1.Mycoplasma pneumoniae resistance and advances in traditional Chinese medicine
Fengli YAO ; Fengyuan CHANG ; Yabin YU
International Journal of Pediatrics 2011;38(2):191-194,封3
Mycoplasma pneumoniae is a common pathogen of respiratory infection. Macrolides antibiotic is the first drug in treating children mycoplasma pneumoniae. Restently Mycoplasma pneumoniae shows resistance to macrolides antibiotic. Traditional Chinese medicine has more advantages in it. The paper summarizes drug resistance of mycoplasma pneumoniae and mechanisms research of traditional Chinese medicine.
2.High-resolution CT findings of otosclerosis
Qinglin CHANG ; Zhenchang WANG ; Junfang XIAN ; Fengyuan MAN ; Ling HU
Chinese Journal of Radiology 2010;44(6):623-625
Objective To evaluate HRCT features of otosclerosis.Methods HRCT findings of 61 ears with the diagnosis of otosclerosis based on clinical diagnostic criteria in 34 patients were evaluated retrospectively.Results Hypodense regions in the bony otic capsule were found on HRCT in 55 ears and no abnormality was identified on HRCT in 6 ears.In 55 ears with abnormal HRCT findings, HRCT demonstrated the hypodense region of bony otic capsule anterior to oval window alone in 6 ears, the hypodense region anterior to oval window associated with thicked stapedial footplate and pericochlear hypodensity in 6 ears, the hypodense region anterior to oval window associated with thicked stapedial footplate and hypodensity posterior to oval window in 11 ears, the hypodense region anterior to oval window associated with thicked stapedial footplate in 20 ears, the hypodense region anterior to oval window associated with pericochlear hypodensity in 10 ears, and pericochlear hypodensity in the bony otic capsule alone in 2 ears.Conclusion HRCT can detect abnormalities in the bony otic capsule and the stapedial footplate,contributing to confirming diagnosis of otosclerosis.
3.Curcumin inhibits the proliferation and induces the apoptosis of nephroblastoma through activating miR-192-5p/PI3K/Akt signaling pathway
Junming CHANG ; Deliang LI ; Ping ZHU ; Xuelian CHENG ; Jingyang BIE ; Weiye ZHANG ; Fengyuan BAO ; Yue XI ; Yingying LI
Chinese Journal of Microbiology and Immunology 2020;40(8):622-627
Objective:To study whether curcumin inhibits the proliferation and promotes the apoptosis of nephroblastoma through activating the miR-192-5p/PI3K/Akt signaling pathway.Methods:CCK-8 assay was used to investigate the effects of curcumin on the proliferation of nephroblastoma SK-NEP-1 cells and the appropriate concentration. The apoptosis rate of SK-NEP-1 cells was detected by V-FITC/PI. Luciferase reporter assay was used to verify the binding activity between miR-192-5p and PI3K. RT-PCR was performed to detect the expression of miR-192-5p at mRNA level. Western blot was used to detect the expression of PI3K and Akt at protein level.Results:Curcumin could significantly inhibit the proliferation of SK-NEP-1 cells and induce cell apoptosis in a dose-dependent manner. RT-PCR results showed that curcumin could significantly increase the expression of miR-192-5p. In addition, miR-192-5p significantly inhibited cell proliferation, induced cell apoptosis, and enhanced the effects of curcumin on the proliferation and apoptosis of SK-NEP-1 cells. Luciferase reporter assay suggested that miR-192-5p could bind to PI3K. Western blot results showed that curcumin down-regulated the expression of PI3K and Akt at protein level by mediating the expression of miR-192-5p.Conclusions:Curcumin could inhibit the proliferation and induce the apoptosis of nephroblastoma cells through mediating the expression of miR-192-5p and further inhibiting the downstream PI3K/Akt signaling pathway.
4. Prolactinic effects and molecular mechanisms of total sterone from Echinops latifolius Tausch on the milk deficient model rats
Xiao WANG ; Qiuyun XUE ; Yurong HUANG ; Chenglong CHENG ; Yuting HUANG ; Chenggui MIAO ; Jun CHANG ; Qun YIN ; Mingsong DU
Chinese Journal of Clinical Pharmacology and Therapeutics 2022;27(2):121-128
AIM: To investigate the effect of an effective component total sterone (TSR) of Echinops latifolius Tausch, the main component of a Chinese patent medicine Cuiru Keli (national drug standard WS3-413 (Z-085)-2003 (Z), on lactation and its possible mechanism. METHODS: After mating between male and female SD rats, 60 female rats were randomly divided into normal control group, model group, TSR low-dose and high-dose groups and prolactin granule positive control group, with 12 female rats in each group and 8 newborn rats in each nest. In addition to the normal control group, the rats in each group were intraperitoneally injected with levodopa 2 mg/kg once a day for 7 days from the second day of delivery. The rats in the normal control group were given normal saline by gavage once a day for 14 days. From the beginning of self-sufficiency, the single lactation of the female rats was measured every day until the 14th day, and then the female rats in each group were killed. Pathological HE staining was used to observe the morphological changes of mammary gland tissue in each group. ELISA was used to detect the levels of serum prolactin (PRL) and 5-hydroxytryptamine (5-HT). Immunohistochemistry was used to detect the distribution of PRL in mammary gland tissue of each group. Furthermore, Real-time qPCR was used to detect the expression of milk protein, milk fat related genes β-casein, FAS, ACC and the expression of canonical Wnt signaling pathway related genes β-catenin, c-Myc, CCND1, SFRP4, DNMT1, MeCP2 in mammary gland of each group. RESULTS: Both low and high dose TSR could significantly increase the single lactation volume, improve the pathological morphology of mammary gland, and increase the serum levels of PRL and 5-HT. TSR increased the distribution of PRL and up-regulated the expression of milk protein, milk fat related genes β-casein, FAS, ACC and canonical Wnt signaling pathway related genes β-catenin, c-Myc, CCND1, SFRP4, DNMT1, MeCP2.CONCLUSION: TSR can significantly promote lactation in lactation deficient rats, and its mechanism may be related to promoting the release of PRL and 5-HT in serum, increasing the distribution of PRL in mammary gland, up-regulating the milk protein and milk fat related genes and activating the canonical Wnt signal.