For: | Di Rosa M, Brundo VM, Malaguarnera L. New insights on chitinases immunologic activities. World J Immunol 2016; 6(2): 96-104 [DOI: 10.5411/wji.v6.i2.96] |
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URL: | https://www.wjgnet.com/2219-2824/full/v6/i2/96.htm |
Number | Citing Articles |
1 |
L. M. Polyakov, M. V. Kotova, N. V. Trifonova, E. I. Soloveva, R. A. Knyasev. Apolipoprotein A-I inhibits the increased activities of chitotriosidase and β-glucosaminidase in the liver of mice with BCG-induced tuberculosis inflammation. Сибирский научный медицинский журнал 2022; 42(6): 45 doi: 10.18699/SSMJ20220605
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2 |
Contessa A Ricci, Abu Hena Mostafa Kamal, Jayanta Kishor Chakrabarty, Lauren E Fuess, Whitney T Mann, Lea R Jinks, Vanessa Brinkhuis, Saiful M Chowdhury, Laura D Mydlarz. Proteomic Investigation of a Diseased Gorgonian Coral Indicates Disruption of Essential Cell Function and Investment in Inflammatory and Other Immune Processes. Integrative and Comparative Biology 2019; 59(4): 830 doi: 10.1093/icb/icz107
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3 |
Bin Yin, Hongyu Liu, Beiping Tan, Xiaohui Dong, Shuyan Chi, Qihui Yang, Shuang Zhang. Dynamic Alterations of the Distal Intestinal Microbiota, Transcriptome, and Metabolome of Hybrid Grouper by β -Conglycinin With Reconciliations by Sodium Butyrate in Feed. Frontiers in Marine Science 2021; 8 doi: 10.3389/fmars.2021.705332
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4 |
De Chang, Lokesh Sharma, Charles S. Dela Cruz. Chitotriosidase: a marker and modulator of lung disease. European Respiratory Review 2020; 29(156): 190143 doi: 10.1183/16000617.0143-2019
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