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1.
Comb Chem High Throughput Screen ; 27(1): 90-100, 2024.
Article in English | MEDLINE | ID: mdl-37190798

ABSTRACT

INTRODUCTION: Fu-Fang-Jin-Qian-Cao is a Chinese herbal preparation used to treat urinary calculi. Fu-Fang-Jin-Qian-Cao can protect renal tubular epithelial cells from calcium oxalateinduced renal injury by inhibiting ROS-mediated autopathy. The mechanism still needs further exploration. Metabonomics is a new subject; the combination of metabolomics and network pharmacology can find pathways for drugs to act on targets more efficiently. METHODS: Comprehensive metabolomics and network pharmacology to study the mechanism of Fu-Fang-Jin-Qian-Cao inhibiting autophagy in calcium oxalate-induced renal injury. Based on UHPLC-Q-TOF-MS, combined with biochemical analysis, a mice model of Calcium oxalateinduced renal injury was established to study the therapeutic effect of Fu-Fang-Jin-Qian-Cao. Based on the network pharmacology, the target signaling pathway and the protective effect of Fu- Fang-Jin-Qian-Cao on Calcium oxalate-induced renal injury by inhibiting autophagy were explored. Autophagy-related proteins LC3-II, BECN1, ATG5, and ATG7 were studied by immunohistochemistry. RESULTS: Combining network pharmacology and metabolomics, 50 differential metabolites and 2482 targets related to these metabolites were found. Subsequently, the targets enriched in PI3KAkt, MAPK and Ras signaling pathways. LC3-II, BECN1, ATG5 and ATG7 were up-regulated in Calcium oxalate-induced renal injury. All of them could be reversed after the Fu-Fang-Jin-Qian- Cao treatment. CONCLUSIONS: Fu-Fang-Jin-Qian-Cao can reverse ROS-induced activation of the MAPK signaling pathway and inhibition of the PI3K-Akt signaling pathway, thereby reducing autophagy damage of renal tubular epithelial cells in Calcium oxalate-induced renal injury.


Subject(s)
Calcium Oxalate , Drugs, Chinese Herbal , Mice , Animals , Calcium Oxalate/metabolism , Calcium Oxalate/pharmacology , Calcium/metabolism , Chromatography, High Pressure Liquid , Network Pharmacology , Phosphatidylinositol 3-Kinases/metabolism , Reactive Oxygen Species/metabolism , Kidney/metabolism , Autophagy , Drugs, Chinese Herbal/pharmacology , Drugs, Chinese Herbal/metabolism
2.
Asian J Androl ; 13(3): 438-45, 2011 May.
Article in English | MEDLINE | ID: mdl-21441942

ABSTRACT

Gonadotropin-releasing hormone (GnRH) is secreted from neurons within the hypothalamus and is necessary for reproductive function in all vertebrates. GnRH is also found in organs outside of the brain and plays an important role in Leydig cell steroidogenesis in the testis. However, the signalling pathways mediating this function remain largely unknown. In this study, we investigated whether components of the mitogen-activated protein kinase (MAPK) pathways are involved in GnRH agonist (GnRHa)-induced testis steroidogenesis in rat Leydig cells. Primary cultures of rat Leydig cells were established. The expression of 3ß-hydroxysteroid dehydrogenase (3ß-HSD) and the production of testosterone in response to GnRHa were examined at different doses and for different durations by RT-PCR, Western blot analysis and radioimmunoassay (RIA). The effects of GnRHa on ERK1/2, JNK and p38 kinase activation were also investigated in the presence or absence of the MAPK inhibitor PD-98059 by Western blot analysis. GnRHa induced testosterone production and upregulated 3ß-HSD expression at both the mRNA and protein levels; it also activated ERK1/2, but not JNK and p38 kinase. Although the maximum effects of GnRHa were observed at a concentration of 100 nmnol L⁻¹ after 24 h, activation of ERK1/2 by GnRHa reached peak at 5 min and it returned to the basal level within 60 min. PD-98059 completely blocked the activation of ERK1/2, the upregulation of 3ß-HSD and testosterone production. Our data show that GnRH positively regulates steroidogenesis via ERK signalling in rat Leydig cells. ERK1/2 activation by GnRH may be responsible for the induction of 3ß-HSD gene expression and enzyme production, which may ultimately modulate steroidogenesis in rat Leydig cells.


Subject(s)
Extracellular Signal-Regulated MAP Kinases/metabolism , Gonadotropin-Releasing Hormone/pharmacology , Leydig Cells/metabolism , 3-Hydroxysteroid Dehydrogenases/biosynthesis , Animals , Cells, Cultured , Extracellular Signal-Regulated MAP Kinases/drug effects , Flavonoids/pharmacology , Gonadotropin-Releasing Hormone/agonists , JNK Mitogen-Activated Protein Kinases/metabolism , Leydig Cells/drug effects , Male , Mitogen-Activated Protein Kinases/antagonists & inhibitors , Mitogen-Activated Protein Kinases/metabolism , Rats , Testosterone/biosynthesis , Up-Regulation
3.
Dent Hypotheses ; 1(2): 69-75, 2010 Jan 01.
Article in English | MEDLINE | ID: mdl-21698071

ABSTRACT

INTRODUCTION: Dentin sialoprotein (DSP) is a dentin extracellular matrix protein, a unique marker of dentinogenesis and plays a vital role in odontoblast differentiation and dentin mineralization. Recently, studies have shown that DSP induces differentiation and mineralization of periodontal ligament stem cells and dental papilla mesenchymal cells in vitro and rescues dentin deficiency and increases enamel mineralization in animal models. THE HYPOTHESIS: DSP as a nature therapeutic agent stimulates dental tissue repair by inducing endogenous dental pulp mesenchymal stem/progenitor cells into odontoblast-like cells to synthesize and to secrete dentin extracellular matrix forming new tertiary dentin as well as to regenerate a functional dentin-pulp complex. As DSP is a nature protein, and clinical procedure for DSP therapy is easy and simple, application of DSP may provide a new avenue for dentists with additional option for the treatment of substantially damaged vital teeth. EVALUATION OF THE HYPOTHESIS: Dental caries is the most common dental disease. Deep caries and pulp exposure have been treated by various restorative materials with limited success. One promising approach is dental pulp stem/progenitor-based therapies to regenerate dentin-pulp complex and restore its functions by DSP induction in vivo.

4.
Hua Xi Kou Qiang Yi Xue Za Zhi ; 25(4): 386-9, 2007 Aug.
Article in Chinese | MEDLINE | ID: mdl-17896499

ABSTRACT

OBJECTIVE: To compare the shaping ability of rotary ProTaper and Flexofile in simulated resin root canals. METHODS: Forty simulated resin root canals were randomly assigned to two groups, one group for rotary ProTaper with crown-down technique and the other for Flexofile with balanced force technique. Change of working length and incidence of canal aberration and instruments failure were recorded. After preparation, the change of root canal curvature and the amount of resin removed at the inner and outer canal walls were measured with Image Pro Plus 5.0. The centring ability and total amount of resin removed were also assessed. RESULTS: In the model of simulated resin canals, ProTaper instruments maintained working length better. Canals prepared with ProTaper instruments remained better curvature and showed fewer aberration compared with those prepared with Flexofile (P < 0.01). ProTaper instruments performed a better centring ability. CONCLUSION: ProTaper instruments have a better shaping ability in simulated resin root canals.


Subject(s)
Dental Instruments , Root Canal Preparation , Dental Alloys , Dental Pulp Cavity , Equipment Design , Humans , Nickel , Root Canal Therapy , Titanium
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