Showing 701 - 720 results of 9,672 for search '(((shinae OR (than OR shin)) OR (spike OR find)) OR ((bin OR spent) OR ping))', query time: 0.18s Refine Results
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    Structural and biochemical mechanisms of NLRP1 inhibition by DPP9 by Huang, Menghang, Zhang, Xiaoxiao, Toh, Gee Ann, Gong, Qin, Wang, Jia, Han, Zhifu, Wu, Bin, Zhong, Franklin, Chai, Jijie

    Published 2022
    “…Activation of the NLR protein NLRP1 requires autocleavage within its function-to-find domain (FIIND)1-7. In resting cells, the dipeptidyl peptidases DPP8 and DPP9 interact with the FIIND of NLRP1 and suppress spontaneous NLRP1 activation8,9; however, the mechanisms through which this occurs remain unknown. …”
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    Journal Article
  13. 713

    Polycyclic aromatic hydrocarbons (PAHs) in blood serum of adults living in high and low-traffic volume areas in Malaysia: A comparative cross-sectional study by Al-Battawi, Samer, Latif, Mohd Talib, How, Vivien, Thilakavathy, Karuppiah, Abd Hamid, Haris Hafizal, Hameed, Sarah, Ho, Yu Bin

    Published 2024
    “…Health risk assessment was computed using benzo(a)pyrene (BaP) equivalent (BaPeq) and demonstrated that the Kuala Lumpur group has twofold greater carcinogenic risk than the Hulu Langat group (16.11 vs 7.76 ng g−1 lipids). …”
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    Article
  14. 714

    Advanced Ni tar reforming catalysts resistant to syngas impurities: current knowledge, research gaps and future prospects by Dara Khairunnisa Mohamed, Veksha, Andrei, Quan Luu Manh Ha, Chan, Wei Ping, Lim, Teik-Thye, Lisak, Grzegorz

    Published 2022
    “…This review investigates the recent findings related to poisoning effects of both common and under-researched syngas impurities on nickel catalysts and achievements in the synthesis of poison tolerant catalysts. …”
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    Journal Article
  15. 715

    Silencing of diphthamide synthesis 3 (Dph3) reduces metastasis of murine melanoma by Wang, Lei, Shi, Yu, Ju, Peijun, Liu, Rui, Yeo, Siok Ping, Xia, Yinyan, Owlanj, Hamed, Feng, Zhiwei

    Published 2013
    “…Finally, we found that Dph3 promotes melanoma migration and invasion through the AKT signaling pathway. To conclude, our findings suggest a novel mechanism underlying the metastasis of melanoma cells which might serve as a new intervention target for the treatment of melanoma.…”
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    Journal Article
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