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9篇 您的检索式:作者名="Huang Tiansheng"
    题名 作者 年代 出处 被引量
1Effect of transcutaneous electrical nerve stimulation at acupoints on patients with type 2 diabetes mellitus:a randomized controlled trial显示文摘OBJECTIVE:To examine whether transcutaneous electric nerve stimulation at acupoints(Acu-TENS)improved the biochemical and physical indices of patients with type 2 diabetes mellitus(T2DM).METHODS:Ninety subjects with T2DM were divided randomly into a control group(n = 30),aerobic exercise group(n- 30),or Acu-TENS group(n = 30).In addition to conventional diabetes drug treatment,patients in the Acu-TENS group received acupoint stimulation,the aerobic exercise group engaged in walking exercises,and the control group was given sham electrical stimulation.All groups were treated for 30 min for each session and five times a week for 2 months.The indices of glycosylated hemoglobin,2 h postprandial glucose,fasting serum insulin,triglyceride,total cholesterol,and body mass index were assessed at pre-treatment,post-treatment,and follow-up,which was 2 months after treatment.RESULTS:The indices of the control group were not changed(P > 0.05) at the three time points.At the pre-treatment measurement,there were significant differences(P > 0.05) in indices among the three groups.At post-treatment,each index of the two groups was lower than that of the control group(P < 0.05),and improved in comparison with the pre-treatment measurement(P < 0.05).In follow-up,each index of the aerobic exercise group and Acu-TENS group increased,but was still decreased compared with the pre-treatment value(P < 0.05),excluding body mass index.CONCLUSION:Acu-TENS could improve the state of patients with T2 DM and be used as a therapy in clinical application.Wu Zhiyuan Yang Ming Jia Jie Wu Yi Huang Tiansheng Li Mingfen He Zhijie Guo Zhenzhen Leung Mason Chin Pang 2015Journal of Traditional Chinese Medicine2015,35,2:5
2Laminated Fe-34.5 Mn-0.04C composite with high strength and ductility显示文摘To obtain a good combination of strength and ductility, a laminated composite structure composed of recovered hard lamellae and soft recrystallized lamellae has been produced in a single phase austenitic Fe-34.5 Mn-0.04 C steel by cold rolling and partial recrystallization. Enhanced mechanical properties in both strength and ductility have been obtained in the composite structure compared to a fully recrystallized coarse grain structure. A further increase in strength with only minor loss in total elongation has been achieved by a slight cold rolling of the composite structure, which also removes the small yield drop and Lüders elongation observed in the composite structure.Yuhui Wang Jianmei Kang Yan Peng Tiansheng Wang Niels Hansen Xiaoxu Huang 2018Journal of Materials Science & Technology2018,34,10:4
3Genetic bases of rice grain shape: so many genes, so little known显示文摘Rongyu Huang Liangrong Jiang Jingsheng Zheng Tiansheng Wang Houcong Wang Yumin Huang Zonglie Hong 2012Trends in Plant Science2012,,:2
4CPT1C-mediated fatty acid oxidation facilitates colorectal cancer cell proliferation and metastasis显示文摘Fatty acid oxidation(FAO)has been proven to be an accomplice in tumor progression.Carnitine palmitoyltransferase 1C(CPT1C),a rate-limiting enzyme in FAO,mainly functions to catalyze fatty acid carnitinylation and guarantee subsequent entry into the mitochondria for FAO in colorectal cancer(CRC).Gene expression data and clinical information extracted from The Cancer Genome Atlas(TCGA)database show significantly higher expression of CPT1C in patients with metastatic CRC(P=0.005).Moreover,overexpression of CPT1C is correlated with worse relapse-free survival in CRC(HR 2.1,P=0.0006),while no statistical significance is indicated for CPT1A and CPT1B.Further experiments demonstrate that downregulation of CPT1C expression leads to a decrease in the FAO rate,suppression of cell proliferation,cell cycle arrest and repression of cell migration in CRC,whereas opposite results are obtained when CPT1C is overexpressed.Furthermore,an FAO inhibitor almost completely reverses the enhanced cell proliferation and migration induced by CPT1C overexpression.In addition,analysis of TCGA data illustrates a positive association between CPT1C expression and HIF1αlevel,suggesting that CPT1C is a transcriptional target of HIF1α.In conclusion,CPT1C overexpression indicates poor relapse-free survival of patients with CRC,and CPT1C is transcriptionally activated by HIF1α,thereby promoting the proliferation and migration of CRC cells.Jing Li Wanwei Zheng Jie Wu Jun Zhang Bin Lv Wenshuai Li Jie Liu Xin Zhang Tiansheng Huang Zhongguang Luo 2023Acta Biochimica et Biophysica Sinica2023,55,8:1
5Clinical study on management of spinal cord injury following cervical nonfracture dislocation by methylprednisolone of large dos显示文摘SUN TIANSHENG QING SHAOTING HUANG HONGYUN 1997Chinese Journal of Surgery1997,35,12:1
6Room temperature H_2S micro-sensors with anti-humidity properties fabricated from NiO-In_2O_3 composite nanofibers显示文摘NiO-In2O3 composite nanofibers are synthesized via electrospinning and calcining techniques.Micro-sensors are fabricated by sputtering Pt electrodes on Si chips to form sensor substrates,and then spinning the NiO-In2O3 composite nanofibers onto the sensor substrate surface.The as-fabricated micro-sensors exhibit excellent H2S sensing properties at room temperature.The sensitivity of the micro-sensors is up to 6 when the sensors are exposed to 3μL/LH2S,and the corresponding response and recovery times are 14 and 22 s,respectively.The micro-sensors also exhibit high selectivity and good stability.Especially,the micro-sensors can operate at various humidity conditions.The sensitivity of the micro-sensors is 3.8 to 3μL/LH2S at 75% relative humidity.These characteristics make the micro-sensors good candidates for practical H2S sensors with high performance.YUE XueJun HONG TianSheng YANG Zhou HUANG ShuangPing 2013Science China(Technological Sciences)2013,56,3:1
7Biologically inspired anthraquinone redox centers and biomass graphene for renewable colloidal gels toward ultrahigh-performance flexible micro-supercapacitors显示文摘Biomass carbon and small redox biomolecules are attractive materials for green,sustainable energy storage devices owing to their environmentally friendly,low-cost,scalable,and novel sources.However,most devices manufactured using these materials have low specific capacitance,poor cycle stability,short lifetime,complexity,and low precision of device fabrication.Herein,we report the directed self-assembly of mononuclear anthraquinone(MAQ)derivatives and porous lignin-based graphene oxide(PLGO)into a renewable colloidal gel through noncovalent interactions.These self-assembled gel electrode materials exhibited high capacitance(484.8 F g^(−1) at a current density of 1 A g^(−1))and could be further printed as flexible micro-supercapacitors(FMSCs)with arbitrary patterns and a relatively high resolution on specific substrates.The FMSCs exhibited excellent areal capacitance(43.6 mF cm^(−2)),energy and power densities(6.1μWh cm^(−2) and 50μW cm^(−2),respectively),and cycle stability(>10,000 cycles).Furthermore,the printed FMSCs and integrated FMSC arrays exhibited remarkable flexibility while maintaining a stable capacitance.The proposed approach can be applied to other quinone biomolecules and biomass-based carbon materials.This study provides a basis for fabricating green and sustainable energy storage device architectures with high capacitance,long-term cycling,high scalability,and high precision.Tiansheng Wang Shunyou Hu Yuanyuan Hu Dong Wu Hao Wu Jinxu Huang Hao Wang Weiwei Zhao Wen Yu Mi Wang Jie Xu Jiaheng Zhang 2023Journal of Materials Science & Technology2023,,20:0
8Biomimetic hydroxyapatite coating on the 3D-printed bioactive porous composite ceramic scaffolds promoted osteogenic differentiation via PI3K/AKT/mTOR signaling pathways and facilitated bone regeneration in vivo显示文摘The architecture and surface modifications have been regarded as effective methods to enhance the bi-ological response of biomaterials in bone tissue engineering.The porous architecture of the implanta-tion was essential conditions for bone regeneration.Meanwhile,the design of biomimetic hydroxyap-atite(HAp)coating on porous scaffolds was demonstrated to strengthen the bioactivity and stimulate osteogenesis.However,bioactive bio-ceramics such asβ-tricalcium phosphate(β-TCP)and calcium sili-cate(CS)with superior apatite-forming ability were reported to present better osteogenic activity than that of HAp.Hence in this study,3D-printed interconnected porous bioactive ceramicsβ-TCP/CS scaf-fold was fabricated and the biomimetic HAp apatite coating were constructed in situ via hydrothermal reaction,and the effects of HAp apatite layer on the fate of mouse bone mesenchymal stem cells(mBM-SCs)and the potential mechanisms were explored.The results indicated that HAp apatite coating en-hanced cell proliferation,alkaline phosphatase(ALP)activity,and osteogenic gene expression.Further-more,PI3K/AKT/mTOR signaling pathway is proved to have an important impact on cellular functions.The present results demonstrated that the key molecules of phosphatidylinositol 3-kinase(PI3K),protein kinase B(AKT)and mammalian target of rapamycin(mTOR)were activated after the biomimetic hydrox-yapatite coating were constructed on the 3D-printed ceramic scaffolds.Besides,the activated influence on the protein expression of Runx2 and BMP2 could be suppressed after the treatment of inhibitor HY-10358.In vivo studies showed that the constructed HAp coating promoted bone formation and strengthen the bone quality.These results suggest that biomimetic HAp coating constructed on the 3D-printed bioac-tive composite scaffolds could strengthen the bioactivity and the obtained biomimetic multi-structured scaffolds might be a potential alternative bone graft for bone regeneration.Bizhi Tan Naru Zhao Wei Guo Fangli Huang Hao Hu Yan Chen Jungang Li Zemin Ling Zhiyuan Zou Rongcheng Hu Chun Liu Tiansheng Zheng Gang Wang Xiao Liu Yingjun Wang Xuenong Zou 2023Journal of Materials Science & Technology2023,,5:0
9Efficient oil-water separation by novel biodegradable all cellulose composite filter paper显示文摘Industrial production and domestic discharge produce a large amount of oily wastewater, which seriously affects the stability of the ecological environment. Membrane separation technology provides another path to treating oily wastewater. And appropriate surface modification of the membrane helps to achieve high efficiency of treating oily wastewater. With green, economy and stability been more concerned.The focal research reports a completely biodegradable all cellulose composite filter paper(ACCFP) composed of Ⅰ-cellulose macrofibers and Ⅱ-cellulose matrix. It is a simple one-step impregnation method to adjust the surface microstructure of the pristine filter paper(PFP), and it does not involve with chemical reaction. The pre-wetted ACCFP consist of Ⅱ-cellulose hydrogel and Ⅰ-cellulose reinforcement in the process of oil-water separation. This layer of hydrogel is the fundamental to underwater superoleophobicity, which determines their eligibility for applications of efficient oil-water mixture or oil-in-water(oil/water) emulsion separation. The separation efficiency of oil-water mixture and oil/water emulsion exceed 95% and 99.9%, respectively. In addition, excellent mechanical properties of ACCFP in dry and wet conditions ensure its stability in service and prolong service life in applications. The focal study provides a new method for high-performance oil-water separation and it is more in line with sustainable chemistry.Chizhou Wang Shaodi Wu Ning Zhang Zhaoli Jiang Xianglin Hou Long Huang Tiansheng Deng 2023Green Energy & Environment2023,8,6:0
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