1.Biodegradation of synthetic bioglasses with different crystallinity in vitro.
Yumei ZHANG ; Yurong CAI ; Qintao WANG ; Yimin ZHAO ; F MONCHAU ; A LEFEVRE ; H F HILDEBRAND
Journal of Biomedical Engineering 2005;22(5):990-994
SG600, SG900 and SG1100 were synthesized by the sol-gel method. Further treatments with increasing temperatures influenced and determined the crystallization degree of the material. Primary cultured osteoclasts were incubated for 4h and 48h on samples. Osteoclast actin labeling was examined by cytochemical staining. The concentrations of Ca and P in culture medium were quantified by colorimetric methods. SEM examined osteoclast morphology and resorption lacuna. Actin staining revealed on all three materials the typical adhesion contact ring. The Ca concentration in the culture medium of SG600 was significantly higher than that in control medium, SG900 and SG1100. Ca and P concentrations were always higher in culture media with the presence of osteoclasts. Morphological studies by scanning electron microsopy(SEM) showed a good adhesion behavior of osteoclasts on all three samples. Well-developed and deep resorption lacunae appearing after the osteoclastic resorption action were detected on all three samples. The synthetic bioglasses with different crystallizations caused different solubility, which seemed to have little effect on the osteoclast resorption behavior. The results of morphological studies on osteoclasts and resorption lacunae clearly demonstrate that the synthetic bioglasses are easily resorbed in vitro by osteoclasts.
Absorbable Implants
;
Biocompatible Materials
;
Biodegradation, Environmental
;
Bone Substitutes
;
Cells, Cultured
;
Ceramics
;
Crystallization
;
Osteoclasts
;
cytology
;
metabolism
;
ultrastructure
;
Phase Transition
2.Progress in research of relationship between heavy metal exposure and cardiovascular disease.
F LU ; F ZHAO ; J Y CAI ; L LIU ; X M SHI
Chinese Journal of Epidemiology 2018;39(1):102-106
Heavy metal is one of pollutants existed widely in the environment, its relationship with cardiovascular disease has attracted more and more attention. In this review, the concentrations of heavy metals, including lead, cadium and asenic, in the body from several national surveillance networks and the epidemiological studies on the effects of the exposure of three heavy metals on cardiovascular system were summarized. It is suggested to strengthen nationwide surveillance for body concentrations of heavy metals in general population in order to provide baseline data for quantitative evaluation of the risk of heavy metal exposure on cardiovascular disease.
Cadmium
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Cardiovascular Diseases/chemically induced*
;
Environmental Exposure/adverse effects*
;
Environmental Pollutants/toxicity*
;
Epidemiologic Studies
;
Humans
;
Lead/toxicity*
;
Metals, Heavy/toxicity*
;
Neoplasms
;
Research/trends*
3.Construction of yeast two-hybrid library of Salvia miltiorrhiza and screening of SmJAZ8 interaction protein.
Meng-Dan YANG ; Ying ZHAO ; Peng-da MA
China Journal of Chinese Materia Medica 2018;43(3):484-492
The study is aimed to construct high quality Salvia miltiorrhiza cDNA library and obtain the SmJAZ8 gene of S. miltiorrhiza by yeast two-hybrid system. In this study, full-length cDNA was synthesized from roots, stems, leaves, flowers and hairy roots of S. miltiorrhiza. The full-length cDNA library was synthesized by SMART method and constructed with DSN homogenization technique. The results showed that the library capacity was 1.45×10⁶, the recombination rate was 100%, and the average size of the insert was 500-2 000 bp. The recombinant vector of pDEST-pGADT7-SmJAZ8 was constructed and transformed into Y2HGold strain. The interaction protein was screened by yeast two-hybrid system. The DnaJ protein and UBQ protein were screened by yeast two-hybrid system. This study has successfully constructed a full-length cDNA library of S. miltiorrhiza, and laid the foundation for the follow-up study on functional gene screening and gene function of S. miltiorrhiza.
Co-Repressor Proteins
;
genetics
;
DNA, Complementary
;
Gene Library
;
Plant Proteins
;
genetics
;
Salvia miltiorrhiza
;
genetics
;
Two-Hybrid System Techniques
4.Seroprevalence and risk factors for Toxoplasma gondii in sheep and goats in Jinzhou, Northeastern China
Xu, P., Li, X., Tang, F., Liu, Y.H., Kou, X., Zhao, M.L., Li, B., Guo, L., Liu, X.G., Zhao, Q.
Tropical Biomedicine 2015;32(3):563-567
In the present study, serum samples from 402 sheep and 216 goats were collected
from 5 counties in Jinzhou from August to October 2012 and antibodies to Toxoplasma gondii
were detected by modified agglutination test (MAT). Overall, 104 (16.8%) had antibodies to T.
gondii with antibody titres of 1:25 to 1:800. Seropositive samples were distributed in all the
5 counties and seroprevalences of T. gondii varied significantly with flock size, age and
rearing system, but not with breed, gender and farm location. The seroprevalences in small
farms (18.3%, 95/518, 95% confidence interval [CI], 15.0-21.7%) were statistically higher than
that in large farms (9%, 9/100, 95% CI, 3.4-14.6%) (P < 0.05), older animals were statistically
higher than that in younger animals (P < 0.01). The prevalence in extensively and semiintensively
raised samples was statistically higher than that in intensively raised animals (P
< 0.01). Small flock size and extensive rearing system are the potential risk factors for the
prevalence of Toxoplasma infection in sheep and goats in Jinzhou. This is the first report of
T. gondii infection in sheep and goats in Jinzhou, northeastern China, and of an association of
seropositivity to T. gondii and the risk factors.
5.Enzyme production mechanism of anaerobic fungus Orpinomyces sp. YF3 in yak rumen induced by different carbon source.
Xue'er DU ; Linlin ZHOU ; Fan ZHANG ; Yong LI ; Congcong ZHAO ; Lamei WANG ; Junhu YAO ; Yangchun CAO
Chinese Journal of Biotechnology 2023;39(12):4927-4938
In order to investigate the enzyme production mechanism of yak rumen-derived anaerobic fungus Orpinomyces sp. YF3 under the induction of different carbon sources, anaerobic culture tubes were used for in vitro fermentation. 8 g/L of glucose (Glu), filter paper (Flp) and avicel (Avi) were respectively added to 10 mL of basic culture medium as the sole carbon source. The activity of fiber-degrading enzyme and the concentration of volatile fatty acid in the fermentation liquid were detected, and the enzyme producing mechanism of Orpinomyces sp. YF3 was explored by transcriptomics. It was found that, in glucose-induced fermentation solution, the activities of carboxymethyl cellulase, microcrystalline cellulase, filter paper enzyme, xylanase and the proportion of acetate were significantly increased (P < 0.05), the proportion of propionate, butyrate, isobutyrate were significantly decreased (P < 0.05). The results of transcriptome analysis showed that there were 5 949 differentially expressed genes (DEGs) between the Glu group and the Flp group, 10 970 DEGs between the Glu group and the Avi group, and 6 057 DEGs between the Flp group and the Avi group. It was found that the DEGs associated with fiber degrading enzymes were significantly up-regulated in the Glu group. Gene ontology (GO) function enrichment analysis identified that DEGs were mainly associated with the xylan catabolic process, hemicellulose metabolic process, β-glucan metabolic process, cellulase activity, endo-1,4-β-xylanase activity, cell wall polysaccharide metabolic process, carbohydrate catabolic process, glucan catabolic process and carbohydrate metabolic process. Moreover, the differentially expressed pathways associated with fiber degrading enzymes enriched by Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis were mainly starch and sucrose metabolic pathways and other glycan degradation pathways. In conclusion, Orpinomyces sp. YF3 with glucose as carbon source substrate significantly increased the activity of cellulose degrading enzyme and the proportion of acetate, decreased the proportion of propionate, butyrate and isobutyrate. Furthermore, the degradation ability and energy utilization efficiency of fungus in the presence of glucose were improved by means of regulating the expression of cellulose degrading enzyme gene and participating in starch and sucrose metabolism pathway, and other glycan degradation pathways, which provides a theoretical basis for the application of Orpinomyces sp. YF3 in practical production and facilitates the application of Orpinomyces sp. YF3 in the future.
Animals
;
Cattle
;
Neocallimastigales/metabolism*
;
Anaerobiosis
;
Rumen/microbiology*
;
Propionates/metabolism*
;
Isobutyrates/metabolism*
;
Cellulose/metabolism*
;
Fungi
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Starch/metabolism*
;
Glucose/metabolism*
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Acetates
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Sucrose/metabolism*
;
Cellulases
;
Cellulase
6.Role and regulation of the forkhead transcription factors FOXO3a and FOXM1 in carcinogenesis and drug resistance.
Ana R GOMES ; Fung ZHAO ; Eric W F LAM
Chinese Journal of Cancer 2013;32(7):365-370
The FOXO3a and FOXM1 forkhead transcription factors are key players in cancer initiation, progression, and drug resistance. Recent research shows that FOXM1 is a direct transcriptional target of FOXO3a, a vital downstream effector of the PI3K-AKT-FOXO signaling cascade. In addition, FOXM1 and FOXO3a also antagonize each other's activity by competitively binding to the same target genes, which are involved in chemotherapeutic drug sensitivity and resistance. Understanding the role and regulation of the FOXO-FOXM1 axis will provide insight into chemotherapeutic drug action and resistance in patients, and help to identify novel therapeutic approaches as well as diagnostic and predictive biomarkers.
Antineoplastic Agents
;
pharmacology
;
therapeutic use
;
Carcinogenesis
;
genetics
;
metabolism
;
Drug Resistance, Neoplasm
;
Forkhead Box Protein M1
;
Forkhead Box Protein O3
;
Forkhead Transcription Factors
;
genetics
;
metabolism
;
Humans
;
Neoplasms
;
drug therapy
;
metabolism
;
pathology
;
Phosphatidylinositol 3-Kinases
;
metabolism
;
Proto-Oncogene Proteins c-akt
;
metabolism
;
Signal Transduction
7.Process in menstrual blood-derived mesenchymal stem cells for treatment of central nervous system diseases.
Mengmeng LIU ; Xinran CHENG ; Kaikai LI ; Mingrui XU ; Yongji WU ; Mengli WANG ; Qianru ZHANG ; Wenyong YAN ; Chang LUO ; Shanting ZHAO
Chinese Journal of Biotechnology 2018;34(5):644-652
Stem cell research has become a frontier in the field of life sciences, and provides an ideal model for exploring developmental biology problems such as embryogenesis, histiocytosis, and gene expression regulation, as well as opens up new doors for clinical tissue defective and inheritance diseases. Among them, menstrual blood-derived stem cells (MenSCs) are characterized by wide source, multi-directional differentiation potential, low immune rejection characteristics. Thus, MenSCs can achieve individual treatment and have the most advantage of the clinical application. The central nervous system, including brain and spinal cord, is susceptible to injury. And lethality and morbidity of them tops the list of all types of trauma. Compared to peripheral nervous system, recovery of central nervous system after damage remains extremely hard. However, the treatment of stem cells, especially MenSCs, is expected to solve this problem. Therefore, biological characteristics of MenSCs and their treatment in the respect of central nervous system diseases have been reviewed at home and abroad in recent years, so as to provide reference for the treatment of central nervous system diseases.
8.Analysis of flavonoids and antitumor activity of transgenic Saussurea involucrate.
Zhi-Xiu CAO ; Hou-Hua LI ; Ai LI ; Peng-Yuan LIU ; Yan-Ying ZHAO ; Pei-Qi MAO ; Gui-Lin LI
China Journal of Chinese Materia Medica 2018;43(22):4491-4497
The aim of this paper was to investigate the flavonoids of callus of transgenic and non-transgenic Saussurea involucrate and its antitumor activity on the esophageal cancer CaEs-17 cells. The species and content of mono-phenols were detected by high performance liquid chromatography. The growth of human esophageal cancer CaEs-17 cells was detected using CCK-8 assay, apoptosis morphology observation and flow cytometry. Expression of related apoptotic genes Bax and Bcl-2 were determined by qPCR. The results showed that the content of total flavonoids in the transgenic callus was 2.72 times that of the non-transgenic callus. The cyanidin-galactoside was detected in the transgenic callus, but not in the non-transgenic callus. The inhibitory effect of the extracts from the transgenic callus on CaEs-17 cells was more significant than that of the non-transgenic callus, and the IC₅₀ value had a decreased of 26.4%. Flow cytometry analysis results showed that the apoptosis induction effect of the extracts from the transgenic callus on CaEs-17 cells was significantly better than that of the non-transgenic callus. Fluorescence quantitative PCR analysis results showed that the extracts from the transgenic callus could up-regulate the expression of proapoptotic gene Bax and down-regulate the expression of apoptotic gene Bcl-2, and the regulation effect of the transgenic callus was more significant. Therefore, compared with the non-transgenic callus, the antitumor activity of the extracts from the callus of transgenic S. involucrate on the esophageal cancer CaEs-17 cells was significantly increased, which was closely related to the accumulation of cyanidin-galactoside and its metabolism-related flavonoid compounds in the transgenic callus.
Apoptosis
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Chromatography, High Pressure Liquid
;
Flavonoids
;
Humans
;
Phenols
;
Plant Extracts
;
Saussurea
9.Literature analysis of adverse drug reactions induced by sintilimab
Feifei ZHAO ; N Ma LI ; Nan YANG ; In Lij MAO ; Jingxia CHEN ; Feng GUO
China Pharmacy 2022;33(16):2012-2016
OBJEC TIVE To investigate the status and clinical characteristics of adverse drug reactions (ADRs)induced by sintilimab in order to provide references for clinical rational drug use. METHODS The cases of ADR induced by sintilimab were retrieved from the databases of PubMed ,Embase,CNKI,VIP and Wanfang. RESULTS A total of 32 literature were included , involving 33 patients among which there were 25 males(75.76%)and 8 females(24.24%). The incidence of ADRs was higher in patients aged over 40 years(81.82%). The dose of sintilimab was the drug instructions recommended dose (200 mg)for 30 patients and 100 mg for a patient. The earliest ADR occurred 1 h after the first medication ,the latest ADR occurred after 14 cycles of sintilimab. The 27 cases suffered from ADR cases (81.82%)within 4 months after medication ,and no reports of ADR occurred after 12 months of medication. The major manifestations of ADR were myocarditis ,diabetes mellitus ,checkpoint inhibitor pneumonitis(CIP),cytokine release syndrome (CRS)and hypothyroid myopathy (HM),etc. CRS and HM belonged to ADRs not recorded in the drug instructions. The 29 cases of recovery and 4 deaths occurred after symptomatic treatment. CONCLUSIONS ADR caused by sintilimab often occurs within 4 months after treatment ,and it is high in males and patients over 40 years old. In clinical application of sintilimab ,attention should be paid to the occurrence of myocarditis ,diabetes mellitus ,CIP,as well as CRS and HM not recorded in the drug instructions.
10. Effects of tRNA and tRNA-derived Fragments on Skeletal Muscle Development
Xu-Dong YI ; Tian-Tian ZHAO ; Wei-Jun PANG
Chinese Journal of Biochemistry and Molecular Biology 2021;37(9):1180-1187
Skeletal muscle is an important tissue of human and livestock. The study of the muscle development is of great significance for treating muscle diseases and improving livestock meat quality. The process of muscle development is controlled by several myogenic transcription factors and signaling pathways. In addition, recent findings established that several noncoding RNAs play a critical role in the regulation of muscle development such as long non-coding RNA (lncRNA), microRNA (miRNA) and circu- lar RNA (circRNA), etc. The detailed mechanism of muscle development is not well understood. Transfer RNAs (tRNAs) are fundamental components in the translation machinery as an adaptor molecule, and tRNA pool could be differentially exploited to modulate expression of mRNAs. In addition, tRNA can be cleaved into tRNA-derived fragments (tRFs) by a variety of ribonucleases (RNases) upon various stress conditions. Unlike the post-transcriptional regulation of lncRNA and miRNA on muscle development, tRNA has been implicated in various aspects of muscle development. Mitochondria play a central role in a plethora of processes related to the maintenance of muscle cellular homeostasis and genomic integrity. Mitochondrial tRNA(mt-tRNA) gene mutations lead to multiple myopathy because human mitochondrial genome is extremely small. The regulation of tRF is similar to miRNAs in regards to the related physiological processes, but are more conservative than miRNA. It is generally believed that tRF has strong tissue specificity, disease specificity and temporal specificity. Some skeletal muscle-specific tRFs could act posttranscriptionally via RNAi or targeting related genes. However, the tRF-sequencing analysis and functional mechanism of tRF are rarely studied in skeletal muscles. The myopathy caused by mitochondrial tRNA gene mutations are particularly complex, which are one of the challenges to diagnose, treat, or prevent diseases. Compared with other noncoding RNAs, the structural complexity of tRF also brings great challenges to data mining and analysis. In this review, we summarize the formation and function of tRNA and tRF especially in muscle development, which will deepen our understandings of related myopathy, and provide new ideas and directions for the investigation of skeletal muscle.