“… The combined skills (and mindsets) of real research teams in the art is what matters when one is constructing the notional research team to whom the invention must be obvious if the patent is to be found invalid on this ground.”
“The authorities indicate that CGK includes not just information directly in the mind of the notional skilled person, but such information as he would be able to locate by reference to well-known textbooks. This guidance needs to be adapted and kept appropriately up to date for the procedures for dissemination of scientific knowledge in the age of the internet and digital databases of journal articles. Searches of such databases are part and parcel of the routine sharing of information in the scientific community and are an ordinary research technique. In my view, if there is a sufficient basis (as here) in the background CGK relating to a particular issue to make it obvious to the unimaginative and uninventive skilled person that there is likely to be - not merely a speculative possibility that there may be - relevant published material bearing directly on that issue which would be identified by such a search, the relevant CGK will include material that would readily be identified by such a search.”
“Together the poor protective efficacy of OMVs in infants and concerns that they would not offer protection against antigenically diverse meningococci raised serious doubts about their suitability for paediatric immunisation programs…Nevertheless, appropriately formulated OMV vaccines have considerable potential for the disruption of outbreaks of meningococcal disease caused by a single strain in older children and teenagers. Reservations over the safety and effectiveness of polysaccharide and OMVs vaccines againstserogroup B disease have stimulated the search for the “Holy Grail” vaccine candidate that is antigenically highly conserved and yet elicits a safe and protective immune response.”
“New group B OMP vaccines will have been used in largescale effectiveness trials in New Zealand and elsewhere, and multivalent PorA vaccines may be in routine use in some European countries. However, two questions will still remain. How do we prevent endemic group B meningococca1 disease caused by diverse populations of strains, and will long-term use of a vaccine that stimulates primarily PorA-based protection result in either antigenic drift of PorA, or an increased occurrence of strains that have a diminished or absent expression of PorA? In light of the tremendous explosion of technologic advances in the area of genomics and proteomics, it is likely that these questions will be addressed by multiple component vaccines, produced either as combination subunit vaccines or as OMV vaccines engineered and produced to enhance the expression of particular surface proteins. These vaccines will utilize both the antigens identified in earlier vaccines, as described above, and novel antigens, perhaps those identified "in-silico".”
“Q. That reverse vaccinology approach was a different approach from the normal approach of skilled people in 2001/2002 which was to work on one protein or class of proteins at a time, I think you say? A. Obviously, the difference was because the genome sequence had been available. Reverse vaccinology was not possible before that. Q. Now the skilled person was given potentially hundreds of proteins which they could investigate? A. Yes. Q. So that obviously opened up new possibilities, but it did not mean, did it, Professor, that the skilled person would assess vaccine candidates differently? The same criteria would apply? A. Yes.”
“The compositions of the present invention have been shown to be highly immunogenic and capable of eliciting the production of bactericidal antibodies. These antibodies are cross-reactive to serogroup, serotype and serosubtype heterologous meningococcal strains. Accordingly, the present compositions overcome the deficiencies of previous N.meningitidis vaccine attempts by exhibiting the ability to elicit bactericidal antibodies to heterologous neisserial strains. Thus, among other advantages, the present invention provides immunogenic compositions that can be compounded with fewer components to elicit protection comparable to previously used agents. The compositions or immunogenic agents therein (e.g., polypeptides, immunogenic portions or fragments, and biological equivalents) can be used alone or in combination with other antigens or agents to elicit immunological protection from meningococcal infection and disease, as well as to elicit immunological protection from infection and/or disease caused by other pathogens. This simplifies the design of an immunogenic composition for use against meningococcal infection by reducing the number of antigens required for protection against multiple strains. In fact, purified 2086 protein will dramatically and unexpectedly reduce the number of proteins required to provide adequate immunogenic coverage of the strains responsible for meningococcal disease…”
“Antibodies to the 2086 protein also passively protect infant rats from challenge with meningococci (see table VII). Recombinant expression of 2086 protein enables the use of 2086 protein as an immunogenic composition for the prevention of meningococcal disease. All of the recent meningococcal immunogenic composition candidates in clinical trials have been complex mixtures or outer membrane protein preparations containing many different proteins. The PorA protein, that provides serosubtype specificity, will require the inclusion of 6 to 9 variants in an immunogenic composition to provide about 70-80% coverage of disease related serosubtypes. In contrast, it is clearly demonstrated herein that antisera to a single 2086 protein alone is able to kill representatives of six serosubtypes responsible for about 65% of the disease isolates in western Europe and the United States. Therefore, purified 2086 protein has the potential to reduce the number of proteins required to provide adequate immunogenic composition coverage of the serosubtypes responsible for meningococcal disease.”
“Q. Again, would you agree with Professor Ala'Aldeen that this was an impressive piece of work that will have taken a long time to undertake? A. I do not know how long it would have taken, but it is definitely a good piece of work. Q. And perhaps lucky, because it turned out the original observation of cross-reactivity in the outer membrane protein preparation from this strain was attributable to a single protein? A. Yes, that was lucky.”
“A polypeptide sequence of the invention may be identical to the reference sequence of even numbered SEQ ID NOS. 212, 214, 216, that is, 100% identical, or it may include a number of amino acid alterations as compared to the reference sequence such that the % identity is less than 100%. Such alterations include at least one amino acid deletion, substitution, including conservative or non-conservative substitution, or insertion. The alterations may occur at the amino- or carboxy-terminal positions of the reference polypeptide sequence or anywhere between those terminal positions, interspersed either individually among the amino acids in the reference amino acid sequence or in one or more contiguous groups within the reference amino acid sequence. Thus, the invention also provides proteins having sequence identity to the amino acid sequences contained in the Sequence Listing (i.e. even numbered SEQ IDS NOS: 212, 214, 216). Depending on the particular sequence, the degree of sequence identity is preferably greater than 95% (e.g. 95%, 97%, 99%, 99.9% or more). These homologous proteins include mutants and allelic variants.”
“The data in the Patent do not support any claim to an effect which is greater than the sum of its parts… The Patent does not therefore make it plausible that all compositions falling within claim 1 would provide an improved breadth of protection.”
“Q. Then, if you turn over the page, you say at the end of the paragraph, 265, “Given the specificity of the response to PorA proteins, it does not make it plausible that such a combination would confer broader protection.”
“The pre-clinical work shown in the Patent is exactly the kind of work that was used to make predictions as to likely effects in humans and provides a proof of principle.”
“Q. We will come and look at the data in the patent in a moment, but would you agree to the skilled person in 2001 or 2002, the patent would have been an exciting and impressive piece of work? A. It would be of considerable interest, yes. Q. It discloses a vaccine candidate with great promise. A. Yes, certainly with promise, yes. Yes, with promise.”
“Q. I suggest to you it is just not credible that a nonlipidated version without a T7 tag would give you any bactericidal effect? A. Why would you say that? You can remove it or you can just express it in a totally different expression vector that you can find, and there are plenty…”
“Q. Okay. What we are seeing here is that there is a difference in magnitude, but the non-lipidated form raises antibodies which have bactericidal effect against both strains 44/76 and H355. Correct. A. Yes, but we are comparing 100 with 3,200. Q. Sure. A. And 200 with 6,400 Q. Indeed. A. That is a huge difference. Q. Right, but you are still getting bactericidal effect with the nonlipidated form A. There is obviously some detectable bactericidal effect.”
“Q. It is entirely credible, is it not, on the basis of the information that we have been looking at, that a 2086 protein with an aluminium hydroxide or phosphate adjuvant would prove to be an effective vaccine in humans? A. It is certainly possible, yes. It is something that would have to be tested. Q. And that would remain the case if you added a PorA, of course, as we have discussed? A. Yes.”
“…If on the other hand two classes of starting substances are required to prepare the end products and examples of individual entities in each class are given in two lists of some length, then a substance resulting from the reaction of a specific pair from the two lists can nevertheless be regarded for patent purposes as a selection and hence as new.”
“Thus, the invention also provides proteins having sequence identity to the amino acid sequences contained in the Sequence Listing (i.e., even numbered SEQ ID 25 NOS: 2-252). Depending on the particular sequence, the degree of sequence identity is preferably greater than 60% (e.g., 60%, 70%, 80%, 90%, 95%, 97%, 99%, 99.9% or more).”
“…the compositions of the present invention may comprise combinations of two or more 2086 proteins, a combination of 2086 protein with one or more PorA proteins, a combination of 2086 protein with meningococcus serogroup A, C, Y and W135 polysaccharides and/or polysaccharide conjugates, a combination of 2086 protein with meningococcus and pneumococcus combinations, or a combination of any of the foregoing in a form suitable for mucosal delivery. Persons of skill in the art would be readily able to formulate such multi-antigen or multi-valent immunologic compositions.”
“Q. Then the skilled person would expect, on the basis of this data, you would expect protection against a range of strains from the 2086 and strains of the same serosubtype as the PorA which you added coming from the PorA? A. Yes. Q. And it would be entirely credible to the skilled person that such a combination would prove to be a useful vaccine against Men B and subsequent investigations looking at this document? A. Against strains of that serosubtype; and the strains that were already covered by the 2086.”
“According to a further implementation, Subfamily B includes Cluster B-1, Cluster B-2, Cluster B-3, Cluster B-4 and Cluster B-5. Cluster B1 preferably includes polypeptides selected from the group consisting of SEQ ID Nos. 2, 4, 8, 12, 14, 20, 50, 52, 56, 60, 62, 68, 98, 100, 104, 108, 110, 116 and combinations thereof.”
“Any multi-antigen or multi-valent immunogenic composition is contemplated by the present invention. For example, the compositions of the present invention may comprise combinations of two or more 2086 proteins, a combination of 2086 protein withone or more PorA proteins, a combination of 2086 protein with meningococcus serogroup A, C, Y and W135 polysaccharides and/or polysaccharide conjugates, a combination of 2086 protein with meningococcus and pneumococcus combinations, or a combination of any of the foregoing in a form suitable for mucosal delivery. Persons of skill in the art would be readily able to formulate such multi-antigen or multi-valent immunologic compositions.”
“Q. …what I am asking you, Professor, is can you think of any technical reason which would lead the skilled reader to understand that in this passage, the author was intending to restrict all the combinations listed to one suitable for mucosal delivery? A. (Pause for reading) No.”
“The ORF2086 gene was amplified by PCR from a clinical isolate of a serogroup B Neisseria meningitidis strain designated 8529. … This meningococcal strain was received from The RIVM, Bilthoven, Netherlands. The mature 2086 protein gene sequence from meningococcal strain 8529 is provided herein as SEQ ID NO. 212.” ii) This discloses to the skilled person how to reproduce sequence 212, namely by PCR from strain 8529, which can be obtained from RIVM. iii) The second priority document also discloses what primers to use in the PCR. P.74 lines 1-6 discloses that ORF 2086 appears to contain a lipoprotein signal sequence and continues: “In order to recombinantly express P2086 in a more native-like conformation, the oligonucleotide primers were designed to amplify the full-length gene with the lipoprotein signal sequence intact and were based on an analysis of the Sanger sequence for N. meningitidis A ORF 2086.”
“An old question and answer runs as follows: “Where does a wise man hide a leaf? In a forest.”
“6.1 Here the Board is guided by the conclusions it reached in its "Spiro compounds" decision T 181/82 (OJ EPO 1984, 401) concerning the novelty of chemical entities within a group of substances of known formula. With regard to products of the reaction of specific spiro compounds with a (C1-C4)-alkyl bromide defined as a group, the Board drew a sharp distinction between the purely intellectual content of an item of information and the material disclosed in the sense of a specific teaching with regard to technical action. Only a technical teaching of this kind can be prejudicial to novelty. If any such teaching is to apply in the case of a chemical substance, an individualised description is needed.”
“Thus the present invention provides a composition comprising (a) a NmB [N. meningitidis serogroup B] outer membrane preparation and (b) an immunogenic component selected from one or more of the following: a protein disclosed in WO99/57280, or an immunogenic fragment thereof; a protein disclosed in WO99/36544, or an immunogenic fragment thereof; a protein disclosed in WO99/24578, or an immunogenic fragment thereof; a protein disclosed in WO00/66791, or an immunogenic fragment thereof; a protein disclosed in Tettelin et al [Science (2000) 287:1809- 1815], or an immunogenic fragment thereof; a protein disclosed in Parkhill et al [Nature (2000) 404:502- 506], or an immunogenic fragment thereof; a protein disclosed in WO97/28273, or an immunogenic fragment thereof; a protein disclosed in WO96/29412, or an immunogenic fragment thereof; a protein disclosed in WO95/03413, or an immunogenic fragment thereof; a protein disclosed in WO99/31132, or an immunogenic fragment thereof; a protein disclosed in WO99/58683, or an immunogenic fragment thereof; a protein disclosed in WO99/55873, or an immunogenic fragment thereof; Neisseria meningitidis protein PorA, TbpA, TbpB, PilC, OpA or Omp85.” a protein disclosed in Tettelin et al [Science (2000) 287:1809- a protein disclosed in Parkhill et al [Nature (2000) 404:502- Neisseria meningitidis protein PorA, TbpA, TbpB, PilC, OpA or Omp85.”
“If the composition comprises a protein disclosed in Tettelin et al. (i.e. a protein encoded by one of the genes disclosed therein), said protein preferably comprises an amino acid sequence selected from the group consisting of An NMB001 to an NMB2160 (or a protein comprising an immunogenic fragment of one or more of these 2160 genes, or a protein comprising a sequence having sequence identity (preferably greater than 50% e.g. 60%, 70%, 80%, 90%, 95%, 99% or more) to one of these 2160 genes).”
“VA-MENGOC-BC has had a consistent composition since it was authorised by the Cuban regulatory authority (“CECMED”) in 1987. There have been no applications to change the registration in respect of the vaccine’s composition (which would have been necessary had there been any such change).”
“This is to certify that Finlay Institute from Cuba has been no change (sic) in the composition of the vaccine VA-MENGOCBC since it was registered in October, 1987, which has had to be notified to CECMED. I can also confirm that these centers are operating in compliance with Good Manufacturing Practices (GMP) and the vaccine VA-MENGOC-BC has been registered continuously for CECMED in Cuba.”
“Q. Just stepping back now, we have looked at various documents, would you agree that one cannot say that the Cuban vaccine was consistent in terms of the presence or absence of minor protein components throughout the period between 1987 and --- A. They were not monitored and therefore it is not possible to say if they were consistent. Q. So, one cannot say that the fHbp would have been present in the Cuban vaccine before 2002? A. It is not possible to say that it was present or that it was not present.”
“The quinine example shows that there are descriptions under which something may in a relevant sense be known without anyone being aware of its chemical composition or even that it has an identifiable molecular structure.” 187.Lord Hoffmann continued at p.88: “So far I have been considering what it means to know about something in ordinary everyday life. Do the same principles apply in the law of patents? Or does patent law have a specialised epistemology of its own? Mr. Thorley argues that it does. He says that for a substance to be known so as to be part of the state of the art within the meaning of section 2, it must be known (or be readily capable of being known) by its chemical composition. No other description will do. He says that by 1977 the science of chemistry had advanced so far that the chemical composition of virtually everything was either known or readily ascertainable by analysis. Therefore the legislature assumed that knowledge that something existed could safely be equated with knowledge of its chemical composition. Section 64 would provide a safety net for people like Amazonian Indians who were doing things with substances which did not readily yield to analysis. My Lords, I think that on this point thePatents Act 1977 is perfectly clear. Section 2(2) does not purport to confine the state of the art about products to knowledge of their chemical composition. It is the invention which must be new and which must therefore not be part of the state of the art. It is therefore part of the state of the art if the information which has been disclosed enables the public to know the product under a description sufficient to work the invention.”
“Mr Thorley is therefore right in saying that his claim cannot be dismissed simply on the ground that making the acid metabolite is something which has been done before. To that extent, the intuitive response is wrong.”
“In both cases no one was aware that the acid metabolite was being made. In the case of anticipation by use, however,the acts relied upon conveyed no information which would have enabled anyone to work the invention, i.e. to make the acid metabolite. The anticipation in this form relies solely upon the fact that the acid metabolite was made, as the anticipation inBristol-Myers Co. (Johnson's) Applicationrelied solely upon the fact that ampicillin trihydrate had been made and sold to the public. It disavows any reliance upon extraneous information, such as the formula for making terfenadine and the instructions to take it for its anti-histamine effect. Anticipation by disclosure, on the other hand, relies uponthe communication to the public of information which enables it to do an act having the inevitable consequence of making the acid metabolite. The terfenadine specification teaches that the ingestion of terfenadine will produce a chemical reaction in the body and for the purposes of working the invention in this form, this is a sufficient description of the making of the acid metabolite. Under the description the acid metabolite was part of the state of the art.”
“An essential purpose of any technical teaching is to enable the person skilled in the art to manufacture or use a given product by applying such teaching. Where such teaching results from a product put on the market, the person skilled in the art will have to rely on his general technical knowledge to gather all information enabling him to prepare the said product. Where it is possible for the skilled person to discover the composition or the internal structure of the product and to reproduce it without undue burden, then both the product and its composition or internal structure become state of the art.”
“Q. And of course, you are not able to say whether they would have found fHbp even using this improved SCAPE technique, if they had had to desorb the OMVs from the alum first? A. No, I am not in a position to comment on that. Q. I suggest, Professor, looking at the analysis that we have of the Cuban vaccine or indeed OMVs used to make the Cuban vaccine, the only success in finding fHbp was with a technique which would not have been available to the skilled person in 2001/2002, namely, the refined SCAPE technique, and using a product which would not have been available to the skilled person, namely the OMVs; agreed? A. The skilled person would not have had access to the Cuban OMVs, no. Q. No, he would have had the vaccine itself? A. Yes. Q. And you would not have the SCAPE technique? A. Certainly, we would not have had the SCAPE technique. As I say, I am not aware that it is used by anybody else.”
“Q. Professor, I think essentially you are agreed with Professor Ala'Aldeen in his conclusion? A. That it is a lot of work, yes. Q It is theoretically possible, but not practically; correct? A. And very unlikely to work; but theoretically possible.”
“Specific bacterial antigens for use with the invention include: - a protein antigen from N.meningitidis serogroup B, such as those in refs. 9 to 15, with protein '287' (see below) and derivatives (e.g. 'ΔG287') being particularly preferred,”
“Q. There is nothing, is there, in Example 6 of 869 to direct the reader back to page 2, lines 8-10? A. No, other than obviously I was aware -- I clearly did not read this only once -- that this formulation was Bexsero. Q. You were, when you read it? A. Not immediately, no. Q. Right. A. Not when I read it for the first time. Q. Right. A. When I then started to look at the numbers and what they meant, then it became clear that it was Bexsero. Q. That is when you went back to page 2, lines 8-10? A. Yes.”
“rLP2086 antigens are capable of eliciting bactericidal antibodies against meningococcal strains expressing heterologous PorAs and heterologous P2086 proteins. The P2086 family of antigens may be a useful vaccine either alone or in combination with other neisserial antigens.”
“The genomic sequence of a group A meningococcal strain was downloaded from the Sanger Center and analyzed by our Bioinformatics group using existing and proprietary algorithms to create a searchable database. The peptide sequence data indicated that ORF2086 was of interest. Primers based on this orf were used to PCR the 2086 gene from strain 8529. Analysis of the gene sequence, the fact that the N terminus was blocked, and its subcellular location indicated that P2086 is a lipidated outer membrane protein (LP2086). rLP2086-8529 and variants from other meningococcal strains were recombinantly expressed as lipoproteins in E.coli using the H.influenzae P4 signal sequence. These recombinant proteins were isolated from E.coli membranes by differential detergent extraction, purified using ion exchange chromatography, and used to immunize mice.”
“International patent applications W099/24578, W099/36544, W099/57280 and W000/22430 disclose proteins from Neisseria meningitidis and Neisseria gonorrhoeae. These proteins are typically described as being expressed in E.coli (i.e. heterologous expression) as either N-terminal GST-fusions or C-terminal His-tag fusions, although other expression systems, including expression in native Neisseria, are also disclosed. It is an object of the present invention to provide alternative and improved approaches for the heterologous expression of these proteins. These approaches will typically affect the level of expression, the ease of purification, the cellular localisation of expression, and/or the immunological properties of the expressed protein.”
“In a first approach to heterologous expression, no fusion partner is used, and the native leader peptide (if present) is used. This will typically prevent any 'interference' from fusion partners and may alter cellular localisation and/or posttranslational modification and/or folding in the heterologous host. Thus the invention provides a method for the heterologous expression of a protein of the invention, in which (a) no fusion partner is used, and (b) the protein's native leader peptide (if present) is used.”
“[…] that 287 and 741 both give very good results against other strains in the SBA test and are two proteins which should be followed up as potential antigens to include in a Men B vaccine.”
“Q. Professor, also, as far as we can tell, by the time we read this document, you had seen 885 and 280, which identified the 741 protein as being the one of significance in this case. A. Yes. Q. So when you read this document, 922, you already knew that 741was one on which we were focusing in this case? A. I believe so.”
“A. The difference between us is that I make no list, no shortlisting, no judgment. I take the whole document as it is. I see it as a methodology with a lot of proteins mentioned and I will be interested to know what information is there and how they add up. But Professor Heckels goes straight into shortlisting two most promising, as he calls them, and taking one from a lot of data, taking one from one snapshot of data and says these are the two I have, I am going to take them forward. This is where we disagree. My approach is more cautious than that, because I know the pitfalls, I know the shortcomings, I know the issues that I have to do with such shortlisting. Q. I suggest to you that your approach is more cautious than the notional skilled person? A. My approach, I see it more robust and scientific. The approach that my colleague has chosen, especially when it is implied in that table, is not something that would stand the test of time; or that would not be something that a skilled person would agree with.”
“Q. Would you agree, Professor, that on the basis of this data about 741 in 922, the skilled person cannot say, "This is a conserved protein which produces antibodies which are bactericidal against a diverse range of Men B strains"? A. No, I think we have already agreed that. As I say, that data is not there, but it points you towards something that is interesting for further work. Q. It does not, on the basis of this data, meet the criteria for a promising vaccine candidate? A. It does not meet all the requirements for something that you are going to start to put into people, but I keep repeating myself, saying that is shows data that is interesting for something that you would take forward. Q. Right. The skilled person could not say, could he, on the basis of this information, that he would have a fair expectation that 741 would turn out to be useful as a vaccine component for humans? A. No, I just repeat what I have just said.”