Mechanisms Underlying the Biochemical Activity of Scabrosin Esters and other Epipolythiodioxopiperazine Toxins.
Mechanisms Underlying the Biochemical Activity of Scabrosin Esters and other Epipolythiodioxopiperazine Toxins.
批准号:
nhmrc : 148927
负责人:
Dr Paul Waring
金额:
$17.11万
依托单位国家:
澳大利亚
项目类别:
NHMRC Project Grants
财政年份:
2001
资助国家:
澳大利亚
项目状态:
已结题
起止时间:
2001-01-01 至 2003-12-31
中文摘要
真菌会产生多种对动物有毒的化学物质。真菌可能已经发展出合成和分泌这些毒素的能力,作为化学防御机制的一部分,或者是为了限制其他微生物生命形式,因为营养竞争。其中一些毒素会选择性地杀死细菌和其他真菌等微生物以及病毒等更简单的生命形式,这可能会导致人类的病理变化。真菌毒素也可用于控制癌症等增殖性疾病。因为真菌有数百万年的时间来选择最有效的毒素,所以它们一直是研究有效毒素的宝贵来源。其中一些毒素目前被用于临床治疗人类疾病,如青霉素和环孢菌素A。对真菌毒素的基本了解对于确保获得对抗耐药菌株的新药非常重要,并为合成治疗癌症的新药提供线索,癌症也可能对当前使用的药物产生耐药性。
英文摘要
Fungi produce a variety of chemicals which are toxic to animals. The fungi have probably developed the ability to synthesize and secrete these toxins as part of a chemical defence mechanism and-or in order to limit other microbial life forms because of nutrient competition. Some of these toxins will selectively kill microbes such as bacteria and other fungi as well as simpler life forms such as viruses, which can cause pathological changes to human beings. Fungal toxins may also be useful for control of proliferative diseases such as cancer. Because fungi have had many millions of years to select for the most efficient toxins, they have been a valuable source of potent toxins for study. Some of these toxins are now in use clinically to treat human diseases ie penicillin and cyclosporin A. A fundamental understanding of fungal toxins is important to ensure the availability of new drugs to combat resistant strains of bacteria and to provide clues for the synthesis of new drugs to treat cancer which can also develop resistance to currently used drugs.
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