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海洋来源放线菌Actinoalloteichus cyanogriseus WH1-2216-6产浅蓝霉素A的发酵条件优化 被引量:4
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作者 贾海健 王聪 +2 位作者 王乂 刘培培 朱伟明 《中国海洋药物》 CAS CSCD 北大核心 2014年第5期9-15,共7页
目的对海洋来源放线菌Actinoalloteichus cyanogriseus WH1-2216-6产浅蓝霉素A的发酵条件进行优化,提高浅蓝霉素A的产量。方法对培养基的组成、接种量、起始pH、盐度、发酵时间、前体浓度及大孔吸附树脂添加量等条件的研究,通过单因素... 目的对海洋来源放线菌Actinoalloteichus cyanogriseus WH1-2216-6产浅蓝霉素A的发酵条件进行优化,提高浅蓝霉素A的产量。方法对培养基的组成、接种量、起始pH、盐度、发酵时间、前体浓度及大孔吸附树脂添加量等条件的研究,通过单因素和正交试验,选择最优发酵条件;结果获得了浅蓝霉素A的最佳发酵条件,培养基组成(可溶性淀粉20g,甘油20g,蛋白胨20g,CaCO32g,2-吡啶甲酸400mg,XAD-16大孔吸附树脂50g,陈海水1L)、装液量150/500mL(体积分数)、5d种龄、3.3%盐度、起始pH=7.5、摇床(180r·min-1,28℃)发酵12d。结论以最佳发酵条件发酵,优化后的浅蓝霉素A的产量为优化前的7.0倍,达到610.5mg/L。 展开更多
关键词 浅蓝霉素A 发酵优化 海洋放线菌 Actinoalloteichus cyanogriseus
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Caerulomycin A—An Antifungal Compound Isolated from Marine Actinomycetes 被引量:2
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作者 Vaibhav Ambavane Pradipta Tokdar +5 位作者 Rajashri Parab E. S. Sreekumar Girish Mahajan Prabhu Dutt Mishra Lisette D’Souza Prafull Ranadive 《Advances in Microbiology》 2014年第9期567-578,共12页
Actinomycetes have been prolific sources of novel secondary metabolites with a range of biological activities that may ultimately find application as therapeutic compounds. Hence several drug discovery companies are e... Actinomycetes have been prolific sources of novel secondary metabolites with a range of biological activities that may ultimately find application as therapeutic compounds. Hence several drug discovery companies are engaged in isolation of novel bioactive metabolites from these microbial sources. Antibiotics form the major class of such bioactive metabolites and have been widely used for treating infectious diseases. One of the most critical problems in clinical practice is the increase of prevalence of drug resistant strains, especially azole resistance among fungi. Due to this, there is a constant need for development of new antifungal antibiotics having novel scaffolds and/or mechanism of action. In our in-house screening program in the quest of novel and superior antifungal compounds, an actinomycetes strain PM0525875 was isolated from a marine invertebrate. The extracts of this microbe showed potent in-vitro antifungal activity against drug resistant fungal strains. The antifungal active peak from the extract obtained by shake flask fermentation was identified by chromatographic and other analytical techniques during bioactivity guided isolation. Later the fermentation conditions were optimized in 30 L fermentor for the production of sufficient amount antifungal compound for complete structural characterization. Consequently the fermented broth extract was subjected to bioactivity-guided fractionation, to isolate the active principle using different preparative chromatographic techniques followed by its characterization. The active principle was characterized to be Caerulomycin A. Minimum inhibitory concentration (MIC) of the compound was found in the range of 0.39 - 1.56 μg/ml against pathogenic fungal test strains. The phylogenetic analysis of producer strain using 16S rRNA sequence showed closest match with Actinoalloateichus cyanogriseus. Herewith we report the isolation of Caerulomycin A from marine invertebrate-associated Actinoalloteichus sp. using optimized medium and fermentation conditions. 展开更多
关键词 Caerulomycin A ANTIFUNGAL Non-Polyene Actinoalloateichus cyanogriseus MARINE ACTINOMYCETES
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海洋异壁放线菌WH1-2216-6产生的多环含特特拉姆酸大环内酰胺 被引量:8
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作者 梅显贵 王立平 +2 位作者 王冬阳 范杰 朱伟明 《有机化学》 SCIE CAS CSCD 北大核心 2017年第9期2352-2360,共9页
采用紫外跟踪分离和波谱鉴定的方法,从海洋异壁放线菌(Actinoalloteichus cyanogriseus WH1-2216-6)的发酵产物中分离鉴定了6个5,5,6-多环含特特拉姆酸大环内酰胺(PTMs)类天然产物:16-hydroxymaltophilin(1)、dihydromaltophilin(2)、4-... 采用紫外跟踪分离和波谱鉴定的方法,从海洋异壁放线菌(Actinoalloteichus cyanogriseus WH1-2216-6)的发酵产物中分离鉴定了6个5,5,6-多环含特特拉姆酸大环内酰胺(PTMs)类天然产物:16-hydroxymaltophilin(1)、dihydromaltophilin(2)、4-deoxydihydromaltophilin(3)、maltophilin(4)、xanthobaccin C(5)和FI-2(6),其中1为新化合物.评价了化合物1~5对人正常肝细胞L-02及人癌细胞A549、MCF-7、Jurkat、BXPC-3、HCT-116、PANC-1和K562的细胞毒活性,结果表明:化合物1~5对上述人癌细胞具有细胞毒活性,其半数抑制浓度(IC50)为0.1~9.7μmol·L-1;新化合物1对L-02的毒性较低,但对Jurkat、HCT-116和BXPC-3的选择指数(SI)分别高达31.5、41.1和52.4.除化合物2和3对A549和MCF-7的肿瘤细胞毒活性外,其余的肿瘤细胞毒活性是首次报道.还测试了化合物1~6的抗烟曲霉活性,发现化合物2和4的活性较好,其最小抑菌浓度(MIC)分别为3.04和6.12μmol·L-1,这是首次发现5,5,6-PTMs类化合物具有抗烟曲霉活性. 展开更多
关键词 异壁放线菌 5 5 6-多环含特特拉姆酸大环内酰胺 抗肿瘤活性 抗烟曲霉活性
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