1.Two new steroidal alkaloids from ripe berries of Solanum nigrum.
Yu-Ke YANG ; Liang-Yu LIU ; Wen-Yi WANG ; Jian-Nong WANG ; Li LIN ; Jian-Xun LIU
China Journal of Chinese Materia Medica 2022;47(18):4966-4971
Two previously undescribed steroidal alkaloids, compounds 1-2, along with two known ones(3-4), were isolated from the 80% ethanol extract of ripe berries of Solanum nigrum by chromatographic methods, including silica gel, ODS, and HPLC. Based on spectroscopic and chemical evidence, including IR, NMR, and HR-ESI-MS data, the structures of the isolated compounds were identified as 12β,27-dihydroxy solasodine-3-O-β-D-glucopyranoside(1), 27-hydroxy solasodine-3-O-β-D-glucopyranosyl-(1→4)-α-L-rhamnopyranosyl-(1→2)-[α-L-rhamnopyranosyl-(1→4)]-β-D-glucopyranoside(2), solalyraine A(3), and 12β,27-dihydroxy solasodine(4). Compounds 1-2 were tested for their potential effects against the proliferation of A549 cells, which revealed that compounds 1-2 had weak cytotoxic activity.
Alkaloids/analysis*
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Ethanol
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Fruit/chemistry*
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Molecular Structure
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Plant Extracts/chemistry*
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Saponins/analysis*
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Silica Gel/analysis*
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Solanum/chemistry*
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Solanum nigrum/chemistry*
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Steroids/pharmacology*
2.Advances in studies on steroidal alkaloids and their pharmacological activities in genus Veratrum.
Meng-Zhen ZHANG ; Li-Juan GAO ; Xu SHI-FANG ; Wen-Kang HUANG ; Li XIAO-YU ; Ye YI-PING
China Journal of Chinese Materia Medica 2020;45(21):5129-5142
Genus Veratrum plants contain a diversity of steroidal alkaloids, so far at least 184 steroidal alkaloids attributed to cevanine type(A-1~A-69), veratramine type(B-1~B-21), jervanine type(C-1~C-31), solanidine type(D-1~D-10) and verazine type(E-1~E-53), respectively, have been isolated and identified in the genus Veratrum. Their pharmacological activities mainly focused on decreasing blood pressure, anti-platelet aggregation and anti-thrombosis, anti-inflammatory and analgesic, and antitumor effect. This paper classified and summarized the 184 kind of steroidal alkaloids from the Veratrum plants and their major pharmalogical activities in order to provide the scientific basis for the further development and utilization of active alkaloids.
Alkaloids/pharmacology*
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Analgesics
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Platelet Aggregation
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Steroids/pharmacology*
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Veratrum
3.Research advances in chemical constituents and pharmacological activities of different parts of Eucommia ulmoides.
Cong LIU ; Fei-Fei GUO ; Jun-Ping XIAO ; Jun-Ying WEI ; Li-Ying TANG ; Hong-Jun YANG
China Journal of Chinese Materia Medica 2020;45(3):497-512
To date, 205 compounds have been identified from different medicinal parts of Eucommia ulmoides, including lignans, iridoid terpenoids, phenols, flavonoids, terpenoids and steroids, polysaccharides and others. Their pharmacological effects include blood pressure-lowering, blood sugar-lowering, blood lipids-regulating, prevention of osteoporosis, anti-inflammation, liver protection, anti-cancer and so on. Their efficacy and mechanism from different parts are slightly different. In this paper, the chemical composition, pharmacological action and mechanism of different parts of E. ulmoides were systematically summarized, as well as its quality control and processing research, to provide theoretical basis for further rational development and utilization of E. ulmoides.
Eucommiaceae/chemistry*
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Flavonoids
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Iridoids
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Lignans
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Phenols
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Phytochemicals/pharmacology*
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Plants, Medicinal/chemistry*
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Polysaccharides
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Steroids
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Terpenes
4.The effects of anabolic-androgenic steroids on behavioral, cognitive functions and nervous systems of adolescents.
Jia-Min WU ; Ying-Yi DENG ; Chu-Qian WEI ; Jin-Hong YAN
Acta Physiologica Sinica 2019;71(3):463-470
Anabolic-androgenic steroid (AAS) is responsible for muscle building and masculinizing. Using AAS can enhance muscle development and strength, and improve athletic performance. AAS abuse is not only seen in sport. Research has shown that there is an increasing number of adolescent AAS abusers. Adolescents are at a critical period of physical and mental development. Sex hormones are one of the important physiological factors affecting the development of their bodies and brains. Long-term or high-dose AAS treatment is likely to cause irreversible damage to their nervous system and psychological behavior, and these effects are easily overlooked. The article reviewed the long-term adverse effects of AAS on psychological behavior, emotion, cognitive functions and the nervous system of adolescents.
Adolescent
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Anabolic Agents
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pharmacology
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Cognition
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drug effects
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Humans
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Nervous System
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drug effects
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Steroids
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pharmacology
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Substance-Related Disorders
5.The problem of medicating women like the men: conceptual discussion of menstrual cycle-dependent psychopharmacology
Sun Kyoung YUM ; Sun Young YUM ; Tak KIM
Translational and Clinical Pharmacology 2019;27(4):127-133
While hormonal changes during the ovulatory cycles affect multiple body systems, medical management, including medication dosing remains largely uniform between the sexes. Little is known about sex-specific pharmacology in women. Although hormonal fluctuations of the normal menstruating process alters women's physiology and brain biochemistry, medication dosing does not consider such cyclical changes. Using schizophrenia as an example, this paper illustrates how a woman's clinical symptoms can change throughout the ovulatory cycle, leading to fluctuations in medication responses. Effects of sex steroids on the brain, clinical pharmacology are discussed. Effective medication dose may be different at different phases of the menstrual cycle. Further research is needed to better understand optimal treatment strategies in reproductive women; we present a potential clinical trial design for examining optimal medication dosing strategies for conditions that have menstruation related clinical fluctuations.
Biochemistry
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Brain
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Clothing
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Female
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Humans
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Male
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Menstrual Cycle
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Menstruation
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Pharmacology
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Pharmacology, Clinical
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Physiology
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Psychopharmacology
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Schizophrenia
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Steroids
6.Advances in the antitumor activities and mechanisms of action of steroidal saponins.
Ya-Zheng ZHAO ; Yuan-Yuan ZHANG ; Han HAN ; Rui-Ping FAN ; Yang HU ; Liang ZHONG ; Jun-Ping KOU ; Bo-Yang YU
Chinese Journal of Natural Medicines (English Ed.) 2018;16(10):732-748
The steroidal saponins are one of the saponin types that exist in an unbound state and have various pharmacological activities, such as anticancer, anti-inflammatory, antiviral, antibacterial and nerves-calming properties. Cancer is a growing health problem worldwide. Significant progress has been made to understand the antitumor effects of steroidal saponins in recent years. According to reported findings, steroidal saponins exert various antitumor activities, such as inhibiting proliferation, inducing apoptosis and autophagy, and regulating the tumor microenvironment, through multiple related signaling pathways. This article focuses on the advances in domestic and foreign studies on the antitumor activity and mechanism of actions of steroidal saponins in the last five years to provide a scientific basis and research ideas for further development and clinical application of steroidal saponins.
Animals
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Antineoplastic Agents, Phytogenic
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chemistry
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pharmacology
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Apoptosis
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drug effects
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Cell Proliferation
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drug effects
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Humans
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Neoplasms
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drug therapy
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physiopathology
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Plant Extracts
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chemistry
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pharmacology
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Saponins
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chemistry
;
pharmacology
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Steroids
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chemistry
;
pharmacology
7.Two new C steroidal glycosides isolated from Cynanchum komarovii.
Dan ZHAO ; Shan-Shan SU ; Shao-Fei CHEN ; Xiao-Jie LU ; Gang CHEN ; Yu-Bo WANG ; Guang-Yue SU ; Yue-Hu PEI
Chinese Journal of Natural Medicines (English Ed.) 2018;16(8):610-614
The present study was designed to further investigate the C steroidal glycosides in Cynanchum plants. Two new steroidal glycosides based on a 13, 14:14, 15-disecopregnane-type aglycone, komaroside P (1) and komaroside Q (2), together with three known compounds (3-5) were isolated from the whole herbs of Cynanchum komarovii. The aglycones of compounds 1 and 2 were two new disecopregnane. Their structures were elucidated on the basis of 1D, 2D NMR spectroscopic data and acid hydrolysis. All the compounds (1-5) showed potent inhibitory activities against human leukemia cell lines (HL-60) with IC values ranging from 16.6 to 26.3 μmol·L, compared to the positive control 5-fluorouracil (6.4 μmol·L).
Cell Survival
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drug effects
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Cynanchum
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chemistry
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Drugs, Chinese Herbal
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chemistry
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isolation & purification
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pharmacology
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Glycosides
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chemistry
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isolation & purification
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pharmacology
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HL-60 Cells
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Humans
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Magnetic Resonance Spectroscopy
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Molecular Structure
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Steroids
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chemistry
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isolation & purification
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pharmacology
8.Soft coral Cespitularia stolonifera: New cytotoxic ceramides and gastroprotective activity.
Abdelsamed I ELSHAMY ; Walaa A EL-KASHAK ; Heba M I ABDALLAH ; Abdelrazik H FARRAG ; Mahmoud I NASSAR
Chinese Journal of Natural Medicines (English Ed.) 2017;15(2):105-114
In the present study, a new ceramide, namely 2S, 3R-4E, 8E-2-(heptadecanoylamino)-heptadeca-4, 8-diene-1, 3-diol (1), along with four known steroids, including 24-methylcholesta-5, 24(28)-diene-3β-ol (2), 24-methylcholesta-5, 24(28)-diene-3β-acetate (3), 4-methyl-24-methylcholesta-22-ene-3-ol (4), and cholesterol, was isolated and characterized from CHCl/MeOH extract of Cespitularia stolonifera. A new acetate derivative of compound 1, termed 2S, 3R-4E, 8E-2-(heptadecanoylamino)-heptadeca-4, 8-diene-1, 3-diacetate (1a), was also prepared in the present study. All the structures were established on the basis of modern spectroscopic techniques, including FT-IR, 1D, 2D-NMR, HRESI-MS, and GC-MS, in addition of chemical methods. (-)-Alloaromadendren, ledane, (1)-alloaromadendren oxide, isoaromadendrene epoxide and (-)-caryophellen oxide were identified from the n-hexane fraction using GC-MS. The extract and the two ceramides (1) and (1a) exhibited significant cytotoxic activity against lung cancer A549 cells, while the extract and the two steroids (2) and (3) exhibited significant cytotoxic activity against breast cancer MCF-7 cells. The CHCl/MeOH extract exhibited significant antiulcer activity in both ethanol and acetic acid induced ulcer models in rats, as evidenced by histopathological, histochemical, and biochemical examinations.
A549 Cells
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Acetic Acid
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Animals
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Anthozoa
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chemistry
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Anti-Ulcer Agents
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chemistry
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isolation & purification
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pharmacology
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therapeutic use
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Antineoplastic Agents
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chemistry
;
isolation & purification
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pharmacology
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therapeutic use
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Biological Products
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chemistry
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isolation & purification
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pharmacology
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therapeutic use
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Breast Neoplasms
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drug therapy
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Ceramides
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chemistry
;
isolation & purification
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pharmacology
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therapeutic use
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Disease Models, Animal
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Ethanol
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Female
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Humans
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Lung Neoplasms
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drug therapy
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MCF-7 Cells
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Magnetic Resonance Spectroscopy
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methods
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Rats
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Spectroscopy, Fourier Transform Infrared
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methods
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Steroids
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chemistry
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isolation & purification
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pharmacology
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therapeutic use
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Ulcer
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chemically induced
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drug therapy
9.Effect of Inhibiting and Activating Wnt Signalling Pathway on NSC67657-inducing Monocytic Differentiation of HL-60 Cells.
Wei-Jia WANG ; Xiu-Ming ZHANG ; Yan ZHANG ; Jin-Shu WANG
Journal of Experimental Hematology 2016;24(2):341-346
OBJECTIVETo investigate the effect of inhibiting and activating Wnt signalling pathway on monocyte differentiation of HL-60 cells induced with a new steroidal drug NSC67657 and its possible mechamism.
METHODSThe HL-60 cells were treated with 5, 10 and 20 µmol/L XAV-939 (inhibitor of Wnt signalling pathway) for 3 days, and with 10, 20 and 30 mmol/L LiCl (activator of Wnt signalling pathway) for 1 day; the expression levels of down-stream genes and proteins of Wnt signolling pathway were detected by RT-PCR and Western blot, respectively; the expression of cell surface differentiation antigen CD14 and early apoptosis of HL-60 cells was detected by flow cytometry, moreover the most suitable concentration of Wnt inhibitor and activator for HL-60 cells was determined. Then the HL-60 cells with inhibited and activated Wnt pathway were treated with NSC67657 of 10 µmol/L for 3 days; the expression levels of CD14 and down-stream target proteins of Wnt signalling pathway in blank control (culture mediam) group, simple NSC67657-treated group, NSC67657 combined with inhibitor group and NSC67657 combined activator group were compared and analyzed.
RESULTS20 µmol/L XAV-939 and 20 mmol/L LiCl could effectively inhibit and activate Wnt signalling pathway of HL-60 cells respectively, could significantly down- and up-regulate the expression of cyclinD1, TCF1 and c-Jun genes (P < 0.05) and proteins (P < 0.05); moreover, the number of CD10(+) HL-60 cells in these conditions was below 1%, no early apoptosis of HL-60 cells was found. In the simple NSC67657-treated groups, the expression of cyclinD1, TCF1 and c-Jun proteins was down-regulated (P < 0.05), and the percentage of CD14(+) HL-60 cells accounted for 62.13 ± 9.44; after the HL-60 cells were treated with XAV-939, the NSC67657 could more significantly down-regulate the expression of cyclinD1, TCF1 and c-Jun proteins and the percentage of CD14(+) HL-60 cell accounted for 84.17 ± 5.39%, as compared with simple NSC67657-treated group; as compared with blank controls group, the expression of cyclinD1, TCF1 and c-Jun proteins was more obviously down-regulated and the percentage of CD14(+) HL-60 cells decreased to 33.99 ± 8.37% in NSC67657 combined LiC1 streated group, but which were higher than those in simple NSC67657-treated group (P < 0.05).
CONCLUSION20 µmol/L XAV-939 and 20 mmol/L LiCl as effective inhabitor and activator of Wnt signalling pathway respectively can significantly down- and up-regulate the expression of Wnt down-stream pathway target genes and proteins. The influence of XAV-939 and LiC1 on differentiation of HL-60 cells induced by NSC67657 suggests that Wnt signalling pathway plays a key role in monocyte differentiction of HL-60 cells induced by NSC67657.
Apoptosis ; Cell Differentiation ; Cyclin D1 ; metabolism ; Flow Cytometry ; HL-60 Cells ; Hepatocyte Nuclear Factor 1-alpha ; metabolism ; Humans ; Lipopolysaccharide Receptors ; metabolism ; Mesylates ; pharmacology ; Monocytes ; cytology ; Proto-Oncogene Proteins c-jun ; metabolism ; Steroids ; pharmacology ; Wnt Signaling Pathway
10.Treatment of Steroid-induced Osteonecrosis of Femoral Head by Porous Tantalum Rod and Gugutou Huaisiyu Capsule.
Xu-yi TAN ; Fei-fei GAO ; Shu-tu GAO ; You-wen LIU ; Xian-tao CHEN ; Li-yun LIU
Chinese Journal of Integrated Traditional and Western Medicine 2016;36(1):40-43
OBJECTIVETo observe the curative effect of porous tantalum rod and Gugutou Huaisiyu Capsule (GHC) for steroid-induced osteonecrosis of femoral head (SONFH).
METHODSA total 60 hips of 50 SONFH patients were randomly assigned to the treatment group and the control group according to grouping time, 25 in each group (30 hips). Patients in the control group were implanted with porous tantalum rod, while those in the treatment group additionally took GHC (5 pills each time, three time per day for 2 successive months; and then twice per day for 4 successive months). Then all patients were followed-up to observe Harris hip score. The curative effect and the femoral head survival time were assessed.
RESULTSA total of 49 patients (59 hips) were followed-up. The Harris hip score of the two groups at the final follow-up was significantly improved after treatment, with statistical difference when compared with before treatment (P < 0.01). Besides, it was higher in the treatment group than in the control group. The curative effect and the survival time were superior in the treatment group, with statistical difference when compared with the control group (P < 0.05).
CONCLUSIONSPorous tantalum rod combined GHC got better effect in treating SONFH. It could significantly improve the function of affected hips and prolong the survival time of femoral head.
Capsules ; Drugs, Chinese Herbal ; administration & dosage ; pharmacology ; therapeutic use ; Femur Head Necrosis ; drug therapy ; Humans ; Prostheses and Implants ; Steroids ; adverse effects ; Tantalum

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