US 4816567A
· Cabilly et al.
· 1989
[cited by applicant]
US 5571894A
· Wels et al.
· 1996
[cited by applicant]
US 5587458A
· King et al.
· 1996
[cited by applicant]
US 7198945B2
· Nagamune et al.
· 2007
[cited by applicant]
US 8940501B2
· Ploegh et al.
· 2015
[cited by applicant]
CN 101778937A
· 2010
[cited by applicant]
CN 102037004A
· 2011
[cited by applicant]
EP 1283257A2
· 2003
[cited by applicant]
EP 2825156B1
· 2017
[cited by applicant]
WO 9316185A2
· 1993
[cited by applicant]
WO 10087994A2
· 2010
[cited by applicant]
John R. Silvius ei al: “A Novel 1-19 “Prebinding” Strategy Dramatically Enhances Sortase-Mediated Coupling of Proteins to Liposomes”, Bioconjugate Chemistry, vol. 28, No. 4, Apr. 6, 2017.
[cited by applicant]
Woll Steffen ei al: Sortagged anti-EGFR 1-19 iniiiunoliposomes exhibit increased cytotoxicity on target cells, European Journal of Pharmaceutics and Biopharmaceutics, vol. 136, Jan. 21, 2019 (Jan. 21, 2019), pp. 203-212…
[cited by applicant]
Woll Steffen et al: “Sortaggable 1-19 liposomes: Evaluation of reaction conditions for single-domain antibody conjugation by Sortase-A and targeting of CD11b+myeloid cells”, European Journal of Pharmaceutics and Biophar…
[cited by applicant]
Woll Steffen et al: “Pentaglycine lipid 1-19 derivates—rp-HPLC analytics for bioorthogonal anchor molecules in targeted, multiple-composite liposomal drug delivery systems”, International Journal of Pharmaceutics, vol. …
[cited by applicant]
Travis J. Antes et al: “Targeting 20 extracellular vesicles to injured tissue using membrane cloaking and surface display”, Journal of Nanobiotechnology, vol. 16, No. 1, Aug. 30, 2018 (Aug. 30, 2018).
[cited by applicant]
Christopher Bachran et al: “The activity 1-20 of niyeloid cell-specific VHH imunotoxins is target-, epitope-, subset- and organ dependent”, Scientific Reports, vol. 7, No. 1, Dec. 1, 2017 (Dec. 1, 2017).
[cited by applicant]
Urara Tomita : Studies on Enzymatic Protein Cell-Surface Anchoring Method and Application to Dendritic Cell Immunotherapy [online], A Dissertation Submitted to the Graduate School of Life and Environmental Sciences, the…
[cited by applicant]
Won, et al., “Cell surface engineering to enhance mesenchymal stem cell migration toward an SDF-1 gradient”, Biomaterials, vol. 35, No. 21, Jul. 2014, pp. 5627-5635.
[cited by applicant]
Yamamoto, et al., “Interaction of poly(ethylene glycol)-conjugated phospholipids with supported lipid membranes and their influence on protein adsorption”, Science and Technology of advanced MaTerialS, vol. 17, No. 1, O…
[cited by applicant]
Zhang, et al., “Excessive activated T-cell proliferation after anti-CD19 CAR T-cell therapy”, Gene Therapy, vol. 25, 3, Jun. 2018, pp. 198-204.
[cited by applicant]
Antos, et al., “Lipid modification of proteins through sortase-catalyzed transpeptidation”, Journal of the American Chemical Society, vol. 130, No. 48, Nov. 6, 2008, pp. 16338-16343.
[cited by applicant]
Balint, et al., “The Pharmacology of Monoclonal Antibodies”, Springer-Verlag, New York, vol. 113, 1994, pp. 269-315.
[cited by applicant]
Bourel-Bonnet, et al., “A novel family of amphilic α-oxo aldehydes for the site-specific modification of peptides by two palmitoyl groups in solution or in liposome suspensions”, Tetrahedron Letters, vol. 42, No. 39, Se…
[cited by applicant]
Braisted, et al., “Synthesis of proteins by subtiligase”, Methods in enzymology, vol. 289, 1997, pp. 298-313.
[cited by applicant]
Braun, et al., “Bioorthogonal strategies for site-directed decoration of biomaterials with therapeutic proteins”, Journal of Controlled Release, vol. 273, Mar. 10, 2018, pp. 68-85.
[cited by applicant]
Clackson, et al., “Making Antibody Fragments using Phage Display Libraries”, Nature, vol. 352, Aug. 15, 1991, pp. 624-628.
[cited by applicant]
Desmyter, et al., “Antigen Specificity and High Affinity Binding Provided by One Single Loop of a Camel Single- domain Antibody”, Journal of Biological Chemistry, vol. 276, No. 28, Jul. 13, 2001, p. 26285-26290.
[cited by applicant]
Dixon, et al., “Nomenclature and symbolism for amino acids and peptides”, Pure and Applied Chemistry, vol. 56, No. 5, 1984, pp. 595-624.
[cited by applicant]
Epand, Richardm. , “Biophysical studies of lipopeptide-membrane interactions”, Peptide Science, vol. 43, No. 1, 1997, pp. 15-24.
[cited by applicant]
Ewert, et al., “Biophysical Properties of Camelid VHH Domains Compared to Those of Human VH3 Domains”, Biochemistry, vol. 41, No. 11, Feb. 19, 2002, pp. 3628-3636.
[cited by applicant]
Glasgow, et al., “In Vivo Site-Specific Protein Tagging with Diverse Amines Using an Engineered Sortase Variant”, Journal of the American Chemical Society, vol. 138, No. 24, Jun. 2016, pp. 7496-7499.
[cited by applicant]
Guo, et al., “New method for site-specific modification of liposomes with proteins using sortase A-mediated transpeptidation”, Bioconjugate chemistry, vol. 23, No. 3, Mar. 21, 2012, pp. 650-655.
[cited by applicant]
Hacein-Bey-Abina, et al., “LMO2-associated clonal T cell proliferation in two patients after gene therapy for SCID-X1”, science, vol. 302, No. 5644, Nov. 2003, pp. 415-419.
[cited by applicant]
Huston, et al., “Protein engineering of antibody binding sites: recovery of specific activity in an anti-digoxin single- chain Fv analogue produced in Escherichia coli.”, Proceedings of the National Academy of Sciences,…
[cited by applicant]
Iden, et al., “In vitro and in vivo comparison of immunoliposomes made by conventional coupling techniques with those made by a new post-insertion approach”, Biochimica et Biophysica Acta (BBA)-Biomembranes, vol. 1513, …
[cited by applicant]
Ishida, et al., “A combinatorial approach to producing sterically stabilized (Stealth) immunoliposomal drugs”, FEBS letters, vol. 460, No. 1, Oct. 22, 1999, pp. 129-133.
[cited by applicant]
Kirpotin, et al., “Sterically Stabilized Anti-HER2 Immunoliposomes: Design and Targeting to Human Breast Cancer Cells in Vitro”, Biochemistry, vol. 36, No. 1, Jan. 7, 1997, pp. 66-75.
[cited by applicant]
Kohler, et al., “Continuous Cultures of Fused Cells Secreting Antibody of Predefined Specificity”, Nature, vol. 256, Aug. 7, 1975, pp. 495-497.
[cited by applicant]
Lee, et al., “Cell surface engineering and application in cell delivery to heart diseases”, Journal of Biological Engineering, vol. 12, No. 1, Dec. 4, 2018, pp. 1-11.
[cited by applicant]
Lee, et al., “One-Step Method for Instant Generation of Advanced Allogeneic NK Cells”, Advanced Science, vol. 5, No. 11, Nov. 2018, pp. 1-11.
[cited by applicant]
Liebscher, et al., “N-terminal protein modification by substrate-activated reverse proteolysis”, Angewandte Chemie International Edition, vol. 53, 11, Mar. 10, 2014, pp. 3024-3028.
[cited by applicant]
Lim, et al., “Cell surface-engineering to embed targeting ligands or tracking agents on the cell membrane”, Biochemical and biophysical research communications, vol. 482, No. 4, Jan. 22, 2017, pp. 1042-1047.
[cited by applicant]
Lith, et al., “Legomedicine-A Versatile Chemo-Enzymatic Approach for the Preparation of Targeted Dual-Labeled Llama Antibody-Nanoparticle Conjugates”, Bioconjugate Chemistry, vol. 28, No. 2, Jan. 3, 2017, pp. 539-548.
[cited by applicant]
Marks, et al., “By-passing immunization: human antibodies from V-gene libraries displayed on phage.”, Journal of molecular biology, vol. 222, No. 3, Dec. 5, 1991, pp. 581-597.
[cited by applicant]
Marqués-Gallego, et al., “Ligation strategies for targeting liposomal nanocarriers”, BioMed research international, vol. 2014, No. 1, Jul. 2014, pp. 1-12.
[cited by applicant]
Martin, et al., “Non-Natural Cell Surface Receptors: Synthetic Peptides Capped with N-Cholesterylglycine Efficiently Deliver Proteins into Mammalian Cells”, Bioconjugate chemistry, vol. 14, No. 1, Nov. 15, 2002, pp. 67-…
[cited by applicant]
Miura, et al., “Encapsulation of islets with ultra-thin polyion complex membrane through poly(ethylene glycol)-phospholipids anchored to cell membrane”, Biomaterials, vol. 27, No. 34, Dec. 2006, pp. 5828-5835.
[cited by applicant]
Nguyen, et al., “Butelase 1 is an Asx-specific ligase enabling peptide macrocyclization and synthesis”, Nature chemical biology, vol. 10, No. 9, Jul. 20, 2014, pp. 732-738.
[cited by applicant]
Noble, et al., “Ligand-targeted liposome design: challenges and fundamental considerations”, Trends in biotechnology, vol. 32, No. 1, Jan. 2014, pp. 32-45.
[cited by applicant]
Nuijens, et al., “Chemo-enzymatic peptide synthesis (CEPS) using omniligases and selective peptiligases Efficient biocatalysts for assembling linear and cyclic peptides and protein conjugates”, Chimica Oggi-Chemistry To…
[cited by applicant]
Nuijens, et al., “Engineering a Diverse Ligase Toolbox for Peptide Segment Condensation”, Advanced Synthesis & Catalysis, vol. 358, No. 24, Dec. 22, 2016, pp. 4041-4048.
[cited by applicant]
Oswald, et al., “Determination of the activity of maleimide-functionalized phospholipids during preparation of liposomes”, International Journal of Pharmaceutics, vol. 514, No. 1, Nov. 30, 2016, pp. 93-102.
[cited by applicant]
Paulick, et al., “Synthetic Analogues of Glycosylphosphatidylinositol-Anchored Proteins and Their Behavior in Supported Lipid Bilayers”, Journal of the American Chemical Society, vol. 129, No. 37, Aug. 23, 2007, p. 1154…
[cited by applicant]
“International Preliminary Report on Patentability received for PCT Application No. PCT/EP2020/056339, mailing date Sep. 23, 2021”, 09 Pages.
[cited by applicant]
“International Search Report and Written Opinion received for PCT Application No. PCT/EP2020/056339, mailing date May 26, 2020”, 15 Pages.
[cited by applicant]
Pishesha, et al., “Engineered erythrocytes covalently linked to antigenic peptides can protect against autoimmune disease”, Proceedings of the National Academy of Sciences, vol. 114, No. 12, Mar. 7, 2017, pp. 3157-3162.
[cited by applicant]
Pulsipher, et al., “Directing Neuronal Signaling through Cell-Surface Glycan Engineering”, Journal of the American Chemical Society, vol. 136, No. 19, Apr. 18, 2014, pp. 6794-6797.
[cited by applicant]
Ritzefeld, Dr. Markus, “Sortagging: a robust and efficient chemoenzymatic ligation strategy”, Chemistry-A European Journal, vol. 20, No. 28, Jul. 7, 2014, pp. 8516-8529.
[cited by applicant]
Ruella, et al., “Induction of resistance to chimeric antigen receptor T cell therapy by transduction of a single leukemic B cell”, Nature medicine, vol. 24, No. 10, Oct. 2018, pp. 1499-1503.
[cited by applicant]
Saxon, et al., “Cell surface engineering by a modified Staudinger reaction”, Science, vol. 287, No. 5460, Apr. 2000, pp. 2007-2010.
[cited by applicant]
Schmidt, et al., “Enzyme-mediated ligation technologies for peptides and proteins”, Current opinion in chemical biology, vol. 38, Jun. 2017, pp. 1-7.
[cited by applicant]
Skerra, et al., “Assembly of a functional immunoglobulin Fv fragment in
[cited by applicant]
Steffen, et al., “In vitro characterization of a bivalent anti-HER-2 affibody with potential for radionuclide-based diagnostics”, Cancer biotherapy & radiopharmaceuticals, vol. 20, No. 3, Jun. 30, 2005, pp. 239-248.
[cited by applicant]
Swee, et al., “One-Step Enzymatic Modification of the Cell Surface Redirects Cellular Cytotoxicity and Parasite Tropism”, ACS chemical biology, vol. 10, No. 2, Oct. 31, 2014, pp. 460-465.
[cited by applicant]
Tabata, et al., “Development of a Sortase A-mediated Peptide-labeled Liposome Applicable to Drug-delivery Systems”, Anticancer Research, vol. 35, No. 8, Aug. 2015, pp. 4411-4417.
[cited by applicant]
Tabata, et al., “Investigation on the reaction conditions of Staphylococcus aureus sortase A for creating surface- modified liposomes as a drug-delivery system tool”, Anticancer Research, vol. 34, No. 8, Aug. 2014, pp. …
[cited by applicant]
Takemoto, et al., “Islet Surface Modification with Urokinase through DNA Hybridization”, Bioconjugate chemistry, vol. 22, No. 4, Mar. 9, 2011, pp. 673-678.
[cited by applicant]
Tang, et al., “Enhancing T cell therapy through TCR-signaling-responsive nanoparticle drug delivery”, Nature biotechnology, vol. 36, No. 8, Jul. 9, 2018, pp. 707-716.
[cited by applicant]
Tomita, et al., “Protein cell-surface display through in situ enzymatic modification of proteins with a poly(Ethylene glycol)-lipid”, Biotechnology and Bioengineering, vol. 110, No. 10, Oct. 2013, pp. 2785-2789.
[cited by applicant]
Ton-That, et al., “Purification and characterization of sortase, the transpeptidase that cleaves surface proteins of Staphylococcus aureus at the LPXTG motif”, Proceedings of the National Academy of Sciences, vol. 96, N…
[cited by applicant]