1.Amoenucles A-F, novel nucleoside derivatives with TNF-α inhibitory activities from Aspergillus amoenus TJ507.
Yeting ZHANG ; Zhengyi SHI ; Chunhua ZHAO ; Lanqin LI ; Ming CHEN ; Yunfang CAO ; Fengqing WANG ; Bo TAO ; Xinye HUANG ; Jieru GUO ; Changxing QI ; Weiguang SUN ; Yonghui ZHANG
Chinese Journal of Natural Medicines (English Ed.) 2025;23(1):111-118
Amoenucles A-F (1-6), six previously undescribed nucleoside derivatives, and two known analogs (7 and 8) were isolated from the culture of Aspergillus amoenus TJ507. Their structures were elucidated through spectroscopic analysis, single-crystal X-ray crystallography, and chemical reactions. Notably, 3 and 4 represent the first reported instances of nucleosides with an attached pyrrole moiety. Of particular significance, the absolute configuration of the sugar moiety of 1-4 was determined using nuclear magnetic resonance (NMR), electric circular dichroism (ECD) calculations, and a hydrolysis reaction, presenting a potentially valuable method for confirming nucleoside structures. Furthermore, 1, 2, and 5-8 exhibited potential tumor necrosis factor α (TNF-α) inhibitory activities, which may provide a novel chemical template for the development of agents targeting autoimmune and inflammatory diseases.
Aspergillus/chemistry*
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Tumor Necrosis Factor-alpha/antagonists & inhibitors*
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Molecular Structure
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Nucleosides/isolation & purification*
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Crystallography, X-Ray
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Animals
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Humans
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Mice
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Magnetic Resonance Spectroscopy
2.Naturally occurring seco- and nor-polycyclic polyprenylated acylphloroglucinols: distribution, structural diversity, andbiological activity.
Yulin DUAN ; Ying TANG ; Changxing QI ; Yonghui ZHANG
Chinese Journal of Natural Medicines (English Ed.) 2025;23(7):824-837
Polycyclic polyprenylated acylphloroglucinols (PPAPs) represent a distinct subclass of specialized metabolites predominantly found in the plant kingdom, particularly within the Guttiferae (Clusiaceae) family. These compounds exhibit remarkable structural diversity and a wide range of biological activities. Seco- and nor-PPAPs, two unique variants of PPAPs with diverse skeletal structures, have been extensively investigated. As of June 2023, 200 compounds have been isolated from four genera, with Hypericum being the primary source. Notably, 115 of these compounds were identified in the past four years, indicating a significant increase in research activity. Seco- and nor-PPAPs can be categorized into six main subgroups based on the original PPAP scaffolds. Biological studies have revealed their potential in various therapeutic applications, including anti-cancer, anti-inflammatory, hepatoprotective, anti-Alzheimer's disease (anti-AD), multidrug resistance (MDR) reversal, anti-depressant, neuroprotective, and immunosuppressive effects. This review provides a comprehensive overview of the occurrence, structures, and bioactivities of natural seco- and nor-PPAPs, offering valuable insights for the further development of PPAPs.
Phloroglucinol/analogs & derivatives*
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Humans
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Molecular Structure
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Animals
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Clusiaceae/chemistry*
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Plant Extracts/pharmacology*
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Biological Products/pharmacology*
3.Discovery of bioactive polycyclic polyprenylated acylphloroglucinol from Hypericum patulum that protects against hepatic ischemia/reperfusion injury.
Bo TAO ; Xiangli ZHAO ; Zhengyi SHI ; Jie LI ; Yulin DUAN ; Xiaosheng TAN ; Gang CHEN ; Changxing QI ; Yonghui ZHANG
Chinese Journal of Natural Medicines (English Ed.) 2025;23(9):1104-1110
Hepatic ischemia/reperfusion injury (IRI) remains a critical complication contributing to graft dysfunction following liver surgery. As part of an ongoing search for hepatoprotective natural products, five previously unreported homoadamantane-type polycyclic polyprenylated acylphloroglucinols (PPAPs), named hyperhomanoons A-E (1-5), and one known analog, hypersampsone O (6), were isolated from Hypericum patulum. Among these, compound 6 demonstrated potent protective effects against CoCl₂-induced hypoxic injury in hepatocytes. Furthermore, in a murine model of hepatic IRI induced by vascular occlusion, pretreatment with 6 markedly alleviated liver damage and reduced hepatocyte apoptosis. This study is the first to identify PPAPs as promising scaffolds for the development of therapeutic agents targeting hepatic IRI, underscoring their potential as lead compounds in drug discovery efforts for ischemic liver diseases.
Reperfusion Injury/prevention & control*
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Animals
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Hypericum/chemistry*
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Phloroglucinol/administration & dosage*
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Mice
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Humans
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Male
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Liver/blood supply*
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Apoptosis/drug effects*
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Molecular Structure
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Protective Agents/pharmacology*
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Hepatocytes/drug effects*
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Mice, Inbred C57BL
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Liver Diseases/drug therapy*
4.Extraction of DNA from Sperm Cells in Mixed Stain by Nylon Membrane Bushing Separation Technique.
Jun MA ; Qi TONG ; Liang Bi GAO ; Chuan ZHU ; Zhi Qiang JIANG
Journal of Forensic Medicine 2018;34(4):417-419
OBJECTIVES:
To establish a novel method for the separation of sperm cells in mixed stain, and to evaluate its application value.
METHODS:
Totally 40 mixed stain samples were collected from sexual assault cases. Sperm cells were separated by the conventional differential lysis method and the nylon membrane bushing separation technique, respectively. The DNA of sperm cells was extracted with the silicon membrane kit (Forensic DNA Extraction Kit for Soft Tissues). The PCR amplification was performed using AmpFℓSTR® Identifiler® Plus kit, and the products were electrophoresed by 3500xL genetic analyser. The results of two separation methods were then compared.
RESULTS:
Complete and single-source male STR genotypes could be obtained from all the 40 mixed stain samples except three samples with minimal residual of female DNA by the nylon membrane bushing separation technique. The STR genotypes of sperm cells could not be detected in 25 samples, which were obtained in 15 samples (seven were of incomplete male STR genotypes, six with residual of female DNA, two were complete and single-source STR genotypes of sperm cells).
CONCLUSIONS
The nylon membrane bushing separation technique developed in present study can be used in the separation of sperm cells in mixed stain, especially for the extraction of a small amount of sperm from a large quantity of female cells, which is inexpensive, rapid and simple.
Coloring Agents
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DNA/genetics*
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DNA Fingerprinting
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Genotype
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Humans
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Male
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Microsatellite Repeats
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Nylons
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Polymerase Chain Reaction
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Semen
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Sex Offenses
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Spermatozoa

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