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1Cancer prevention and control: alarming challenges in China显示文摘China is geographically the third largest country in the world and the most populated low-to-middle-income country. Cancer incidence and mortality rates for some cancers in the USA and European countries have steadily decreased over the last decades, whereas the incidence and mortality of certain cancers in China have been increasing at an alarming speed. Rapid industrialization and urbanization in China have been accompanied by incredible changes in lifestyle and environment combined with an aging population. Mortality caused by lung, colorectal and breast cancers has been steadily increasing, whereas cancer mortality from gastric, esophageal and cervical tumors has tended to decrease. Similar to what has occurred in the United States, unhealthy lifestyles in China, including heavy smoking and poor diet combined with pollution, have contributed to increased cancer risk. China is facing many challenges in cancer treatment and prevention for the general population. The major areas that need to be addressed in the control of cancer in China include cancers associated with environmental pollution,tobacco use, occupational carcinogens, infection, excessive alcohol consumption, dietary deficiencies and obesity. In this perspective, we review the problems in each area and suggest ideas for future directions in cancer research and strategies and actions to reduce the incidence of cancer in China.Ann M.Bode Zigang Dong Hongyang Wang 2016National Science Review2016,3,1:22
2Numerical study on the influence of initial ambient temperature on the aerodynamic heating in the tube train system显示文摘The evacuated tube transportation has great potential in the future because of its advantages of energy saving and environmental protection.The train runs in the closed tube at ultra-high speed.The heat quantity generated by aerodynamic heating is not easy to spread to external environment and then accumulates in the tube,inducing the ambient temperature in the tube to rise gradually.In this paper,a three-dimensional geometric model and the Shear Stress Transport(SST)κ-ωturbulence model are used to study the influence of initial ambient temperature on the structure of the flow field in the tube.Simulation results show that when the train runs at transonic speed,the supersonic flow region with low temperature and low-pressure is produced in the wake.The structure of the flow field of the wake will change with the initial ambient temperature.And the higher the initial ambient temperature is,the shorter the low temperature region in the wake will be.The larger temperature difference caused by the low temperature region may increase the temperature stress of the tube and affect the equipment inside the tube.Consequently,the temperature inside the tube can be maintained at a reasonable value to reduce the influence of the low temperature region in the wake on the system.Shijie Bao Xiao Hu Jukun Wang Tianhao Ma Yingyu Rao Zigang Deng 2020Advances in Aerodynamics2020,2,1:9
3Estimation of Storage and Density of Organic Carbon in Peatlands of China显示文摘Based on the results of the National Survey of Peat Resources(1983-1985) and the investigation results on the peatlands of China,the storage and density of the organic carbon in the peatlands of China were estimated.The total organic carbon storage(OCS) of the peatlands in China,including bare peatlands and buried peatlands,are 1.503 × 109 t,unevenly distributed over 30 provincial level administrative units and 16 climatic zones.Peatland organic carbon storage(POCS) in Sichuan(6.45 × 108 t) and Yunnan provinces(2.91 × 108 t) is the highest,accounting for 62.29% of the total POCS.Humid zone of plateau has the highest POCS of 7.14 × 108 t,especially in the Zoigê Plateau,where the POCS is 6.30 × 108 t,accounting for 41.92% of the total POCS of China.The organic carbon density(OCD) of the peatlands in China mostly ranges from 80 kg/m3 to 140 kg/m3,and the range of the maximum is 270-360 kg/m3,and the minimum is less than 80 kg/m3.Divided by the Yanshan Mountain,Taihang Mountains and Hengduan Mountains,the peatland oganic carbon density(POCD) is lower on the northwestern side than that on the southeastern side.Jiangxi Province has the highest POCD due to the ancient buried peatlands.The OCD of the bare peatlands is mostly in the range of 60-150 kg/m3,and that of the buried peatlands is more than 100 kg/m3.In the bare peatlands,the OCD generally increases from the surface layer to the below surface layer,and then decreases with the depth.Although the peatlands area in China is small,the OCS per unit area is far higher than the other soil types,so peatlands protection can effectively mitigate climate change.LIU Zigang WANG Ming MA Xuehui 2012Chinese Geographical Science2012,22,6:7
4Mesenteric lymph reperfusion may exacerbate brain injury in a rat model of superior mesenteric artery occlusion shock显示文摘BACKGROUND:The intestinal lymphatic pathway and intestinal ischemia/reperfusion are mainly involved in mesenteric lymph duct ligation or drainage;moreover,intervention by reducing the lymph liquid reflux might relieve lung and other organ dysfunction induced by intestinal ischemia/reperfusion;however,research addressing mesenteric lymph reperfusion (MLR) and brain injury has not yet to be reported.OBJECTIVE:To observe the effect of MLR on brain tissue in a rat model of superior mesenteric artery occlusion (SMAO) shock,and to explore the molecular mechanism of MLR.DESIGN,TIME AND SETTING:A randomized,controlled,animal experiment at a neuro-pathophysiology level was performed at the Institute of Microcirculation,Hebei North University;Department of Pathophysiology,Basic Medical College;Department of Pathology,the First Hospital of Hebei North University between December 2007 and March 2009.MATERIALS:Adenosine triphosphate (ATP) standard was provided by the National Institute for the Control of Pharmaceutical and Biological Products;lactic acid (LA),superoxide dismutase (SOD),malonaldehyde (MDA),nitrogen monoxidum (NO),nitric oxide synthase (NOS),myeloperoxidase (MPO) and ATPase assay kits were provided by Nanjing Jiancheng Bioengineering Institute,China.METHODS:A total of 24 male Wistar rats were randomly divided into four groups.In the sham-surgery group (n=6),both the mesenteric lymph duct and the superior mesenteric artery were not blocked;in the MLR group (n=6),the mesenteric lymph duct was occluded for 1 hour followed by 2-hour reperfusion;in the SMAO group (n=6),the superior mesenteric artery was occluded for 1 hour followed by 2-hour reperfusion;in the MLR + SMAO group (n=6),both the mesenteric lymph duct and superior mesenteric artery were occluded for 1 hour followed by 2-hour reperfusion.MAIN OUTCOME MEASURES:Mean arterial blood pressure prior to and following ischemia/reperfusion;brain tissue morphology levels of LA,MDA,SOD,NO,NOS,MPO,ATPase and ATP following reperfusion.RESULTS:MLR did not cause changes in mean arterial blood pressure,brain tissue morphology,LA,MDA,NO,ATP,SOD,NOS,MPO and ATPase.However,SMAO caused a rapid decrease and gradual increase of mean arterial blood pressure.Neuronal necrosis,degeneration and swelling were observed in brain tissue.Contents of MDA,NO,LA and ATP as well as activities of NOS and MPO were significantly increased (P < 0.05),but activities of SOD and Na+-K+-ATPase were significantly decreased (P < 0.05).MLR aggravated neuronal damage in a rat model of SMAO shock.Following MLR,mean arterial blood pressure was significantly decreased (P < 0.05),contents of MDA and NO as well as activities of NOS and MPO were significantly increased (P < 0.05),but activities of Ca2+-ATPase,Mg2+-ATPase and Ca2+-Mg2+-ATPase as well as ATP content were significantly decreased (P < 0.05).CONCLUSION:MLR aggravates brain injury in a rat model of SMAO shock,which correlates with oxygen-derived free radical injury,NO synthesis and release,sequestration of neutrophilic granulocytes,decreasing activity of cell membrane pumps and energy metabolism dysfunction.Pathogenesis of the intestinal lymphatic pathway should be thoroughly investigated to prevent ischemia/reperfusion injury.Zigang Zhao Chunyu Niu Aimin Shang Jiaming Tian Rui Han Chunhui Zhang Yuping Zhang Jing Zhang 2010Neural Regeneration Research2010,5,9:7
5Modified hyaluronic acid hydrogels with chemical groups that facilitate adhesion to host tissues enhance cartilage regeneration显示文摘Stable integration of hydrogel implants with host tissues is of critical importance to cartilage tissue engineering.Designing and fabricating hydrogels with high adhesive strength,stability and regeneration potential are major challenges to be overcome.This study fabricated injectable adhesive hyaluronic acid(HA)hydrogel modified by aldehyde groups and methacrylate(AHAMA)on the polysaccharide backbone with multiple anchoring mechanisms(amide bond through the dynamic Schiff base reaction,hydrogen bond and physical interpenetration).AHAMA hydrogel exhibited significantly improved durability and stability within a humid environment(at least 7 days),together with higher adhesive strength(43 KPa to skin and 52 KPa to glass),as compared to commercial fibrin glue(nearly 10 KPa)and HAMA hydrogel(nearly 20 KPa).The results showed that AHAMA hydrogel was biocompatible and could be easily and rapidly prepared in situ.In vitro cell culture experiments showed that AHAMA hydrogel could enhance proliferation(1.2-folds after 3 days)and migration(1.5-folds after 12 h)of bone marrow stem cells(BMSCs),as compared to cells cultured in a culture dish.Furthermore,in a rat osteochondral defect model,implanted AHAMA hydrogel significantly promoted integration between neo-cartilage and host tissues,and significantly improved cartilage regeneration(modified O’Driscoll histological scores of 16.0±4.1 and 18.3±4.6 after 4 and 12-weeks of post-implantation in AHAMA groups respectively,12.0±2.7 and 12.2±2.8 respectively in HAMA groups,9.8±2.4 and 11.5±2.1 respectively in untreated groups).Hence,AHAMA hydrogel is a promising adhesive biomaterial for clinical cartilage regeneration and other biomedical applications.Jiaqing Chen Jiabei Yang Li Wang Xuewei Zhang Boon Chin Heng Dong-An Wang Zigang Ge 2021Bioactive Materials2021,6,6:6
6Heterogeneity of aberrant immunoglobulin expression in cancer cells显示文摘Accumulating evidence has shown that immunoglobulin(Ig)is‘unexpectedly’expressed by epithelial cancer cells and that it can promote tumor growth.The main purpose of this study was to explore the components of the cancerous Ig and its possible function.The presence of cancerous Ig in the Golgi apparatus was confirmed by immunofluorescence,indirectly suggesting that the cancerous Ig was processed and packaged in cancer cells.Western blot analysis and ELISA results indicated that cancer cells produced membrane Ig and secreted Ig into the supernatant fraction.The cancerous Ig consists of an a heavy chain and a k light chain.Finally,by analyzing the Ig components pulled down by protein A beads,the cancerous Ig was found to be structurally distinct from normal Ig.The cancerous Ig was truncated or aberrant.Although the underlying mechanism that causes the abnormalities has not been determined,our current discoveries strengthen our previous findings and promise fruitful future explorations.Duosha Hu Zhi Duan Ming Li Yiqun Jiang Haidan Liu Hui Zheng Lili Li Ann M Bode Zigang Dong Ya Cao 2011Cellular & Molecular Immunology2011,8,6:5
7A novel inhibitor of N^(6)-methyladenosine demethylase FTO induces m RNA methylation and shows anti-cancer activities显示文摘N^(6)-methyladenosine(m^(6)A)modification is critical for m RNA splicing,nuclear export,stability and translation.Fat mass and obesity-associated protein(FTO),the first identified m^(6)A demethylase,is critical for cancer progression.Herein,we developed small-molecule inhibitors of FTO by virtual screening,structural optimization,and bioassay.As a result,two FTO inhibitors namely 18077 and 18097 were identified,which can selectively inhibit demethylase activity of FTO.Specifically,18097 bound to the active site of FTO and then inhibited cell cycle process and migration of cancer cells.In addition,18097 reprogrammed the epi-transcriptome of breast cancer cells,particularly for genes related to P53 pathway.18097 increased the abundance of m^(6)A modification of suppressor of cytokine signaling1(SOCS1)m RNA,which recruited IGF2 BP1 to increase m RNA stability of SOCS1 and subsequently activated the P53 signaling pathway.Further,18097 suppressed cellular lipogenesis via downregulation of peroxisome proliferator-activated receptor gamma(PPARγ),CCAAT/enhancer-binding protein alpha(C/EBPa),and C/EBPβ.Animal studies confirmed that 18097 can significantly suppress in vivo growth and lung colonization of breast cancer cells.Collectively,we identified that FTO can work as a potential drug target and the small-molecule inhibitor 18097 can serve as a potential agent against breast cancer.Guoyou Xie Xu-Nian Wu Yuyi Ling Yalan Rui Deyan Wu Jiawang Zhou Jiexin Li Shuibin Lin Qin Peng Zigang Li Hongsheng Wang Hai-Bin Luo 2022Acta Pharmaceutica Sinica B2022,12,2:4
8Dramatic variations in the Earth's main magnetic field during the 20th century显示文摘Analysis of the International Geomagnetic Reference Field (IGRF) 1900-2000 showsthat the Earth’s main magnetic field has changed dramatically during the 20th century: its dipole moment has decreased by 6.5% since 1900, the strengths of its quadrupole and octupole have increased by 95% and 74%, respectively, four major planetary-scale magnetic anomalies on the Earth’s surface have enhanced by 21%-56%, and the magnetic center has shifted 200 km towards the Pacific Ocean. These time-variation features are similar to the behavior before a geomagnetic polarity reversal.Wenyao Xu Zigang Wei Shizhuang Ma 2000Chinese Science Bulletin2000,45,21:4
9Promotion of cell proliferation and inhibition of ADCC by cancerous immunoglobulin expressed in cancer cell lines显示文摘To explore the significance of cancerous immunoglobulin(Ig)in cancer cell growth,HeLa cervical cancer cells were stably transfected with small interfering RNA(siRNA)that specifically,efficiently and consistently silences the expression of heavy chain genes of all immunoglobulin isotypes.This stable cell line was used to examine cell viability,colony formation and tumor growth in athymic nude mice.The results of these experiments indicated that siRNA-mediated knockdown of cancerous Ig inhibited cell growth in vitro and suppressed tumor cell growth in immune-deficient nude mice in vivo.Similarly,this siRNA also inhibited the growth of MGC gastric cancer cells and MCF-7 breast cancer cells.Furthermore,the presence of cancerous Ig specifically reduced antibody-dependent cell-mediated cytotoxicity(ADCC)induced by an anti-human epithelial growth factor receptor(EGFR)antibody in a dose-dependent manner,suggesting that the cancerous Ig-Fc receptor interaction inhibits natural killer cell(or NK cell)effector function.The prevalent expression of Ig in human carcinomas and its capacity to promote growth and inhibit immunity might have important implications in growth regulation and targeted therapy for human cancers.Ming Li Hui Zheng Zhi Duan Haidan Liu Duosha Hu Ann Bode Zigang Dong Ya Cao 2012Cellular & Molecular Immunology2012,9,1:4
10Activation of the Ig la I promoter by the transcription factor Ets-1 triggers Ig lal-Cal germline transcription in epithelial cancer cells显示文摘Zhi Duan Hui Zheng San Xu Yiqun Jiang Haidan Liu Ming Li Duosha Hu Wei Li Ann M. Bode Zigang Dong Ya Cao 2014Cellular & Molecular Immunology2014,11,2:3
11Recent advances in high-loading catalysts for low-temperature fuel cells: From nanoparticle to single atom显示文摘Low-temperature fuel cells(LTFCs)are considered to be one of the most promising power sources for widespread application in sustainable and renew-able energy conversion technologies.Although remarkable advances have been made in the mass activity of catalysts,mass transport impedance needs to be urgently addressed at a well-designed membrane electrode assembly(MEA)scale.Increasing the loading of electrocatalysts is conducive to prepare thinner and more efficient MEAs owing to the resulting enhanced reactant permeability,better proton diffusion,and lower electrical resistance.Herein,recent progress in high-loading(≥40 wt.%)Pt nanoparticle catalysts(NPCs)and high-loading(≥2 wt.%)single-atom catalysts(SACs)for LTFC applications are reviewed.A summary of various synthetic approaches and support materials for high-loading Pt NPCs and SACs is systematically presented.The influences of high surface area and appropriate surface functionalization for Pt NPCs,as well as coordina-tion environment,spatial confinement effect,and strong metal-support interac-tions(SMSI)for SACs are highlighted.Additionally,this review presents some ideas regarding challenges and future opportunities of high-loading catalysts in the application of LTFCs.Lixiao Shen Miao Ma Fengdi Tu Zigang Zhao Yunfei Xia Kokswee Goh Lei Zhao Zhenbo Wang Guangjie Shao 2021SusMat2021,1,4:3
12Two-Phased Method for Detecting Evasive Network Attack Channels显示文摘With the rapid developments of information technology,various industries become much more dependent on networks.Driven by economic interests and the game between countries reflected by growing cyberspace confrontations,evasive network attacks on information infrastructures with high-tech,high concealment and longterm sustainability become severe threats to national security.In this paper,we propose a novel two-phased method for the detection of evasive network attacks which exploit or pretend to be common legal encryption services in order to escape security inspection.Malicious communications which camouflage themselves as legal encryption application are identified in the SSL'session structure verification phase firstly,and then by serverside X.509 certificate based anomaly detection,suspicious attack behaviors are further distinguished effectively.Experiment results show that our method is very useful for detecting the network activities of certain unknown threats or new malwares.Besides,the proposed method can be applied to other similar services easily.CAO Zigang XIONG Gang ZHAO Yong GUO Li FANG Binxing 2014China Communications2014,11,8:2
13Computer Simulation of Thermal-Mechanical Processing显示文摘Supported by the high-speed SGI engineering workstation and the general MARCTM software, a system is developed to simulate the hot deformation process and the cooling process after deformation in the forging of Cr12 steel on the basis of elastic-plastic FEM techniques with coupled thermal-mechanical-microstructural alteration. In this system, a mathematical model, obtained by plentiful physical simulation experiments on Gleeble 1500 thermomechanical simulator, is introduced to describe the changes in microstructure and properties of steels. This system is proved to be reliable to simulate the thermal field and stress field as well as the microstructure of Cr12 steel during the forging process. It can also be used to optimize and control the forging process.Ruiheng Wu, Zigang Li, Hongbing Chang, T. Y. Hsu (Zuyao Xu) and Xueyu Ruan 1.Department of Plasticity Technology, Shanghai Jiao Tong University, Shanghai 200030, China 2.Department of Metallurgical Engineering, Shanghai Technical College of Metallurgy, 2000Journal of Shanghai Jiaotong university(Science)2000,5,1:2
14Differential rotation of geomagnetic field显示文摘The latitudinal dependence of the westward drift in the main geomagnetic field is examined by using the correlation analysis of moving random pattern. The study reveals the characteristics in the differential rotation of the main field. The results show that the global geomagnetic field drifts westward with an average speed of 0.18/a during 1900—2000. The westward drift rate is not symmetrical with re-spect to the equator. The maximum westward drift rate, 0.31/a, occurs at the latitude j = -15? forming a Rapid Westward Drift Belt (RDB) around this latitude. Going northward and southward from this belt, the drift rate de-creases and reaches the minimum (0.12/a) at j = 50?and the minimum (0.14/a) at j = -56? forming a Northern Hemi-sphere Slow Westward Drift Belt (N-SDB) and a Southern Hemisphere Slow Westward Drift Belt (S-SDB). Three phases can be detected in the evolution of the westward drift. In the first phase (1900—1940), the RDB dominates the global drift pattern. The westward drifts in this belt are much faster than those in other areas. In the second phase (1940—1960), the drift rates in the RDB are less than those in the first phase, while the drifts in the N-SDB and S-SDB are relatively large. In this phase, the differential rotation becomes less obvious. In the third phase (1960—2000), the westward drift in the RDB increases again and the differen-tial rotation gradually becomes apparent.WEI Zigang & XU Wenyao Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100029, China Correspondence should be addressed to Wei Zigang (e-mail: magstorm @mail.igcas.ac.cn) 2003Chinese Science Bulletin2003,48,24:2
15数值模拟火星古发电机湮灭前磁场特征显示文摘火星地壳磁场观测结果表明,该行星目前已经丧失了由其内部发电机作用产生的行星尺度的本征磁场,只在其表面残留不对称分布的剩余磁场.通过MoSST行星液核发电机动力学模式的前期模拟工作发现,在火星古发电机'死亡'之前,很可能处于亚临界发电机状态(此时维持发电机所需能量小于激发发电机所需能量).为了解火星发电机湮灭前的磁场特征,本文选取该亚临界发电机区间内,Rayleigh数(表征驱动发电机能量的无量纲参数)=2480时的火星表面磁场数据,采用自然经验正交函数对其分析,结果表明:在火星古发电机湮灭过程中的亚临界发电机状态下,火星表面磁场形态是非轴向偶极子占优的;并频繁出现磁极倒转和漂移现象,该过程中其磁偶极距随时间呈非单调形态的衰减.王天媛 ZiGang WEI WeiYuan JIANG WeiJia KUANG 马石庄 2013中国科学:地球科学2013,43,1:2
16Postconditioning of stellate ganglion block improves intestinal barrier function by inhibiting autophagy in conscious rats following hemorrhagic shock and resuscitation显示文摘To the Editor:Hemorrhagic shock is a critical pathological process characterized by microcirculation dysfunction and hypoperfusion,with severe consequences of cell damage and organ dysfunction.Intestinal barrier dysfunction is a critical link of distant organ injury caused by hemorrhagic shock.Prophylactic treatment with stellate ganglion block(SGB)significantly reduces hemorrhagic shock-induced intestinal barrier damage.Zhonghua Li Wendi Wang Qi Sun Tingjiao Suo Jiayi Zhai Huibo Du Zhen’ao Zhao Fulong Li Chunyu Niu Zigang Zhao 2022Chinese Medical Journal2022,,8:2
17Influence of mesenteric lymph reperfusion on neurotransmitter expression in brain tissue of a superior mesenteric artery occlusion shock rat model显示文摘BACKGROUND: Previous studies have shown that mesenteric lymph reperfusion (MLR) exacerbates brain injury in a rat model of superior mesenteric artery occlusion (SMAO) shock. However, little is known about the influence of MLR on neurotransmitter expression in brain tissue. OBJECTIVE: To observe the effect of MLR on brain tissue injury by measuring monoamine and cholinergic neurotransmitter levels. DESIGN, TIME AND SETTING: A randomized, controlled, animal experiment was performed at the Institute of Microcirculation, Hebei North University, China; Research Room of Microcirculation and Laboratory of Biochemistry, Department of Pathophysiology, Basic Medical College, Hebei North University between December 2007 and March 2009. MATERIALS: Choline acetyltransferase (ChAT) and acetylcholine esterase (AChE) kits were provided by Nanjing Jiancheng Bioengineering Institute, China; dopamine (DA) and noradrenalin (NE) standards were provided by the National Institute for the Control of Pharmaceutical and Biological Products; HP1100 chromatograph of liquid was provided by Agilent, USA. METHODS: A total of 24 male, Wistar rats were randomly assigned to 4 groups: sham-surgery, MLR, SMAO, and MLR + SMAO groups, with 6 rats in each group. In the MLR or SMAO groups, the mesenteric lymph duct or superior mesenteric artery was blocked for 1 hour. In the MLR + SMAO group, the mesenteric lymph duct and superior mesenteric artery were occluded for 1 hour, followed by 2-hour reperfusion. ChAT and AChE levels were measured using the synthesized and hydrolyzed acetylcholine method, respectively. Liquid chromatography was employed to quantitatively analyze DA and NE levels, using relative retention time and the external standard method. MAIN OUTCOME MEASURES: ChAT, AChE, DA, and NE levels. RESULTS: AChE levels were significantly increased, but ChAT levels were significantly decreased in the MLR and MLR + SMAO groups following 2-hour reperfusion (P < 0.01). However, AChE activity in the MLR + SMAO group was greater than in the MLR group (P < 0.05). DA and NE levels were significantly decreased in the SMAO and MLR + SMAO groups (P < 0.01), while DA levels in the MLR + SMAO group were less than in the SMAO group (P < 0.05). CONCLUSION: MLR exacerbated brain injury in a rat model of SMAO shock, which correlated with the intestinal lymphatic pathway. MLR decreased DA levels, but increased AChE activity, in a rat model of SMAO shock.Chunyu Niu Zigang Zhao Aimin Shang Jiaming Tian Chunhui Zhang Rui Han Yuping Zhang Jing Zhang 2010Neural Regeneration Research2010,5,11:2
18Impact of technological innovation on growth trajectory of enterprise's technological capability:A theoretical analysis显示文摘Zhou Yonghong Zhang Zigang Liu Kaijin 2005Singapore Management Review2005,27,2:1
19Biological effect and molecular mechanism study of biomaterials based on proteomic research显示文摘Along with the role transformation of biomaterials from bioinert substitute to regenerative inducer, the biological effect and mechanism of material-organism interaction become more important. Since most of animal tests and cellular experiments stay on the phenomenon description instead of mechanism interpretation, the development of proteomics technologies provides a golden opportunity to uncover the molecular interaction mechanism between biomaterial-organism on whole scale. This review summarizes current application of proteomics in biological effect and mechanism study of biomaterials, and discusses the development and challenges for future studies.Zhen Zhen Yufeng Zheng Zigang Ge Chen Lai Tingfei Xi 2017Journal of Materials Science & Technology2017,33,7:1
20Multimerization and fusion expression of bovine lactoferricin derivative LfcinB 15-W4, 10 in Escherichia coli显示文摘TIAN Zigang TENG Da YANG Yalin 2007Appl Microbiol Biotechnol2007,75,1:1
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