 Patent.’
‘The compounds of structural formula I above possess two asymmetric carbon centers, one at the 4-hydroxy position of the pyran-2-one ring, and the other at the 6-position of the pyran-2-one ring where the alkylpyrrole group is attached. This asymmetry gives rise to four possible isomers, two of which are the R-cis- and S-cis-isomers and the other two of which are the R-trans- and S-trans-isomers. This invention contemplates only the trans- form of the compounds of formula I above.’
‘In the ring-opened dihydroxy acid form, compounds of the present invention react to form salts with pharmaceutically acceptable metal and amine cations formed from organic and inorganic bases. The term “pharmaceutically acceptable metal salt” contemplates salts formed with the sodium, potassium, calcium, magnesium, aluminum, iron and zinc ions.’
‘4.1 Claim 1 of the present application is directed to the hemicalcium salt of a particular R-enantiomer of a 4-carboxamido substituted ,-dihydroxy-1H-pyrrole-1-heptanoic acid showing hypocholesterolemic activity. [’633A], which is the state of the art acknowledged in the application as filed on page 1, line 10, refers to similar compounds having the identical hypocholesterolemic activity (column 7, line 33), notably the sodium salt of the racemate of the claimed enantiomer. The Board considers, in agreement with the Appellant and the Examining Division, that this disclosure of [’633A] represents the closest state of the art and, hence, takes it as the starting point when assessing inventive step. 4.2 In view of this state of the art, the problem underlying the present application as submitted by the Appellant consists in providing a hypocholesterolemic compound having improved handling properties, in particular improved hygroscopicity and solubility. 4.3 As a solution to this problem the present application proposes the hemicalcium salt of the particular R-enantiomer as defined in claim 1. 4.4 To support his submission that the alleged improvement is achieved by the claimed invention, the Appellant referred to his experimental report filed on20 June 2000 . That test report comprises experimental data about the hygroscopicity and the solubility of the hemicalcium salt of the R-enantiomer according to the claimed invention, on the one hand, and of the sodium salt of the racemate of that enantiomer according to example 2 of [’633A], on the other….The Board is satisfied that the problem underlying the patent in suit as defined in point 4.2 above is successfully solved by the claimed subject-matter. 4.5 Finally, it remains to be decided whether or not the proposed solution to the problem underlying the patent in suit involves an inventive step. [’633A], i.e. the closest prior art document (see point 4.1 above) is directed inter alia to pharmaceutically acceptable salts of the racemates of 4-carboxamido substituted ,-dihydroxy-1H-pyrrole-1-heptanoic acids having hypocholesterolemic activity. However, that document does not address the problem underlying the present application of improving the handling properties, in particular hygroscopicity and solubility, of hypocholesterolemic compounds. Thus, [’633A] neither gives any hint on how to solve that problem nor any incentive to modify those salts of the racemates into the hemicalcium salt of the particular R-enantiomer as defined in claim 1 in order to improve the handling properties thereof. Thus,[’633A] does not point to the claimed solution proposed for solving the problem underlying the present application.’
‘The ring-opened hydroxy acids of structural formula II This is an error for X. Formula II is an -haloester and not an acid. This is plainly a reference to the acid produced by hydrolysis of the lactone, which is Formula X. above are intermediates in the synthesis of the lactone compounds of formula I and may be used in their free acid form or in the form of a pharmaceutically acceptable metal or amine salt in the pharmaceutical method of the present invention. These acids react to form pharmaceutically acceptable metal and amine salts. The term “pharmaceutically acceptable metal salt” contemplates salts formed with the sodium, potassium, calcium, magnesium, aluminum, iron and zinc ions. The term “pharmaceutically acceptable amine salt” contemplates salts with ammonia and organic nitrogenous bases strong enough to form salts with carboxylic acids. Bases useful for the formation of pharmaceutically acceptable non-toxic base addition salts of the present invention form a class whose limits are readily understood by those skilled in the art.’
‘… To prevent misunderstanding, it should be expressly emphasised that when examining so-called selection inventions as to novelty the Board adheres to the principle that the sub-range singled out of a larger range is new not by virtue of a newly discovered effect occurring within it, but must be new per se (cf. T12/81 BAYER/Diatereoisomers OJ EPO 8/1982 296 303). An effect of this kind is not therefore a prerequisite for novelty; in view of the technical disparity [sc. between the new class and the old] however, it permits the inference that what is involved is not an arbitrarily chosen specimen from the prior art, that is, not a mere embodiment of the prior description, but another invention (purposive selection)’