molecular tweezer
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Molecules ◽  
2021 ◽  
Vol 26 (22) ◽  
pp. 6919
Author(s):  
Zhe Liu ◽  
Ying Ye ◽  
Hong Wang ◽  
Li-xia Luo

Chiral cholesteric molecular tweezer 7a was synthesized, and its recognition properties for Ag+, Al3+, Ca2+ etc., were investigated by UV and fluorescence spectra. The results showed that in ethanol/Tris (1/1, v/v, pH 7.0) buffer solution, the host molecular tweezer 7a had a specific recognition ability for Ag+, the detection limit was up to 1 × 10−6 mol/L, and other metal ions had little effect on Ag+ recognition. At the same time, the naked-eye detection of Ag+ was realized by the light red color of the complex solution. Furthermore, the mechanism of recognition of Ag+ by molecular tweezer 7a was studied by a nuclear magnetic titration test and computer molecular simulation, and a rapid detection method of Ag+ using host molecular tweezer 7a was established. Through the determination of Ag+ in milk powder, quinoa and other food samples, it was proved that this novel method had a good application prospect for the detection of Ag+ in food.


Viruses ◽  
2021 ◽  
Vol 13 (9) ◽  
pp. 1685
Author(s):  
Sina Brenner ◽  
Berenike Braun ◽  
Clarissa Read ◽  
Tatjana Weil ◽  
Paul Walther ◽  
...  

Human cytomegalovirus (HCMV) uses two major ways for virus dissemination: infection by cell-free virus and direct cell-to-cell spread. Neutralizing antibodies can efficiently inhibit infection by cell-free virus but mostly fail to prevent cell-to-cell transmission. Here, we show that the ‘molecular tweezer’ CLR01, a broad-spectrum antiviral agent, is not only highly active against infection with cell-free virus but most remarkably inhibits antibody-resistant direct cell-to-cell spread of HCMV. The inhibition of cell-to-cell spread by CLR01 was not limited to HCMV but was also shown for the alphaherpesviruses herpes simplex viruses 1 and 2 (HSV-1, -2). CLR01 is a rapid acting small molecule that inhibits HCMV entry at the attachment and penetration steps. Electron microscopy of extracellular virus particles indicated damage of the viral envelope by CLR01, which likely impairs the infectivity of virus particles. The rapid inactivation of viral particles by CLR01, the viral envelope as the main target, and the inhibition of virus entry at different stages are presumably the key to inhibition of cell-free virus infection and cell-to-cell spread by CLR01. Importance: While cell-free spread enables the human cytomegalovirus (HCMV) and other herpesviruses to transmit between hosts, direct cell-to-cell spread is thought to be more relevant for in vivo dissemination within infected tissues. Cell-to-cell spread is resistant to neutralizing antibodies, thus contributing to the maintenance of virus infection and virus dissemination in the presence of an intact immune system. Therefore, it would be therapeutically interesting to target this mode of spread in order to treat severe HCMV infections and to prevent dissemination of virus within the infected host. The molecular tweezer CLR01 exhibits broad-spectrum antiviral activity against a number of enveloped viruses and efficiently blocks antibody-resistant cell-to-cell spread of HCMV, thus representing a novel class of small molecules with promising antiviral activity.


Inorganics ◽  
2021 ◽  
Vol 9 (6) ◽  
pp. 49
Author(s):  
Gabriella Munzi ◽  
Giuseppe Consiglio ◽  
Salvatore Failla ◽  
Santo Di Bella

In this paper we report the binding properties, by combined 1H NMR, optical absorption, and fluorescence studies, of a molecular tweezer composed of two Zn(salen)-type Schiff-base units connected by a flexible spacer, towards a series of ditopic diamines having a strong Lewis basicity, with different chain length and rigidity. Except for the 1,2-diaminoethane, in all other cases the formation of stable 1:1 Lewis acid-base adducts with large binding constants is demonstrated. For α,ω-aliphatic diamines, binding constants progressively increase with the increasing length of the alkyl chain, thanks to the flexible nature of the spacer and the parallel decreased conformational strain upon binding. Stable adducts are also found even for short diamines with rigid molecular structures. Given their preorganized structure, these latter species are not subjected to loss of degrees of freedom. The binding characteristics of the tweezer have been exploited for the colorimetric and fluorometric selective and sensitive detection of piperazine.


2021 ◽  
Vol 13 (1) ◽  
Author(s):  
Jing Di ◽  
Ibrar Siddique ◽  
Zizheng Li ◽  
Ghattas Malki ◽  
Simon Hornung ◽  
...  

An amendment to this paper has been published and can be accessed via the original article.


The Analyst ◽  
2021 ◽  
Author(s):  
Gabriella Munzi ◽  
Salvatore Failla ◽  
Santo Di Bella

A fast and direct colorimetric/fluorometric selective sensing of biogenic amines by means of a molecular tweezer.


2021 ◽  
Vol 19 (16) ◽  
pp. 3628-3633
Author(s):  
Michael Heilmann ◽  
Melina Knezevic ◽  
GiovanniMaria Piccini ◽  
Konrad Tiefenbacher

Selective nanomolar binding of biological polyamines to a novel glycoluril-derived molecular tweezer is reported. The high selectivity over their biosynthetic precursor may be of interest, as elevated polyamine levels are linked to several diseases.


2021 ◽  
Vol 184 ◽  
pp. 108838
Author(s):  
Juhua Leng ◽  
Guoxing Liu ◽  
Tianwei Cui ◽  
Shuqiang Mao ◽  
Puyang Dong ◽  
...  

eLife ◽  
2020 ◽  
Vol 9 ◽  
Author(s):  
Tobias Lieblein ◽  
Rene Zangl ◽  
Janosch Martin ◽  
Jan Hoffmann ◽  
Marie J Hutchison ◽  
...  

The formation of oligomers of the amyloid-β peptide plays a key role in the onset of Alzheimer's disease. We describe herein the investigation of disease-relevant small amyloid-β oligomers by mass spectrometry and ion mobility spectrometry, revealing functionally relevant structural attributes. In particular, we can show that amyloid-β oligomers develop in two distinct arrangements leading to either neurotoxic oligomers and fibrils or non-toxic amorphous aggregates. Comprehending the key-attributes responsible for those pathways on a molecular level is a pre-requisite to specifically target the peptide's tertiary structure with the aim to promote the emergence of non-toxic aggregates. Here, we show for two fibril inhibiting ligands, an ionic molecular tweezer and a hydrophobic peptide that despite their different interaction mechanisms, the suppression of the fibril pathway can be deduced from the disappearance of the corresponding structure of the first amyloid-β oligomers.


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