Publications by authors named "GangZhi Zhu"

Background And Objectives: Tetramethylpyrazine nitrone (TBN) is a novel tetramethylpyrazine derivative armed with a strong free radical scavenging nitrone moiety. This study aims to evaluate the pharmacokinetics, safety profile, and tolerability of TBN tablets after a single ascending dose (SAD) and multiple ascending doses (MAD) in healthy Chinese volunteers.

Methods: This phase I, single-center, open-label study was conducted in China.

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Article Synopsis
  • A new abietane diterpenoid named 1, 11-epoxyabieta-12-hydroxy-8, 11, 13-triene-7-one was discovered, along with three previously known compounds.
  • The structures of these compounds were validated using 1D and 2D NMR and HRESIMS data, alongside comparisons with existing spectral information.
  • The compounds were evaluated for their inhibitory effects against three different tumor cell lines: A549, HepG2, and MCF-7.
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Background: The oral soluble film (OSF) is a new drug delivery system. Whether montelukast sodium OSF has similar pharmacokinetic (PK) properties and bioequivalence to chewable tablet (CT) should be investigated.

Methods: This study, conducted at Haikou People's Hospital, consisted of two trials: a randomized, open-label, single-dose, 3-sequence, 3-period crossover trial under fasting conditions and a randomized, open-label, single-dose, 2-sequence, 2-period crossover trial under fed conditions.

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Five new furofurans lignans, Brasesquilignan A-E (), were isolated from the aqueous ethanol extract of Baker. Their structures were elucidated by extensive analysis of NMR and HRESIMS data. Their absolute configurations were determined by CD spectra, enzymatic hydrolysis, and GCMS analysis.

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Two new C21 steroidal glycosides, brapreguanes A and B (1-2) were isolated from 75 % aqueous ethanol extract of Selaginella braunii Baker. Their structures were established by spectroscopic analyses (1D/2D NMR spectra and HR-ESI-MS). The absolute configurations of sugar were elucidated by enzymatic hydrolysis and GCMS analysis.

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Article Synopsis
  • The structures of these compounds were determined using advanced techniques like NMR and HRESIMS.
  • In bioassays, two compounds demonstrated significant inhibition of xanthine oxidase and reduced nitric oxide production in inflammatory cell models, showing promising IC values.
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Eight new prenylflavonol glycosides (1-8), along with five known analogues (9-13) were isolated from the n-butanol extract of the dried leaves of Cyclocarya paliurus (family Juglandaceae) for the first time. The structures of these compounds were characterized by comprehensive analysis of 1D, 2D NMR, HRESIMS, UV data and acid hydrolysis. In bioassay, all these thirteen prenylflavonol glycosides exhibited inhibitory effects on xanthine oxidase (XOD) activity.

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Three previously undescribed -dammarane triterpenoid glycosides O-Q () along with two known compounds ( and ) were isolated and characterized from the leaves of . Their structures were determined by comprehensive analysis of 1 D, 2 D NMR and HRESIMS data. Compounds were evaluated for their inhibitory effects against human pancreatic tumor (ASPC-1), human gastric carcinoma (SNU5), liver hepatocellular carcinoma (HEPG-2) and human colon tumor (HCT116) cell lines.

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As a PAC-1 derivative, SM-1 exhibts a promising antitumour property. To better understand the relationship between the drug concentrations and pharmacological effects, both liquid chromatography coupled with tandem mass spectrometry and high performance liquid chromatography methods were developed and validated in the work. Those methods were then applied to the pharmacokinetics (PK), tissue distribution and plasma protein binding (PPB) studies of SM-1.

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Background/aims: Acute myeloid leukemia (AML) is a heterogeneous clonal disease and patients with AML who harbor an FMS-like tyrosine kinase 3 (FLT3) mutation present several dilemmas for the clinician. This study aims to identify novel targets for explaining the dilemmas.

Methods: We analyzed four microarray gene expression profiles to investigate changes in whole genome expression associated with FLT3-ITD mutation.

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Objective: To investigate whether microRNA (miRNA) miR-21 regulates dimethylarginine dimethylaminohydrolase 1 (DDAH1) expression through binding 3'-UTR region directly in human umbilical venous endothelial cells (HUVECs) and to explore whether DDAH1-V2/V3 transcripts can function as microRNA sponge, thereby modulating DDAH1-V1 expression.

Methods: The DDAH1 3'-UTR containing miR-21 recognizing sequence was cloned into PmirGLO dual-luciferase miRNA target expression plasmid to construct PmirGLO-miR-21. The plasmid and miR-21 (at concentrations of 25, 50, 100 nM, respectively) or negative control (100 nM) were co-transfected into HUVECs, luciferase activity was detected at 24 h.

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Five new carboxymethyl flavonoids named 5-carboxymethyl-3', 4', 7-trihydroxyflavone (1), (2S)- 5-carboxymethyl-3', 4', 7-trihydroxyflavonone (2a), (2R)-5-carboxymethyl-3', 4', 7-trihydroxyflavonone (2b), (2S)-5-carboxymethyl-4', 7-dihydroxyflavonone (3), 5- carbomethoxymethyl-4', 7-dihydroxyflavone (4), and a new chromone named 5-carboxymethyl-7-hydroxychromone (5), together with two known compounds 5-carboxymethyl-4'-hydroxyflavone-7-O-β-d-glucopyranoside (6), 5-carboxymethyl-4', 7-dihydroxyflavone (7) were isolated from Selaginella moellendorffii Hieron. Their structures including absolute configuration were elucidated by extensive spectroscopic methods and experimental electronic circular dichroism (ECD) spectra. What's worth mentioning is that a carboxymethyl substituent appeared at the C-5 position of all isolated compounds, only recently discovered in genus Selaginella.

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Hericium erinaceus is a well-known medicinal and edible mushroom, which is considered as a potential source to obtain antitumor candidates. In this work, five new isoindolinones, named erinaceolactams A-E (1-5), along with five known compounds (6-10), were isolated from 70% ethanol extract of the fruiting bodies of H. erinaceus.

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Two new selaginellin derivatives selaginellin P (1) and selaginellin Q (2) were isolated from Selaginella tamariscina. The structures of 1 and 2 were established as 2,4'-dihydroxy-4-methyl-3-[(4-hydroxyphenyl)ethynyl]biphene (1) and 2,4'-dihydroxy-3-[(4-hydroxyphenyl)ethynyl]biphene (2) on the basis of spectroscopic means including HR-ESI-MS, 1D, and 2D NMR experiments.

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