“A. …..I would use it every time if I could Q. You would? A: If I could use it I would use it….. Q. So the position is that we are agreed that you would only move away from magnesium stearate if you were forced to? A. Yes. I have not disagreed with that in my witness statement.”
“by a conventional way into a pharmaceutical composition in the form of a tablet, granule, powder, capsule, suspension, parenteral injection, suppository or the like.” (Column 3, line 65 to column 4, line 1). It then explains the formulation process, as follows: “… the object compound may be mixed with one or more pharmaceutical carriers such as lactose, starch, mannitol, kaolin, crystalline cellulose, talc, calcium carbonate, magnesium stearate or the like.” (Column 4, lines 2-6). This is merely a list of popular excipients available at the date of filing of 640. Examples 1 to 6 concern methods of synthesis and crystallisation of nicorandil (base), nicorandil hydrochloride, and the nitric ester of N-(2-hydroxy-ethyl) isonicotinamide nitrate. Example 7 concerns pharmaceutical preparations. Particularly relevant for present purposes are Example 7(a) and (b) which both involve the preparation of tablet formulations. Example 7(a) is a sublingual tablet containing nicorandil prepared according to Example 2. It contains 0.6% (by weight) of magnesium stearate as the lubricant. Example 7(b) is a tablet prepared for internal use containing nicorandil prepared according to Example 1. It contains 0.5% (by weight) of magnesium stearate. There are no other examples that contain any alternative lubricant. Further, there is no suggestion in 640 that the Example 7 formulations are unstable, either as a result of humidity or mechanical pressure during compaction. To the contrary, Experiment 2(II) suggests that when the compound prepared according to Example 2 was sublingually administered to dogs as a tablet containing 1-10mg of nicarnadil, coronary flow was increased. Both Chugai and Ivax accepted that the Patent teaches that mixing nicorandil with 0.5% (by weight) stearic acid may result in a stable preparation and that I must assume for the purposes of this judgment that this teaching is correct. Accordingly, the difference between the inventive concept of all the claims and the 640 patent disclosure is the use of 0.5% stearic acid in addition to or in place of the excipients mentioned in the 640 patent. On the teaching of the Patent this will produce a stable formulation, as both sides agreed. In assessing the issue of whether or not this difference was obvious neither side suggested and there was no evidence that the skilled addressee would, as a matter of general knowledge or following a literature search, have known of what the Patent describes as being conventional practice on page 2, lines 15-22; that is to say, dealing with the instability of nicorandil by coating the nicorandil crystals with one or more fatty or waxy substances (such as stearic acid). Indeed, there was no evidence that, at the outset of the project, he would have known of the instability of nicorandil. I have to say I find this somewhat surprising but I must proceed on that basis. In these circumstances the case of obviousness advanced on behalf of Ivax was very straightforward. It ran as follows: The skilled addressee would have known that stearic acid was not just one of a number of lubricants, it was second only to magnesium stearate as the lubricant to use in excipient compatibility tests. Without invention he could (and probably would) select it as one of the two lubricants to use in pre-formulation. The other would be magnesium stearate. If magnesium stearate failed materially so as to render it unsuitable to go forward to formulation then plainly stearic acid would be obvious. But, even if it did not fail, stearic acid would (on the premises of the Patent) not have failed. There was no technical reason why it could not have been used as a lubricant. It was therefore a matter of choice rather than invention whether the skilled man chose to go forward with stearic acid as opposed to magnesium stearate. In substance, Ivax contended that it was technically obvious to formulate a tablet of nicorandil using stearic acid as a lubricant and, if used for that purpose, and in an appropriate amount to fulfil that purpose (say up to 1%), then it would in fact produce a stable formulation falling within the scope of the claims. Alternatively, and as a secondary submission, if magnesium stearate proved unsuitable then stearic acid would have been an obvious alternative. Chugai’s answer to this case was, in summary, as follows. As to the primary submission, the 640 patent examples describe the use of magnesium stearate as a lubricant. Moreover, the skilled person would use magnesium stearate unless there was a positive reason not to do so. The 640 patent does not describe any reason to change and there was no evidence that pre-formulation or formulation studies would lead the skilled person to conclude that magnesium stearate was unsatisfactory as a lubricant. Accordingly, it was simply not obvious to change to stearic acid. As to the secondary submission, if, during the course of pre-formulation or formulation, the problem of stability came to light then the skilled person would have no reason to attribute that problem to the magnesium stearate and would instead attempt to solve the problem by the one of the conventional means described in paragraph [48] above. It was not obvious that a stability problem could be solved by a change in lubricant. In evaluating these rival contentions I must first set out some relevant principles: All courses of action which present themselves without the exercise of invention are obvious: Brugger v Medicaid[1996] RPC 635 at 661. Evidence as to what the skilled person could or would have done can be relevant, but, at the end of the day, the key question is whether something in the claim was technically obvious in the light of the disclosure relied upon: Hallen v Brabantia[1991] RPC 195 at pp.211-212 (CA); Pharmacia v Merck[2001] EWCA Civ 1610 ;[2001] RPC 41 at [122]; Asahi Medical v Macopharma[2002] EWCA Civ 466 at [26] - [27]. Whether or not there is a reason for taking the step from the prior art may be an important consideration, but it is not an essential requirement of a conclusion of obviousness: Pharmacia v Merck at [124]. Care must be taken in suggesting that a particular route was “obvious to try”
“Q. There would be nothing unconventional in selecting stearic acid as your second lubricant?”
“.. if magnesium stearate showed incompatibility for any reason or if it was not possible to produce a stable formulation using magnesium stearate, stearic acid would be the next choice of lubricant.”
“ … tablet making was attempted with gradually increasing amounts ranging from a few times to ten-odd times the usual amount of a lubricant, such as magnesium stearate for example, which is generally used with a view to reducing the friction between particles on compression moulding a powder, but still no improvement was observed.” (, first paragraph) Finally, the inventors tried pre-coating the nicorandil crystals with a wax like material which is solid at room temperature and then stamping the coated crystals into the form of tablets. This solved the problem. They found that suitable wax like materials were stearyl alcohol, cetanol and stearic acid and that coating was achieved by dissolving the wax like material in an organic solvent such as chloroform, methylene chloride or ethanol, spray coating the crystals and then drying off the solvent. Preferred amounts of the wax like material are said to be from 5-30% with respect to the nicorandil. The examples show the benefit of pre-coating. In Example 1, stearyl alcohol was used as the wax like material and chloroform as the solvent. The resulting tablets (dried and undried) were stored at 40 °C for three months. Stability was evaluated in terms of residual nicorandil as a percentage of the initial weight as compared with tablets in which the stearyl alcohol was replaced with mannitol. The retention of nicorandil was markedly better in the case of the coated crystals. In Example 2, the wax-like material was stearic acid, present at 0.56% by weight of the formulation. The tablets were made using the same process as in Example 1. The stability tests showed that the addition of stearic acid resulted in a significant increase in nicorandil retention. With dried tablets, 99.5% of the nicorandil remained after three months at 40 °C (compared with 73.1% for the control formulation). With non-dried tablets the equivalent figures were 96.4% and 39.6%. It would be apparent to any skilled reader of the 659 application that the coating of nicorandil with the lubricant stearic acid does lead to a significant improvement in stability. Accordingly, the difference between the 659 disclosure and the inventive concept is that the 659 disclosure teaches a method in which the nicorandil crystals are coated with the stearic acid using a solvent such as chloroform whereas the invention of the Patent is that stability can be achieved simply by mixing the stearic acid with the nicorandil crystals. I turn then to consider whether this difference requires any degree of invention. Ivax submitted the answer is “no” for the following reasons. Mixing nicorandil with stearic acid in solid form would have been obvious in the light of the teaching of the 659 application. The skilled man would want to find out if he could do away with chloroform. Mixing the nicorandil with stearic acid (possibly an excess of stearic acid) to enhance coating would be the work of an inquisitive but not an inventive addressee. In his first report Professor Collett gave evidence which supported the submission advanced by Ivax. He said that the skilled formulator would note the addition of stearic acid produced a significant improvement in stability of the nicorandil formulation but would also be of the view that the process of dissolving it in chloroform was one to be avoided it all possible and an obvious alternative would be to see if the beneficial effects could be produced by direct mixing. In cross examination, however, Professor Collett took a rather different line. He explained that the reader of the 659 application would understand that the pre-coating was necessary to solve the stability problem. He understood this to reflect the difference in nature between magnesium stearate and stearic acid. Magnesium stearate has a specific surface area five to ten times greater than stearic acid with the result that, in his words, “you cannot stop it mixing” and it coats extremely well. Stearic acid, on the other hand, is not such a good mixer. Hence the need for the solvent. The solvent was used to ensure that the stearic acid was brought into contact with the nicorandil crystals. 16. Professor Collett explained the position thus (at Day 2, page 254): “What we found is that you put magnesium stearate in there, you put increasing amounts of magnesium stearate in, and we would get no improvement in the stability. So you then get the stearyl alcohol, dissolve it in chloroform, either spray it on or put it in a mixture, remove the alcohol and we get a stable compound; right? Fine. I am saying that the reason we have had to go to those lengths is because of the total different nature of the two materials that you are using.”
“A process for producing a stable nicorandil-containing pharmaceutical preparation which comprises mixing nicorandil with palmitic or stearic acid present in an amount of at least 3% of the total weight of the nicorandil-containing preparationa saturated higher aliphatic acid or a saturated higher alcohol both of which are solid at ordinary temperatures, and formulating the mixture in a suitable dosage form”
“in an amount of at least 3% of the total weight of the nicorandil-containing preparation”
“The decision as to whether there was an extension of disclosure must be made on a comparison of the two documents read through the eyes of a skilled addressee. The task of the Court is threefold: (a) To ascertain through the eyes of the skilled addressee what is disclosed, both explicitly and implicitly in the application. (b) To do the same in respect of the patent as granted. (c) To compare the two disclosures and decide whether any subject matter relevant to the invention has been added whether by deletion or addition. The comparison is strict in the sense that subject matter will be added unless such matter is clearly and unambiguously disclosed in the application either explicitly or implicitly.”
“Whether or not the adding of an undisclosed feature limiting the scope of protection conferred by the patent as granted would be contrary to the purpose of Article 123(2) EPC to prevent an applicant from getting an unwarranted advantage by obtaining patent protection for something he had not properly disclosed and maybe not even invented on the date of filing of the application, depends on the circumstances. If such added feature, although limiting the scope of protection conferred by the patent, has to be considered as providing a technical contribution to the subject-matter of the claimed invention, it would, in the view of the Enlarged Board, give an unwarranted advantage to the patentee contrary to the above purpose of Article 123(2)EPC. Consequently, such feature would constitute added subject-matter within the meaning of that provision. A typical example of this seems to be the case, where the limiting feature is creating an inventive selection not disclosed in the application as filed or otherwise derivable therefrom. If, on the other hand, the feature in question merely excludes protection for part of the subject-matter of the claimed invention as covered by the application as filed, the adding of such feature cannot reasonably be considered to give any unwarranted advantage to the applicant. Nor does it adversely affect the interests of third parties (cf. paragraph 12 above). In the view of the Enlarged Board, such feature is, on a proper interpretation of Article 123(2)EPC, therefore not to be considered as subject-matter extending beyond the content of the application as filed within the meaning of that provision.”
“Surprisingly enough the solution of this object has been achieved, when nicorandil was mixed with a saturated higher aliphatic acidpalmitic acid or stearic acid present in an amount of at least 3% of the total weight of the nicorandil-containing preparation or a saturated higher alcohol both of which are is solid at ordinary temperatures, and optionally with fumaric acid, oxalic acid, salicylic acid, tartaric acid and/or glutaric acid, leading to a nicorandil preparation having remarkably improved stability by compressing the mixture into tablets.”
“The present invention has been accomplished on the basis of this finding and the method it proposes is entirely different from the conventional method of coating the nicorandil crystals with a normally solid fatty or waxy material. In one aspect, the present invention relates to a method for producing a stable nicorandil preparation by mixing nicorandil with at least 0.5% (on the basis of the weight of the preparation) of a saturated higher aliphatic acid or a saturated higher alcohol both of which are is solid at ordinary temperatures, and optionally with at least 0.1% (on the basis of the weight of the preparation) of fumaric acid, oxalic acid, salicylic acid, tartaric acid and/or glutaric acid.”