US 4474893A
· Readinq
· 1984
[cited by applicant]
US 4714681A
· Readinq
· 1987
[cited by applicant]
US 4816567A
· Cabilly et al.
· 1989
[cited by applicant]
US 4925648A
· Hansen et al.
· 1990
[cited by applicant]
US 4946778A
· Ladner et al.
· 1990
[cited by applicant]
US 5179018A
· Bogard et al.
· 1993
[cited by applicant]
US 5545806A
· Lonberg et al.
· 1996
[cited by applicant]
US 5545807A
· Surani et al.
· 1996
[cited by applicant]
US 5569825A
· Lonberg et al.
· 1996
[cited by applicant]
US 5573920A
· Randle
· 1996
[cited by applicant]
US 5601819A
· Wonq et al.
· 1997
[cited by applicant]
US 5624821A
· Winter et al.
· 1997
[cited by applicant]
US 5625126A
· Lonberg et al.
· 1997
[cited by applicant]
US 5633425A
· Lonberg et al.
· 1997
[cited by applicant]
US 5648260A
· Winter et al.
· 1997
[cited by applicant]
US 5661016A
· Lonberg et al.
· 1997
[cited by applicant]
US 5677425A
· Bodmer et al.
· 1997
[cited by applicant]
US 5731168A
· Carter et al.
· 1998
[cited by applicant]
US 5750373A
· Garrard et al.
· 1998
[cited by applicant]
US 5807706A
· Carter et al.
· 1998
[cited by applicant]
US 5821333A
· Carter et al.
· 1998
[cited by applicant]
US 5869046A
· Presta et al.
· 1999
[cited by applicant]
US 5885573A
· Bluestone et al.
· 1999
[cited by applicant]
US 5885793A
· Griffiths et al.
· 1999
[cited by applicant]
US 5969108A
· McCafferty et al.
· 1999
[cited by applicant]
US 6121022A
· Presta et al.
· 2000
[cited by applicant]
US 6165745A
· Ward et al.
· 2000
[cited by applicant]
US 6172197B1
· McCafferty et al.
· 2001
[cited by applicant]
US 6180377B1
· Morgan et al.
· 2001
[cited by applicant]
US 6194551B1
· Idusogie et al.
· 2001
[cited by applicant]
US 6277375B1
· Ward et al.
· 2001
[cited by applicant]
US 6300064B1
· Knappik et al.
· 2001
[cited by applicant]
US 6521404B1
· Griffiths et al.
· 2003
[cited by applicant]
US 6528624B1
· Idusogie et al.
· 2003
[cited by applicant]
US 6544731B1
· Griffiths et al.
· 2003
[cited by applicant]
US 6555313B1
· Griffiths et al.
· 2003
[cited by applicant]
US 6582915B1
· Griffiths et al.
· 2003
[cited by applicant]
US 6593081B1
· Griffiths et al.
· 2003
[cited by applicant]
US 6653068B2
· Frisch et al.
· 2003
[cited by applicant]
US 6706484B1
· Knappik et al.
· 2004
[cited by applicant]
US 6737056B1
· Presta
· 2004
[cited by applicant]
US 6821505B2
· Ward
· 2004
[cited by applicant]
US 7083784B2
· Dall'Acqua et al.
· 2006
[cited by applicant]
US 7122637B2
· Presta
· 2006
[cited by applicant]
US 7183387B1
· Presta
· 2007
[cited by applicant]
US 7264963B1
· Knappik et al.
· 2007
[cited by applicant]
US 7317091B2
· Lazar et al.
· 2008
[cited by applicant]
US 7332581B2
· Presta
· 2008
[cited by applicant]
US 7335742B2
· Presta
· 2008
[cited by applicant]
US 7355008B2
· Stavenhagen et al.
· 2008
[cited by applicant]
US 7371826B2
· Presta
· 2008
[cited by applicant]
US 7658921B2
· Dall'Acqua et al.
· 2010
[cited by applicant]
US 20030020734A1
· Yin et al.
· 2003
[cited by applicant]
US 20040002587A1
· Watkins et al.
· 2004
[cited by applicant]
US 20040132101A1
· Lazar et al.
· 2004
[cited by applicant]
US 20160136285A1
· Gozdziewicz et al.
· 2016
[cited by applicant]
US 20170073397A1
· Wang et al.
· 2017
[cited by applicant]
CN 102015754A
· 2011
[cited by applicant]
EP 0184187A2
· 1986
[cited by applicant]
EP 0239400A2
· 1987
[cited by applicant]
GB 2188638A
· 1987
[cited by applicant]
WO WO9100360A1
· 1991
[cited by applicant]
WO WO9201047A
· 1992
[cited by applicant]
WO WO9205793A1
· 1992
[cited by applicant]
WO WO9208802A1
· 1992
[cited by applicant]
WO WO9311161A1
· 1993
[cited by applicant]
WO WO9317715A1
· 1993
[cited by applicant]
WO WO9413804A1
· 1994
[cited by applicant]
WO WO9958572A
· 1999
[cited by applicant]
WO WO0044788A1
· 2000
[cited by applicant]
WO WO0296948A2
· 2002
[cited by applicant]
WO WO2011069164A2
· 2011
[cited by applicant]
WO WO2012006635A1
· 2012
[cited by applicant]
WO WO2015175874A2
· 2015
[cited by applicant]
WO WO2016131503A1
· 2016
[cited by applicant]
WO WO2017064258A1
· 2017
[cited by applicant]
WO WO2018027124A1
· 2018
[cited by applicant]
WO WO2018075375A1
· 2018
[cited by applicant]
CDC, https://www.cdc.gov/klebsiella/about/index.html#:˜: text=Klebsiella%20is%20a%20type%20of,becoming%20increasingly%20resistant%20to%20antibiotics.; accessed on Jul. 11, 2024 (Year: 2024).
[cited by examiner]
Healthline, https://www.healthline.com/health/klebsiella-pneumonia#infection-symptoms; accessed on Jul. 11, 2024 (Year: 2024).
[cited by examiner]
Ahmad, T. A., et al., “Development of immunization trials against Klebsiella pneumoniae,” Vaccine 30(14):2411-2420, Elsevier, Netherlands (Mar. 2012).
[cited by applicant]
Calfee. D. P., “Recent advances in the understanding and management of
[cited by applicant]
Andersen, D. C., and Krummen, L., “Recombinant protein expression for therapeutic applications,” Curr Opin Biotechnol 13(2):117-123, Elsevier, Netherlands (Apr. 2002).
[cited by applicant]
Barbas, 3
[cited by applicant]
Beltramello, M., et al., “The human immune response to Dengue virus is dominated by highly cross-reactive antibodies endowed with neutralizing and enhancing activity,” Cell Host Microbe 8(3):271-283, Cell Press, United …
[cited by applicant]
Bird, R. E., et al., “Single-chain antigen-binding proteins,” Science 242(4877):423-426, American Association for the Advancement of Science, United States (Oct. 1988).
[cited by applicant]
Boerner, P., et al., “Production of antigen-specific human monoclonal antibodies from in vitro-primed human splenocytes,” J Immunol 147(1):86-95, American Association of Immunologists, United States (Jul. 1991).
[cited by applicant]
Brade, L., et al., “A monoclonal antibody with specificity for the genus Klebsiella binds to a common epitope located in the core region of Klebsiella lipopolysaccharide,” J Endotoxin Res 7(2):119-124, Sage Publications…
[cited by applicant]
Chadd, H. E., and Chamow, S. M., “Therapeutic antibody expression technology,” Curr Opin Biotechnol 12(2):188-194, Elsevier, Netherlands (Apr. 2001).
[cited by applicant]
Cheung, R. C., et al., “Epitope-specific antibody response to the surface antigen of duck hepatitis B virus in infected ducks,” Virology 176(2):546-552, Academic Press Inc., United States (Jun. 1990).
[cited by applicant]
Chothia, C., and Lesk, A. M., “Canonical structures for the hypervariable regions of immunoglobulins,” J Mol Biol 196(4):901-917, Elsevier, Netherlands (Aug. 1987).
[cited by applicant]
Clackson, T., et al., “Making antibody fragments using phage display libraries,” Nature 352(6336):624-628, Nature Publishing Group, United Kingdom (Aug. 1991).
[cited by applicant]
Clarke, B. R., and Whitfield, C., “Molecular cloning of the rfb region of Klebsiella pneumoniae serotype O1:K20: the rfb gene cluster is responsible for synthesis of the D-galactan I O polysaccharide,” J Bacteriol 174(1…
[cited by applicant]
Dall'acqua, W. F., et al., “Properties of human IgG1s engineered for enhanced binding to the neonatal Fc receptor (FcRn),” J Biol Chem 281(33):23514-23524, Elsevier, Netherlands (Aug. 2006).
[cited by applicant]
Gram, H., et al., “In vitro selection and affinity maturation of antibodies from a naive combinatorial immunoglobulin library,” Proc Natl Acad Sci USA 89(8):3576-3580, National Academy of Sciences, United States (Apr. 1…
[cited by applicant]
Hoogenboom, H. R., and Winter, G., “By-passing immunisation. Human antibodies from synthetic repertoires of germline VH gene segments rearranged in vitro,” J Mol Biol 227(2):381-388, Elsevier, Netherlands (Sep. 1992).
[cited by applicant]
Hu, S., et al., “Minibody: A novel engineered anti-carcinoembryonic antigen antibody fragment (single-chain Fv-CH3) which exhibits rapid, high-level targeting of xenografts,” Cancer Res 56(13):3055-3061, American Associ…
[cited by applicant]
Huse, W. D., et al., “Generation of a large combinatorial library of the immunoglobulin repertoire in phage lambda,” Science 246(4935):1275-1281, American Association for the Advancement of Science, United States (Dec. …
[cited by applicant]
Huston, J. S., et al., “Protein engineering of antibody binding sites: recovery of specific activity in an anti-digoxin single-chain Fv analogue produced in
[cited by applicant]
International Application No. PCT/US2017/045480, International Preliminary Report on Patentability, dated Feb. 5, 2019.
[cited by applicant]
International Application No. PCT/US2017/045480, International Search Report and Written Opinion, dated Dec. 14, 2017.
[cited by applicant]
Iredell, J., et al., “Antibiotic resistance in Enterobacteriaceae: mechanisms and clinical implications,” BMJ 352:h6420, BioMed Central Ltd., United Kingdom (Feb. 2016).
[cited by applicant]
Kirkland, T. N., et al., “Analysis of the fine specificity and cross-reactivity of monoclonal anti-lipid A antibodies,” J Immunol 137(11):3614-3619, American Association of Immunologists, United States (Dec. 1986).
[cited by applicant]
Knappik, A., et al., “Fully synthetic human combinatorial antibody libraries (HuCAL) based on modular consensus frameworks and CDRs randomized with trinucleotides,” J Mol Biol 296(1):57-86, Elsevier, Netherlands (Feb. 2…
[cited by applicant]
Kohler, G., and Milstein, C., “Continuous cultures of fused cells secreting antibody of predefined specificity,” Nature 256(5517):495-497, Nature Publishing Group, United Kingdom (Aug. 1975).
[cited by applicant]
Larrick, J. W., and Thomas, D. W., “Producing proteins in transgenic plants and animals,” Curr Opin Biotechnol 12(4):411-418, Elsevier, Netherlands (Aug. 2001).
[cited by applicant]
Ledermann, J. A., et al., “A phase-I study of repeated therapy with radiolabelled antibody to carcinoembryonic antigen using intermittent or continuous administration of cyclosporin A to suppress the immune response,” I…
[cited by applicant]
Lefranc, M.-P., et al., “IMGT unique numbering for immunoglobulin and T cell receptor variable domains and Ig superfamily V-like domains,” Dev Comp Immunol 27(1):55-77, Elsevier, Netherlands (Jan. 2003).
[cited by applicant]
Marks, J. D., et al., “By-passing immunization. Human antibodies from V-gene libraries displayed on phage,” J Mol Biol 222(3):581-597, Elsevier, Netherlands (Dec. 1991).
[cited by applicant]
Marks, J. D., et al., “By-passing immunization: building high affinity human antibodies by chain shuffling,” Biotechnology (NY) 10(7):779-783, Wiley, United States (Jul. 1992).
[cited by applicant]
McCafferty, J., et al., “Phage antibodies: filamentous phage displaying antibody variable domains,” Nature 348(6301):552-554, Nature Publishing Group, United Kingdom (Dec. 1990).
[cited by applicant]
Moldenhauer, G., et al., “Identity of HML-1 antigen on intestinal intraepithelial T cells and of B-ly7 antigen on hairy cell leukaemia,” Scand J Immunol 32(2):77-82, Wiley-Blackwell Publishing Ltd., United Kingdom (Aug.…
[cited by applicant]
Morel, G. A., et al., “Monoclonal antibodies to bovine serum albumin: affinity and specificity determinations,” Mol Immunol 25(1):7-15, Pergamon Press, United Kingdom (Jan. 1988).
[cited by applicant]
Pinna, D., et al., “Clonal dissection of the human memory B-cell repertoire following infection and vaccination,” Eur J Immunol 39(5):1260-1270, Wiley-VCH, Germany (May 2009).
[cited by applicant]
Reiter, Y., et al., “Engineering antibody Fv fragments for cancer detection and therapy: disulfide-stabilized Fv fragments,” Nat Biotechnol 14(10):1239-1245, Nature Publishing Group, United Kingdom (Oct. 1996).
[cited by applicant]
Rothe, C., et al., “The human combinatorial antibody library HuCAL GOLD combines diversification of all six CDRs according to the natural immune system with a novel display method for efficient selection of high-affinit…
[cited by applicant]
Sahly, H., et al., “Serum antibodies to Klebsiella capsular polysaccharides in ankylosing spondylitis,” Arthritis Rheum 37(5):754-759, John Wiley and Sons Ltd., United Kingdom (May 1994).
[cited by applicant]
Sahly, H., et al., “Surfactant protein D binds selectively to Klebsiella pneumoniae lipopolysaccharides containing mannose-rich O-antigens,” J Immunol 169(6):3267-3274, American Association of Immunologists, United Stat…
[cited by applicant]
Schier, R., et al., “Isolation of picomolar affinity anti-c-erbB-2 single-chain Fv by molecular evolution of the complementarity determining regions in the center of the antibody binding site,” J Mol Biol 263(4):551-567…
[cited by applicant]
Sheets, M. D., et al., “Efficient construction of a large nonimmune phage antibody library: the production of high-affinity human single-chain antibodies to protein antigens,” Proc Natl Acad Sci USA 95(11):6157-6162, Na…
[cited by applicant]
Stahli, C., et al., “Distinction of epitopes by monoclonal antibodies,” Methods Enzymol 92:242-253, Academic Press Inc., United States (1983).
[cited by applicant]
Stemmer, W. P., “Rapid evolution of a protein in vitro by DNA shuffling,” Nature 370(6488):389-391, Nature Publishing Group, United Kingdom (Aug. 1994).
[cited by applicant]
Szijarto, V., et al., “Both clades of the epidemic KPC-producing Klebsiella pneumoniae clone ST258 share a modified galactan O-antigen type,” Int J Med Microbiol 306(2):89-98, Elsevier, Netherlands (Feb. 2016).
[cited by applicant]
Traggiai, E., et al., “An efficient method to make human monoclonal antibodies from memory B cells: potent neutralization of SARS coronavirus,” Nat Med 10(8):871-875, Nature Publishing Group, United Kingdom (Aug. 2004).
[cited by applicant]
Trautmann, M., et al., “O antigen seroepidemiology of Klebsiella clinical isolates and implications for immunoprophylaxis of Klebsiella infections,” Vaccine 22(7):818-821, Elsevier, Netherlands (Feb. 2004).
[cited by applicant]
Vaughan, T. J., et al., “Human antibodies with sub-nanomolar affinities isolated from a large non-immunized phage display library,” Nat Biotechnol 14(3):309-314, Nature Publishing Group, United Kingdom (Mar. 1996).
[cited by applicant]
Wang, Q., et al., “Target-Agnostic Identification of Functional Monoclonal Antibodies Against Klebsiella pneumoniae Multimeric MrkA Fimbrial Subunit,” J Infect Dis 213(11):1800-1808, Oxford University Press, United King…
[cited by applicant]
Ward, E. S., et al., “Binding activities of a repertoire of single immunoglobulin variable domains secreted from
[cited by applicant]
Whitfield, C., et al., “Expression of two structurally distinct D-galactan O antigens in the lipopolysaccharide of Klebsiella pneumoniae serotype O1,” J Bacteriol 173(4):1420-1431, American Society for Microbiology, Uni…
[cited by applicant]
Whitfield, C., et al., “Structural analysis of the O-antigen side chain polysaccharides in the lipopolysaccharides of Klebsiella serotypes O2(2a), O2(2a,2b), and O2(2a,2c),” J Bacteriol 174(15):4913-4919, American Socie…
[cited by applicant]
Held, T.K., et al., “Binding to and Opsonophagocytic Activity of O-Antigen-Specific Monoclonal Antibodies against Encapsulated and Nonencapsulated
[cited by applicant]
Rukavina, T., et al., “Protective effect of antilipopolysaccharide monoclonal antibody in experimental
[cited by applicant]
Van, N.M., et al., “Binding Studies of a Monoclonal Antibody Specific for 3-Deoxy-D-manno-Octulosonic Acid with a Panel of
[cited by applicant]
International Search Report and Written Opinion mailed Apr. 3, 2018 for International Application No. PCT/US2017/056725, Isa, United States, 14 pages.
[cited by applicant]
International Search Report and Written Opinion mailed Dec. 14, 2017 for International Application No. PCT/US2017/045480, Isa, United States, 18 pages.
[cited by applicant]
Sahly, H., et al., “Serum antibodies to klebsiella capsular polysaccharides in ankylosing spondylitis,” Arthritis & Rheumatology 37(5): 754-759, American College of Rheumatology, United States (1994).
[cited by applicant]
Sahly, H., et al., “Surfactant Protein D Binds selectively to Klebsiella pneumonia Lipopolysaccharides Containing Mannose-Rich O-Antigens,” Journal of Immunology 169(6):3267-3274, American Association of Immunologists, …
[cited by applicant]
Whitefield, C., et al., “Structural analysis of the O-antigen side chain polysaccharides in the lipopolysaccharides of Klebsiella serotypes O2(2a), O2(2a,2b), and O2(2a,2c),” Journal of Bacteriology, 174(15):4913-4919, …
[cited by applicant]
Hsieh, P-F., et al., “Lipopolysaccharide O1 Antigen Contributes to the Virulence in
[cited by applicant]
Hsieh, P-F., et al., “D-galactan II is an immunodominant antigen in O1 lipopolysaccharide and affects virulence in Klebsiella pneumonia: implication in vaccine design,” Frontiers in Microbiology, 5(608), 14 pages, Front…
[cited by applicant]
Ahmadi, K., et al., “Antibodies to Klebsiella pneumoniae lipopolysaccharide in patients with ankylosing spondylitis.” British journal of rheumatology 37(12): 1330-1333, British Society for Rheumatology, United Kingdom (…
[cited by applicant]
Goel, M., et al., “Plasticity within the antigen-combining site may manifest as molecular mimicry in the humoral immune response.” The Journal of Immunology 173(12): 7358-7367, American Association of Immunologists, Uni…
[cited by applicant]
Lloyd, C., et al., “Modelling the human immune response: performance of a 1011 human antibody repertoire against a broad panel of therapeutically relevant antigens.” Protein Engineering, Design & Selection 22(3): 159-16…
[cited by applicant]
Sela-Culang, I., et al., “The structural basis of antibody-antigen recognition.” Frontiers in Immunology 4:302, 13 pages, Frontiers Publishing, Switzerland (2013).
[cited by applicant]
Bagshawe, K.D., et al., “Antibodyenzyme conjugates can generate cytotoxic drugs from inactive precursors at tumor sites.Antibody,” Immunoconjugates and Radiopharmaceuticals 4: 915-22, Mary Ann Liebert Publishers, United…
[cited by applicant]
Holliger, P., et al., “Diabodies”: small bivalent and bispecific antibody fragments, Proc. Natl. Acad. Sci. USA, 90(14):6444-8, National Academy of Sciences, United States (Jul. 1993).
[cited by applicant]
Holliger, P., et al., “Engineering bispecific antibodies,” Curr Opin Biotechnol 4(4):446-9, Current Biology Ltd., United States (Aug. 1993).
[cited by applicant]
Lowe, D., et al., “Combinatorial protein biochemistry for therapeutics and proteomics,” Curr Pharm D Biotechnol 5(1):17-27, Bentham Science Publishers Ltd., United Kingdom (2004).
[cited by applicant]
Oganesyan, V., et al., “Structural characterization of a human Fc fragment engineered for lack of D effector functions,” Acta Crystalloqr D Biol Crystalloqr 64(Pt. 6):700-4, Elsevier, Netherlands (Jun. 2008).
[cited by applicant]
Pluckthun, A., “Antibody engineering: advances from the use of
[cited by applicant]
Podschun, R., et al., “
[cited by applicant]
Ridgway, J.B.B., et al., “‘Knobs-into-holes’ engineering of antibody CH3 domains for heavy chain heterodimerization,” Protein Eng 9(7):617-21, Oxford University Press, United Kingdom (Jul. 1996).
[cited by applicant]
Tutt, A., et al., “Trispecific F(ab')3 derivatives that use cooperative signaling via the TCR/CD3 complex and CO2 to activate and redirect resting cytotoxic T cells,” J Immunol 147(1):60-9, American Association of Immun…
[cited by applicant]
Kostelny, S.A., et al., “Formation of a bispecific antibody by the use of leucine zippers,” J Immunol 148(5):1547-53, American Association of Immunologists, United States (Mar. 1992).
[cited by applicant]
Krebs, B., et al., “High-throughput generation and engineering of recombinant human antibodies,” J Immunol Methods 254(1-2):67-84, Elsevier, Netherlands (Aug. 2001).
[cited by applicant]
Trautmann, M., et al., “Evaluation of a competitive ELISA method for the determination of Klebsiella O antigens,” J Med Microbiol 44(1):44-51, The Pathological Society of Great Britain and Ireland, United Kingdom (Jan. …
[cited by applicant]
Trautmann, M., et al., “O-antigen seroepidemiology of Klebsiella clinical isolates and implications for immunoprophylaxis of Klebsiella infections,” Clinical and Diagnostic Laboratory Immunology 4(5):550-555, American S…
[cited by applicant]
Paul, W. E., ed., “Chapter 9: Structure and Function of Immunoglobulins,” in
[cited by applicant]
Rudikoff, S., et al., “Single amino acid substitution altering antigen-binding specificity,” Proc Natl Acad Sci USA 79(6):1979-1983, National Academy of Sciences, United Kingdom (Mar. 1982).
[cited by applicant]
Tamura, M., et al., “Structural correlates of an anticarcinoma antibody: identification of specificity-determining residues (SDRs) and development of a minimally immunogenic antibody variant by retention of SDRs only,” …
[cited by applicant]
Li, T., et al., “Identification of Specific Diagnostic Antigen for Klebsiella pneumonia,” Chinese Journal of Comparative Medicine 20(7):21-26, China Association for Science and Technology, China (2010).
[cited by applicant]