Hydrazine (NH) is one of the most widely used industrial chemicals that can be utilized as a precursor of pesticides, pharmaceutics, and rocket propellant. Due to its biological and environmental toxicity with potential health risks, various sensing tools have been developed. Among them, fluorescence-based molecular sensing systems have been highlighted due to its simple-operation, high selectivity and sensitivity, and biocompatibility. In our recent report, we disclosed a ratiometric type fluorescent probe, called , for the detection of hydrazine, which is based on -methoxy-methyl-ether (-MOM) moiety assisted hydrazone-formation of the donor (D)-acceptor (A) type naphthaldehyde backbone. As our follow-up research, we disclose a turn-on type fluorescent probe, named , as the next-generation hydrazine probe. The sensing rational of is based on the -MOM assisted retro-aza-Henry type reaction. The dicyanovinyl moiety, commonly known as a molecular rotor, causes significant emission quenching of a fluorescent platform in aqueous media, and its cleavage with hydrazone-formation, which induces a significant fluorescence enhancement. The high selectivity and sensitivity of shows practical explicabilities, including real-time paper strip assay, vapor test, soil analysis, and real water assay. We believe its successful demonstrations suggest further applications into a wide variety of fields.
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http://dx.doi.org/10.3390/s19204525 | DOI Listing |
Epigenomics
December 2024
Department of Environmental Health Sciences, Columbia University Mailman School of Public Health, New York, NY, USA.
Aims: To describe tDRs in human milk EVs and their associations with maternal body mass index, age, dietary indices, breastfeeding frequency, season and time of milk collection in a Latina population.
Materials & Methods: We sequenced small RNAs from EVs from 109 mature human milk samples collected at 1 month after delivery in the Southern California Mother's Milk Study. We grouped tDRs using hierarchical clustering and clusters were compared across tDR characteristics.
Chemistry
November 2024
Department of Chemistry, Bielefeld Universtity, Universitätsstr. 25, D-33615, Bielefeld, Germany.
We have developed a family of dinuclear complexes using 2,7-disubstituted 1,8-naphthalenediol ligands that bind by molecular recognition to two neighboring phosphate diesters of the DNA backbone with the dinuclear Cu and Ni complexes exhibiting a severe cytotoxicity for human cancer cells. To increase the binding affinity, we intended to synthesize the corresponding dinuclear Fe complex. Surprisingly, we obtained a tetranuclear Fe perylene-based complex instead of the expected dinuclear Fe naphthalene-based complex.
View Article and Find Full Text PDFJ Xray Sci Technol
December 2024
Department of Radiology, Beijing YouAn Hospital, Capital Medical University, Beijing, China.
Int Breastfeed J
October 2024
Department of Radiology and Imaging Services, John H Stroger Jr Hospital of Cook County, Chicago, IL, 60612, USA.
Pediatr Neurol
December 2024
Neuro Medical-Oncology, Miami Cancer Institute, Baptist Health South Florida, Miami, Florida; Department of Neurology, National Institute of Mental Health and Neurosciences (NIMHANS), Bengaluru, India. Electronic address:
Background: Cerebral palsy (CP) is a neurological disorder that impairs motor abilities. Identifying maternal biomarker derangements can facilitate further evaluation for early diagnosis, potentially leading to improved clinical outcomes. This study investigates the association between maternal biomarker derangements and CP development during the antenatal period.
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