142. Steel AB, Levicky RL, Herne TM, Tarlov MJ (2000) Immobilization of nucleic acids at solid
surfaces: effect of oligonucleotide length on layer assembly. Biophys J 79:975–981
143. Balamurugan S, Obubuafo A, McCarley RL, Soper SA, Spivak DA (2008) Effect of linker
structure on surface density of aptamer monolayers and their corresponding protein binding
efficiency. Anal Chem 80:9630–9634
144. Lowe CR (1977) The synthesis of several 8-substituted derivatives of adenosine
5
0 -monophosphate to study the effect of the nature of the spacer arm in affinity chromatography. Eur J Biochem 73:265–274
145. Seifert A (2017) Method for obtaining aptamers. Patent Application Number EP2017/066940
146. Seifert A (2019) Anti-fibrinogen aptamers and uses thereof WO 2018/007530
147. Seifert A (2019) Anti-immunoglobulin G aptamers and uses thereof. WO 2018/019538
148. Perret G (2018) Aptamers directed against a kappa light chain-containing protein and uses
thereof WO/2018/109213A1
149. Yan SB (1996) Review of conformation-specific affinity purification methods for plasma
vitamin K-dependent proteins. J Mol Recognit 9:211–218
150. Morfini M (2014) Innovative approach for improved rFVIII concentrate. Eur J Haematol
93:361–368
151. Macdougall AJ, Brown JR, Plumbridge TW (1980) Immobilization of DNA for affinity
chromatography and drug-binding studies. Biochem J 191:855–858
152. Denizli A, Pişkin E (1995) DNA-immobilized polyhydroxyethylmethacrylate microbeads for
affinity sorption of human immunoglobulin G and anti-DNA antibodies. J Chromatogr B
666:215–222
153. Bartnicki F, Kowalska E, Pels K, Strzalka W (2015) Imidazole-free purification of
His3-tagged recombinant proteins using ssDNA aptamer-based affinity chromatography.
J Chromatogr A 1418:130–139
154. Teng IT, Li X, Yadikar HA, Yang Z, Li L, Lyu Y, Pan X, Wang KK, Tan W (2018)
Identification and characterization of DNA aptamers specific for phosphorylation epitopes of
Tau protein. J Am Chem Soc 14:14314–14323
155. Cho S, Lee BR, Cho BK, Kim JH, Kim BG (2013) In vitro selection of sialic acid specific
RNA aptamer and its application to the rapid sensing of sialic acid modified sugars. Biotechnol
Bioeng 110:905–913
156. Tang XL, Hua Y, Guan Q, Yuan CH (2016) Improved detection of deeply invasive candidiasis
with DNA aptamers specific binding to (1!3)-β-D-glucans from Candida albicans. Eur J Clin
Microbiol Infect Dis 35:587–595
157. Gonçalves GRF, Gandolfi ORR, Santos LS, Bonomo RCF, Veloso CM, Veríssimo LAA,
Fontan RDCI (2017) Immobilization of sugars in supermacroporous cryogels for the purification of lectins by affinity chromatography. J Chromatogr B 1068–1069:71–77
158. Javaherian S, Musheev MU, Kanoatov M, Berezovski MV, Krylov SN (2009) Selection of
aptamers for a protein target in cell lysate and their application to protein purification. Nucleic
Acids Res 37:e62
159. Sinitsyn VV, Mamontova AG, Konovalov GA, Kukharchuk VV (1990) Apheresis of low
density lipoproteins using a heparin-based sorbent with low antithrombin III binding capacity.
Atherosclerosis 84:55–59
160. Levashov PA, Afanas’eva OI, Dmitrieva OA, Klesareva EV, Adamova II, Afanas’eva MI,
Bespalova ZD, Sidorova MV, Pokrovskiĭ SN (2010) Preparation of affinity sorbents with
immobilized synthetic ligands for therapeutic apheresis. Biomed Khim 56:739–746
161. Wallukat G, Haberland A, Berg S, Schulz A, Freyse EJ, Dahmen C, Kage A, Dandel M,
Vetter R, Salzsieder E, Kreutz R, Schimke I (2012) The first aptamer-apheresis column
specifically for clearing blood of β1-receptor autoantibodies. Circ J 76:2449–2455
162. Wallukat G, Müller J, Haberland A, Berg S, Schulz A, Freyse EJ, Vetter R, Salzsieder E,
Kreutz R, Schimke I (2016) Aptamer BC007 for neutralization of pathogenic autoantibodies
directed against G-protein coupled receptors: a vision of future treatment of patients with
cardiomyopathies and positivity for those autoantibodies. Atherosclerosis 244:44–47
Aptamer-Based Affinity Chromatography for Protein Extraction and Purification
137
surfaces: effect of oligonucleotide length on layer assembly. Biophys J 79:975–981
143. Balamurugan S, Obubuafo A, McCarley RL, Soper SA, Spivak DA (2008) Effect of linker
structure on surface density of aptamer monolayers and their corresponding protein binding
efficiency. Anal Chem 80:9630–9634
144. Lowe CR (1977) The synthesis of several 8-substituted derivatives of adenosine
5
0 -monophosphate to study the effect of the nature of the spacer arm in affinity chromatography. Eur J Biochem 73:265–274
145. Seifert A (2017) Method for obtaining aptamers. Patent Application Number EP2017/066940
146. Seifert A (2019) Anti-fibrinogen aptamers and uses thereof WO 2018/007530
147. Seifert A (2019) Anti-immunoglobulin G aptamers and uses thereof. WO 2018/019538
148. Perret G (2018) Aptamers directed against a kappa light chain-containing protein and uses
thereof WO/2018/109213A1
149. Yan SB (1996) Review of conformation-specific affinity purification methods for plasma
vitamin K-dependent proteins. J Mol Recognit 9:211–218
150. Morfini M (2014) Innovative approach for improved rFVIII concentrate. Eur J Haematol
93:361–368
151. Macdougall AJ, Brown JR, Plumbridge TW (1980) Immobilization of DNA for affinity
chromatography and drug-binding studies. Biochem J 191:855–858
152. Denizli A, Pişkin E (1995) DNA-immobilized polyhydroxyethylmethacrylate microbeads for
affinity sorption of human immunoglobulin G and anti-DNA antibodies. J Chromatogr B
666:215–222
153. Bartnicki F, Kowalska E, Pels K, Strzalka W (2015) Imidazole-free purification of
His3-tagged recombinant proteins using ssDNA aptamer-based affinity chromatography.
J Chromatogr A 1418:130–139
154. Teng IT, Li X, Yadikar HA, Yang Z, Li L, Lyu Y, Pan X, Wang KK, Tan W (2018)
Identification and characterization of DNA aptamers specific for phosphorylation epitopes of
Tau protein. J Am Chem Soc 14:14314–14323
155. Cho S, Lee BR, Cho BK, Kim JH, Kim BG (2013) In vitro selection of sialic acid specific
RNA aptamer and its application to the rapid sensing of sialic acid modified sugars. Biotechnol
Bioeng 110:905–913
156. Tang XL, Hua Y, Guan Q, Yuan CH (2016) Improved detection of deeply invasive candidiasis
with DNA aptamers specific binding to (1!3)-β-D-glucans from Candida albicans. Eur J Clin
Microbiol Infect Dis 35:587–595
157. Gonçalves GRF, Gandolfi ORR, Santos LS, Bonomo RCF, Veloso CM, Veríssimo LAA,
Fontan RDCI (2017) Immobilization of sugars in supermacroporous cryogels for the purification of lectins by affinity chromatography. J Chromatogr B 1068–1069:71–77
158. Javaherian S, Musheev MU, Kanoatov M, Berezovski MV, Krylov SN (2009) Selection of
aptamers for a protein target in cell lysate and their application to protein purification. Nucleic
Acids Res 37:e62
159. Sinitsyn VV, Mamontova AG, Konovalov GA, Kukharchuk VV (1990) Apheresis of low
density lipoproteins using a heparin-based sorbent with low antithrombin III binding capacity.
Atherosclerosis 84:55–59
160. Levashov PA, Afanas’eva OI, Dmitrieva OA, Klesareva EV, Adamova II, Afanas’eva MI,
Bespalova ZD, Sidorova MV, Pokrovskiĭ SN (2010) Preparation of affinity sorbents with
immobilized synthetic ligands for therapeutic apheresis. Biomed Khim 56:739–746
161. Wallukat G, Haberland A, Berg S, Schulz A, Freyse EJ, Dahmen C, Kage A, Dandel M,
Vetter R, Salzsieder E, Kreutz R, Schimke I (2012) The first aptamer-apheresis column
specifically for clearing blood of β1-receptor autoantibodies. Circ J 76:2449–2455
162. Wallukat G, Müller J, Haberland A, Berg S, Schulz A, Freyse EJ, Vetter R, Salzsieder E,
Kreutz R, Schimke I (2016) Aptamer BC007 for neutralization of pathogenic autoantibodies
directed against G-protein coupled receptors: a vision of future treatment of patients with
cardiomyopathies and positivity for those autoantibodies. Atherosclerosis 244:44–47
Aptamer-Based Affinity Chromatography for Protein Extraction and Purification
137
