325
coatings: an improvement in bronze corrosion
protection. Coatings 9(8):508
19. Fernandes A, Ivanova G, Bras NF et al (2014)
Structural characterization of inclusion complexes
between
cyanidin-3-O- glucoside
and
β-cyclodextrin.
Carbohydr
Polym
102(1):269–277
20. Greatbanks D, Pickford R (1987) Cyclodextrins
as chiral complexing agents in water, and their
application to optical purity measurements.
Magn Reson Chem 25:208–215
21. Armstrong DW, Ward DJ, Armstrong RD et al
(1986) Separation of drug stereoisomers by the
formation of β-cyclodextrin complexes. Science
232(4754):1132–1135
22. Fronza G, Mele A, Redenti E et al (1996)
1
H NMR and molecular modeling study
on the inclusion complex β-cyclodextrinindomethacin. J Org Chem 61(3):909–914
23. Gardner KH, Zhang X, Gehring K et al (1998)
NMR studies of a 42 KDa Escherichia coli maltose binding protein/β-Cyclodextrin complex:
chemical shift assignments and analysis. J Am
Chem Soc 120:11738–11748
24. Murray DT, Das N, Cross TA (2013) Solid
state NMR strategy for characterizing native
membrane protein structures. Acc Chem Res
46(9):2172–2181
25. Priotti J, Ferreira MJ, Lamas MC et al (2015)
First solid-state NMR spectroscopy evaluation
of complexes of benznidazole with cyclodextrin derivatives. Carbohydr Polym 131:90–97
26. Nevzorov AA, Opella SJ (2007) Selective averaging for high-resolution solid-state NMR
spectroscopy of aligned samples. J Magn Reson
185:59–70
27. Dvinskikh SV, Yamamoto K, Ramamoorthy A
(2006) Heteronuclear isotopic mixing separated local field NMR spectroscopy. J Chem
Phys 125:034507
28. Berliner L (ed) (2015) Biological magnetic
resonance. Protein NMR: modern techniques
and biomedical applications. Springer Science
Business Media LLC, New York
29. Molugu TR, Lee S, Brown FB (2017)
Concepts and methods of solid-state NMR
spectroscopy applied to biomembranes. Chem
Rev 117(19):12087–12132
30. Vogt F, Strohmeier M (2012) 2D Solid-state
NMR analysis of inclusion in drug-cyclodextrin
complexes. Mol Pharm 9(11):3357–3374
31. Tulumello DV, Deber CM (2009) SDS
micelles as a membrane-mimetic environment
for transmembrane segments. Biochemistry
48:12096–12103
32. http://chem.ch.huji.ac.il/nmr/preparation/
preparation.html
33. Liossi AS, Ntountaniotis D, Kellici TF et al
(2017) Exploring the interactions of irbesartan
and irbesartan-2-HP-β-cyclodextrin complex
with model membranes. Biochim Biophys Acta
Biomembr 1859(6):1089–1098
34. Chattah AK, Mroue KH, Pfund LY,
Ramamoorthy A, Longhi MR, Garnero C
(2013) Insights into Novel Supramolecular
Complexes of Two Solid Forms of
Norfloxacin and β-Cyclodextrin. J Pharm Sci
102(10):3717–3724
35. Fukami T, Ishii T, Io T, Suzuki N, Suzuki T,
Yamamoto K, Xu J, Ramamoorthy A, Tomono
K (2009) Nanoparticle Processing in the Solid
State Dramatically Increases the Cell Membrane
Permeation of a Cholesterol-Lowering Drug,
Probucol. Mol Pharm 6(3):1029–1035
36. Io T, Fukami T, Yamamoto K, Suzuki T,
Xu J, Tomono K, Ramamoorthy A (2009)
Homogeneous Nanoparticles To Enhance
the Efficiency of a Hydrophobic Drug,
Antihyperlipidemic Probucol, Characterized by
Solid-State NMR. Mol Pharm 7(1):299–305
NMR Techniques Applied to Drug: Cyclodextrin Complexation
coatings: an improvement in bronze corrosion
protection. Coatings 9(8):508
19. Fernandes A, Ivanova G, Bras NF et al (2014)
Structural characterization of inclusion complexes
between
cyanidin-3-O- glucoside
and
β-cyclodextrin.
Carbohydr
Polym
102(1):269–277
20. Greatbanks D, Pickford R (1987) Cyclodextrins
as chiral complexing agents in water, and their
application to optical purity measurements.
Magn Reson Chem 25:208–215
21. Armstrong DW, Ward DJ, Armstrong RD et al
(1986) Separation of drug stereoisomers by the
formation of β-cyclodextrin complexes. Science
232(4754):1132–1135
22. Fronza G, Mele A, Redenti E et al (1996)
1
H NMR and molecular modeling study
on the inclusion complex β-cyclodextrinindomethacin. J Org Chem 61(3):909–914
23. Gardner KH, Zhang X, Gehring K et al (1998)
NMR studies of a 42 KDa Escherichia coli maltose binding protein/β-Cyclodextrin complex:
chemical shift assignments and analysis. J Am
Chem Soc 120:11738–11748
24. Murray DT, Das N, Cross TA (2013) Solid
state NMR strategy for characterizing native
membrane protein structures. Acc Chem Res
46(9):2172–2181
25. Priotti J, Ferreira MJ, Lamas MC et al (2015)
First solid-state NMR spectroscopy evaluation
of complexes of benznidazole with cyclodextrin derivatives. Carbohydr Polym 131:90–97
26. Nevzorov AA, Opella SJ (2007) Selective averaging for high-resolution solid-state NMR
spectroscopy of aligned samples. J Magn Reson
185:59–70
27. Dvinskikh SV, Yamamoto K, Ramamoorthy A
(2006) Heteronuclear isotopic mixing separated local field NMR spectroscopy. J Chem
Phys 125:034507
28. Berliner L (ed) (2015) Biological magnetic
resonance. Protein NMR: modern techniques
and biomedical applications. Springer Science
Business Media LLC, New York
29. Molugu TR, Lee S, Brown FB (2017)
Concepts and methods of solid-state NMR
spectroscopy applied to biomembranes. Chem
Rev 117(19):12087–12132
30. Vogt F, Strohmeier M (2012) 2D Solid-state
NMR analysis of inclusion in drug-cyclodextrin
complexes. Mol Pharm 9(11):3357–3374
31. Tulumello DV, Deber CM (2009) SDS
micelles as a membrane-mimetic environment
for transmembrane segments. Biochemistry
48:12096–12103
32. http://chem.ch.huji.ac.il/nmr/preparation/
preparation.html
33. Liossi AS, Ntountaniotis D, Kellici TF et al
(2017) Exploring the interactions of irbesartan
and irbesartan-2-HP-β-cyclodextrin complex
with model membranes. Biochim Biophys Acta
Biomembr 1859(6):1089–1098
34. Chattah AK, Mroue KH, Pfund LY,
Ramamoorthy A, Longhi MR, Garnero C
(2013) Insights into Novel Supramolecular
Complexes of Two Solid Forms of
Norfloxacin and β-Cyclodextrin. J Pharm Sci
102(10):3717–3724
35. Fukami T, Ishii T, Io T, Suzuki N, Suzuki T,
Yamamoto K, Xu J, Ramamoorthy A, Tomono
K (2009) Nanoparticle Processing in the Solid
State Dramatically Increases the Cell Membrane
Permeation of a Cholesterol-Lowering Drug,
Probucol. Mol Pharm 6(3):1029–1035
36. Io T, Fukami T, Yamamoto K, Suzuki T,
Xu J, Tomono K, Ramamoorthy A (2009)
Homogeneous Nanoparticles To Enhance
the Efficiency of a Hydrophobic Drug,
Antihyperlipidemic Probucol, Characterized by
Solid-State NMR. Mol Pharm 7(1):299–305
NMR Techniques Applied to Drug: Cyclodextrin Complexation
