Kitamoto Dai
Research Institute for Innovation in Sustainable Chemistry, National Institute of Advanced Science and Technology (AIST), Tsukuba City, Japan.
Yakugaku Zasshi. 2008 May;128(5):695-706. doi: 10.1248/yakushi.128.695.
Biosurfactants (BS) are functional amphiphilic compounds produced by a variety of microorganisms. They show unique properties (e.g. mild production conditions, lower toxicity, and environmental compatibility) compared to chemically synthesized counterparts. The numerous advantages of BS have prompted applications not only in the food, cosmetic, and pharmaceutical industries but in energy and environmental technologies as well. Mannosylerythritol lipids (MELs) are one of the most promising BS known, and are produced at yields of over 100 g/l from vegetable oils by yeast strains belonging to the genus Pseudozyma. MELs exhibit excellent surface-active and self-assembling properties leading to the formation of different lyotropic liquid crystals such as sponge (L(3)), bicontinuous cubic (V(2)) and lamella (L(alpha)) phases. They also show versatile biochemical actions, including antitumor and differentiation-inducing activities against human leukemia cells, rat pheochromocytoma cells and mouse melanoma cells. MELs also display high binding affinity toward different immunoglobulins and lectins, indicating great potentials as new affinity ligands for the glycoproteins. More significantly, the cationic liposomes bearing MELs increase dramatically the efficiency of gene transfection into mammalian cells via membrane fusion processes. The yeast BS should thus be novel nanobiomaterials, and broaden their applications in various advanced technologies.
生物表面活性剂(BS)是由多种微生物产生的功能性两亲化合物。与化学合成的同类产品相比,它们具有独特的性质(如生产条件温和、毒性较低和环境相容性好)。生物表面活性剂的众多优点促使其不仅在食品、化妆品和制药行业得到应用,在能源和环境技术领域也有应用。甘露糖赤藓糖醇脂(MELs)是最有前景的已知生物表面活性剂之一,属于假丝酵母属的酵母菌株能以超过100 g/l的产量从植物油中生产出MELs。MELs具有优异的表面活性和自组装性能,可形成不同的溶致液晶,如海绵相(L(3))、双连续立方相(V(2))和片层相(L(α))。它们还表现出多种生化作用,包括对人白血病细胞、大鼠嗜铬细胞瘤细胞和小鼠黑色素瘤细胞的抗肿瘤和诱导分化活性。MELs对不同的免疫球蛋白和凝集素也表现出高结合亲和力,表明其作为糖蛋白新亲和配体具有巨大潜力。更重要的是,带有MELs的阳离子脂质体通过膜融合过程显著提高了基因转染到哺乳动物细胞中的效率。因此,酵母生物表面活性剂应该是新型的纳米生物材料,并在各种先进技术中拓宽其应用。