Vijay H M, Young N M, Jackson G E, White G P, Bernstein I L
Int Arch Allergy Appl Immunol. 1985;78(1):37-42.
Six extracts were prepared from Alternaria tenuis isolated ATCC 6663, ATCC 16086 and DAOM (Agriculture Canada) 183905 grown separately on two synthetic media, revised tobacco and Czapek's, and their biochemical and immunological properties were examined. High-performance liquid chromatography revealed considerable variations in UV absorbance and carbohydrate profiles among extracts from the different isolates. These differences were less marked among samples of the same isolate cultured on different media. Enzyme screening showed that all extracts contained large amounts of phosphatases and glucosidases and moderate quantities of esterases. Only the alpha-galactosidase activity showed any correlation with allergenic activity. No significant variation was observed in isoelectric focusing patterns. Extensive antigenic cross-reactivity even between the different isolates was found in precipitin studies. In mouse IgE passive cutaneous anaphylaxis tests, all extracts gave reactions of similar intensity. In direct RAST and RAST inhibition assays, ATCC 16086 grown on revised tobacco medium was found to be the most potent and approached the activity of an extract from a commercial material (B-I). DAOM 183905 grown on either medium was next in potency while ATCC 6663 samples were the least potent. The results indicate that it is possible to obtain extracts of high allergenic potency for standardization purposes from growth of selected A. tenuis isolates on a chemically defined medium.
从分别在两种合成培养基(改良烟草培养基和查氏培养基)上生长的链格孢菌(Alternaria tenuis)ATCC 6663、ATCC 16086和DAOM(加拿大农业部门)183905中制备了六种提取物,并检测了它们的生化和免疫学特性。高效液相色谱分析显示,不同菌株提取物的紫外吸光度和碳水化合物谱存在显著差异。同一菌株在不同培养基上培养的样品之间差异较小。酶筛选表明,所有提取物都含有大量磷酸酶和糖苷酶以及适量酯酶。只有α-半乳糖苷酶活性与致敏活性有一定相关性。等电聚焦图谱未观察到显著差异。沉淀素研究发现,即使不同菌株之间也存在广泛的抗原交叉反应。在小鼠IgE被动皮肤过敏试验中,所有提取物产生的反应强度相似。在直接RAST和RAST抑制试验中,发现在改良烟草培养基上生长的ATCC 16086活性最强,接近一种商业材料(B-I)提取物的活性。在任何一种培养基上生长的DAOM 183905活性次之,而ATCC 6663样品活性最低。结果表明,有可能从选定的链格孢菌菌株在化学限定培养基上的生长物中获得高致敏活性的提取物用于标准化目的。