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12篇 您的检索式:作者名="HE Xiangling"
    题名 作者 年代 出处 被引量
1Superoxide dismutase mimetic ability of Mn-doped ZnS QDs显示文摘Superoxide dismutase(SOD) is an important antioxidant enzyme in the body. SOD has special physiological activity and is the primary substance for scavenging free radicals in living organisms.However, the expensive and complex extraction processes, low SOD yield, as well as difficult to store at room temperature have seriously hindered its application pace. Herein, the enzyme mimetic function of Mn-doped ZnS quantum dots(QDs) was discovered. The improved Marklund and McCord method both showed that Mn-doped ZnS QDs possess intrinsic SOD-like activity. The effects of temperature and pH on the mimetic enzyme activity of Mn-doped ZnS QDs have been investigated compared with SOD enzymes.The low cost and easy to synthesize white Mn-doped ZnS QDs with good biocompatibility are expected to be used as a new type of SOD nanozymes in the biology-relevant fields.Xiangling Ren Mingqian Wang Xing He Zheng Li Jing Zhang Wei Zhang Xudong Chen Hong Ren Xianwei Meng 2018Chinese Chemical Letters2018,29,12:2
2Separation and purification of puerarin using β-cyclodextrin-coupled agarose gelmedia显示文摘HE Xiangling TAN Tianwei XU Bingze 2004Journal of Chromatography A2004,1022,:1
3Semi-Implantable Bioelectronics显示文摘Developing techniques to effectively and real-time monitor and regulate the interior environment of biological objects is significantly important for many biomedical engineering and scientific applications, including drug delivery, electrophysiological recording and regulation of intracellular activities. Semi-implantable bioelectronics is currently a hot spot in biomedical engineering research area, because it not only meets the increasing technical demands for precise detection or regulation of biological activities, but also provides a desirable platform for externally incorporating complex functionalities and electronic integration. Although there is less definition and summary to distinguish it from the well-reviewed non-invasive bioelectronics and fully implantable bioelectronics, semi-implantable bioelectronics have emerged as highly unique technology to boost the development of biochips and smart wearable device. Here, we reviewed the recent progress in this field and raised the concept of “Semi-implantable bioelectronics”, summarizing the principle and strategies of semi-implantable device for cell applications and in vivo applications, discussing the typical methodologies to access to intracellular environment or in vivo environment, biosafety aspects and typical applications. This review is meaningful for understanding in-depth the design principles, materials fabrication techniques, device integration processes, cell/tissue penetration methodologies, biosafety aspects, and applications strategies that are essential to the development of future minimally invasive bioelectronics.Jiaru Fang Shuang Huang Fanmao Liu Gen He Xiangling Li Xinshuo Huang Hui-jiuan Chen Xi Xie 2022Nano-Micro Letters2022,14,7:1
4Separation and purification of puerarin using β-cyclodextrin-coupled agarose gel media显示文摘Xiangling He Tianwei tan Jan-Christer Janson 2004Journal of Chromatography2004,10,2:1
5Experimental study on start-up of a two SBR denit rifying and phosphorus removing system 显示文摘LIU Xuefei HE Xinhui YE Xiangle 2007J Xi''an Univ of Arch & Tcch2007,39,3:1
6Separation and purification of puerarin using β-cyclodextrin-coupled agarose gel media显示文摘Xiangling He Tianwei tan Jan-Christer Janson 2004Journal of Chromatography A2004,1022,:1
7Purification of the isoflavonoid puerarin by adsorption chromatography on cross-linked 12% agarose 显示文摘Xiangling He Tianwei Tan Jan-Christer Janson 2004J Chromatogr A2004,1057,12:1
8Separation and purification of puerarin using β-cyclodextrin-coupled agarose gel media显示文摘HE Xiangling TAN Tianwei XU Bingze 2004Journal of Chromatography A2004,1022,12:1
9miR-125b reverses cisplatin resistance by regulating autophagy via targeting RORA/BNIP3L axis in lung adenocarcinoma显示文摘The platinum-based chemotherapy is one of the most frequently used treatment protocols for lung adenocarcinoma(LUAD),and chemoresistance,however,usually results in treatment failure and limits its application in the clinic.It has been shown that microRNAs(miRNAs)play a significant role in tumor chemoresistance.In this study,miR-125b was identified as a specific cisplatin(DDP)-resistant gene in LUAD,as indicated by the bioinformatics analysis and the real-time quantitative PCR assay.The decreased serum level of miR-125b in LUAD patients was correlated with the poor treatment response rate and short survival time.MiR-125b decreased the A549/DDP proliferation,and the multiple drug resistance-and autophagy-related protein expression levels,which were all reversed by the inhibition of miR-125b.In addition,xenografts of human tumors in nude mice were suppressed by miR-125b,demonstrating that through autophagy regulation,miR-125b could reverse the DDP resistance in LUAD cells,both in vitro and in vivo.Further mechanistic studies indicated that miR-125b directly repressed the expression levels of RORA and its downstream BNIP3L,which in turn inhibited autophagy and reversed chemoresistance.Based on these findings,miR-125b in combination with DDP might be an effective treatment option to overcome DDP resistance in LUAD.LEI LIU NA GUO XIANGLING LI QIAN XU RUILONG HE LIMIN CHENG CHUNYAN DANG XINYU BAI YIYING BAI XIN WANG QIANHUI CHEN LI ZHANG 2024Oncology Research2024,32,4:0
10Construction of a novel kind of expression plasmid by homologous recombination in Saccharomyces cerevisiae显示文摘Based on a previously used plasmid pHC11, a new plasmid pHC11R was con-structed. Cutting plasmid pHC11R with proper restriction enzymes, the resulting larger DNA fragment pHC11R’ was co-transformed with a PCR amplified expression cassette of human IFNα2b into yeast. By means of the homologous sequences at both ends of two DNA fragments, a novel expression plasmid pHC11R-IFNα2b was formed via homologous recombination in the yeast. Compared with pHC11-IFNα2b, the expression plasmid pHC11R-IFNα2b was smaller in size and in absence of antibiotic resistant gene. The stability and copy number of pHC11R- IFNα2b were greatly increased and the expression level of heterologous protein was improved. As the derivatives of pHC11R, a series of recombination expression vectors pHRs containing different combination of expression elements were developed. This led to a rapid and powerful method for cloning and expressing of different genes in yeast.CHEN Xiangling, YUAN Hanying, HE Wei, HU Xianghua, LU Hong & LI Yuyang State Key Laboratory of Genetic Engineering, School of Life Sciences, Fudan University, Shanghai 200433, China 2005Science China(Life Sciences)2005,48,4:0
11Immunoregulatory effects of human amniotic mesenchymal stem cells and their exosomes on human peripheral blood mononuclear cells显示文摘Background:The immunomodulatory effects of mesenchymal stem cells(MSCs)and their exosomes have been receiving increasing attention.This study investigated the immunoregulatory effects of human amniotic mesenchymal stem cells(hAMSCs)and their exosomes on phytohemagglutinin(PHA)-induced peripheral blood mononuclear cells(PBMCs).Methods:The hAMSCs used in the experiment were identified by light microscopy and flow cytometry,and the differentiation ability of the cells was determined by Oil Red O and Alizarin Red staining.The expressions of transforming growth factor(TGF)-β,indoleamine 2,3-dioxygenase(IDO),cyclooxygenase-2(COX-2),hepatocyte growth factor(HGF),and interleukin(IL)-6 were detected by quantitative real-time polymerase chain reaction and western blotting.PBMCs,hAMSCs,and their exosomes were collected for in vitro group culture.Then the immunoregulatory ability of hAMSCs and their exosomes were analyzed by flow cytometry and Enzymelinked immunosorbent assay.Results:The hAMSCs and exosomes were successfully extracted from the human amniotic membrane.TGF-β,IDO,COX-2,HGF,and IL-6 were significantly expressed in hAMSCs.In vitro co-culture showed that hAMSCs promoted the proliferation of Th2 cells in PHA-induced PBMCs,while hAMSCs and exosomes inhibited the secretion of TNF-αin PHA-induced PBMCs,and promoted the secretion of IL-4 and IL-10,and hAMSCs had more significant effects than exosomes.Conclusions:hAMSCs or exosomes could exert immunoregulatory effects on PHA-induced PBMCs by affecting Th2 cell proliferation and cytokine secretion.XIN TIAN XIANGLING HE SHUQIN QIAN RUNYING ZOU KEKE CHEN CHENGGUANG ZHU ZEXI YIN 2023BIOCELL2023,47,5:0
12Dual-bionic regenerative microenvironment for peripheral nerve repair显示文摘Autologous nerve grafting serves is considered the gold standard treatment for peripheral nerve defects;however,limited availability and donor area destruction restrict its widespread clinical application.Although the performance of allogeneic decellularized nerve implants has been explored,challenges such as insufficient human donors have been a major drawback to its clinical use.Tissue-engineered neural regeneration materials have been developed over the years,and researchers have explored strategies to mimic the peripheral neural microenvironment during the design of nerve catheter grafts,namely the extracellular matrix(ECM),which includes mechanical,physical,and biochemical signals that support nerve regeneration.In this study,polycaprolactone/silk fibroin(PCL/SF)-aligned electrospun material was modified with ECM derived from human umbilical cord mesenchymal stem cells(hUMSCs),and a dual-bionic nerve regeneration material was successfully fabricated.The results indicated that the developed biomimetic material had excellent biological properties,providing sufficient anchorage for Schwann cells and subsequent axon regeneration and angiogenesis processes.Moreover,the dual-bionic material exerted a similar effect to that of autologous nerve transplantation in bridging peripheral nerve defects in rats.In conclusion,this study provides a new concept for designing neural regeneration materials,and the prepared dual-bionic repair materials have excellent auxiliary regenerative ability and further preclinical testing is warranted to evaluate its clinical application potential.Yanjun Guan Zhiqi Ren Boyao Yang Wenjing Xu Wenjun Wu Xiangling Li Tieyuan Zhang Dongdong Li Shengfeng Chen Jun Bai Xiangyu Song Zhibo Jia Xing Xiong Songlin He Chaochao Li Fanqi Meng Tong Wu Jian Zhang Xiuzhi Liu Haoye Meng Jiang Peng Yu Wang 2023Bioactive Materials2023,,8:0
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