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| 1 | Emissions of polycyclic aromatic hydrocarbons from coking industries in China显示文摘这研究开始估计多不的芳香的烃的特征(哼) 从 coking 工业的排放,与在四典型焦炭植物进行的领域采样。为每选择植物,栈烟道气体样品在包括的进程期间是镇定的控告煤进炉(CC ) ,推焦炭(PC ) 和焦炭炉气体(CG ) 的燃烧。十六个个人在 US EPA 优先级表上哼被煤气的层析 / 团 spectrometry (GC/MS ) 分析。结果证明总数哼在烟道气体的集中从 45.776 ~ 414.874 g/m3 ,与为 CC (359.545 g/m3 ) 的最高的排放水平。集中哼在 CP1 (收费的邮票) 从 CC 过程射出从 CP3 和 CP4 (收费的顶) 是比那低的。Low-molecular-weight 哼(即,二 -- 到三戒指哼) 到总数的占优势的贡献者哼内容,和小睡, AcPy,流感, PhA,和蚂蚁被发现是最丰富的。为 CC (2.248 g/m3 ) 的全部的 BaPeq 集中比为 PC (1.838 g/m3 ) 的那些高, CG (1.082 g/m3 ) ,和 DbA 作为在从 coking 过程的排出物的 BaP 是到 carcinogenic 风险的一个重要贡献者。微粒哼比对总数的相应贡献哼的占了超过 20% 全部的 BaPeq 集中,它显著地高集体集中(5%) 。微粒并且气体哼当时,应该被考虑潜在的毒性风险哼污染在 coking 期间,过程被估计。吝啬的总数 -- 哼排放因素分别地是为 CC 和 PC 的 346.132 和 93.173 g/kg。 | Ling Mu Lin Peng Junji Cao Qiusheng He Fan Li Jianqiang Zhang Xiaofeng Liu Huiling Bai | 2013 | Particuology2013,11,1: | 17 |
| 2 | Focal adhesion protein Kindlin-2 regulates bone homeostasis in mice显示文摘Our recent studies demonstrate that the focal adhesion protein Kindlin-2 is critical for chondrogenesis and early skeletal development. Here, we show that deleting Kindlin-2 from osteoblasts using the 2.3-kb mouse Col1 a1-Cre transgene minimally impacts bone mass in mice, but deleting Kindlin-2 using the 10-kb mouse Dmp1-Cre transgene, which targets osteocytes and mature osteoblasts, results in striking osteopenia in mice. Kindlin-2 loss reduces the osteoblastic population but increases the osteoclastic and adipocytic populations in the bone microenvironment. Kindlin-2 loss upregulates sclerostin in osteocytes,downregulates β-catenin in osteoblasts, and inhibits osteoblast formation and differentiation in vitro and in vivo. Upregulation ofβ-catenin in the mutant cells reverses the osteopenia induced by Kindlin-2 deficiency. Kindlin-2 loss additionally increases the expression of RANKL in osteocytes and increases osteoclast formation and bone resorption. Kindlin-2 deletion in osteocytes promotes osteoclast formation in osteocyte/bone marrow monocyte cocultures, which is significantly blocked by an anti-RANKLneutralizing antibody. Finally, Kindlin-2 loss increases osteocyte apoptosis and impairs osteocyte spreading and dendrite formation.Thus, we demonstrate an important role of Kindlin-2 in the regulation of bone homeostasis and provide a potential target for the treatment of metabolic bone diseases. | Huiling Cao Qinnan Yan Dong Wang Yumei Lai Bo Zhou Qi Zhang Wenfei Jin Simin Lin Yiming Lei Liting Ma Yuxi Guo Yishu Wang Yilin Wang Xiaochun Bai Chuanju Liu Jian QFeng Chuanyue Wu Di Chen Xu Cao Guozhi Xiao | 2020 | Bone Research2020,8,1: | 8 |
| 3 | The application of nitric oxide delivery in nanoparticle-based tumor targeting drug delivery and treatment显示文摘Nitric oxide(NO) shows great role in tumor biology. Recent years, more and more researches utilized NO donor in tumor targeting drug delivery and treatment. In this review, we summarized the NO donors by their endogenous and exogenous stimuli. Then the application of NO donors, which was the main aim of the review, was discussed in detailed according to their functions, including inducing tumor cell apoptosis, reversing tumor multidrug resistance, inhibiting tumor metastasis and improving drug delivery. | Lin Qin Huile Gao | 2019 | Asian Journal of Pharmaceutical Sciences2019,14,4: | 3 |
| 4 | The potato amylase inhibitor gene Sb AI regulates cold‐induced sweetening in potato tubers by modulating amylase activity显示文摘 | Huiling Zhang Jun Liu Juan Hou Ying Yao Yuan Lin Yongbin Ou Botao Song Conghua Xie | 2014 | Plant Biotechnol J2014,,7: | 2 |
| 5 | StInvInh2 as an inhibitor of Stvac INV 1 regulates the cold‐induced sweetening of potato tubers by specifically capping vacuolar invertase activity显示文摘 | Xun Liu Yuan Lin Jun Liu Botao Song Yongbin Ou Huiling Zhang Meng Li Conghua Xie | 2013 | Plant Biotechnol J2013,,5: | 2 |
| 6 | miR‐145 sensitizes ovarian cancer cells to paclitaxel by targeting Sp1 and Cdk6显示文摘 | Xiaolan Zhu Yuefeng Li Chanjuan Xie Xinming Yin Yueqin Liu Yuan Cao Yue Fang Xin Lin Yao Xu Wenlin Xu Huiling Shen Jian Wen | 2014 | Int. J. Cancer2014,,: | 2 |
| 7 | LIM domain proteins Pinch1/2 regulate chondrogenesis and bone mass in mice显示文摘The LIM domain-containing proteins Pinch1/2 regulate integrin activation and cell–extracellular matrix interaction and adhesion.Here,we report that deleting Pinch1 in limb mesenchymal stem cells(MSCs)and Pinch2 globally(double knockout;dKO)in mice causes severe chondrodysplasia,while single mutant mice do not display marked defects.Pinch deletion decreases chondrocyte proliferation,accelerates cell differentiation and disrupts column formation.Pinch loss drastically reduces Smad2/3 protein expression in proliferative zone(PZ)chondrocytes and increases Runx2 and Col10a1 expression in both PZ and hypertrophic zone(HZ)chondrocytes.Pinch loss increases sclerostin and Rankl expression in HZ chondrocytes,reduces bone formation,and increases bone resorption,leading to low bone mass.In vitro studies revealed that Pinch1 and Smad2/3 colocalize in the nuclei of chondrocytes.Through its C-terminal region,Pinch1 interacts with Smad2/3 proteins.Pinch loss increases Smad2/3 ubiquitination and degradation in primary bone marrow stromal cells(BMSCs).Pinch loss reduces TGF-β-induced Smad2/3 phosphorylation and nuclear localization in primary BMSCs.Interestingly,compared to those from single mutant mice,BMSCs from dKO mice express dramatically lower protein levels ofβ-catenin and Yap1/Taz and display reduced osteogenic but increased adipogenic differentiation capacity.Finally,ablating Pinch1 in chondrocytes and Pinch2 globally causes severe osteopenia with subtle limb shortening.Collectively,our findings demonstrate critical roles for Pinch1/2 and a functional redundancy of both factors in the control of chondrogenesis and bone mass through distinct mechanisms. | Yiming Lei Xuekun Fu Pengyu Li Sixiong Lin Qinnan Yan Yumei Lai Xin Liu Yishu Wang Xiaochun Bai Chuanju Liu Di Chen Xuenong Zou Xu Cao Huiling Cao Guozhi Xiao | 2020 | Bone Research2020,8,4: | 2 |
| 8 | N-doped honeycomb-like porous carbon towards high-performance supercapacitor显示文摘Biomass-derived porous carbon with developed pore structure is critical to achieving high performance electrode materials.In this work,we report a grape-based honeycomb-like porous carbon(GHPC)prepared by KOH activation and carbonization,followed by N-doping(NGHPC).The obtained NGHPC exhibits a unique honeycomb-like structure with hierarchically interconnected micro/mesopores,and high specific surface area of 1268 m^2/g.As a supercapacitor electrode,the NGPHC electrode exhibits a remarkable specific capacitance of 275 F/g at 0.5 A/g in a three-electrode cell.Moreover,the NGHPC//NGHPC symmetric supercapacitor displays a high energy density of 12.6 Wh/kg,and excellent cycling stability of approximately 95.2% capacitance retention after 5000 cycles at 5 A/g.The excellent electrochemical performance of NGHPC is ascribed to its high specific surface area,honeycomb-like structure and high-content of pyrodinic-N(36.29%).It is believed that grape-based carbon materials show great potential as advanced electrode materials for supercapacitors. | Feng Wang Lian Chen Huiling Li Gaigai Duan Shuijian He Lin Zhang Guoying Zhang Zhengping Zhou Shaohua Jiang | 2020 | Chinese Chemical Letters2020,31,7: | 2 |
| 9 | Hierarchical porous carbon heterojunction flake arrays derived from metal organic frameworks and ionic liquid for H2O2 electrochemical detection in cancer tissue显示文摘The development of hierarchical nanostructure is demonstrated as an effective strategy to improve catalytic activity and stability of electrocatalysts.Herein,a novel leaf-like hierarchically porous heterojunction flake arrays(FAs),integrated graphitic N-doped carbon(NC)with amorphous B,N-doped carbon(BNC),has been designed and grown on flexible carbon fiber(CF)using metal-organic framework(MOF)FAs and green ionic liquids as precursors.The hierarchical heterojunction structure possesses micro-and nano-scaled pores,large surface areas,and exposed high-density catalytic active sites,which enhances electronic conductivity and offers accessible transport channels for effectively decreasing mass transport resistance.The results of discrete Fourier transform(DFT)calculations and experiments also suggest that the catalytic activity has been promoted by the heterojunction structure through narrowing the banding gap.Consequently,the resultant nanohybrid microelectrode exhibits remarkable electrochemical sensing performance towards H2O2 with a low detection limit of 50 nM,and a high sensitivity of 213μA×mM-1×cm-2,as well as good anti-interference capability.The practical application of nanohybrid fiber microelectrode has been explored by real-time monitoring H2O2 released from live colon cells and surgically-resected fresh colon cancer tissue,which can provide important information for the identification of different types of cells as well as distinguish cancer cells from normal ones.We believe this research will pave the way towards the development of advanced carbon nanomaterials for application in the fields of electrochemistry,biosensing,and cancer diagnosis. | Yan Zhang Qiying Lv Kai Chi Qilin Li Huiling Fan Bo Cai Fei Xiao Shuai Wang Zheng Wang Lin Wang | 2021 | Nano Research2021,14,5: | 2 |
| 10 | RHOBTB3 promotes proteasomal degradation of HIFa through facilitating hydroxylation and suppresses the Warburg effect显示文摘 | Chen-Song Zhang Qi Liu Mengqi Li Shu-Yong Lin Yongying Peng Di Wu Terytty Yang Li Qiang Fu Weiping Jia Xinjun Wang Teng Ma Yue Zong Jiwen Cui Chengfei Pu Guili Lian Huiling Guo Zhiyun Ye Sheng-Cai Lin | 2015 | Cell Research2015,25,9: | 2 |
| 11 | Peroxisome proliferator activated receptor-γ ligands induced cell growth inhibition and its influence on matrix metalloproteinase activity in human myeloid leukemia cells显示文摘 | Jiajun Liu Huiling Lu Renwei Huang Dongjun Lin Xiangyuan Wu Qu Lin Xinyao Wu Jing Zheng Xianglin Pan Jun Peng Yuqin Song Maohong Zhang Ming Hou Feng Chen | 2005 | Cancer Chemotherapy and Pharmacology2005,,4: | 1 |
| 12 | Bundling strategy and product differentiation显示文摘 | Huiling Chung Yanshu Lin Jinli Hu | 2013 | Journal of Economics2013,108,3: | 1 |
| 13 | Alleviating experimental pulmonary hypertension via co-delivering FoxO1 stimulus and apoptosis activator to hyperproliferating pulmonary arteries显示文摘Pulmonary hypertension(PH)is an insidious pulmonary vasculopathy with high mortality and morbidity and its underlying pathogenesis is still poorly delineated.The hyperproliferation and apoptosis resistance of pulmonary artery smooth muscle cells(PASMCs)contributes to pulmonary vascular remodeling in pulmonary hypertension,which is closely linked to the downregulation of forkhead box transcriptional factor O1(FoxO1)and apoptotic protein caspase 3(Cas-3).Here,PA-targeted co-delivery of a FoxO1 stimulus(paclitaxel,PTX)and Cas-3 was exploited to alleviate monocrotaline-induced pulmonary hypertension.The co-delivery system is prepared by loading the active protein on paclitaxel-crystal nanoparticles,followed by a glucuronic acid coating to target the glucose transporter-1 on the PASMCs.The co-loaded system(170 nm)circulates in the blood over time,accumulates in the lung,effectively targets the PAs,and profoundly regresses the remodeling of pulmonary arteries and improves hemodynamics,leading to a decrease in pulmonary arterial pressure and Fulton's index.Our mechanistic studies suggest that the targeted co-delivery system alleviates experimental pulmonary hypertension primarily via the regression of PASMC proliferation by inhibiting cell cycle progression and promoting apoptosis.Taken together,this targeted co-delivery approach offers a promising avenue to target PAs and cure the intractable vasculopathy in pulmonary hypertension. | Bingbing Li Chao Teng Huiling Yu Xiaohong Jiang Xuyang Xing Qi Jiang Chenshi Lin Zongmin Zhao Ruifeng Zhang Wei He | 2023 | Acta Pharmaceutica Sinica B2023,13,6: | 1 |
| 14 | Th17 cell expansion in gastric cancer may contribute to cancer development and metastasis显示文摘 | Zhaoliang Su Yingkun Sun Haitao Zhu Yueqin Liu Xin Lin Huiling Shen Jianguo Chen Wenlin Xu Huaxi Xu | 2014 | Immunologic Research2014,,1: | 1 |
| 15 | Lithium-plasmon-based low-powered dynamic color display显示文摘Display and power supply have been two essential and independent cornerstones of modern electronics.Here,we report a lithium-plasmon-based low-powered dynamic color display with intrinsic dual functionality(plasmonic display and energy recycling unit)which is a result of the electric-field-driven transformation of nanostructured lithium metals.Dynamic color displays are enabled by plasmonic transformation through electrodeposition(electrostripping)of lithium metals during the charging(discharging)process,while the consumed energy for coloring can be retrieved in the inverse process respectively.Energy recycling of lithium metals brings energy consumption down to 0.390 mW cm~(-2)(0.105 mW cm~(-2))for the active(static)coloration state of a pro of-of-concept display/battery device,which approaches nearly-zero-energy-consumption in the near-100%-energy-efficiency limit of commercial lithium batteries.Combining the subwavelength feature of plasmonics with effective energy recycling,the lithium-plasmon-based dynamic display offers a promising route towards next-generation integrated photonic devices,with the intriguing advantages of low energy consumption,a small footprint and high resolution. | Jie Liang Yan Jin Huiling Yu Xinjie Chen Lin Zhou Pengcheng Huo Ye Zhang Haiyang Ma Yi Jiang Bin Zhu Ting Xu Hui Liu Shining Zhu Jia Zhu | 2023 | National Science Review2023,10,1: | 1 |
| 16 | The existence and design of functional observers for two-dimensional systems显示文摘 | Xu Huiling Lin Zhiping Makur A | | 0,,02: | 1 |
| 17 | The mechanism underlying extrapulmonary complications of the coronavirus disease 2019 and its therapeutic implication显示文摘The coronavirus disease 2019(COVID-19)is a highly transmissible disease caused by the severe acute respiratory syndrome coronavirus 2(SARS-CoV-2)that poses a major threat to global public health.Although COVID-19 primarily affects the respiratory system,causing severe pneumonia and acute respiratory distress syndrome in severe cases,it can also result in multiple extrapulmonary complications. | Qin Ning Di Wu Xiaojing Wang Dong Xi Tao Chen Guang Chen Hongwu Wang Huiling Lu Ming Wang Lin Zhu Junjian Hu Tingting Liu Ke Ma Meifang Han Xiaoping Luo | 2022 | Signal Transduction and Targeted Therapy2022,7,3: | 1 |
| 18 | Application of nanosilver surface modification to RO membrane and spacer for mitigating biofouling in seawater desalination 显示文摘 | Huiling Yang Justin Chtm-Te Lin Chihpin Huang | 2009 | Water Research2009,43,15: | 1 |
| 19 | Fish Oil Alleviates Activation of the Hypothalamic-Pituitary-Adrenal Axis Associated with Inhibition of TLR4 and NOD Signaling Pathways in Weaned Piglets after a Lipopolysaccharide Challenge123显示文摘 | Yulan Liu Feng Chen Quan Li Jack Odle Xi Lin Huiling Zhu Dingan Pi Yongqing Hou Yu Hong Haifeng Shi | 2013 | Journal of Nutrition2013,,11: | 1 |
| 20 | Honeycomb-Like Hydrogel Microspheres for 3D Bulk Construction of Tumor Models显示文摘A two-dimensional(2D)cell culture-based model is widely applied to study tumorigenic mechanisms and drug screening.However,it cannot authentically simulate the threedimensional(3D)microenvironment of solid tumors and provide reliable and predictable data in response to in vivo,thus leading to the research ilusionis and failure of drug screening.In this study,honeycomb-like gelatin methacryloyl(GelMA)hydrogel microspheres are developed by synchronous photocrosslinking microluidic technique to construct a 3D model of osteosarcoma.The in vitro study shows that ostcosarcoma cells(K7M2)culured in 3D GelMA microspheres have stronger tumorous stemness。proliferation and migration abilitics,more osteoclastogenetic ability,and reistance to chemotherapeutic drugs(DOX)than that of cells in 2D cultures.More imporantly,the 3D-cultured K7M2 cells show more tumorigenicity in immunologically sound mice,characterized by shorter tumorigenesis time,larger tumor volumc,severe bone destruction,and higher mortality.In conclusion,honeycomb like porous microsphere scaffolds are constructed with uniform structure by micofluidic technology to massively produce tumor cells with original phenotypes.Those microspheres could recapitulate the physiology microenvironment of tumors.maintain ell-cell and cell-extracellular matrix interactions,and thus provide an efective and convenient strategy for tumor pathogenesis and drug screening research. | Jiachen He Chichi Chen Liang Chen Ruoyu Cheng Jie Sun Xingzhi Liu Lin Wang Can Zhu Sihan Hu Yuan Xue Jian Lu Huiling Yang Wenguo Cui Qin Shi | 2022 | Research2022,,2: | 1 |