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| 1 | Some Boundary Fractal Properties of the Convolution Transform of Measures by an Approximate Identity | Zhiying Wen, Department of Mathematics, Wuhan University, Wuhan 430072, P. R. China Department of Applied Mathematics, Tsinghua University, Beijing 100084, P. R. ChinaE-mail: wenzy@tsinghua.edu.cnYiping Zhang, Department of Mathematics, Wuhan University, Wuhan 430072, P. R. ChinaE-mail: ypzhang@whu.edu.cn | 1999 | Acta Mathematica Sinica,English Series1999,15,2: | 3 |
| 2 | 显示文摘 | 石长川(ShiCC) 杨学林(YangXL) 张露露(ZhangLL) 周永涛(ZhouYT) 温兆银(WenZY) | 2013 | 无机材料学报2013,28,: | 1 |
| 3 | Focal depth extending using rotational symmetric pupil masks 显示文摘 | ZHAO Tingyu CHEN Yanping ZHANG Wenzi | | Chinese OpticsLetters(S1671-7694)0,5,2: | 1 |
| 4 | Overview of Fuel Properties of Biomass Fast Pyrolysis Oils显示文摘 | Lu Qiang Li Wenzi Zhu Xifeng | 2009 | Energy Convers Manage2009,50,5: | 1 |
| 5 | Research on sodium sulfur battery for energy storage显示文摘 | WenZY Cao J D Gu Z H | | 0,,27: | 1 |
| 6 | 显示文摘 | 马国强(MaGQ) 温兆银(WenZY) 王清松(WangQS) 靳俊(JinJ) 吴相伟(WuXW) 张敬超(ZhangJC) | 2015 | 无机材料学报2015,30,: | 1 |
| 7 | On Putting More Physics into CalphadSolution Models 显示文摘 | Oates W A WenzI H Mohri T | 1996 | Calphad1996,20,1: | 1 |
| 8 | Hydrothermal synthesis and thermodynamic analysis of dawsonitetype compounds显示文摘 | ZhangXF WenZY Gu Z H XuX H LinZX | 2004 | Journal of Solid State Chemistry2004,177,3: | 1 |
| 9 | Overview of fuel properties of biomass fast pyrolysis oils显示文摘 | Lu Qiang Li Wenzi Zhu Xifeng | 2009 | Energy Conversion and Management2009,50,5: | 1 |
| 10 | Study on the quality standard of complex Siraitiae Fructus tablet [J]显示文摘 | LIUY MOHT WENZY etal | | 中成药0,32,2: | 1 |
| 11 | Diterpenoids from Euphorbia fischeriana显示文摘 | Ma Qinggao Liu Wenzi | 1997 | Phytochemistry1997,44,4: | 1 |
| 12 | Simple Strehl ratio based method for pupil phase mask's optimization in wavefront coding system显示文摘 | Zhang Wenzi Chen Yanping Zhao Tingyu | 2006 | Chin Opt Lett2006,4,9: | 1 |
| 13 | Diterpenoids from Euphorbia fischeriana显示文摘 | Qinggao M Wenzi L Xiaoyun W | 1997 | Phytochem1997,44,4: | 1 |
| 14 | Ovalbumin-loaded paramagnetic nano-triangles for enhanced dendritic cell stimulation,T_(1)-MR imaging,and antitumor immunity显示文摘Vaccine-based cancer immunotherapy has demonstrated a significant potential for cancer treatment in clinics.Although the efficiencies of vaccines are limited,they can be enhanced by a well-designed antigen delivery system that promotes sufficient antigen presentation of dendritic cells(DCs)for initiating high T cell immunity.Herein,antigen-loaded manganese oxide(Mn_(3)O_(4))triangular-shaped ultrasmall nanoparti-cles were prepared to stimulate DC-based immunotherapy under the guidance of T_(1)magnetic resonance imaging.The FDA-approved triblock copolymer Pluronic^(■)F-68 wasused not onlyto transferthe phase from hydrophobic to hydrophilic but also to enrich antigen loading and improve the biocompatibility of the prepared nanoparticles.Ovalbumin(OVA),a model antigen,was adsorbed on the surface of polymer-coated nanoparticles through electrostatic interaction to form Mn_(3)O_(4)@PF68-OVA nanoparticle-antigen complexes to stimulate DC-based immunization and antigen-specific T cell immunity.The Mn_(3)O_(4)@PF68-OVA nanovaccine(NV)induces negligible toxicity effects against 4T1 and bone marrow-derived dendritic cells(BMDCs)by conventional methods supports the proliferation of intestine organoids,which are an innovative three-dimensional cytotoxicity evaluation system,thereby indicating their potential safety for in vivo cancer therapies.The designed paramagnetic nanovaccine possessed excellent OVA delivery to dendritic-regulated antigen-specific T cells in vitro by stimulating the maturation level of BMDCs.In ad-dition,Mn_(3)O_(4)@PF68-OVA NVs enhance immunity in vivo by increasing the T-cells and M1 macrophages,which suggests improved immunity.Excitingly,vaccination with Mn_(3)O_(4)@PF68-OVA offer complete pro-tection in the prophylactic group and significant tumor inhibition in the therapeutic group against B16-OVA tumor.In addition,the designed nanovaccine demonstrated high T_(1)-MR imaging in the tumor,fur-ther justifying enhanced tumor accumulation and capability to real-time monitor the treatment proce-dure.This study presents a promising nanosystem to design an effective nanovaccine for T_(1)-MR imaging-guided tumor immunotherapy. | Yike Hou Zhe Tang Jabeen Farheen Madiha Saeed Lijia Luo Wenzi Ren Dandan Luo Asim Mushtaq Ruibo Zhao Jian Ge Zhangsen Yu Yao Li M.Zubair Iqbal Xiangdong Kong | 2023 | Journal of Materials Science & Technology2023,,17: | 0 |