142
Budai ZS, Szejtli J (1981) Cyclodextrin inclusion complexes of 2-chloroethyl phosphonic acid.
Acta Chim Acad Sci Hung 107:231–236
Bujtas K, Cserhati T, Szejtli J (1987) Reduction of phytotoxicity of nonionic tensides by cyclodextrins. J Incl Phenom 5:421–425. https://doi.org/10.1007/BF00664097
Buvari A, Szejtli J, Barcza L (1982) The 1-1 and 1-2 complex-formation between beta- cyclodextrin
and benzoic-acid. Acta Chim Acad Sci Hungarica 110:51–55
Caesar GV (1968) Chapter X: The Schardinger dextrins. In: Radley JA (ed) Starch and its derivatives, 4th edn. Chapman and Hall Ltd., EC4, London, pp 290–305
Chiesi P, Ventura P, Pasini M, Szejtli J, Vikmon M, Redenti E (1994) World Patent:WO9416733
Clarke RJ, Coates JH, Lincoln SF (1988) Inclusion complexes of cyclomalto-oligosaccharides
(cyclodextrins). Adv Carbohydr Chem Biochem 46:205–249
Connors KA (1997) The stability of cyclodextrin complexes in solution. Chem Rev 97:1325–1357
Cramer F (1954) Einschlussverbindungen. Springer, Berlin. ISBN: 978-3-642-49192-4
Cramer F (1956) Einschluβverbindungen. Angew Chem 68(1956):115–120
Crini G (2014) Review: a history of cyclodextrins. Chem Rev 114:10940–10975. https://doi.
org/10.1021/cr500081p
Crini G, Fourmentin S, Fenyvesi É, Torri G, Fourmentin M, Morin-Crini N (2018) Cyclodextrins,
from molecules to applications. Environ Chem Lett 16:1361–1375. https://doi.org/10.1007/
s10311-018-0763-2
Csabai K, Cserhati T, Szejtli J (1993) Interaction of some barbituric-acid derivatives with hydroxypropyl- beta-cyclodextrin. Int J Pharm 91:15–22. https://doi.
org/10.1016/0378-5173(93)90416-D
Csabai K, Vikmon M, Szejtli J, Redenti E, Poli G, Ventura P (1998) Complexation of manidipine
with cyclodextrins and their derivatives. J Inc Phenom Mol Recogn Chem 31:169–178. https://
doi.org/10.1023/A:1007959417684
Cserháti T, Szejtli J (1992) Inclusion complexes of some nonionic surfactants with cyclomaltooligosaccharides. Carbohydr Res 224:165–173. https://doi.org/10.1016/0008-6215(92)84102-X
Cserháti T, Fenyvesi É, Szejtli J (1983a) Determination of cyclodextrin inclusion complex stability by reversed-phase thin-layer chromatography. Acta Biochim Biophys Hungarica 18:60–60
Cserháti T, Dobrovolszky A, Fenyvesi É, Szejtli J (1983b) Beta-cyclodextrin polymer beads as
GC packings. J High Res Chromatogr Chromatogr Comm 6:442–443. https://doi.org/10.1002/
jhrc.1240060809
Cserháti T, Szente L, Szejtli J (1984) Complex-forming eluent additives in reversed-phase thinlayer chromatography of methylated beta-cyclodextrins. J High Res Chromatogr Chromatogr
Comm 7:635–636. https://doi.org/10.1002/jhrc.1240071108
Cserháti T, Szejtli J, Fenyvesi É (1988) Reversed-phase thin-layer chromatography of some chlorophenols in the presence of a soluble beta-cyclodextrin polymer. J Chromatogr 439:393–403.
https://doi.org/10.1016/S0021-9673(01)83851-6
Cserháti T, Szejtli J, Bojarski J (1990a) Charge-transfer chromatographic study on the inclusion complex-formation between of some barbituric-acid with various cyclodextrins.
Chromatographia 28:455–458. https://doi.org/10.1007/BF02261059
Cserháti T, Szejtli J, Szogyi M (1990b) Charge-transfer chromatographic study on inclusion
complex-formation between 2-hydroxypropyl-beta-cyclodextrins and some chlorophenols. J
Chromatogr 509:255–262
Cserháti T, Fenyvesi É, Szejtli J (1992) Interaction of nonylphenyl and tributylphenyl ethyleneoxide ionic surfactants with highly soluble cyclodextrin derivatives. J Incl Phenom Mol Recogn
Chem 14:181–188. https://doi.org/10.1007/BF01029666
Cserháti T, Fenyvesi É, Szejtli J, Forgacs E (1995) Water-insoluble beta-cyclodextrin polymer as
thin-layer chromatographic sorbent. Chimica Oggi Chem Today 13:21–24
Cserháti T, Forgacs E, Szejtli J (1996) Inclusion complex formation of antisense nucleotides with hydroxypropyl-beta-cyclodextrin. Int J Pharm 141:1–7. https://doi.
org/10.1016/0378-5173(96)04583-8
D’Souza VT, Lipkowitz KB (1998) Cyclodextrins: introduction. Chem Rev 98:1741–1742
G. Crini et al.
Budai ZS, Szejtli J (1981) Cyclodextrin inclusion complexes of 2-chloroethyl phosphonic acid.
Acta Chim Acad Sci Hung 107:231–236
Bujtas K, Cserhati T, Szejtli J (1987) Reduction of phytotoxicity of nonionic tensides by cyclodextrins. J Incl Phenom 5:421–425. https://doi.org/10.1007/BF00664097
Buvari A, Szejtli J, Barcza L (1982) The 1-1 and 1-2 complex-formation between beta- cyclodextrin
and benzoic-acid. Acta Chim Acad Sci Hungarica 110:51–55
Caesar GV (1968) Chapter X: The Schardinger dextrins. In: Radley JA (ed) Starch and its derivatives, 4th edn. Chapman and Hall Ltd., EC4, London, pp 290–305
Chiesi P, Ventura P, Pasini M, Szejtli J, Vikmon M, Redenti E (1994) World Patent:WO9416733
Clarke RJ, Coates JH, Lincoln SF (1988) Inclusion complexes of cyclomalto-oligosaccharides
(cyclodextrins). Adv Carbohydr Chem Biochem 46:205–249
Connors KA (1997) The stability of cyclodextrin complexes in solution. Chem Rev 97:1325–1357
Cramer F (1954) Einschlussverbindungen. Springer, Berlin. ISBN: 978-3-642-49192-4
Cramer F (1956) Einschluβverbindungen. Angew Chem 68(1956):115–120
Crini G (2014) Review: a history of cyclodextrins. Chem Rev 114:10940–10975. https://doi.
org/10.1021/cr500081p
Crini G, Fourmentin S, Fenyvesi É, Torri G, Fourmentin M, Morin-Crini N (2018) Cyclodextrins,
from molecules to applications. Environ Chem Lett 16:1361–1375. https://doi.org/10.1007/
s10311-018-0763-2
Csabai K, Cserhati T, Szejtli J (1993) Interaction of some barbituric-acid derivatives with hydroxypropyl- beta-cyclodextrin. Int J Pharm 91:15–22. https://doi.
org/10.1016/0378-5173(93)90416-D
Csabai K, Vikmon M, Szejtli J, Redenti E, Poli G, Ventura P (1998) Complexation of manidipine
with cyclodextrins and their derivatives. J Inc Phenom Mol Recogn Chem 31:169–178. https://
doi.org/10.1023/A:1007959417684
Cserháti T, Szejtli J (1992) Inclusion complexes of some nonionic surfactants with cyclomaltooligosaccharides. Carbohydr Res 224:165–173. https://doi.org/10.1016/0008-6215(92)84102-X
Cserháti T, Fenyvesi É, Szejtli J (1983a) Determination of cyclodextrin inclusion complex stability by reversed-phase thin-layer chromatography. Acta Biochim Biophys Hungarica 18:60–60
Cserháti T, Dobrovolszky A, Fenyvesi É, Szejtli J (1983b) Beta-cyclodextrin polymer beads as
GC packings. J High Res Chromatogr Chromatogr Comm 6:442–443. https://doi.org/10.1002/
jhrc.1240060809
Cserháti T, Szente L, Szejtli J (1984) Complex-forming eluent additives in reversed-phase thinlayer chromatography of methylated beta-cyclodextrins. J High Res Chromatogr Chromatogr
Comm 7:635–636. https://doi.org/10.1002/jhrc.1240071108
Cserháti T, Szejtli J, Fenyvesi É (1988) Reversed-phase thin-layer chromatography of some chlorophenols in the presence of a soluble beta-cyclodextrin polymer. J Chromatogr 439:393–403.
https://doi.org/10.1016/S0021-9673(01)83851-6
Cserháti T, Szejtli J, Bojarski J (1990a) Charge-transfer chromatographic study on the inclusion complex-formation between of some barbituric-acid with various cyclodextrins.
Chromatographia 28:455–458. https://doi.org/10.1007/BF02261059
Cserháti T, Szejtli J, Szogyi M (1990b) Charge-transfer chromatographic study on inclusion
complex-formation between 2-hydroxypropyl-beta-cyclodextrins and some chlorophenols. J
Chromatogr 509:255–262
Cserháti T, Fenyvesi É, Szejtli J (1992) Interaction of nonylphenyl and tributylphenyl ethyleneoxide ionic surfactants with highly soluble cyclodextrin derivatives. J Incl Phenom Mol Recogn
Chem 14:181–188. https://doi.org/10.1007/BF01029666
Cserháti T, Fenyvesi É, Szejtli J, Forgacs E (1995) Water-insoluble beta-cyclodextrin polymer as
thin-layer chromatographic sorbent. Chimica Oggi Chem Today 13:21–24
Cserháti T, Forgacs E, Szejtli J (1996) Inclusion complex formation of antisense nucleotides with hydroxypropyl-beta-cyclodextrin. Int J Pharm 141:1–7. https://doi.
org/10.1016/0378-5173(96)04583-8
D’Souza VT, Lipkowitz KB (1998) Cyclodextrins: introduction. Chem Rev 98:1741–1742
G. Crini et al.
