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  1. 3101

    Bond Effects between Concrete and Steel Bar Using Different Diameter Bars and Different Initial Crack Width by Papa Niane Faye, Yinghua Ye, Bo Diao

    Published 2017-01-01
    “…The importance of an accurate simulation of service conditions in the bond performance of reinforced concrete structures in coastal regions is highlighted. …”
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  2. 3102
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  4. 3104

    Effect of Different Surface Modifications of Acrylic Teeth and Thermocycling on Shear Bond Strength to Polycarbonate Denture Base Material by Humam M. Al-Somaiday, Aula Kamal Rafeeq, Manar E. Al-Samaray

    Published 2022-01-01
    “…Incompatible surface conditions at the tooth/denture base interface result in a lack of bonding. This study aimed to study the influence of different surface modifications of acrylic teeth and thermocycling on shear bond strength to polycarbonate denture base material. …”
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  5. 3105
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  7. 3107

    Ion recognition enables fast Mg–Cl bond dissociation kinetics and better Mg plating/stripping reversibility by Jiacheng Yang, Jinlei Zhang, Kun Zhang, Jing Liu, Zhenfang Zhou, Zhenjiang Li, Guicun Li, Guanglei Cui, Zhonghua Zhang

    Published 2024-12-01
    “…The designed skeleton host also exhibits excellent long cycle lifespan above 2300 h and extra-high average Coulombic efficiency of 99.65 % within 700 cycles. The accelerated bond splitting strategy enables improved metal-anode reversibility, which is also insightful to high concentrated or other electrolyte systems that contain abundant ion pairs or aggregates.…”
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  8. 3108

    Effect of Constituent Units, Type of Interflavan Bond, and Conformation on the Antioxidant Properties of Procyanidin Dimers: A Computational Outlook by Ana María Mendoza-Wilson, René Renato Balandrán-Quintana

    Published 2017-01-01
    “…The factors that showed the most notable effects on the antioxidant properties of the PC dimers were the type of interflavan bond and the conformation. The antioxidant ability of the dimers PB3 and PB4 containing the interflavan bond C4–C8, in their Compact conformation, was very similar to each other but greater than those of dimers PB5, PB6, PB7, and PB8 containing the C4–C6 interflavan bond. …”
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  9. 3109
  10. 3110
  11. 3111

    lncRNA ZFAS1 Promotes HMGCR mRNA Stabilization via Binding U2AF2 to Modulate Pancreatic Carcinoma Lipometabolism by Luoluo Wang, Yi Ruan, Xiang Wu, Xinhua Zhou

    Published 2022-01-01
    “…As an oncogene of PC, ZFAS1 can modulate lipometabolism and stabilize HMGCR mRNA expression by binding with U2AF2 in PC, which is a candidate target for PC diagnosis and treatment.…”
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  12. 3112
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  15. 3115

    Fragmenstein: predicting protein–ligand structures of compounds derived from known crystallographic fragment hits using a strict conserved-binding–based methodology by Matteo P. Ferla, Rubén Sánchez-García, Rachael E. Skyner, Stefan Gahbauer, Jenny C. Taylor, Frank von Delft, Brian D. Marsden, Charlotte M. Deane

    Published 2025-01-01
    “…This approach works under the assumption of conserved binding: when a larger molecule is designed containing the initial fragment hit, the common substructure between the two will adopt the same binding mode. …”
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  16. 3116
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  18. 3118

    Traumatic Blunt Force Renal Injury in a Diseased Horseshoe Kidney with Successful Embolization to Treat Active Bleeding: A Case Report and Literature Review by Chonlada Krutsri, Pongsasit Singhatas, Preeda Sumpritpradit, Chunlaches Chaijareenont, Wit Viseshsindh, Tharin Thampongsa, Pattawia Choikrua

    Published 2020-01-01
    “…Background. Blunt force injuries in patients with preexisting kidney disease account for 19% of all kidney injuries, suggesting that diseased kidneys are more vulnerable than normal kidneys. …”
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  19. 3119
  20. 3120

    Hydroxysafflor Yellow A Inhibits LPS-Induced NLRP3 Inflammasome Activation via Binding to Xanthine Oxidase in Mouse RAW264.7 Macrophages by Xiaolong Xu, Yuhong Guo, Jingxia Zhao, Ning Wang, Junying Ding, Qingquan Liu

    Published 2016-01-01
    “…Computation docking illustrated that, in this HSYA-XO complex, HSYA was surrounded by Leu 648, Leu 712, His 875, Leu 873, Ser 876, Glu 879, Phe 649, and Asn 650 with a binding energy of −5.77 kcal/M and formed hydrogen bonds with the hydroxyl groups of HSYA at Glu 879, Asn 650, and His 875. …”
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