98%
921
2 minutes
20
A 4-methylbenzothiazole linked maleimide-based single molecular bifunctional probe 1 has been synthesized for the colorimetric and fluorometric detection of highly competitive HS and cyanide ion in aqueous DMSO media. The probe 1 selectively detected CN under the UV-vis spectroscopy through the rapid appearance of deep pink color. The bright pink color developed due to ICT in the moderately stable cyano substituted enolate intermediate. The absorbance titration of 1 with CN revealed a new band at 540 nm and the nonlinear curve fitting analysis showed good fit with 1:1 model. In fluorescence channel, 1 was found to be highly selective to HS in 50% aqueous buffer (pH 7). It exhibited ∼16-fold fluorescence intensity enhancement at 435 nm after reaction with 1 equiv of HS due to the inhibition of PET. The 1-SH adduct showed TICT phenomenon and behaved like molecular rotor. It further displayed aggregation behavior at higher concentration and excitation wavelength dependent multicolor emission properties. Most interestingly, the spontaneous resolution of chiral S-isomer of the 1-SH adduct occurred during crystallization. The cell imaging study revealed the staining of the cell and multicolor emission in the presence of HS.
Download full-text PDF |
Source |
---|---|
http://dx.doi.org/10.1021/acs.joc.7b01743 | DOI Listing |
ACS Omega
September 2025
International Centre for Materials Science, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur- P.O., Bangalore 560064, India.
Lambert and co-workers have developed several chiral bases using a cyclopropeneimine as the basic moiety. Typically, these catalysts have a pendant hydroxyl group which acts as a hydrogen-bond donor and activates the electrophile. In catalysts with a hydrogen-bond donor, prior work from the Sigman group has shown that the acidity of the donor plays an important role in imparting selectivity.
View Article and Find Full Text PDFNat Commun
August 2025
School of Pharmaceutical Sciences, Sun Yat-sen University, Guangzhou, China.
Amyloid-β (Aβ), a key driver of Alzheimer's disease (AD) pathogenesis, possesses diverse harmful and clearance-resistant structures that present substantial challenges to therapeutic development. Here, we demonstrate that modulating Aβ morphology, rather than Toll-like receptor 2 (TLR2)-dependent microglia activation, is essential for effective phagocytosis of Aβ species by microglia. By developing a bifunctional mechanistic probe (P2CSKn) designed to remodel Aβ and activate TLR2, we show it restructures soluble Aβ (sAβ) and fibrillar Aβ (fAβ) into less toxic hybrid aggregates (hPAβ).
View Article and Find Full Text PDFBioelectrochemistry
August 2025
Department of Chemistry and Environment Science, Fujian Provincial Key Laboratory of Modern Analytical Science and Separation Technology, Minnan Normal University, Zhangzhou 363000, PR China.
The construction of multifunctional nanointerface bearing rich active site for aptamer immobilization and effective signal transformation is critical for the development of high-performance electrochemical aptasensor. Herein, a layer of p-mercaptobenzoic acid (p-MBA) was self-assembled on the surface of bare gold electrode (AuE), acting as a scalfod for the consequent liquid-phase epitaxial growth of Universitetet i Oslo-66 (UiO-66) metal-organic framework via immersion in zirconium ions (Zr) and p-terephthalic acid (PTA) ligand. Then, the UiO-66 was utilized as a bifunctional platform for immobilization of aptamer probe for cardiac troponin I (cTnI) and the electrochemical signal transformation as an electrocatalyst.
View Article and Find Full Text PDFBiosensors (Basel)
August 2025
Department of BioNano Technology, Gachon University, 1342 Seongnamdae-ro, Sujeong-gu, Seongnam 13120, Republic of Korea.
We present a dual-mode optical sensing strategy for selective and sensitive detection of sulfide ions (S), employing copper-anchored nitrogen-doped graphene quantum dots (Cu@N-GQDs) as bifunctional nanozymes. The Cu@N-GQDs were synthesized via citric acid pyrolysis in the presence of ammonium hydroxide (serving as both nitrogen source and reductant) and copper chloride, leading to uniform incorporation of copper oxide species onto the N-GQD surface. The resulting nanohybrids exhibit two synergistic functionalities: intrinsic fluorescence comparable to pristine N-GQDs, and significantly enhanced peroxidase-like catalytic activity attributed to the anchored copper species.
View Article and Find Full Text PDFACS Appl Mater Interfaces
August 2025
Characteristic Laboratory of Advanced Metal Functional Materials and Processing in Universities of Shandong, School of Mechanical and Electronic Engineering, Qingdao Binhai University, Qingdao 266555, China.
The excellent dispersibility of quantum dots (QDs) hinders their aggregation and makes them prone to nonradiative annihilation, thereby leading to weak and unstable electrochemiluminescence (ECL) signals. To address this limitation, this study employed a porous metal-organic framework (MOF, UiO-66-NH) material to achieve the enrichment and uniform immobilization of coreactant QDs (WO QDs), constructing a coreactant nanoreactor (WO QDs@UiO-66-NH). The high porosity of UiO-66-NH not only significantly increased the local concentration of WO QDs on the electrode surface but also facilitated electron transfer through a spatial confinement effect, leading to substantial amplification of the ECL signal.
View Article and Find Full Text PDF