Open Access
Issue |
BIO Web Conf.
Volume 88, 2024
The 10th International Conference of Innovation in Animal Science (ICIAS 2023)
|
|
---|---|---|
Article Number | 00007 | |
Number of page(s) | 14 | |
DOI | https://doi.org/10.1051/bioconf/20248800007 | |
Published online | 22 January 2024 |
- K. A. A. K. Siregar & D.N.C. Hanifa, J. Public Heal. Trop. Coast. Reg. 4, 28-34 (2021). [CrossRef] [Google Scholar]
- W, Wu. et al, Front. Endocrinol. (Lausanne). 14, (2023). [Google Scholar]
- J, Baj. et al, J. Clin. Med. 9, 1753 (2020). [CrossRef] [Google Scholar]
- D. A. Berlin., R.M. Gulick & F.J. Martinez, N. Engl. J. Med. 383, 2451-2460 (2020). [CrossRef] [PubMed] [Google Scholar]
- L. Hariri & C.C. Hardin, N. Engl. J. Med. 383, 182–183 (2020). [CrossRef] [PubMed] [Google Scholar]
- M. N. Rivas., R.A. Porritt., M. H. Cheng., I. Bahar & M. Arditi, J. Allergy Clin. Immunol. 147, 57–59 (2021). [CrossRef] [Google Scholar]
- A. A. Rabaan. et al, Ann. Clin. Microbiol. Antimicrob. 19, 40 (2020). [CrossRef] [Google Scholar]
- Z. S. Lassi., R. Naseem., R. A. Salam., F. Siddiqui & J. K. Das, Int. J. Environ. Res. Public Health 18, 988 (2021). [CrossRef] [Google Scholar]
- N. Mahroum. et al, Front. Immunol. 13, (2022). [CrossRef] [Google Scholar]
- W. Dilokthornsakul., R. Kosiyaporn., R. Wuttipongwaragon & P. Dilokthornsakul, J. Integr. Med. 20, 114–125 (2022) [CrossRef] [Google Scholar]
- C. A. Demeke., A. E. Woldeyohan & Z. D. Kifle, Metab. Open 12, 100141 (2021). [CrossRef] [Google Scholar]
- P. Kashyap. et al, Molecules 27, 6374 (2022). [CrossRef] [PubMed] [Google Scholar]
- R. Hossain. et al, Chin. Med. 17, 100 (2022). [CrossRef] [Google Scholar]
- N. Yosri. et al, Foods 10, 1776 (2021). [CrossRef] [PubMed] [Google Scholar]
- S. Ashraf. et al, Phyther. Res. 37, 627–644 (2023). [CrossRef] [PubMed] [Google Scholar]
- G. Papadopoulou. et al, Pathogens 11, 311 (2022). [CrossRef] [PubMed] [Google Scholar]
- D. I. Capraru. et al, Medicina (B. Aires). 59, 877 (2023). [CrossRef] [Google Scholar]
- M. Rizzi. et al, Int. J. Mol. Sci. 24, 7099 (2023). [CrossRef] [Google Scholar]
- W. P. Tsai. et al, J. Taiwan Inst. Chem. Eng. 147, 104898 (2023). [CrossRef] [Google Scholar]
- S. Zheng., T. Xue., B. Wang., H. Guo & Q. Liu, Front. Bioinforma. 2, (2022). [CrossRef] [Google Scholar]
- A. L. Hopkins, Nat. Chem. Biol. 4, 682–690 (2008). [CrossRef] [PubMed] [Google Scholar]
- X.–D. Chu. et al, Transl. Cancer Res. 10, 681–693 (2021). [CrossRef] [Google Scholar]
- X, Lai. et al, Front. Pharmacol. 11, (2020). [Google Scholar]
- Y. Zheng., S. Ji., X. Li & Q. Feng, PeerJ 10, e13737 (2022). [CrossRef] [PubMed] [Google Scholar]
- D.–L. Ma., D. S.–H. Chan & C.–H. Leung, Chem. Sci. 2, 1656–1665 (2011). [CrossRef] [Google Scholar]
- L. Pinzi & G. Rastelli, Int. J. Mol. Sci. 20, 4331 (2019). [CrossRef] [Google Scholar]
- A. Vidal-Limon., J. E. Aguilar-Toala & A. M. Liceaga, J. Agric. Food Chem. 70, 934–943 (2022). [CrossRef] [PubMed] [Google Scholar]
- R. S. Ibrahim & A. A. El-Banna, RSC Adv. 11, 11610–11626 (2021). [CrossRef] [Google Scholar]
- A. H. Harisna. et al, Biochem. Biophys. Reports 26, 100969 (2021). [CrossRef] [Google Scholar]
- L. K. Dewi. et al, Int. J. Appl. Pharm. 13, 103–110 (2021). [CrossRef] [Google Scholar]
- M. Syaban. et al, J. Trop. Life Sci. 12, 219–230 (2022). [CrossRef] [Google Scholar]
- A. C. Khayrani. et al, J. King Saud Univ. Sci. 33, 101297 (2021). [CrossRef] [Google Scholar]
- S. A. Hidayat., A. Susilo., K. U. A. Awwaly & M. Cahyati, J. Ilmu dan Teknol. Has. Ternak 17, 123–134 (2022). [CrossRef] [Google Scholar]
- M. Sahlan. et al, J. King Saud Univ. Sci. 33, 101234 (2021). [CrossRef] [Google Scholar]
- J. F. Fatriansyah., R. K. Rizqillah., M. Y. Yandi., Fadilah & M. Sahlan, J. King Saud Univ. Sci. 34, 101707 (2022). [CrossRef] [Google Scholar]
- V. Kumar. et al, Phyther. Res. (2023) doi:10.1002/ptr.7717. [Google Scholar]
- A. Daina., O. Michielin & V. Zoete, Sci. Rep. 7, 42717 (2017). [CrossRef] [Google Scholar]
- M. Kuhn., C. V. Mering., M. Campillos., L. J. Jensen & P. Bork, Nucleic Acids Res. 36, D684–D688 (2007). [CrossRef] [PubMed] [Google Scholar]
- Z.–J. Yao. et al, J. Comput. Aided. Mol. Des. 30, 413–424 (2016). [CrossRef] [PubMed] [Google Scholar]
- A. Daina., O. Michielin & V. Zoete, Nucleic Acids Res. 47, W357–W364 (2019). [CrossRef] [PubMed] [Google Scholar]
- M. Safran. et al, in Practical Guide to Life Science Databases 27–56 (Springer Nature Singapore, 2021). doi:10.1007/978-981-16-5812-9_2. [Google Scholar]
- M. Kanehisa., M. Furumichi., M. Tanabe., Y. Sato & K. Morishima, Nucleic Acids Res. 45, D353–D361 (2017). [CrossRef] [PubMed] [Google Scholar]
- J. Chen. et all, Hematology 20, 336–342 (2015). [CrossRef] [PubMed] [Google Scholar]
- Q. Pan., R. Zhou., M. Su & R. Li, Med. Sci. Monit. 25, 4648–4654 (2019). [CrossRef] [Google Scholar]
- R. C. Gentleman. et al, Genome Biol. 5, (2004). [Google Scholar]
- L. Shang. et al, J. Ethnopharmacol. 302, 115876 (2023). [CrossRef] [Google Scholar]
- L. Che. et al, Int. J. Chron. Obstruct. Pulmon. Dis. Volume 16, 2503–2513 (2021). [CrossRef] [Google Scholar]
- L. Shi. et al, Front. Genet. 13, (2022). [Google Scholar]
- D. Szklarczyk. et al, Nucleic Acids Res. 43, D447–D452 (2015). [CrossRef] [PubMed] [Google Scholar]
- G. Stelzer. et al, Curr. Protoc. Bioinforma. 54, (2016). [Google Scholar]
- P. Shannon. et al, Genome Res. 13, 2498–2504 (2003). [Google Scholar]
- R. Gentleman., V. J. Carey., W. Huber., R. A. Irizarry & S. Dudoit, Bioinformatics and Computational Biology Solutions Using R and Bioconductor. (Springer New York, 2005). doi:10.1007/0-387-29362-0. [CrossRef] [Google Scholar]
- C.–H. Chin. et al, BMC Syst. Biol. 8, S11 (2014). [CrossRef] [Google Scholar]
- H. Vaghasia., S. Sakaria., J. Prajapati., M. Saraf & R. M. Rawal, Comput. Biol. Med. 149, 105994 (2022). [CrossRef] [Google Scholar]
- S. Dallakyan & A. J. Olson, in Chemical Biology 243–250 (Humana Press, 2015). doi:10.1007/978-1-4939-2269-7_19. [CrossRef] [PubMed] [Google Scholar]
- J. Li. et al, Cancer Res. 72, 260–270 (2012). [CrossRef] [PubMed] [Google Scholar]
- S. K. Burley. et al, Nucleic Acids Res. 49, D437–D451 (2021). [CrossRef] [PubMed] [Google Scholar]
- S. Kim. et al, Nucleic Acids Res. 51, D1373–D1380 (2023). [Google Scholar]
- J. L. Velázquez-Libera., F. Durán-Verdugo., A. Valdés-Jiménez., G. NúñezVivanco & J. Caballero, Bioinformatics 36, 2912–2914 (2020). [CrossRef] [PubMed] [Google Scholar]
- X. Xinyi. et al, Digit. Chinese Med. 5, 18–32 (2022). [CrossRef] [Google Scholar]
- A. C. Wallace., R. A. Laskowski & J. M. Thornton, Protein Eng. Des. Sel. 8, 127–134 (1995). [CrossRef] [Google Scholar]
- R. A. Laskowski & M. B. Swindells, J. Chem. Inf. Model. 51, 2778–2786 (2011). [CrossRef] [PubMed] [Google Scholar]
- E. Krieger & G. Vriend, J. Comput. Chem. 36, 996–1007 (2015). [CrossRef] [PubMed] [Google Scholar]
- J. A. Maier. et al, J. Chem. Theory Comput. 11, 3696–3713 (2015). [CrossRef] [PubMed] [Google Scholar]
- B. R. Miller. et al, J. Chem. Theory Comput. 8, 3314–3321 (2012). [CrossRef] [PubMed] [Google Scholar]
- V. Meylani. et al, Results Chem. 5, 100721 (2023). [CrossRef] [Google Scholar]
- R. Al-Sadi, Front. Biosci. Volume, 2765 (2009). [CrossRef] [Google Scholar]
- X. Zhang. et al, Int. J. Med. Sci. 18, 1866–1876 (2021). [CrossRef] [Google Scholar]
Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.
Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.
Initial download of the metrics may take a while.