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For: Heiran R, Sepehri S, Jarrahpour A, Digiorgio C, Douafer H, Brunel JM, Gholami A, Riazimontazer E, Turos E. Synthesis, docking and evaluation of in vitro anti-inflammatory activity of novel morpholine capped β-lactam derivatives. Bioorg Chem 2020;102:104091. [PMID: 32717692 DOI: 10.1016/j.bioorg.2020.104091] [Cited by in Crossref: 7] [Cited by in F6Publishing: 3] [Article Influence: 3.5] [Reference Citation Analysis]
Number Citing Articles
1 Zheng X, Wen R, Liu Y, Gan L, Zhang Q, Jiang Y, Tu P. Nitric oxide inhibitory phenolic constituents isolated from the roots and rhizomes of Notopterygium incisum. Bioorganic Chemistry 2022;128:106060. [DOI: 10.1016/j.bioorg.2022.106060] [Reference Citation Analysis]
2 Rezaei A, Saberi S, Sepehri S. Synthesis, Antileishmanial Activity and Molecular Docking Study of a Series of Dihydropyridine Derivatives. Polycyclic Aromatic Compounds. [DOI: 10.1080/10406638.2022.2092877] [Reference Citation Analysis]
3 Łowicki D, Przybylski P. Cascade synthetic strategies opening access to medicinal-relevant aliphatic 3- and 4-membered N-heterocyclic scaffolds. Eur J Med Chem 2022;238:114438. [PMID: 35567964 DOI: 10.1016/j.ejmech.2022.114438] [Cited by in Crossref: 2] [Cited by in F6Publishing: 1] [Article Influence: 2.0] [Reference Citation Analysis]
4 Bian M, Ma QQ, Wu Y, Du HH, Guo-Hua G. Small molecule compounds with good anti-inflammatory activity reported in the literature from 01/2009 to 05/2021: a review. J Enzyme Inhib Med Chem 2021;36:2139-59. [PMID: 34628990 DOI: 10.1080/14756366.2021.1984903] [Reference Citation Analysis]
5 Zinad DS, Mahal A, Salman GA. Synthesis and Antibacterial Activity of Novel 1,3-Oxazine Derivatives. Organic Preparations and Procedures International 2021;53:578-84. [DOI: 10.1080/00304948.2021.1975486] [Cited by in Crossref: 1] [Cited by in F6Publishing: 1] [Article Influence: 1.0] [Reference Citation Analysis]
6 Wang M, Zhang X, Qi M, Guo D, Wang Y, Gao H. New cassane- and norcassane-type diterpenoids from the seed kernels of Caesalpinia sinensis and their anti-inflammatory activity in vitro. Fitoterapia 2021;153:104978. [PMID: 34171412 DOI: 10.1016/j.fitote.2021.104978] [Reference Citation Analysis]
7 Liu T, Xing S, Du J, Wang M, Han J, Li Z. Synthesis and evaluation of the anti-inflammatory activity of novel 8-quinolinesulfonamide derivatives as TLR4/MD-2 inhibitors with efficacy in adjuvant-induced arthritis. Bioorg Chem 2021;114:105037. [PMID: 34120022 DOI: 10.1016/j.bioorg.2021.105037] [Reference Citation Analysis]
8 Wang M, Yang Y, Yin Y, Song K, Long L, Li X, Zhou B, Gao H. New Cassane Diterpenoids from the Seed Kernels of Caesalpinia cucullata , Exhibit Anti‐inflammatory Effect in vitro by Inhibiting iNOS Enzymatic Activity. Chin J Chem 2021;39:1625-34. [DOI: 10.1002/cjoc.202000683] [Cited by in Crossref: 1] [Cited by in F6Publishing: 4] [Article Influence: 1.0] [Reference Citation Analysis]
9 Abootalebi SN, Mousavi SM, Hashemi SA, Shorafa E, Omidifar N, Gholami A, Ali S. Antibacterial Effects of Green-Synthesized Silver Nanoparticles Using Ferula asafoetida against Acinetobacter baumannii Isolated from the Hospital Environment and Assessment of Their Cytotoxicity on the Human Cell Lines. Journal of Nanomaterials 2021;2021:1-12. [DOI: 10.1155/2021/6676555] [Cited by in Crossref: 2] [Cited by in F6Publishing: 1] [Article Influence: 2.0] [Reference Citation Analysis]
10 Alves NG, Alves AJS, Soares MIL, Pinho e Melo TMVD. Recent Advances in the Synthesis of Spiro‐β‐Lactams and Spiro‐δ‐Lactams. Adv Synth Catal 2021;363:2464-501. [DOI: 10.1002/adsc.202100013] [Cited by in Crossref: 2] [Cited by in F6Publishing: 4] [Article Influence: 2.0] [Reference Citation Analysis]
11 Desai NC, Harsora JP, Monapara JD, Khedkar VM. Synthesis, Antimicrobial Capability and Molecular Docking of Heterocyclic Scaffolds Clubbed by 2-Azetidinone, Thiazole and Quinoline Derivatives. Polycyclic Aromatic Compounds. [DOI: 10.1080/10406638.2021.1877747] [Cited by in Crossref: 2] [Cited by in F6Publishing: 1] [Article Influence: 2.0] [Reference Citation Analysis]