Interaction Scheme

Molecule

Atropin
ATROPINE

c = 0.0 — 4496.91 µM

Host

Beta cd
β-CD

c = 1500.0 µM

Binding Properties

𝜈 Molecule 1 : 1 Host
Ka = 6060.0 ± 190.0 M-1
Kd =
logKa = 3.78 ± 0.01
T 25.0 °C 298 K
Energy kJ mol-1 kcal mol-1
ΔG = -21.59 ± 0.08 -5.16 ± 0.02
ΔH = -4.9 ± 0.04 -1.17 ± 0.01
-TΔS = -16.69 -3.99
J mol-1 K-1 cal mol-1 K-1
ΔS = 56.0 13.4
Comment
atropine used as sulfate salt
These are the specifications of the determination of the experimental results.
Detection Method: Direct
Assay Type: Direct Binding Assay
Technique: Isothermal Titration Calorimetry
Instrument: MicroCal OMEGA
VCell = 1361.1 𝜇L
VSyringe = 250.0 𝜇L
cmolecule = 30000.0 𝜇M    syringe
cpartner = 1500.0 𝜇M    cell
Ninjection = 31
Vinjection = 8.0 𝜇L
Vinit = 0.0 𝜇L
Detailed information about the solvation.
Solvent System Single Solvent
Solvent water
Please find here information about the dataset this interaction is part of.
Citation:

M. Wszelaka-Rylik, P. Gierycz, SupraBank 2024, Isothermal titration calorimetry (ITC) study of natural cyclodextrins inclusion complexes with tropane alkaloids (dataset). https://doi.org/10.34804/supra.20240816571

Link: https://doi.org/10.34804/supra.20240816571
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Please find here information about the scholarly article describing the results derived from that data.
Citation:

M. Wszelaka-Rylik, P. Gierycz, J Therm Anal Calorim 2015, 121, 1359–1364.

Link: https://doi.org/10.1007/s10973-015-4658-1
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Binding Isotherm Simulations


The plot depicts the binding isotherm simulation of a 1:1 interaction of ATROPINE (0.0033003300330033004 M) and β-CD (0 — 0.006600660066006601 M).