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| 1 | Observation of the curative effect between Nocardia rubra cell wall skeleton-injection combined with the intrapleural chemotherapy and following the intrapleural chemotherapy显示文摘Objective:To observe and compare the curative effect between the intrapleural-chemotherapy combined Nocardia rubra cell wall skeleton-injection and the Nocardia rubra cell wall skeleton-injection after control of the malignant pleural effusion by chemotherapy.Methods:Every time after elimination of pleural effusion,we injected DDP and Nocardia rubra cell wall skeleton at the same time into pleural cavity;or after we emplaced an improved central vena catheter into pleural cavity then took out closed-drainage or eliminated the pleural effusion every day,then injected 5-FU 0.5 qd intrapleural-space.After the malignant pleural effusion had being controlled,800μg Nocardia rubra cell wall skeleton was injected intrapleural-space. (We call it as'improved following-therapy').Results:Using the improved following-therapy,the control rate of malignant pleural effusion increased:CR+PR,79.07%>65.79%(P<0.05),and the incidence rate of the encapsulated pleural effusion that would impact on patient’s respiratory faction decreased.Conclusion:Giving chemotherapy after closed-drainage or immediately after taking out pleural effusion everyday,then giving biotherapy after pleural effusion had been controlled,the curative effect would be enhanced and the side-reaction would be reduced. | Zhuoming Chen Zudong Huang Xiaohong He | 2007 | The Chinese-German Journal of Clinical Oncology2007,6,4: | 3 |
| 2 | An uhradense genetic recombination map for Brassica napus, consisting of 13551 SRAP markers 显示文摘 | Zudong Sun Zining Wang Jinxing Tu | 2007 | Theor Appl Genet2007,114,: | 1 |
| 3 | An ultradense genetic recombination map for Brassica napus, consisting of 13551 SRAP markers显示文摘 | Zudong Sun Zining Wang Jinxing Tu Jiefu Zhang Fengqun Yu Peter B. E. McVetty Genyi Li | 2007 | Theoretical and Applied Genetics2007,,8: | 1 |
| 4 | An ultradense genetic reconbination map for Brassica napus,consisting of 13551 SRAP markers显示文摘 | Sun Zudong Wang Zining Tu Jinxing | 2007 | Theoretical and Applied Genetics2007,114,: | 1 |
| 5 | An ultradense genetic recombination map for Brassica napus, consisting of 13551 SRAP markers 显示文摘 | Sun Zudong Wang Zining Tu Jinxing | 2007 | Theor Appl Genet2007,114,: | 1 |
| 6 | An ultradense genetic recombination map for Brassica napus, consisting of 13551 SRAP markers显示文摘 | Zudong Sun Zining Wang Jinxing Tu Jiefu Zhang Fengqun Yu Peter B. E. McVetty Genyi Li | 2007 | Theoretical and Applied Genetics2007,,8: | 1 |
| 7 | An ultradense genetic recombination map for Brassica napus,consisting of 13551 SRAP markers显示文摘 | Zudong Sun Zining Wang Jinxing Tu | 2007 | Original Paper2007,,114: | 1 |
| 8 | Harnessing decellularised extracellular matrix microgels into modular bioinks for extrusion-based bioprinting with good printability and high post-printing cell viability显示文摘The printability of bioink and post-printing cell viability is crucial for extrusion-based bioprinting.A proper bioink not only provides mechanical support for structural fidelity,but also serves as suitable three-dimensional(3D)microenvironment for cell encapsulation and protection.In this study,a hydrogel-based composite bioink was developed consisting of gelatin methacryloyl(GelMA)as the continuous phase and decellularised extracellular matrix microgels(DMs)as the discrete phase.A flow-focusing microfluidic system was employed for the fabrication of cell-laden DMs in a high-throughput manner.After gentle mixing of the DMs and GelMA,both rheological characterisations and 3D printing tests showed that the resulting DM-GelMA hydrogel preserved the shear-thinning nature,mechanical properties,and good printability from GelMA.The integration of DMs not only provided an extracellular matrix-like microenvironment for cell encapsulation,but also considerable shear-resistance for high post-printing cell viability.The DM sizes and inner diameters of the 3D printer needles were correlated and optimised for nozzle-based extrusion.Furthermore,a proof-of-concept bioink composedg of RSC96 Schwann cells encapsulated DMs and human umbilical vein endothelial cell-laden GelMA was successfully bioprinted into 3D constructs,resulting in a modular co-culture system with distinct cells/materials distribution.Overall,the modular DM-GelMA bioink provides a springboard for future precision biofabrication and will serve in numerous biomedical applications such as tissue engineering and drug screening. | Hanyu Chu Kexin Zhang Zilong Rao Panpan Song Zudong Lin Jing Zhou Liqun Yang Daping Quan Ying Bai | 2023 | Biomaterials Translational2023,4,2: | 0 |
| 9 | Genome-wide association with transcriptomics reveals a shade-tolerance gene network in soybean显示文摘Shade tolerance is essential for soybeans in inter/relay cropping systems.A genome-wide association study(GWAS)integrated with transcriptome sequencing was performed to identify genes and construct a genetic network governing the trait in a set of recombinant inbred lines derived from two soybean parents with contrasting shade tolerance.An improved GWAS procedure,restricted two-stage multi-locus genome-wide association study based on gene/allele sequence markers(GASM-RTM-GWAS),identified 140 genes and their alleles associated with shade-tolerance index(STI),146 with relative pith cell length(RCL),and nine with both.Annotation of these genes by biological categories allowed the construction of a protein–protein interaction network by 187 genes,of which half were differentially expressed under shading and non-shading conditions as well as at different growth stages.From the identified genes,three ones jointly identified for both traits by both GWAS and transcriptome and two genes with maximum links were chosen as beginners for entrance into the network.Altogether,both STI and RCL gene systems worked for shade-tolerance with genes interacted each other,this confirmed that shadetolerance is regulated by more than single group of interacted genes,involving multiple biological functions as a gene network. | Yanzhu Su Xiaoshuai Hao Weiying Zeng Zhenguang Lai Yongpeng Pan Can Wang Pengfei Guo Zhipeng Zhang Jianbo He Guangnan Xing Wubin Wang Jiaoping Zhang Zudong Sun Junyi Gai | 2024 | The Crop Journal2024,12,1: | 0 |
| 10 | Decellularized Extracellular Matrix Containing Electrospun Fibers for Nerve Regeneration:A Comparison Between Core–Shell Structured and Preblended Composites显示文摘Advanced biomaterial-based strategies for treatment of peripheral nerve injury require precise control over both topological and biological cues for facilitating rapid and directed nerve regeneration.As a highly bioactive and tissue-specifc natural material,decellularized extracellular matrix(dECM)derived from peripheral nerves(decellularized nerve matrix,DNM)has drawn increasing attention in the feld of regenerative medicine,due to its outstanding capabilities in facilitating neurite outgrowth and remyelination.To induce and maintain sufcient topological guidance,electrospinning was conducted for fabrication of axially aligned nanofbers consisting of DNM and poly(ε-caprolactone)(PCL).Core–shell structured fbers were prepared by coaxial electrospinning using DNM as the shell and PCL as the core.Compared to the aligned electrospun fbers using preblended DNM/PCL,the core–shell structured fbers exhibited lower tensile strength,faster degradation,but considerable toughness for nerve guidance conduit preparation and relatively intact fbrous structure after long-term degradation.More importantly,the full DNM surface coverage of the aligned core–shell fbers efectively promoted axonal extension and Schwann cells migration.The DNM contents further triggered neurite bundling and myelin formation toward nerve fber maturation and functionalization.Herein,we not only pursue a multi-functional scafold design for nerve regeneration,a detailed comparison between core–shell structured and preblended electrospinning of DNM/PCL composites was also provided as an applicable paradigm for advanced tissue-engineered strategies using dECM-based biomaterials. | Rongli Deng Ziling Luo Zilong Rao Zudong Lin Shihao Chen Jing Zhou Qingtang Zhu Xiaolin Liu Ying Bai Daping Quan | 2022 | Advanced Fiber Materials2022,4,3: | 0 |