Pillar[6]MaxQ functions as an in vivo sequestrant for rocuronium and vecuronium
Author:
Affiliation:
1. College of Pharmacy, Chongqing Medical University, Chongqing 400016, P. R. China
2. Department of Chemistry and Biochemistry, University of Maryland, College Park, Maryland 20742, USA
Abstract
Funder
Chongqing Medical University
College of Computer, Mathematical, and Natural Sciences, University of Maryland
Publisher
Royal Society of Chemistry (RSC)
Link
http://pubs.rsc.org/en/content/articlepdf/2024/CC/D4CC00772G
Reference39 articles.
1. The Design of Molecular Hosts, Guests, and Their Complexes (Nobel Lecture)
2. Supramolecular Chemistry—Scope and Perspectives Molecules, Supermolecules, and Molecular Devices(Nobel Lecture)
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4. Giant hollow MnL2n spherical complexes: structure, functionalisation and applications
5. A Novel Concept of Reversing Neuromuscular Block: Chemical Encapsulation of Rocuronium Bromide by a Cyclodextrin-Based Synthetic Host The discovery of Org 25969 is the result of teamwork with contributions from a number of scientists both inside Organon and outside the company. We would like in particular to acknowledge the following scientists for their invaluable contributions: E. Hutchinson, D. Stevenson, R. Roy, and J. Pick for scaling-up the synthesis; F. Hope, S. Miller, and R. Mason for various in vitro and in vivo pharmacological testing; R. Watson, B. Montgomery, P. Desmond, and A. Osprey for all their analytical effort; and R. McGuire and J. Mestres for graphical presentation of the X-ray crystal structure of the Org 25969–rocuronium complex (Figure 3). We would also like to thank Prof. A. Cooper of Glasgow University who has critically reproduced our calorimetry data of Org 25969–rocuronium complexation (Figure 2).
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