Macrocyclic host molecules with aromatic building blocks: state of art and progress

2021 ◽  
Author(s):  
Qiang Shi ◽  
Xuping Wang ◽  
Bing Liu ◽  
Panyu Qiao ◽  
Jing Li ◽  
...  

Macrocyclic host molecule plays the central role in host-guest chemistry and supramolecular chemistry. Highly structural symmetry of macrocyclic host molecules can meet people's pursuit of aesthetics in molecular design, and...

Author(s):  
Nicolas Moreno-Gómez ◽  
Edgar Vargas ◽  
Richard Buchner

For the progress of synthetic supramolecular chemistry in aqueous solution the design of host molecules soluble in this medium is essential. A possible route is the introduction of ionic residues,...


2008 ◽  
pp. 4436 ◽  
Author(s):  
Christian Schenk ◽  
Florian Henke ◽  
Gustavo Santiso-Quiñones ◽  
Ingo Krossing ◽  
Andreas Schnepf

2016 ◽  
Vol 13 (8) ◽  
pp. 1103-1110
Author(s):  
Xin-Li Mao ◽  
Kui-Feng Wang ◽  
Feng Zhu ◽  
Zhao-Hu Pan ◽  
Guo-Min Wu ◽  
...  

2020 ◽  
Vol 8 (31) ◽  
pp. 6739-6752
Author(s):  
Kaiqi Long ◽  
Yuwei Liu ◽  
Yafei Li ◽  
Weiping Wang

This review introduces trigonal building blocks and summarizes their structural characteristics, self-assembly ability and biomedical applications.


2003 ◽  
Vol 9 (6) ◽  
pp. 1332-1347 ◽  
Author(s):  
Xi-you Li ◽  
Jens Illigen ◽  
Martin Nieger ◽  
Steffen Michel ◽  
Christoph A. Schalley

2004 ◽  
Vol 08 (02) ◽  
pp. 125-140 ◽  
Author(s):  
Huchen Zhou ◽  
John T. Groves

Cyclodextrins are versatile building blocks for a variety of macromolecules due to the inclusion complexes that are formed with hydrophobic organic molecules. Cyclodextrin-porphyrin interactions are of particular interest since cyclodextrins can serve as a non-covalent binding pocket while metalloporphyrins could serve as the heme analogs in the construction of heme protein model compounds. Various approaches to the design and assembly of biomimetic porphyrin constructs are compared and contrasted in this minireview with a particular emphasis on self-assembled and porphyrin-cyclodextrin systems. Several recent advances from our laboratories are described in this context. A sensitive fluorescent binding probe, 6A-N-dansyl-permethylated-β-cyclodextrin (Dan-NH-TMCD), was found to form 2:1 complexes with the meso-tetraphenylporphyrins Mn(III)TCPP , Mn(III)TPPS and Mn(III)TF 4 TMAP with high binding constants. A perPEGylated cyclodextrin, heptakis(2,3,6-tri-O-2-(2-(2-methoxyethoxy)ethoxy)ethyl)-β-cyclodextrin (TPCD), has been shown by 1 H NMR spectroscopy to form a 1:1 complex with H 2 TCPP with a binding constant above 108M-1. Such a strong binding constant is the largest found for a 1:1 complex between a monomeric cyclodextrin and a guest. TPCD was also found to bind Mn(III)TCPP with a binding constant of 1.2 × 106 M -1. A novel, self-assembled hemoprotein model, hemodextrin is also described. The molecular design is based on a PEGylated cyclodextrin scaffold that bears both a heme-binding pocket and an axial ligand that binds an iron porphyrin. The binding constant for Fe (III) TPPS (iron(III) meso-tetra(4-sulfonatophenyl)porphyrin) by py-PPCD was determined to be 2 × 106 M -1. The pyridyl nitrogen of py-PPCD was shown to ligate to the iron center by observing signal changes in the Fe(II) -porphyrin 1 H NMR spectrum. This hemodextrin ensemble, a minimalist myoglobin, was shown to bind dioxygen reversibly and to form a stable ferryl species.


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