维普中文期刊产品整合服务
19篇 您的检索式:作者名="Guoyin Kai"
    题名 作者 年代 出处 被引量
1The transcription factor OpWRKY2 positively regulates the biosynthesis of the anticancer drug camptothecin in Ophiorrhiza pumila显示文摘The limited bioavailability of plant-derived natural products with anticancer activity poses major challenges to the pharmaceutical industry.An example of this is camptothecin,a monoterpene indole alkaloid with potent anticancer activity that is extracted at very low concentrations from woody plants.Recently,camptothecin biosynthesis has been shown to become biotechnologically amenable in hairy-root systems of the natural producer Ophiorrhiza pumila.Here,time-course expression and metabolite analyses were performed to identify novel transcriptional regulators of camptothecin biosynthesis in O.pumila.It is shown here that camptothecin production increased over cultivation time and that the expression pattern of the WRKY transcription factor encoding gene OpWRKY2 is closely correlated with camptothecin accumulation.Overexpression of OpWRKY2 led to a more than three-fold increase in camptothecin levels.Accordingly,silencing of OpWRKY2 correlated with decreased camptothecin levels in the plant.Further detailed molecular characterization by electrophoretic mobility shift,yeast one-hybrid and dual-luciferase assays showed that OpWRKY2 directly binds and activates the central camptothecin pathway gene OpTDC.Taken together,the results of this study demonstrate that OpWRKY2 acts as a direct positive regulator of camptothecin biosynthesis.As such,a feasible strategy for the over-accumulation of camptothecin in a biotechnologically amenable system is presented.Xiaolong Hao Chenhong Xie Qingyan Ruan Xichen Zhang Chao Wu Bing Han Jun Qian Wei Zhou Hans-Wilhelm Nutzmann Guoyin Kai 2021Horticulture Research2021,8,1:7
2Nanotechnologies in Food Science:Applications,Recent Trends,and Future Perspectives显示文摘Nanotechnology is a key advanced technology enabling contribution,development,and sustainable impact on food,medicine,and agriculture sectors.Nanomaterials have potential to lead qualitative and quantitative production of healthier,safer,and high-quality functional foods which are perishable or semi-perishable in nature.Nanotechnologies are superior than conventional food processing technologies with increased shelf life of food products,preventing contamination,and production of enhanced food quality.This comprehensive review on nanotechnologies for functional food development describes the current trends and future perspectives of advanced nanomaterials in food sector considering processing,packaging,security,and storage.Applications of nanotechnologies enhance the food bioavailability,taste,texture,and consistency,achieved through modification of particle size,possible cluster formation,and surface charge of food nanomaterials.In addition,the nanodelivery-mediated nutraceuticals,synergistic action of nanomaterials in food protection,and the application of nanosensors in smart food packaging for monitoring the quality of the stored foods and the common methods employed for assessing the impact of nanomaterials in biological systems are also discussed.Shivraj Hariram Nile Venkidasamy Baskar Dhivya Selvaraj Arti Nile Jianbo Xiao Guoyin Kai 2020Nano-Micro Letters2020,12,3:6
3SmMYB2 promotes salvianolic acid biosynthesis in the medicinal herb Salvia miltiorrhiza显示文摘MYB transcription factors play vital roles in plant growth and metabolism.The phytohormone methyl jasmonate(MeJA)promotes phenolic acid accumulation in the medicinal herb Salvia miltiorrhiza,but the regulatory mechanism is poorly understood.Here,we identified the MeJA-responsive R2R3-MYB transcription factor gene 5mMYB2 from a transcriptome library produced from MeJAtreated S.mi'/horr/ifza hairy roots.Sm/VIYB2 expression was tightly correlated with the expression of key salvianolic acid biosynthetic genes including CYP^8Ai^.5mMYB2 was highly expressed in the periderm of S.miltiorrhiza and SmMYB2 localized to the nucleus.Overexpressing Sml\AYB2 in S.miltiorrhiza hairy roots significantly increased the levels of salvianolic acids(including rosmarinic acid and salvianolic acid B)by upregulating salvianolic acid biosynthetic genes such as CYP98A14.SmMYB2 binds to the MYB-binding motifs in the promoter of CYP98A14,as confirmed by a dual-luciferase assay and electrophoretic mobility shift assays.Anthocyanin contents were significantly higher in Sm/ViyB2-overexpressing hairy root lines than the control,primarily due to the increased expression of CHI,DFR,and ANS.These findings reveal the novel regulatory role of SmMYB2 in MeJA-mediated phenolic acid biosynthesis,providing a useful target gene for metabolic engineering and shedding light on the salvianolic acid regulatory network.Changping Deng Yao Wang Fenfen Huang Sunjie Lu Limei Zhao Xingyuan Ma Guoyin Kai 2020Journal of Integrative Plant Biology2020,62,11:6
4The basic helix-loop-helix transcription factor TabHLH1 increases chlorogenic acid and luteolin biosynthesis in Taraxacum antungense Kitag显示文摘Polyphenols are the main active components of the anti-inflammatory compounds in dandelion,and chlorogenic acid(CGA)is one of the primary polyphenols.However,the molecular mechanism underlying the transcriptional regulation of CGA biosynthesis remains unclear.Hydroxycinnamoyl-CoA:quinate hydroxycinnamoyl transferase(HQT2)is the last rate-limiting enzyme in chlorogenic acid biosynthesis in Taraxacum antungense.Therefore,using the TaHQT2 gene promoter as a probe,a yeast one-hybrid library was performed,and a basic helix-loop-helix(bHLH)transcription factor,TabHLH1,was identified that shared substantial homology with Gynura bicolor DC bHLH1.The TabHLH1 transcript was highly induced by salt stress,and the TabHLH1 protein was localized in the nucleus.CGA and luteolin concentrations in TabHLH1-overexpression transgenic lines were significantly higher than those in the wild type,while CGA and luteolin concentrations in TabHLH1-RNA interference(RNAi)transgenic lines were significantly lower.Quantitative real-time polymerase chain reaction demonstrated that overexpression and RNAi of TabHLH1 in T.antungense significantly affected CGA and luteolin concentrations by upregulating or downregulating CGA and luteolin biosynthesis pathway genes,especially TaHQT2,4-coumarate-CoA ligase(Ta4CL),chalcone isomerase(TaCHI),and flavonoid-3′-hydroxylase(TaF3′H).Dual-luciferase,yeast one-hybrid,and electrophoretic mobility shift assays indicated that TabHLH1 directly bound to the bHLH-binding motifs of proTaHQT2 and proTa4CL.This study suggests that TabHLH1 participates in the regulatory network of CGA and luteolin biosynthesis in T.antungense and might be useful for metabolic engineering to promote plant polyphenol biosynthesis.Qun Liu Li Li Haitao Cheng Lixiang Yao Jie Wu Hui Huang Wei Ning Guoyin Kai 2021Horticulture Research2021,8,1:4
5The methyl jasmonate-responsive transcription factor SmMYB1 promotes phenolic acid biosynthesis in Salvia miltiorrhiza显示文摘Water-soluble phenolic acids are major bioactive compounds in the medicinal plant species Salvia miltiorrhiza.Phenolic acid biosynthesis is induced by methyl jasmonate(MeJA)in this important Chinese herb.Here,we investigated the mechanism underlying this induction by analyzing a transcriptome library of S.miltiorrhiza in response to MeJA.Global transcriptome analysis identified the MeJA-responsive R2R3-MYB transcription factor-encoding gene SmMYB1.Overexpressing SmMYB1 significantly promoted phenolic acid accumulation and upregulated the expression of genes encoding key enzymes in the phenolic acid biosynthesis pathway,including cytochrome P450-dependent monooxygenase(CYP98A14).Dual-luciferase(dual-LUC)assays and/or an electrophoretic mobility shift assays(EMSAs)indicated that SmMYB1 activated the expression of CYP98A14,as well as the expression of genes encoding anthocyanin biosynthesis pathway enzymes,including chalcone isomerase(CHI)and anthocyanidin synthase(ANS).In addition,SmMYB1 was shown to interact with SmMYC2 to additively promote CYP98A14 expression compared to the action of SmMYB1 alone.Taken together,these results demonstrate that SmMYB1 is an activator that improves the accumulation of phenolic acids and anthocyanins in S.miltiorrhiza.These findings lay the foundation for in-depth studies of the molecular mechanism underlying MeJA-mediated phenolic acid biosynthesis and for the metabolic engineering of bioactive ingredients in S.miltiorrhiza.Wei Zhou Min Shi Changping Deng Sunjie Lu Fenfen Huang Yao Wang Guoyin Kai 2021Horticulture Research2021,8,1:3
6Integrated dynamic wet spinning of core-sheath hydrogel fibers for optical-to-brain/tissue communications显示文摘Hydrogel optical light-guides have received substantial interest for applications such as deep-tissue biosensors,optogenetic stimulation and photomedicine due to their biocompatibility,(micro)structure control and tissue-like Young’s modulus.However,despite recent developments,large-scale fabrication with a continuous synthetic methodology,which could produce core-sheath hydrogel fibers with the desired optical and mechanical properties suitable for deep-tissue applications,has yet to be achieved.In this study,we report a versatile concept of integrated light-triggered dynamic wet spinning capable of continuously producing core-sheath hydrogel optical fibers with tunable fiber diameters,and mechanical and optical propagation properties.Furthermore,this concept also exhibited versatility for various kinds of core-sheath functional fibers.The wet spinning synthetic procedure and fabrication process were optimized with the rational design of the core/sheath material interface compatibility[core=poly(ethylene glycol diacrylate-co-acrylamide);sheath=Ca-alginate],optical transparency,refractive index and spinning solution viscosity.The resulting hydrogel optical fibers exhibited desirable low optical attenuation(0.18±0.01 d B cm^(-1) with 650 nm laser light),excellent biocompatibility and tissue-like Young’s modulus(<2.60 MPa).The optical waveguide hydrogel fibers were successfully employed for deep-tissue cancer therapy and brain optogenetic stimulation,confirming that they could serve as an efficient versatile tool for diverse deep-tissue therapy and brain optogenetic applications.Guoyin Chen Gang Wang Xinrong Tan Kai Hou Qingshuo Meng Peng Zhao Shun Wang Jiayi Zhang Zhan Zhou Tao Chen Yanhua Cheng D Benjamin S.Hsiao Elsa Reichmanis Meifang Zhu 2021National Science Review2021,8,9:2
7Tough,conductive hydrogels with double-network based on hydrophilic polymer assistant well-dispersed carbon nanotube for innovative force sensor显示文摘In recent years,conductive hydrogels have become a promising candidate for application in fields such as tissue engineering and flexible electronic devices because of their conductivity,soft and wet nature.However,the preparation of tough and uniformly conductive hydrogels remains challenging because conductive nanofillers tend to aggregate during hydrogel formation.Herein,a hydrophilic polymer assistant dispersion strategy is proposed to fabricate a tough,conductive composite hydrogel with doublenetwork based on well-dispersed carbon nanotubes(CNTs).In particular,A@T_(2.0)/polyacrylamide(PAM)hydrogels showed a tensile strength of 332.9 kPa,elongation of 584.6%,Young’s modulus of 91.5 kPa,and conductivity of 2.765 S m^(-1),and a demonstration was performed to show the strain sensing for health monitoring and handwriting.Results showed that the fabricated conductive hydrogels offer promising and broad insights in the field of wearable sensors for health monitoring,innovative electronics,and human-machine interactions.CHEN GuoYin GUO Ying HSIAO S.Benjamin HOU Kai ZHU MeiFang 2022Science China(Technological Sciences)2022,65,5:1
8Molecular cloning, characterization and expression analysis of a new gene encoding 3-hydroxy-3-methylglutaryl coenzyme A reductase from Salvia miltiorrhiza显示文摘Pan Liao Wei Zhou Lin Zhang Jing Wang Xiangming Yan Yan Zhang Ran Zhang Li Li Genyu Zhou Guoyin Kai 2009Acta Physiologiae Plantarum2009,,3:1
9Metabolic engineering tanshinone biosynthetic pathway in Salvia miltiorrhiza hairy root cultures显示文摘Guoyin Kai Hui Xu Congcong Zhou Pan Liao Jianbo Xiao Xiuqin Luo Lijia You Lin Zhang 2011Metabolic Engineering2011,,3:1
10Marker-free:a novel tendency of transgenic plants显示文摘Kai Guoyin Zhang Lei Zhang Hongyu 0,,08:1
11The Complete Chloroplast Genome Sequences of Anisodus Acutangulus and a Comparison with Other Solanaceae Species显示文摘Background:Anisodus acutangulus(Solanaceae),an important folk medicinal herb in China,produces up to 1.2%alkaloids more than that in other Solanaceae plants such as Hyoscyamus niger,while its evolutionary position in Hyoscyameae is not very clear.Objective:To explain the evolutionary position of A.acutangulus in the Solanaceae via complete chloroplast genome(cp)sequence.Methods:Complete chloroplast genome of A.acutangulus was obtained and characterized using the Illumina PE150 pair-end sequencing data.Structure of the genome,codon usage,nucleotide variability(Pi)value,distribution of repeats and SSRs between A.acutangulus and other seven Solanaceae species were analyzed.Previously published 22 Solanaceae cp genomes were used to construct phylogenetic tree.Results:The complete cp genome of A.acutangulus is 156082 bp in length,showed the typical quadripartite structure.The complete cp genome of A.acutangulus was highly conserved.A total of 112 unique genes were found in cp genome of A.acutangulus,among which 17 were duplicated.Further,we found eight hotspot regions for genome divergence could be explored as new DNA barcodes for the identification of the Solanaceae species.Phylogenetic analysis showed that A.acutangulus formed a clade with H.niger.Conclusion:A.acutangulus belongs to Hyoscyameae subfamily and the complete cp genome provides valuable information for phylogenetic reconstruction or comparative genomics of A.acutangulus.Qikai Huang Zhixiang Liu Can Wang Mingyi Jing Junqiu Liu Wei Zhou Guoyin Kai 2021Clinical Complementary Medicine and Pharmacology2021,1,1:0
12Screening of the Optimal Potassium Fertilization Rate for Maximizing Bulb Yield and Potassium Nutrient Evaluation in Fritillaria thunbergii Miq.显示文摘Background:The dry bulb of Fritillaria thunbergii Miq.is a traditional Chinese medicine,and is the leading product of the geo-authentic crude drugs‘Zhebawei’in Zhejiang Province.Fritillaria thunbergii requires more potassium(K)than nitrogen and phosphorus,while the response of F.thunbergii to K has rarely been studied.Objective and Methods:To evaluate the K nutritional status of F.thunbergii,a 2-year field experiment was conducted under six K application rates(0,40,80,120,160,and 200 kg K_(2)O ha−1)with two F.thunbergii cultivars(ZB1,narrow-leaf;ZB2,broad-leaf).Results:The bulbus Fritillariae Thunbergii(BFT)yield increased to a plateau with more than~120 kg K_(2)O ha-1.The BFT quality met the standard of Pharmacopoeia of P.R.China with more than 40.0 kg K_(2)O ha^(-1).Leaf K concentration was significantly correlated with BFT yield,and was more sensitive to K application rate as compared to those of stems and flowers.Potassium application extended the duration of rapid leaf-biomass accumulation and increased the accumulation rate.Two cultivars had similar response patterns to K application,but ZB2 had higher K partial productivity,leaf-biomass,and leaf K concentration than ZB1.Conclusion:108.4-128.0 kg K_(2)O ha^(-1) was the optimal K application range for BFT yield.The potassium nutrition index(KNI)model established based on leaf K concentration has biological significance and can be used for dynamic diagnosis of K nutritional status of F.thunbergii with both accuracy and simplicity.Leran Wang Jingyi Sun Guoyin Kai Ning Sui 2021Clinical Complementary Medicine and Pharmacology2021,1,1:0
13Jasmonic acid regulates the biosynthesis of medicinal metabolites via the JAZ9-MYB76 complex in Salvia miltiorrhiza显示文摘Jasmonic acid(JA)signaling pathway plays an important role in tanshinone and phenolic acid biosynthesis in Salvia miltiorrhiza.However,the specific regulatory mechanism remains largely unclear.Previous work showed that a JASMONATE ZIM-domain(JAZ)protein,SmJAZ9,acted as a repressor of tanshinone production in S.miltiorrhiza.In this study,we revealed that SmJAZ9 reduced both phenolic acid accumulation and related biosynthetic gene expression,confirming that SmJAZ9 also negatively affected phenolic acid biosynthesis.Then,we identified a novel MYB transcription factor,SmMYB76,which interacted with SmJAZ9.SmMYB76 repressed phenolic acid biosynthesis by directly downregulating SmPAL1,Sm4CL2,and SmRAS1.Further investigation demonstrated that JA mediated phenolic acids biosynthesis via SmJAZ9-SmMYB76 complex.Taken together,these findings state the molecular mechanism that SmJAZ9-SmMYB76 regulated phenolic acid biosynthesis at the transcriptional and protein levels,which provided new insights into JA signaling pathway regulating plant metabolism.Shucan Liu Xiankui Gao Min Shi Meihong Sun Kunlun Li Yan Cai Chengan Chen Can Wang Itay Maoz Xinhong Guo Guoyin Kai 2023Horticulture Research2023,10,3:0
14OpNAC1 transcription factor regulates the biosynthesis of the anticancer drug camptothecin by targeting loganic acid O-methyltransferase in Ophiorrhiza pumila显示文摘Camptothecin(CPT) is an anticancer pentacyclic quinoline alkaloid widely used to treat cancer patients worldwide. However, the biosynthetic pathway and transcriptional regulation of camptothecin are largely unknown. Ophiorrhiza pumila, the herbaceous plant from the Rubiaceae family, has emerged as a model plant for studying camptothecin biosynthesis and regulation. In this study, a high-quality reference genome of O. pumila with estimated size of ~456.90Mb was reported, and the accumulation level of camptothecin in roots was higher than that in stems and leaves. Based on its spatial distribution in the plant, we examined gene functions and expression by combining genomics with transcriptomic analysis.Two loganic acid O-methyltransferase(OpLAMTs)were identified in strictosidine-producing plant O.pumila, and enzyme catalysis assays showed that OpLAMT1 and not OpLAMT2 could convert loganic acid into loganin. Further knock-out of OpL AMT1expression led to the elimination of loganin and camptothecin accumulation in O. pumila hairy roots.Four key residues were identified in OpLAMT1 protein crucial for the catalytic activity of loganic acid to loganin. By co-expression network, we identified a NAC transcription factor, OpNAC1, as a candidate gene for regulating camptothecin biosynthesis.Transgenic hairy roots and biochemical assays demonstrated that OpNAC1 suppressed OpLAMT1 expression. Here, we reported on two camptothecin metabolic engineering strategies paving the road for industrial-scale production of camptothecin in CPT-producing plants.Xiaolong Hao Can Wang Wei Zhou Qingyan Ruan Chenhong Xie Yinkai Yang Chengyu Xiao Yan Cai Jingyi Wang Yao Wang Xuebin Zhang Itay Maoz Guoyin Kai 2023Journal of Integrative Plant Biology2023,65,1:0
15Temperature‑Gated Light‑Guiding Hydrogel Fiber for Thermoregulation During Optogenetic Neuromodulation显示文摘With the rise of optogenetic manipulation of neurons,the effects of optogenetic heating on temperature-sensitive physi-ological processes,and the damage to surrounding tissues have been neglected.This manuscript reports the fabrication of a highly temperature-sensitive semi-interpenetrating optical hydrogel fiber(TSOHF)using the integrated dynamic wet-spinning technique.TSOHF exhibits a structural tunable diameter,clear core/sheath structure,tunable temperature-sensitivity,excellent light propagation property(0.35 dB cm^(-1),650 nm laser light),and good biocompatibility(including tissue-like Young’s modulus,stable dimensional stability,and low cytotoxicity).Based on these properties,a potential application of optogenetic regulation of neural tissue(hypoglossal nerve),with controllable temperature using TSOHF was designed and performed.Further,this work provides new insight into molecular design and a practical approach to continually manufacture a temperature-sensitive hydrogel optical fiber for applications in intelligent photomedicine.Guoyin Chen Siming Xu Qiangqiang Zhou Yuejiao Zhang Yuhan Song Jing Mi Yuehua Liu Kai Hou Jie Pan 2023Advanced Fiber Materials2023,5,3:0
16Increased artemisinin production by promoting glandular secretory trichome formation and reconstructing the artemisinin biosynthetic pathway in Artemisia annua显示文摘Dear Editor,Artemisinin,which has potent antimalarial properties,is a sesquiterpene endoperoxide originally isolated from the traditional Chinese medicinal plant Artemisia annua.However,the artemisinin content in wild-type(WT)A.annua is low(1-10 mg/g dry weight),leading to its erratic supply and price fluctuations[1].Yongpeng Li Wei Qin Hang Liu Tiantian Chen Xin Yan Weizhi He Bowen Peng Jin Shao Xueqing Fu Ling Li Xiaolong Hao Guoyin Kai Kexuan Tang 2023Horticulture Research2023,10,5:0
17Recent Advances in Nano‑Enabled Seed Treatment Strategies for Sustainable Agriculture:Challenges,Risk Assessment,and Future Perspectives显示文摘Agro seeds are vulnerable to environmental stressors,adversely affecting seed vigor,crop growth,and crop productivity.Different agrochemical-based seed treatments enhance seed germination,but they can also cause damage to the environment;therefore,sustainable technologies such as nano-based agrochemicals are urgently needed.Nanoagrochemicals can reduce the dose-dependent toxicity of seed treatment,thereby improving seed viability and ensuring the controlled release of nanoagrochemical active ingredients However,the applications of nanoagrochemicals to plants in the field raise concerns about nanomaterial safety,exposure levels,and toxicological implications to the environment and human health.In the present comprehensive review,the development,scope,challenges,and risk assessments of nanoagrochemicals on seed treatment are discussed.Moreover,the implementation obstacles for nanoagrochemicals use in seed treatments,their commercialization potential,and the need for policy regulations to assess possible risks are also discussed.Based on our knowledge,this is the first time that we have presented legendary literature to readers in order to help them gain a deeper understanding of upcoming nanotechnologies that may enable the development of future generation seed treatment agrochemical formulations,their scope,and potential risks associated with seed treatment.Amruta Shelar Shivraj Hariram Nile Ajay Vikram Singh Dirk Rothenstein Joachim Bill Jianbo Xiao Manohar Chaskar Guoyin Kai Rajendra Patil 2023Nano-Micro Letters2023,15,4:0
18Molecular regulation of the key specialized metabolism pathways in medicinal plants显示文摘The basis of modern pharmacology is the human ability to exploit the production of specialized metabolites from medical plants,for example,terpenoids,alkaloids,and phenolic acids.However,in most cases,the availability of these valuable compounds is limited by cellular or organelle barriers or spatio-temporal accumulation patterns within different plant tissues.Transcription factors(TFs)regulate biosynthesis of these specialized metabolites by tightly controlling the expression of biosynthetic genes.Cutting-edge technologies and/or combining multiple strategies and approaches have been applied to elucidate the role of TFs.In this review,we focus on recent progress in the transcription regulation mechanism of representative high-value products and describe the transcriptional regulatory network,and future perspectives are discussed,which will help develop high-yield plant resources.Min Shi Siwei Zhang Zizhen Zheng Itay Maoz Lei Zhang Guoyin Kai 2024Journal of Integrative Plant Biology2024,66,3:0
19Homogeneous intercalated graphene/manganic oxide hybrid fiber electrode assembly by non-liquid-crystal spinning for wearable energy storage显示文摘Reduced graphene oxide(rGO)-based fibers with high electrochemical performance have recently showed great potential in the field of flexible energy storage devices.However,they still suffer from low capacitance due to the severe stacking of graphene sheets.Hybrids with nanofillers are an efficient way to improve the electrochemical performance of rGO fibers.Nevertheless,controlling the distribution of nanoparticles in the matrix is still an enormous challenge due to the strong attraction among these nanoparticles which results into agglomeration.Here,we continually prepared rGO hybrid fibers via nonliquid-crystal spinning,accompanied by chemical reduction.Manganic oxide(Mn OX)nanoparticles remained well-dispersed in GO dispersion during the continuous spinning of rGO/Mn OXhybrid fibers.Results showed that rGO/Mn OX-20 hybrid fibers possessed the best capacitance of 123.3 F g^(-1)(87.6 F cm^(-3))and 97.1 F g^(-1)(68.9 F cm^(-3))at the current density of 0.2 A g^(-1),and 0.5 A g^(-1)respectively.Furthermore,a fiber-shaped all-solid-state supercapacitor assembly from the optimized hybrid fibers demonstrated an energy density of 2.67 m Wh cm^(-3)(3.76 m Wh g^(-1))at the power density of 24.76 m Wh cm^(-3)(34.89 m Wh g^(-1)).These fiber-based devices show great potential for application in the fields of wearable electronics and energy storage devices.Guoyin Chen Weiming Wang Xin Lu Innocent Tendo Mugaanire Yang Zhang Yulu Ai Kai Hou Benjamin S.Hsiao Meifang Zhu 2022Journal of Materials Science & Technology2022,,2:0
返回顶部 每页显示:
共1页 首页 上一页 第1页 下一页 末页 /1 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费