1.Development of DUS testing guidelines for new Atractylodes lancea varieties.
Cheng-Cai ZHANG ; Ming QIN ; Xiu-Zhi GUO ; Zi-Hua ZHANG ; Hao-Kuan ZHANG ; Xiao-Yu DAI ; Sheng WANG ; Lan-Ping GUO
China Journal of Chinese Materia Medica 2025;50(6):1515-1523
Atractylodes lancea is a perennial herbaceous plant of Asteraceae, with rhizomes for medical use. However, A. lancea plants from different habitats have great variability, and the germplasm resources of A. lancea are unclear and mixed during production. Therefore, it is urgent to protect new varieties of A. lancea. The distinctness, uniformity, and stability(DUS) testing of new plant varieties is the foundation of plant variety protection, and the DUS testing guidelines are the technical basis for variety approval agencies to conduct DUS testing. In this study, the phenotypic traits of 94 germplasm accessions of A. lancea were investigated considering the breeding and variety characteristics of A. lancea in China. The traits were classified and described, and 24 traits were preliminarily determined, including 20 basic traits that must be tested and four traits selected to be tested. The 20 basic traits included 3 quality traits, 5 false quality traits, and 12 quantitative traits, corresponding to 1 plant traits, 2 stem traits, 8 leaf traits, 6 flower traits, and 3 seed traits. The measurement ranges and coefficients of variation of eight quantitative traits were determined, on the basis of which the grading criteria and codes of the traits were determined and assigned. The guidelines has guiding significance for the trait evaluation, utilization, and breeding of new varieties of A. lancea.
Atractylodes/growth & development*
;
China
;
Phenotype
;
Guidelines as Topic
;
Plant Breeding
2.Current situation of medicinal animal breeding and research progress in sustainable utilization of resources.
Cheng-Cai ZHANG ; Jia WANG ; Yu-Jie ZHOU ; Xiao-Yu DAI ; Xiu-Fu WAN ; Chuan-Zhi KANG ; De-Hua WU ; Jia-Hui SUN ; Sheng WANG ; Lan-Ping GUO
China Journal of Chinese Materia Medica 2025;50(16):4397-4406
Traditional Chinese medicine(TCM) is the pillar for the development of motherland medicine, and animal medicine has a long history of application in China, characterized by wide resources, strong activity, definite efficacy, and great benefits. It has significant potential and important status in the consumption market of raw materials of TCM. In the context of global climate change, farming system alterations, and low renewability, the depletion of wild medicinal animal resources has accelerated. Accordingly, the conservation and sustainable utilization of wild resources of animal medicinal materials has become a problem that garners increasing attention and urgently needs to be solved. This paper summarizes the current situation of domestic and foreign medicinal animal breeding and research progress in industrial application in recent years and points out the issues related to standardized breeding, germplasm selection and breeding, and quality evaluation standards for medicinal animals. Furthermore, this paper discusses standardized breeding, quality standards, resource protection and utilization, and the search for alternative resources for rare and endangered medicinal animals. It proposes that researchers should systematically carry out in-depth basic research on animal medicine, improve the breeding scale and level of medicinal animals, employ modern technology to enhance the quality standards of medicinal materials, and strengthen the research and development of alternative resources. This approach aims to effectively address the relationship between protection and utilization and make a significant contribution to the sustainable development of medicinal animal resources and the animal-based Chinese medicinal material industry.
Animals
;
Breeding
;
China
;
Medicine, Chinese Traditional
;
Conservation of Natural Resources
3.Icariin targets PDE5A to regulate viability, DNA synthesis and DNA damage of spermatogonial stem cells and improves reproductive capacity.
Tian-Long LIAO ; Cai-Mei HE ; Di XIAO ; Zhi-Rong ZHANG ; Zuping HE ; Xiao-Ping YANG
Asian Journal of Andrology 2025;27(4):543-549
Icariin is a pure compound derived from Epimedium brevicornu Maxim, and it helps the regulation of male reproduction. Nevertheless, the role and underlying mechanisms of Icariin in mediating male germ cell development remain to be clarified. Here, we have demonstrated that Icariin promoted proliferation and DNA synthesis of mouse spermatogonial stem cells (SSCs). Furthermore, surface plasmon resonance iron (SPRi) and molecular docking (MOE) assays revealed that phosphodiesterase 5A (PDE5A) was an important target of Icariin in mouse SSCs. Mechanically, Icariin decreased the expression level of PDE5A. Interestingly, hydrogen peroxides (H 2 O 2 ) enhanced the expression level of phosphorylation H2A.X (p-H2A.X), whereas Icariin diminished the expression level of p-H2A.X and DNA damage caused by H 2 O 2 in mouse SSCs. Finally, our in vivo animal study indicated that Icariin protected male reproduction. Collectively, these results implicate that Icariin targets PDE5A to regulate mouse SSC viability and DNA damage and improves male reproductive capacity. This study thus sheds new insights into molecular mechanisms underlying the fate decisions of mammalian SSCs and offers a scientific basis for the clinical application of Icariin in male reproduction.
Male
;
Animals
;
Flavonoids/pharmacology*
;
Mice
;
Cyclic Nucleotide Phosphodiesterases, Type 5/drug effects*
;
DNA Damage/drug effects*
;
Cell Survival/drug effects*
;
Cell Proliferation/drug effects*
;
Spermatogonia/drug effects*
;
Reproduction/drug effects*
;
Adult Germline Stem Cells/metabolism*
;
DNA Replication/drug effects*
4.Mechanism of dexmetomidine alleviating inflammatory injury in rats with lipopolysaccharide-induced myocarditis
Di-Sheng CAI ; Jian-Guang REN ; Xiao-Mei LU ; Zhi-Ying ZHOU
Journal of Regional Anatomy and Operative Surgery 2024;33(6):479-485
Objective To investigate the effect of dexmedetomidine(Dex)on inflammatory injury in rats with lipopolysaccharide(LPS)-induced myocarditis(Myo)by regulating AMP-activated protein kinase(AMPK)/silent information regulator 1(SIRT1)/nuclear factor κB(NF-κB)signaling pathway.Methods Rats were randomly divide into the NC group,the Myo group,and the L-Dex group(10 μg/kg Dex),the M-Dex group(30 μg/kg Dex),the H-Dex group(50 μg/kg Dex),the AICAR group(100 mg/kg AMPK/SIRT1/NF-κB signal pathway activator),the H-Dex+GSK690693 group(50 μg/kg Dex+0.2 μmol/kg AMPK/SIRT1/NF-κB signal pathway inhibitor GSK690693),with 10 rats in each group.M-mode echocardiography system was used to evaluate the cardiac function of rats;ELISA kit was used to detect the levels of serum interleukin-1β(IL-1β),interleukin-6(IL-6),tumor necrosis factor-α(TNF-α),superoxide dismutase(SOD),and malondialdehyde(MDA)in rats;TUNEL staining was used to observe cell apoptosis;HE staining was used to observe the pathological changes of myocardial tissue;RT-qPCR was used to detect the mRNA expression of C-X-C motif chemokine ligand 1(CXCL1),C-X-C motif chemokine ligand 2(CXCL2),and vascular cell adhesion molecule-1(VCAM-1)in rat myocardial tissue;Western blot was used to detect the expression of AMPK/SIRT1/NF-κB pathway-related proteins in rat myocardial tissue.Results There was no abnormal change in cardiomyocytes in the NC group,and cardiomyocytes in the Myo group showed deformation,necrosis,inflammatory cell infiltra-tion,and mesenchymal congestion;necrosis,inflammatory cell infiltration,and mesenchymal congestion in the L-Dex group,the M-Dex group,the H-Dex group,and the AICAR group were improved compared with that in the Myo group;changes in cardiomyocytes in the H-Dex group and the AICAR group were similar to those in the NC group,and changes in cardiomyocytes in the H-Dex+GSK690693 group were similar to those in the Myo group.Compared with the NC group,the left ventricular ejection fraction(LVEF),left ventricular fractional shortening(LVFS),expression levels of SOD,p-AMPK/AMPK,p-SIRT1/SIRT1 in the Myo group were obviously decreased(P<0.05),left ventricular end-systolic volume(LVESV),left ventricular end-diastolic volume(LVEDV),left ventricular end-systolic diameter(LVESD),left ventricular end-diastolic diameter(LVEDD),expression levels of IL-1β,IL-6,TNF-α,MDA,CXCL1,CXCL2,VCAM-1,p-NF-κB/NF-κB,NF-κB p65 and cardiomyocyte apoptosis rate were obviously increased(P<0.05).Compared with the Myo group,the LVEF,LVFS,expression levels of SOD,p-AMPK/AMPK,p-SIRT1/SIRT1 in the L-Dex group,the M-Dex group,the H-Dex group and the AICAR group were obviously increased(P<0.05),LVESV,LVEDV,LVESD,LVEDD,expression levels of IL-1β,IL-6,TNF-α,MDA,CXCL1,CXCL2,VCAM-1,p-NF-κB/NF-κB,NF-κB p65 and cardiomyocyte apoptosis rate were obviously decreased(P<0.05),and the effects were more obvious with the increase of the dosage of Dex.There was no significant difference in the above results between the AICAR group and the H-Dex group(P>0.05).Compared with the H-Dex group,the LVEF,LVFS,expression levels of SOD,p-AMPK/AMPK,p-SIRT1/SIRT1 in the H-Dex+GSK690693 group were obviously decreased(P<0.05),LVESV,LVEDV,LVESD,LVEDD,levels of IL-1β,IL-6,TNF-α,MDA,cardiomyocyte apoptosis rate,the expression of CXCL1,CXCL2,VCAM-1,p-NF-κB/NF-κB and NF-κB p65 protein were obviously increased(P<0.05).Conclusion Dex may alleviate LPS-induced inflammatory injury in Myo rats by up-regulating AMPK/SIRT1/NF-κB signaling pathway.
5.Signalling Pathways and Mechanisms of Linamarin in the Intervention of Disease
Xue-Ru YAN ; En-Peng HE ; Xiao-Di CAI
Chinese Journal of Biochemistry and Molecular Biology 2024;40(8):1057-1064
In recent years,the growing public awareness of personal health has sparked a surge in inter-est in the beneficial effects of polyphenols on the human organism.Extensive research by domestic and international scholars has established that polyphenols,due to their unique chemical properties,exhibit remarkable anti-inflammatory and antioxidant properties,leading to improvements in various diseases,in-cluding cancer,diabetes,and colitis.Notably,China stands as one of the world's largest producers and consumers of flax,a crop rich in lignans,a subclass of polyphenols.These flax lignans possess significant effects on the body,demonstrating immense potential for therapeutic applications.This paper delves into the origins,metabolic processes,and health benefits of flax lignans in China.It offers a comprehensive review of the mechanisms underlying flax lignans role in disease intervention,focusing on their interac-tions with relevant signalling pathways.Our findings suggest that flaxseed lignans can promote organismic health by either directly modulating gene expression or indirectly regulating signalling pathways.Further-more,flaxseed lignans can exhibit diverse effects depending on specific physiological conditions.
6.Design, synthesis and biological activity study of thiazolehydrazone-based small molecule inhibitors of IGF2BP2
Shi-di ZHANG ; Sai MA ; Ying-zhe WANG ; Yuan-qian CAI ; Yan ZHANG ; Qi-dong YOU ; Xiao-ke GUO
Acta Pharmaceutica Sinica 2024;59(11):3006-3016
Insulin-like growth factor 2 mRNA binding protein 2 (IGF2BP2) is a recognition protein for
7.Application of tissue culture technology of medicinal plants in sustainable development of Chinese medicinal resources.
Cheng-Cai ZHANG ; Sheng WANG ; Yue-Feng WANG ; Hong-Yang WANG ; Ming QIN ; Xiao-Yu DAI ; Bin-Bin YAN ; Xiu-Zhi GUO ; Li ZHOU ; Huai-Bin LIN ; Lan-Ping GUO
China Journal of Chinese Materia Medica 2023;48(5):1186-1193
Chinese medicinal resources are the cornerstone of the sustainable development of traditional Chinese medicine industry. However, due to the fecundity of species, over-exploitation, and limitations of artificial cultivation, some medicinal plants are depleted and even endangered. Tissue culture, a breakthrough technology in the breeding of traditional Chinese medicinal materials, is not limited by time and space, and can allow the production on an annual basis, which plays an important role in the protection of Chinese medicinal resources. The present study reviewed the applications of tissue culture of medicinal plants in the field of Chinese medicinal resources, including rapid propagation of medicinal plant seedlings, breeding of novel high-yield and high-quality cultivars, construction of a genetic transformation system, and production of secondary metabolites. Meanwhile, the current challenges and suggestions for the future development of this field were also proposed.
Sustainable Development
;
Plants, Medicinal/genetics*
;
Plant Breeding
;
Medicine, Chinese Traditional
;
Technology
8.Investigation and clarification of traditional measuring units of Tibetan medicine.
Qi-En LI ; Di-Gao WAN ; Fa-Rong YUAN ; Cai-Jia SUONAN ; Dai-Ji QINGMEI ; Yang-Xiu-Cuo DUOJIE ; Zhuo-Ma GENGJI ; Cuo-Mao TABA ; Peng-Cuo DAWA ; Zhong BANMA ; Cai-Rang DUOJIE ; Qu-Pei DANZENG ; Ci-Ren NIMA ; Xiao GUO
China Journal of Chinese Materia Medica 2023;48(5):1393-1401
Quantity is the key factor to ensure the safety and effectiveness of medicines. It is very important to study and determine the traditional measuring units and their quantity values of Tibetan medicine. Based on the literature records of Tibetan medicine and combined with modern experimental verification and investigation research, this study determined the reference, name, and conversion rate of traditional measuring units of Tibetan medicine. Meanwhile, through large sample sampling and repeated quantification of refe-rence of basic units, its weight and volume were clarified. The modern SI volume and weight unit values corresponding to the traditional volume and weight units of Tibetan medicine were deduced, and the correctness, reliability, and practicability of these determination results were demonstrated. This study also put forward some specific suggestions and reference values for formulating the standards of measuring units of weight and volume of Tibetan medicine. It is of great significance in guiding the processing, production, and clinical treatment of Tibetan medicine, and promoting the standardization and standardized development of Tibetan medicine.
Medicine, Tibetan Traditional
;
Reproducibility of Results
9.Functional characterization and enzymatic properties of flavonoid glycosyltransferase gene CtUGT49 in Carthamus tinctorius.
Xin-Bo CAI ; Nan LIU ; Jia LI ; Rong LIU ; Yun-Feng LUO ; Yi-Feng ZHANG ; Jia-Dian WANG ; Xiao-Yi WU ; Lu-Qi HUANG
China Journal of Chinese Materia Medica 2023;48(24):6624-6634
Carthami Flos, as a traditional blood-activating and stasis-resolving drug, possesses anti-tumor, anti-inflammatory, and immunomodulatory pharmacological activities. Flavonoid glycosides are the main bioactive components in Carthamus tinctorius. Glycosyltransferase deserves to be studied in depth as a downstream modification enzyme in the biosynthesis of active glycoside compounds. This study reported a flavonoid glycosyltransferase CtUGT49 from C. tinctorius based on the transcriptome data, followed by bioinformatic analysis and the investigation of enzymatic properties. The open reading frame(ORF) of the gene was 1 416 bp, encoding 471 amino acid residues with the molecular weight of about 52 kDa. Phylogenetic analysis showed that CtUGT49 belonged to the UGT73 family. According to in vitro enzymatic results, CtUGT49 could catalyze naringenin chalcone to the prunin and choerospondin, and catalyze phloretin to phlorizin and trilobatin, exhibiting good substrate versatility. After the recombinant protein CtUGT49 was obtained by hetero-logous expression and purification, the enzymatic properties of CtUGT49 catalyzing the formation of prunin from naringenin chalcone were investigated. The results showed that the optimal pH value for CtUGT49 catalysis was 7.0, the optimal temperature was 37 ℃, and the highest substrate conversion rate was achieved after 8 h of reaction. The results of enzymatic kinetic parameters showed that the K_m value was 209.90 μmol·L~(-1) and k_(cat) was 48.36 s~(-1) calculated with the method of Michaelis-Menten plot. The discovery of the novel glycosyltransferase CtUGT49 is important for enriching the library of glycosylation tool enzymes and provides a basis for analyzing the glycosylation process of flavonoid glycosides in C. tinctorius.
Carthamus tinctorius/chemistry*
;
Phylogeny
;
Flavonoids/analysis*
;
Glycosides/analysis*
;
Glycosyltransferases/genetics*
;
Anti-Inflammatory Agents
;
Chalcones
10.Induction of Anxiety-Like Phenotypes by Knockdown of Cannabinoid Type-1 Receptors in the Amygdala of Marmosets.
Lin ZHU ; Di ZHENG ; Rui LI ; Chen-Jie SHEN ; Ruolan CAI ; Chenfei LYU ; Binliang TANG ; Hao SUN ; Xiaohui WANG ; Yu DING ; Bin XU ; Guoqiang JIA ; Xinjian LI ; Lixia GAO ; Xiao-Ming LI
Neuroscience Bulletin 2023;39(11):1669-1682
The amygdala is an important hub for regulating emotions and is involved in the pathophysiology of many mental diseases, such as depression and anxiety. Meanwhile, the endocannabinoid system plays a crucial role in regulating emotions and mainly functions through the cannabinoid type-1 receptor (CB1R), which is strongly expressed in the amygdala of non-human primates (NHPs). However, it remains largely unknown how the CB1Rs in the amygdala of NHPs regulate mental diseases. Here, we investigated the role of CB1R by knocking down the cannabinoid receptor 1 (CNR1) gene encoding CB1R in the amygdala of adult marmosets through regional delivery of AAV-SaCas9-gRNA. We found that CB1R knockdown in the amygdala induced anxiety-like behaviors, including disrupted night sleep, agitated psychomotor activity in new environments, and reduced social desire. Moreover, marmosets with CB1R-knockdown had up-regulated plasma cortisol levels. These results indicate that the knockdown of CB1Rs in the amygdala induces anxiety-like behaviors in marmosets, and this may be the mechanism underlying the regulation of anxiety by CB1Rs in the amygdala of NHPs.
Animals
;
Callithrix
;
Receptors, Cannabinoid
;
Anxiety
;
Amygdala
;
Cannabinoids
;
Phenotype

Result Analysis
Print
Save
E-mail