Inhibition of α-glucosidase by trilobatin and its mechanism: kinetics, interaction mechanism and molecular docking

M He, Y Zhai, Y Zhang, S Xu, S Yu, Y Wei, H Xiao… - Food & Function, 2022 - pubs.rsc.org
α-Glucosidase is related to the increase in postprandial blood glucose in vivo. Inhibition of α-
glucosidase is supposed to be an effective approach to treat type 2 diabetes mellitus …

Photobiological systems studied by time-resolved infrared spectroscopy (2019–2020)

A Mezzetti - 2021 - books.rsc.org
In the present review, the scientific results and technical improvements in the last two years
(2019 and 2020) in the field of time-resolved IR spectroscopy in the (sub-) ns–second …

Time-resolved FTIR difference spectroscopy for the study of photosystem I with high potential naphthoquinones incorporated into the A1 binding site

N Agarwala, H Makita, G Hastings - Biochimica et Biophysica Acta (BBA) …, 2023 - Elsevier
Time–resolved step-scan Fourier transform infrared difference spectroscopy has been used
to study cyanobacterial photosystem I photosynthetic reaction centers from Synechocystis …

Time-resolved FTIR difference spectroscopy for the study of photosystem I with high potential naphthoquinones incorporated into the A1 binding site 2: Identification …

N Agarwala, G Hastings - Photosynthesis Research, 2023 - Springer
Time-resolved step-scan FTIR difference spectroscopy at 77 K has been used to study
photosystem I (PSI) from Synechocystis sp. PCC 6803 with four high-potential, 1, 4 …

Solar photocatalysis for water decontamination and disinfection (2017–2020)

S Malato, S Miralles-Cuevas, A Cabrera-Reina - 2021 - books.rsc.org
This review explored the latest progress (since 2017) in solar photocatalysis for water
decontamination and disinfection, including three sections focused on decontamination by …

Time-resolved FTIR Difference Spectroscopy for the Study of Photosystem I with High Potential Naphthoquinones Incorporated into the A 1 Binding Site. Identification …

G Hastings, N Agarwala - 2023 - researchsquare.com
Time-resolved step-scan FTIR difference spectroscopy at 77 K has been used to study
cyanobacterial photosystem I (PSI) from Synechocystis sp. PCC 6803 with four high …

Time-Resolved FTIR Difference Spectroscopy for The Study of Quinones in Photosynthetic Protein Binding Sites

N Agarwala - 2023 - scholarworks.gsu.edu
Time–resolved Fourier transform infrared difference spectroscopy has been used to study
photosystem I (PSI) photosynthetic reaction centers from Synechocystis sp. PCC 6803 …

Calculated Vibrational Frequencies of Pigments in Protein Binding Sites

L Rohani - 2021 - scholarworks.gsu.edu
In photosystem I (PSI), the secondary electron acceptor is a phylloquinone (PhQ) molecule
and occupies the so-called A 1 binding site. PhQ, a naphthoquinone derivative with methyl …