Maccani J E
J Clin Microbiol. 1981 May;13(5):828-32. doi: 10.1128/jcm.13.5.828-832.1981.
A coagglutination reagent was prepared by sensitizing the Cowan I strain of Staphylococcus aureus with rabbit immune globulin directed against Cryptococcus neofromans A15 and absorbed with C. laurentii. This reagent was evaluated for its usefulness in differentiating C. neoformans from other yeast colonies rapidly. Antigen-containing extracts were prepared form Sabouraud dextrose agar cultures of 48 C. neoformans, 33 other Cryptococcus species, 21 Candida, 4 Torulopsis, 3 Saccharomyces, and 2 Rhodotorula strains. This was done by suspending a 0.001-ml loopful of colony growth in 0.5 ml of phenolized saline, mixing for 30 s, and then centrifuging. Equal volumes (50 microliters) of coagglutination reagent and yeast extract were mixed within marked circles on a glass slide and then mechanically rotated at 180 rpm for 8 min. Forty-five of the 48 strains of C. neoformans produced strong (3+ to 4+) agglutination, and 3 strains of serotype C produced weak (1+ to 2+) agglutination with the reagent. Other Cryptococcus species which reacted positively were 4 C. albidus subsp. diffluens, 7 C. albidus subsp. albidus, and 2 C. terreus strains; however, false-positive errors in identification were circumvented by performing a supplemental rapid test for nitrate utilization which differentiated these yeasts from C. neoformans. None of the other yeasts tested (including 14 C. laurentii, 2 C. luteolus, and 2 C. uniguttulatus strains) produced any degree of agglutination with the reagent. A commercial cryptococcal latex agglutination reagent (Crypto-Test, Microbiological Associates, Walkersville, Md.) proved less reliable for identifying C. neoformans yeast colonies because of cross-reactions which occurred with all other species of Cryptococcus tested.
通过用针对新型隐球菌A15的兔免疫球蛋白致敏金黄色葡萄球菌考恩I菌株,并以罗伦隐球菌吸收,制备了一种协同凝集试剂。评估了该试剂在快速区分新型隐球菌与其他酵母菌落方面的实用性。从48株新型隐球菌、33株其他隐球菌属、21株念珠菌、4株球拟酵母、3株酿酒酵母和2株红酵母菌株的沙保弱葡萄糖琼脂培养物中制备含抗原提取物。方法是将0.001 ml菌环量的菌落生长物悬浮于0.5 ml酚化盐水中,混合30 s,然后离心。将等量(50微升)的协同凝集试剂和酵母提取物在载玻片上的标记圆圈内混合,然后以180 rpm机械旋转8分钟。48株新型隐球菌中的45株产生强(3 +至4 +)凝集,3株C血清型菌株与该试剂产生弱(1 +至2 +)凝集。其他呈阳性反应的隐球菌属有4株浅白隐球菌漫衍亚种、7株浅白隐球菌浅白亚种和2株土生隐球菌菌株;然而,通过进行补充性硝酸盐利用快速试验避免了鉴定中的假阳性错误,该试验可将这些酵母菌与新型隐球菌区分开来。其他受试酵母菌(包括14株罗伦隐球菌、2株浅黄隐球菌和2株单孢隐球菌菌株)均未与该试剂产生任何程度的凝集。一种市售的隐球菌乳胶凝集试剂(Crypto-Test,微生物学协会,马里兰州沃克维尔)被证明在鉴定新型隐球菌酵母菌落方面不太可靠,因为它与所有其他受试隐球菌属物种都发生了交叉反应。