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| 1 | Suppression of m6A reader Ythdf2 promotes hematopoietic stem cell expansion显示文摘 | Zhenrui Li Pengxu Qian Wanqing Shao Hailing Shi Xi C. He Madelaine Gogol Zulin Yu Yongfu Wang Meijie Qi Yunfei Zhu John M. Perry Kai Zhang Fang Tao Kun Zhou Deqing Hu Yingli Han Chongbei Zhao Richard Alexander Hanzhang Xu Shiyuan Chen Allison Peak Kathyrn Hall Michael Peterson Anoja Perera Jeffrey S. Haug Tari Parmely Hua Li Bin Shen Julia Zeitlinger Chuan He Linheng Li | 2018 | Cell Research2018,28,9: | 18 |
| 2 | Insights into the mechanism of CXCL12-mediated signaling in trophoblast functions and placental angiogenesis显示文摘chemokine CXCL12 和它的受体 CXCR4 是重要的表明为人的胚囊培植和怀孕的前进要求的部件。成长证据显示 CXCL12/CXCR4 轴能调整 trophoblast 功能和改变的子宫的螺线动脉,它在胎座式和胎儿的结果起一个基本作用。孤儿受体 CXCR7 也被相信部分调整 CXCL12/CXCR4 轴的功能。另外, CXCL12/CXCR4/CXCR7 轴能提高在象子宫的自然漂亮房间那样的 trophoblasts 和蜕膜的房间和涉及 trophoblast 区别和侵略和胎盘的 angiogenesis 的规定的蜕膜的 stromal 房间之间的串音。另外,最近的研究证明那 CXCL12 表情与 preeclampsia 在胎盘和怀孕女人的中间三个月的羊膜的液体被提高,暗示 CXCL12 的 dysregulation 起在 preeclampsia 的致病的一个作用。在 trophoblast 功能和胎盘的 angiogenesis 的调停 CXCL12 的发信号的规章的机制的进一步的理解可以帮助为联系怀孕的疾病设计新奇治疗学的途径。 | Liang Wang Xueyi Li Yilin Zhao Chao Fang Yingli Lian Wenli Gou Tao Han Xiaoming Zhu | 2015 | Acta Biochimica et Biophysica Sinica2015,47,9: | 8 |
| 3 | Circulating Tumor DNA as Biomarkers for CancerDetection显示文摘Detection of circulating tumor DNAs(ct DNAs) in cancer patients is an important component of cancer precision medicine ct DNAs. Compared to the traditional physical and biochemical methods, blood-based ct DNA detection offers a non-invasive and easily accessible way for cancer diagnosis, prognostic determination, and guidance for treatment. While studies on this topic are currently underway, clinical translation of ct DNA detection in various types of cancers has been attracting much attention, due to the great potential of ct DNA as blood-based biomarkers for early diagnosis and treatment of cancers. ct DNAs are detected and tracked primarily based on tumorrelated genetic and epigenetic alterations. In this article, we reviewed the available studies on ct DNA detection and described the representative methods. We also discussed the current understanding of ct DNAs in cancer patients and their availability as potential biomarkers for clinical purposes. Considering the progress made and challenges involved in accurate detection of specific cell-free nucleic acids, ct DNAs hold promise to serve as biomarkers for cancer patients, and further validation is needed prior to their broad clinical use. | Xiao Han Junyun Wang Yingli Sun | 2017 | Genomics, Proteomics & Bioinformatics2017,15,2: | 6 |
| 4 | DNA methylation signatures in circulating cell-free DNA as biomarkers for the early detection of cancer显示文摘Detecting cell-free DNA(cfDNA) or circulating tumor DNA(ctDNA) in plasma or serum could serve as a 'liquid biopsy', which would be useful for numerous diagnostic applications. cfDNA methylation detection is one of the most promising approaches for cancer risk assessment. Here, we reviewed the literature related to the use of serum or plasma circulating cell-free DNA for cancer diagnosis in the early stage and their power as future biomarkers. | Junyun Wang Xiao Han Yingli Sun | 2017 | Science China(Life Sciences)2017,60,4: | 3 |
| 5 | Mitochondrial apoptosis of lymphocyte is induced in type 2 diabetes显示文摘 | Xu Hui Chen Yanbo Li Yanxiang Xia Fangzhen Han Bing Zhang Huixin Zhai Hualing Wu Hui Li Ying Lu Yingli | 2014 | Chinese Medical Journal2014,,2: | 2 |
| 6 | Triphenylphosphonium-modified mitochondria-targeted paclitaxel nanocrystals for overcoming multidrug resistance显示文摘Mitochondria are currently known as novel targets for treating cancer,especially for tumors displaying multidrug resistance(MDR). This present study aimed to develop a mitochondriatargeted delivery system by using triphenylphosphonium cation(TPP+)-conjugated Brij 98 as the functional stabilizer to modify paclitaxel(PTX) nanocrystals(NCs) against drugresistant cancer cells. Evaluations were performed on 2 D monolayer and 3 D multicellular spheroids(MCs) of MCF-7 cells and MCF-7/ADR cells. In comparison with free PTX and the non-targeted PTX NCs,the targeted PTX NCs showed the strongest cytotoxicity against both2 D MCF-7 and MCF-7/ADR cells,which was correlated with decreased mitochondrial membrane potential. The targeted PTX NCs exhibited deeper penetration on MCF-7 MCs and more significant growth inhibition on both MCF-7 and MCF-7/ADR MCs. The proposed strategy indicated that the TPP+-modified NCs represent a potentially viable approach for targeted chemotherapeutic molecules to mitochondria. This strategy might provide promising therapeutic outcomes to overcome MDR. | Xue Han Ruijuan Su Xiuqing Huang Yingli Wang Xiao Kuang Shuang Zhou Hongzhuo Liu | 2019 | Asian Journal of Pharmaceutical Sciences2019,14,5: | 1 |
| 7 | Application of bacteriorhodopsin film for polarization phase-shifting interferometry显示文摘 | Junhe Han Baoli Yao Peng Gao Liju Chen Yingli Wang Ming Lei | 2008 | Journal of Modern Optics2008,,14: | 1 |
| 8 | Epigenetic regulation of hematopoietic stem cell homeostasis显示文摘As one of the best characterized adult stem cells,hematopoietic stem cell(HSC)homeostasis is of great importance to hematopoiesis and immunity due to HSC’s abilities of self-renewal and multi-lineage differentiation into functional blood cells.However,excessive self-renewal of HSCs can lead to severe hematopoietic malignancies like leukemia,whereas deficient selfrenewal of HSCs may result in HSC exhaustion and eventually apoptosis of specialized cells,giving rise to abnormalities such as immunodeficiency or anemia.How HSC homeostasis is maintained has been studied for decades and regulatory factors can be generally categorized into two classes:genetic factors and epigenetic factors.Although genetic factors such as signaling pathways or transcription factors have been well explored,recent studies have emerged the indispensable roles of epigenetic factors.In this review,we have summarized regulatory mechanisms of HSC homeostasis by epigenetic factors,including DNA methylation,histone modification,chromatin remodeling,non-coding RNAs,and RNA modification,which will facilitate applications such as HSC ex vivo expansion and exploration of novel therapeutic approaches for many hematological diseases. | Penglei Jiang Hui Wang Jiachen Zheng Yingli Han He Huang Pengxu Qian | 2019 | Blood Science2019,1,1: | 1 |
| 9 | Experimental investigation of parallel optical data storage using pyrrylfulgide photochromic material显示文摘The optical storage characteristics of a new kind of organic photochromic material棗pyrrylfulgide were experimentally investigated in the established parallel optical data storage system. Using the pyrrylfulgide/PMMA film as a photon-mode recording medium, micro-images and encoded binary digital data were recorded, readout and erased in this parallel system. The storage density currently reaches 3?07 bit/cm2. The recorded information on the film can be kept for years in darkness at room temperature. | LEI Ming YAO Baoli CHEN Yi HAN Yong WANG Yingli MENKE Neimule ZHENG Yuan WANG Congmin FAN Meigong CHEN Guofu | 2003 | Chinese Science Bulletin2003,48,15: | 1 |
| 10 | Dual-modality magnetic resonance/optical imaging-guided sonodynamic therapy of pancreatic cancer with metal-organic nanosonosensitizer显示文摘Sonodynamic therapy(SDT)has been more attractive to carry out oncology treatments in recent years.However,imagingguided sonodynamic therapeutic nanomedicine is still a shortage in SDT development.In this work,we designed and fabricated an organic SDT system based on combination of 1,2,4,5-tetrakis(4-carboxyphenyl)-porphyrin(TCPP)and gadolinium(III)(Gd^(3+))creatively(Gd-PPNs).Gd^(3+)was traditionally used to be T_(1)-weighted magnetic resonance imaging(MRI)contrast agent and TCPP was initiatively a fluorescence imaging organic media.Therefore,these new designed nanoparticles have immense potential to integrate MRI and FLI to visualize the Gd-PPNs accumulating and keeping in tumor for a long time,which could be applied for guidance of SDT on tumors in clinical practice.Importantly,excellent SDT efficiency under imaging guidance was verified both in vitro and in vivo in this work.Our findings suggested that Gd-PPNs,as innovative imaging and therapy combinational nanomedicines,were successfully synthesized and were proved to possess excellent imaging-guided sonodynamic therapeutic efficacy.Moreover,this new designed sonosensitizer had great biocompatibility to avoid unnecessary biotoxicity.Overall,this strategy shed light on the MRI/FLI-guidance and successfully induced pancreatic tumor growth inhibition by sonodynamic therapy. | Yingli Chen Bo Yin Zhuang Liu Han Wang Zi Fu Xiuru Ji Wei Tang Dalong Ni Weijun Peng | 2022 | Nano Research2022,15,7: | 0 |
| 11 | Small noncoding RNAs play superior roles in maintaining hematopoietic stem cell homeostasis显示文摘The maintenance of the mammalian blood system depends on hematopoietic stem cells(HSCs),which are a rare class of adult stem cells with self-renewal and multilineage differentiation capacities.The homeostasis of hematopoietic stem cells is finely tuned by a variety of endogenous and exogenous regulatory factors,and disrupted balance will lead to hematological diseases including leukemia and anemia.Recently,emerging studies have illustrated the cellular and molecular mechanisms underlying the regulation of HSC homeostasis.Particularly,the rapid development of second-generation sequencing technologies has uncovered that many small noncoding RNAs(ncRNAs)are highly expressed in HSCs,including snoRNAs,miRNAs,tsRNAs,circular RNAs,etc.In this study,we will summarize the essential roles and regulatory mechanisms of these small ncRNAs in maintaining HSC homeostasis.Overall,this review provides up-to-date information in the regulation of HSC homeostasis by small ncRNAs,which sheds light into the development of therapeutic strategies against hematopoietic malignancies. | Hui Wang Wenchang Qian Yingli Han Pengxu Qian | 2022 | Blood Science2022,4,3: | 0 |
| 12 | 诱导性多能干细胞的低基因组稳定性使非同源末端连接增加显示文摘背景与目的诱导性多能干细胞(induced pluripotent stem cells,iPSCs)和胚胎干细胞(embryonic stem cells,ESCs)具有许多共同特征,包括相似的形态、基因表达和体外分化谱。然而,iPSCs的基因组稳定性远低于ESCs。在本研究中,我们研究了iPSCs中DNA损伤修复的改变是否为其具有更大诱变倾向的原因。方法将小鼠iPSCs、ESCs和胚胎成纤维细胞暴露于电离辐射(4 Gy),导致双链DNA断裂。照射4 h后使用全基因组重测序评估DNA损伤修复的保真度。我们还分析了分别源自iPSCs或ESCs的小鼠的基因组稳定性。结果照射后,与胚胎干细胞和胚胎成纤维细胞相比,iPSCs具有较低的DNA损伤修复能力,有更多的体细胞突变和短片段插入缺失。iPSCs有更多的非同源末端连接DNA修复和更少的同源重组DNA修复。源自iPSCs的小鼠比ESCs小鼠以及C57对照小鼠的DNA损伤修复能力更低。结论本研究结果部分表明,iPSCs的低基因组稳定性及其在体内的高致瘤性是由DNA损伤修复的低保真度所致。 | Minjie Zhang Liu Wang Ke An Jun Cai Guochao Li Caiyun Yang Huixian Liu Fengxia Du Xiao Han Zilong Zhang Zitong Zhao Duanqing Pei Yuan Long Xin Xie Qi Zhou Yingli Sun | 2019 | 癌症2019,38,8: | 0 |
| 13 | Deep pedigree analysis reveals family specific ‘‘fingerprint” pattern of DNA methylation for men显示文摘DNA methylation plays an essential role in mammalian development[1].However,how DNA methylation is inherited between generations and if there is family-specific DNA methylation pattern remains to be elucidated[2].In this study,we collect male blood samples including a big pedigree of the descendants of an ancient Chinese empire and samples from different haplogroups to study their whole genome DNA methylation pattern.We find 115 male family-specific methylation sites from three families.The difference of whole genome DNA methylation pattern correlates | Guochao Li Minjie Zhang Hua Chen Ke An Zongzhi Liu Fengxia Du Caiyun Yang Xiao Han Li Jin Hui Li Yan Zhang Jie Qiao Yingli Sun | 2018 | Science Bulletin2018,63,1: | 0 |
| 14 | Lower genomic stability of induced pluripotent stem cells reflects increased non-homologous end joining显示文摘Background:Induced pluripotent stem cells(iPSCs)and embryonic stem cells(ESCs)share many common features,including similar morphology,gene expression and in vitro differentiation profiles.However,genomic stability is much lower in iPSCs than in ESCs.In the current study,we examined whether changes in DNA damage repair in iPSCs are responsible for their greater tendency towards mutagenesis.Methods:Mouse iPSCs,ESCs and embryonic fibroblasts were exposed to ionizing radiation(4 Gy)to introduce dou-ble-strand DNA breaks.At 4 h later,fidelity of DNA damage repair was assessed using whole-genome re-sequencing.We also analyzed genomic stability in mice derived from iPSCs versus ESCs.Results:In comparison to ESCs and embryonic fibroblasts,iPSCs had lower DNA damage repair capacity,more somatic mutations and short indels after irradiation.iPSCs showed greater non-homologous end joining DNA repair and less homologous recombination DNA repair.Mice derived from iPSCs had lower DNA damage repair capacity than ESC-derived mice as well as C57 control mice.Conclusions:The relatively low genomic stability of iPSCs and their high rate of tumorigenesis in vivo appear to be due,at least in part,to low fidelity of DNA damage repair. | Minjie Zhang Liu Wang Ke An Jun Cai Guochao Li Caiyun Yang Huixian Liu Fengxia Du Xiao Han Zilong Zhang Zitong Zhao Duanqing Pei Yuan Long Xin Xie Qi Zhou Yingli Sun | 2018 | Cancer Communications2018,38,1: | 0 |
| 15 | Structural insights into ligand recognition and selectivity of somatostatin receptors显示文摘Somatostatin receptors(SSTRs)play versatile roles in inhibiting the secretion of multiple hormones such as growth hormone and thyroid-stimulating hormone,and thus are considered as targets for treating multiple tumors.Despite great progress made in therapeutic development against this diverse receptor family,drugs that target SSTRs still show limited efficacy with preferential binding affinity and conspicuous side-effects.Here,we report five structures of SSTR2 and SSTR4 in different states,including two crystal structures of SSTR2 in complex with a selective peptide antagonist and a non-peptide agonist,respectively,a cryo-electron microscopy(cryo-EM)structure of Gi1-bound SSTR2 in the presence of the endogenous ligand SST-14,as well as two cryo-EM structures of Gi1-bound SSTR4 in complex with SST-14 and a small-molecule agonist J-2156,respectively.By comparison of the SSTR structures in different states,molecular mechanisms of agonism and antagonism were illustrated.Together with computational and functional analyses,the key determinants responsible for ligand recognition and selectivity of different SSTR subtypes and multiform binding modes of peptide and non-peptide ligands were identified.Insights gained in this study will help uncover ligand selectivity of various SSTRs and accelerate the development of new molecules with better efficacy by targeting SSTRs. | Wenli Zhao Shuo Han Na Qiu Wenbo Feng Mengjie Lu Wenru Zhang Mu Wang Qingtong Zhou Shutian Chen Wei Xu Juan Du Xiaojing Chu Cuiying Yi Antao Dai Liaoyuan Hu Michelle YShen Yaping Sun Qing Zhang Yingli Ma Wenge Zhong Dehua Yang Ming-Wei Wang Beili Wu Qiang Zhao | 2022 | Cell Research2022,32,8: | 0 |
| 16 | SARS-CoV-2 N protein potentiates host NPM1-snoRNA translation machinery to enhance viral replication显示文摘Dear Editor,COVID-19(Coronavirus Disease 2019)is causing an unprecedented public health crisis.Protein translation is crucial for virus lifecycle.Nucleocapsid(N)protein is among the most abundant SARS-CoV-2 proteins and highly conserved across coronavirus genus.1 However,its function in subverting host translation machinery is still elusive. | Hui Wang Danrong Shi Penglei Jiang Zebin Yu Yingli Han Zhaoru Zhang Peihui Wang He Huang Hangping Yao Pengxu Qian | 2022 | Signal Transduction and Targeted Therapy2022,7,11: | 0 |