[1] | Stanton T B.A Call for Antibiotic Alternatives Research[J]. Trends Microbiol,2013,21(3):111-113. | [2] | Mangoni M L,Di Grazia A,Cappiello F,et al. Naturally Occurring Peptides from Rana temporaria:Antimicrobial Properties and More[J]. Curr Top Med Chem,2016,16(1):54-64. | [3] | O'Shea R,Moser H E. Physicochemical Properties of Antibacterial Compounds:Implications for Drug Discovery[J]. J Med Chem,2008,51(10):2871-2878. | [4] | Fischbach M A,Walsh C T,Walsh C T.Antibiotics for Emerging Pathogens[J]. Science,2009,325(5944):1089-1093. | [5] | Teta R,Marteinsson V T,Longeon A,et al. Thermoactinoamide A, An Antibiotic Lipophilic Cyclopeptide from the Icelandic Thermophilic Bacterium Thermoactinomyces vulgaris[J]. J Nat Prod,2017,80(9):2530-2535. | [6] | ZHU Longbao,YANG Jin, TAO Yugui. Chemical Synthesis Method and Process of an Antibacterial Cyclic Peptide Thermoactinoamide A:CN1087155605A[P].2018-10-30.(in Chinese) 朱龙宝,杨瑾,陶玉贵. 一种抗菌环肽Thermoactinoamide A的化学合成方法与流程:中国, CN1087155605A[P].2018-10-30. | [7] | Son S,Hong Y S,Jang M,et al. Genomics-Driven Discovery of Chlorinated Cyclic Hexapeptides Ulleungmycins A and B from a Streptomyces Species[J]. J Nat Prod,2017,45(12):3025-3031. | [8] | Song Y X,Li Q L,Liu X,et al. Cyclic Hexapeptides from the Deep South China Sea-Derived Streptomyces scopuliridis SCIO ZJ46 Active Against Pathogenic Gram-Positive Bacteria[J]. J Nat Prod,2014,77(8):1937-1941. | [9] | Jang J P,Nogawa T,Futamra Y,et al. Octaminomycins A and B, Cyclic Octadepsipeptides Active Against Plasmodium falciparum[J]. J Nat Prod,2017,80(1):134-140. | [10] | Pfaller M A,Andes D,Diekema D J,et al. Wild-Type MIC Distributions, Epidemiological Cutoff Values and Species-Specific Clinical Breakpoints for Fluconazole and Candida:Time for Harmonization of CLSI and EUCAST Broth Microdilution Methods[J]. Drug Resist Updates,2010,13(6):180-195. |
|