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| 1 | Mammalian WTAP is a regulatory subunit of the RNA N6-methyladenosine methyltransferase显示文摘包含 methyltransferase 建筑群的象 3 一样的 methyltransferase (METTL3 ) 催化 N6-methyladenosine (m6A ) 形成,一个新奇 epitranscriptomic 标记;然而,这建筑群的性质仍然保持大部分未知。这里,我们报导人的 m6A methyltransferase 建筑群, Wilm 的肿瘤 1 伙伴蛋白质(WTAP ) 和象 14 一样的 methyltransferase (METTL14 ) 的二个新部件。WTAP 与 METTL3 和 METTL14 交往,并且为他们的本地化被要求进在 vivo 与处理因素的 pre-mRNA 并且为 m6A methyltransferase 的催化活动充实的原子点缀。RNA 的多数在 vivo 由 WTAP 和 METTL3 跳了代表包含一致 m6A 主题的 mRNAs。当 WTAP 不在时, METTL3 的 RNA 有约束力的能力强烈被减少,建议 WTAP 可以工作调整到 mRNA 目标的 m6A methyltransferase 建筑群的招募。而且,在有 photoactivatable-ribonucleoside-enhanced crosslinking 和 immunoprecipitation (同等片断) 的联合的 transcriptomic 分析说明那 WTAP 和 METTL3 调整涉及抄写并且 RNA 处理的基因拼接的表示和选择。在 zebrafish 胚胎的调停 Morpholino 的击倒的指向 WTAP 或 METTL3 引起了织物区别缺点并且增加了 apoptosis。这些调查结果提供 WTAP 可以在 m6A methyltransferase 建筑群作为一个规章的子单元工作并且在 RNA 的 epitranscriptomic 规定起一个关键作用的充分证据新陈代谢。 | Xiao-Li Ping Bao-Fa Sun Lu Wang Wen Xiao Xin Yang Wen-Jia Wang Samir Adhikari Yue Shi Ying Lv Yu-Sheng Chen Xu Zhao Ang Li Ying Yang Ujwal Dahal Xiao-Min Lou Xi Liu Jun Huang Wei-Ping Yuan Xiao-Fan Zhu Tao Cheng Yong-Liang Zhao Xinquan Wang Jannie M Rendtlew Danielsen Feng Liu Yun-Gui Yang | 2014 | Cell Research2014,24,2: | 244 |
| 2 | Long-term anodal block stimulation at sacral anterior roots promoted recovery of neurogenic bladder function in a rabbit model of complete spinal cord injury显示文摘A complete spinal cord injury model was established in experimental rabbits using the spinal cord clip compression method.Urodynamic examination was performed 2 weeks later to determine neurogenic bladder status.The rabbits were treated with anodal block stimulation at sacral anterior roots for 4 weeks.Electrical stimulation of sacral anterior roots improved urodynamic parameters of neurogenic bladder in rabbit models of complete spinal cord injury,effectively promoted urinary function,and relieved urinary retention.Immunohistochemistry results showed that a balance was achieved among expression of muscarinic receptor subunits M2,M3,ATP-gated ion channel P2X3 receptors,and β2-adrenergic receptor,and nerve growth factor expression decreased.These results suggested that long-term sacral anterior root stimulation of anodal block could be used to treat neurogenic bladder in a rabbit model of complete spinal cord injury. | Xiaoran Wang Qi Gao Xiaoyu Yang Weihua Wang Xinquan Gu Guifeng Liu Peng Yan Ge Gao Xin Yu Yongjie Wang Jihu Lian Chaoling Shi Yao Wang Li Fan | 2012 | Neural Regeneration Research2012,7,5: | 6 |
| 3 | Promoting lacunar bone regeneration with an injectable hydrogel adaptive to the microenvironment显示文摘Injectable hydrogel is suitable for the repair of lacunar bone deficiency.This study fabricated an injectable,self-adaptive silk fibroin/mesoporous bioglass/sodium alginate(SMS)composite hydrogel system.With controllable and adjustable physical and chemical properties,the SMS hydrogel could be easily optimized adaptively to different clinical applications.The SMS hydrogel effectively showed great injectability and shapeability,allowing defect filling with no gap.Moreover,the SMS hydrogel displayed self-adaptability in mechanical reinforcement and degradation,responsive to the concentration of Ca2+and inflammatory-like pH value in the microenvi-ronment of bone deficiency,respectively.In vitro biological studies indicated that SMS hydrogel could promote osteogenic differentiation of bone marrow mesenchymal stem cells by activation of the MAPK signaling pathway.The SMS hydrogel also could improve migration and tube formation of human umbilical vein endothelial cells.Investigations of the crosstalk between osteoblasts and macrophages confirmed that SMS hydrogel could regulate macrophage polarization from M1 to M2,which could create a specific favorable environment to induce new bone formation and angiogenesis.Meanwhile,SMS hydrogel was proved to be antibacterial,especially for gram-negative bacteria.Furthermore,in vivo study indicated that SMS could be easily applied for maxillary sinus elevation,inducing sufficient new bone formation.Thus,it is convincing that SMS hydrogel could be potent in a simple,minimally invasive and efficient treatment for the repair of lacunar bone deficiency. | Ao Zheng Xiao Wang Xianzhen Xin Lingjie Peng Tingshu Su Lingyan Cao Xinquan Jiang | 2023 | Bioactive Materials2023,,3: | 3 |
| 4 | Solid state reactions of coordination compounds at low heating temperatures显示文摘 | Xin XinQuan Zheng LiMin | 1993 | J Solid State Chem1993,106,2: | 1 |
| 5 | Two-step solid-state synthesis of tin oxide and its gas-sensing property显示文摘 | Feng Li Liying Chen Zhiqiang Chen Jiaqiang Xu Jianmin Zhu Xinquan Xin | 2002 | Materials Chemistry and Physics2002,,2: | 1 |
| 6 | 显示文摘 | Zhou Yiming Xin Xinquan | 1999 | Chinese J Inorg Chem1999,15,3: | 1 |
| 7 | Solid state synthesis of a new compound Cu (HQ) Ci2 and its formation reaction 显示文摘 | Lei Lixu Xin Xinquan | 1996 | Thermochim Acta1996,61,: | 1 |
| 8 | High-performance all-solution-processed inverted quantum dot light-emitting diodes enabled by water treatment显示文摘All-solution-processed inverted quantum dot(QD)light-emitting diodes(QLEDs)with transparent bottom cathodes can be directly connected to the n-type thin-film transistors,offering a feasible solution for low-cost active matrix-driven QD displays.However,the subsequent solution-deposition of the hole-transporting layer destroys the underneath QD films,resulting in largely deteriorated device performance.Various strategies have been implemented to prevent QD film from dissolution,but all at a heavy cost of device performance suffering from either reduced efficiency or increased driving voltage.Here,a facile and effective water-treatment approach for QD film to fabricate inverted QLEDs through all solution processing is reported.The water treatment substitutes the long-chain oleate ligands with hydroxyl groups,resulting in significantly improved non-polar solvent resistance of the QD films.Importantly,the QD films reserve their excellent photoluminescence efficiency after water treatment.With the water-treated QD film as the emissive layer,all-solution-processed inverted red QLED with a peak external quantum efficiency of 19.6%,a turn-on voltage of 1.8 V,and a T50 operational lifetime of 150,000 h at 100 cd·m^(-2) was achieved.Furthermore,efficient and low-voltage-driven green and blue QLEDs can also be prepared with this method.This work provides a feasible strategy for the fabrication of high-performance all-solution-processed inverted QLEDs,paving the way toward achieving QLEDs by all ink-jet printing. | Qianqing Hu Junjie Si Desui Chen Xiaoming Hao Rui Xu Yihang Du Zhuopeng Du Xinquan Gong Hong Zhao Peiqing Cai Qi Ai Xin Yao Yu Yan Zenan Zhang Muzhi Cai Wei Liu Yongyin Kang Zugang Liu | 2023 | Nano Research2023,16,7: | 0 |
| 9 | In vitro bioactivity and cytocompatibility of porous scaffolds of bioactive borosilicate glasses显示文摘The bioactive borosilicate scaffolds (R2O-RO-B2O3-SiO2-P2O5) with four different contents of borate were fabricated by replication technique. The bioactivity, degradability and the cytotoxicity of the scaffolds were studied in this paper. The porosity of the scaffolds was found to be 73%―80%, and the pore size was in the range of 200―300 μm. The porous scaffolds immersed in 0.02 mol·L-1 K2HPO4 solution were transformed into hydroxyapatite. And it is notable that the D-Alk-2B, D-Alk-3B-scaffolds were covered by hydroxyapatite layers after 7 h-immersion, which proved their high bioactivity. In the cell adhesion test, cells could be seen growing well on the scaffolds, showing stretched morphology and obvious pseudopodia, and only the high cumulative concentration of B ions released from the D-Alk-3B-scaffold samples had an inhibition effect on cell proliferation. But the inhibition effect could be alleviated by diluting the extract solution to a certain concentration (dilution ratio: 1:8). Therefore, after suitable pretreatment, the porous borosilicate bioactive glass scaffold can be a desirable candidate for bone tissue engineering. | ZHANG Xin FU HaiLuo LIU Xin YAO AiHua WANG DePing HUANG WenHai ZHAO Ying JIANG XinQuan | 2009 | Chinese Science Bulletin2009,54,18: | 0 |
| 10 | Adhesion-enhancing coating embedded with osteogenesis-promoting PDA/HA nanoparticles for peri-implant soft tissue sealing and osseointegration显示文摘Following dental implantation,the characteristic bacterial milieu of the oral cavity may lead to peri-implant inflammation,which can negatively impact osseointegration and cause implant failure.To improve soft tissue sealing around the implant,enhance osseointegration,and improve implant success rates,this paper proposes a composite multifunctional coating(PHG)prepared using gelatin and polydopamine/hydroxyapatite nanoparticles,investigates the effects of this novel coating on cell adhesion,proliferation,antibacterial activity,osteogenic differentiation,and evaluates its immune-related properties.The PHG coating was proved to have satisfactory hydrophilicity and wettability for cell attachment.Furthermore,it improved the expression of adhesion-related genes and proteins in human gingival fibroblasts,indicating its adhesion-promoting effect.Additionally,bone marrow mesenchymal stem cells exhibited strong osteogenic differentiation potential and mineralization on PHG-coated surfaces.Notably,the PHG coating exhibited antibacterial activity against Streptococcus mutans,as well as anti-inflammatory effects,potentially via the regulation of macrophages.Therefore,the proposed PHG coating may promote soft tissue sealing and bone bonding,providing a potential strategy for the surface modification of dental implants. | Tingshu Su Ao Zheng Lingyan Cao Lingjie Peng Xiao Wang Jie Wang Xianzhen Xin Xinquan Jiang | 2022 | Bio-Design and Manufacturing2022,5,2: | 0 |
| 11 | Reduced graphene oxide membrane as supporting film for high-resolution cryo-EM显示文摘Although single-particle cryogenic electron microscopy(cryo-EM)has been applied extensively for elucidating many crucial biological mechanisms at the molecular level,this technique still faces critical challenges,the major one of which is to prepare the high-quality cryo-EM specimen.Aiming to achieve a more reproducible and efficient cryo-EM specimen preparation,novel supporting films including graphene-based two-dimensional materials have been explored in recent years.Here we report a robust and simple method to fabricate EM grids coated with single-or few-layer reduced graphene oxide(RGO)membrane in large batch for high-resolution cryo-EM structural determination.The RGO membrane has decreased interlayer space and enhanced electrical conductivity in comparison to regular graphene oxide(GO)membrane.Moreover,we found that the RGO supporting film exhibited nice particle-absorption ability,thus avoiding the air-water interface problem.More importantly,we found that the RGO supporting film is particularly useful in cryo-EM reconstruction of sub-100-kDa biomolecules at near-atomic resolution,as exemplified by the study of RBD-ACE2 complex and other small protein molecules.We envision that the RGO membranes can be used as a robust graphene-based supporting film in cryo-EM specimen preparation. | Liu Nan Liming Zheng Jie Xu Jia Wang Cuixia Hu Jun Lan Xing Zhang Jincan Zhang Kui Xu Hang Cheng Zi Yang Xin Gao Xinquan Wang Hailin Peng Yanan Chen Hong-Wei Wang | 2021 | Biophysics Reports2021,7,3: | 0 |