Lijia Yang
City College of New York
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Publication
Featured researches published by Lijia Yang.
Journal of Agricultural and Food Chemistry | 2017
Wenlin Huang; Olga Serra; Keyvan Dastmalchi; Liqing Jin; Lijia Yang; Ruth E. Stark
The potato (Solanum tuberosum L.) ranks third in worldwide consumption among food crops. Whereas disposal of potato peels poses significant challenges for the food industry, secondary metabolites in these tissues are also bioactive and essential to crop development. The diverse primary and secondary metabolites reported in whole tubers and wound-healing tissues prompted a comprehensive profiling study of native periderms from four cultivars with distinctive skin morphologies and commercial food uses. Polar and nonpolar soluble metabolites were extracted concurrently, analyzed chromatographically, and characterized with mass spectrometry; the corresponding solid interfacial polymeric residue was examined by solid-state 13C NMR. In total, 112 secondary metabolites were found in the phellem tissues; multivariate analysis identified 10 polar and 30 nonpolar potential biomarkers that distinguish a single cultivar among Norkotah Russet, Atlantic, Chipeta, and Yukon Gold cultivars which have contrasting russeting features. Compositional trends are interpreted in the context of periderm protective function.
Molecules | 2015
Sakilam Satishkumar; Prasanna K. Vuram; Siva Subrahmanyam Relangi; Venkateshwarlu Gurram; Hong Zhou; Robert J. Kreitman; Michelle M. Martínez Montemayor; Lijia Yang; Muralidharan Kaliyaperumal; Somesh Sharma; Narender Pottabathini; Mahesh K. Lakshman
Cladribine, 2-chloro-2′-deoxyadenosine, is a highly efficacious, clinically used nucleoside for the treatment of hairy cell leukemia. It is also being evaluated against other lymphoid malignancies and has been a molecule of interest for well over half a century. In continuation of our interest in the amide bond-activation in purine nucleosides via the use of (benzotriazol-1yl-oxy)tris(dimethylamino)phosphonium hexafluorophosphate, we have evaluated the use of O6-(benzotriazol-1-yl)-2′-deoxyguanosine as a potential precursor to cladribine and its analogues. These compounds, after appropriate deprotection, were assessed for their biological activities, and the data are presented herein. Against hairy cell leukemia (HCL), T-cell lymphoma (TCL) and chronic lymphocytic leukemia (CLL), cladribine was the most active against all. The bromo analogue of cladribine showed comparable activity to the ribose analogue of cladribine against HCL, but was more active against TCL and CLL. The bromo ribose analogue of cladribine showed activity, but was the least active among the C6-NH2-containing compounds. Substitution with alkyl groups at the exocyclic amino group appears detrimental to activity, and only the C6 piperidinyl cladribine analogue demonstrated any activity. Against adenocarcinoma MDA-MB-231 cells, cladribine and its ribose analogue were most active.
Beilstein Journal of Organic Chemistry | 2014
Mahesh K. Lakshman; Manish K. Singh; Mukesh Kumar; Raghu Ram Chamala; Vijayender R Yedulla; Domenick Wagner; Evan Leung; Lijia Yang; Asha Matin; Sadia Ahmad
Summary (1H-Benzo[d][1,2,3]triazol-1-yloxy)tris(dimethylamino)phosphonium hexafluorophosphate (BOP), 1H-benzo[d][1,2,3]triazol-1-yl 4-methylbenzenesulfonate (Bt-OTs), and 3H-[1,2,3]triazolo[4,5-b]pyridine-3-yl 4-methylbenzenesulfonate (At-OTs) are classically utilized in peptide synthesis for amide-bond formation. However, a previously undescribed reaction of these compounds with alcohols in the presence of a base, leads to 1-alkoxy-1H-benzo- (Bt-OR) and 7-azabenzotriazoles (At-OR). Although BOP undergoes reactions with alcohols to furnish 1-alkoxy-1H-benzotriazoles, Bt-OTs proved to be superior. Both, primary and secondary alcohols undergo reaction under generally mild reaction conditions. Correspondingly, 1-alkoxy-1H-7-azabenzotriazoles were synthesized from At-OTs. Mechanistically, there are three pathways by which these peptide-coupling agents can react with alcohols. From 31P{1H}, [18O]-labeling, and other chemical experiments, phosphonium and tosylate derivatives of alcohols seem to be intermediates. These then react with BtO− and AtO− produced in situ. In order to demonstrate broader utility, this novel reaction has been used to prepare a series of acyclic nucleoside-like compounds. Because BtO− is a nucleofuge, several Bt-OCH2Ar substrates have been evaluated in nucleophilic substitution reactions. Finally, the possible formation of Pd π–allyl complexes by departure of BtO− has been queried. Thus, alpha-allylation of three cyclic ketones was evaluated with 1-(cinnamyloxy)-1H-benzo[d][1,2,3]triazole, via in situ formation of pyrrolidine enamines and Pd catalysis.
Organic Letters | 2018
Wei Wei; Rama Kanwar Khangarot; Lothar Stahl; Cristina Veresmortean; Padmanava Pradhan; Lijia Yang; Barbara Zajc
Diastereoselective fluorination of N-Boc ( R)- and ( S)-2,2-dimethyl-4-((arylsulfonyl)methyl)oxazolidines and a previously unknown diastereoselective epimerization at the fluorine-bearing carbon atom α to the sulfone was realized. Diastereoselectivities of both reactions were excellent for benzothiazolyl sulfones, allowing access to two enantiomerically pure diastereomers from one chiral precursor. To demonstrate synthetic utility, the benzothiazolyl sulfones were converted to diastereomerically pure ( S, S)- and ( R, S)-benzyl sulfones via sulfinate salts and to amino acids. To understand the diastereoselectivities, DFT analysis was performed.
Environmental Science & Technology | 2007
Xiqing Li; Lijia Yang; Urs Jans; and Michael E. Melcer; Pengfei Zhang
Journal of Environmental Monitoring | 2012
Lijia Yang; Xiqing Li; Pengfei Zhang; Michael E. Melcer; Youxian Wu; Urs Jans
Environmental Science & Technology | 2007
Lijia Yang; Xiqing Li; John Crusius; Urs Jans; Michael E. Melcer; Pengfei Zhang
Organic and Biomolecular Chemistry | 2015
Rakesh Kumar; Govindra Singh; Louis J. Todaro; Lijia Yang; Barbara Zajc
Organic and Biomolecular Chemistry | 2016
Vikram Basava; Lijia Yang; Padmanava Pradhan; Mahesh K. Lakshman
European Journal of Organic Chemistry | 2015
Vijayendar R. Yedulla; Padmanava Pradhan; Lijia Yang; Mahesh K. Lakshman