An ultra high-performance liquid chromatography quadrupole time-of-flight tandem mass spectrometry approach coupled with multivariate statistical analysis was established and applied to rapidly distinguish the chemical differences between fibrous root and rhizome of Anemarrhena asphodeloides. The datasets of tR-m/z pairs, ion intensity and sample code were processed by principal component analysis and orthogonal partial least squares discriminant analysis. Chemical markers could be identified based on their exact mass data, fragmentation characteristics, and retention times. And the new compounds among chemical markers could be isolated rapidly guided by the ultra high-performance liquid chromatography quadrupole time-of-flight tandem mass spectrometry and their definitive structures would be further elucidated by NMR spectra. Using this approach, twenty-four markers were identified on line including nine new saponins and five new steroidal saponins of them were obtained in pure form. The study validated this proposed approach as a suitable method for identification of the chemical differences between various medicinal parts in order to expand medicinal parts and increase the utilization rate of resources.
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http://dx.doi.org/10.1016/j.jpba.2016.06.038 | DOI Listing |
J Proteome Res
January 2025
Museum Conservation Institute, Smithsonian Institution, Suitland, Maryland 20746, United States.
Textiles provide a valuable source of information regarding past cultures and their artistic practices. Understanding ancient textiles requires identifying the raw materials used, since the origin of dyes and fibers may be from plants or animals, with the specific species used varying based on geography, trade routes and cultural significance. A selection of nine Chancay textile fragments attributed to 800-1200 CE were studied with liquid chromatography mass spectrometry (LC-MS) and direct analysis in real time mass spectrometry (DART-MS) to identify the chemical compounds in extracts of natural dyes used to create green, blue, red, yellow and black colors.
View Article and Find Full Text PDFToxicol Sci
January 2025
Department of Chemistry and Environmental Science, New Jersey Institute of Technology, Newark, NJ, 07103.
Phthalates are known endocrine disrupting chemicals and ovarian toxicants that are used widely in consumer products. Phthalates have been shown to exert ovarian toxicity on multiple endpoints, altering transcription of genes responsible for normal ovarian function. However, the molecular mechanisms by which phthalates act on the ovary are not well understood.
View Article and Find Full Text PDFAlzheimers Dement
December 2024
Huashan Hospital, Fudan University, Shanghai, Shanghai, China.
Background: Cognition and its two critical proxies, socioeconomic status (SES) and educational attainment (EA), contribute substantially to human health and are heritable. Elucidating the genetic characteristics of SES/EA/Cognition not only helps to understand the innate individual differences in cognition, but also aids in unraveling the biological mechanisms of complex cognitive-related disorders such as Alzheimer's disease (AD). Here, we explored the rare and common protein-coding variants impacting the comprehensive cognition phenotypic spectrum by leveraging large-scale exomes.
View Article and Find Full Text PDFAlzheimers Dement
December 2024
Michigan State University, Grand Rapids, MI, USA.
Background: A recent study of familial Alzheimer's disease identified a mutation in the RELN gene that appeared to delay the onset of dementia. It was hypothesized that this RELN-COLBOS variant protected against dementia by enhanced signaling at reelin receptors. We previously developed a secreted, bio-active reelin fragment (R36) and packaged it into AAV.
View Article and Find Full Text PDFAlzheimers Dement
December 2024
Purdue University, West Lafayette, IN, USA.
Background: Exposure to environmental chemicals such as lead (Pb) during vulnerable developmental periods and even in adult stage can result in adverse health outcomes later in life. Human cohort studies have demonstrated associations between Pb exposure and Alzheimer's Disease (AD) onset in later life which were further corroborated by findings from animal studies. The molecular pathway linking Pb exposure and increased AD risk, however, remains elusive.
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