Oakley K L, Moore C B, Denning D W
Department of Medicine, Hope Hospital, Manchester, United Kingdom.
Antimicrob Agents Chemother. 1998 Oct;42(10):2726-30. doi: 10.1128/AAC.42.10.2726.
LY303,366 (LY) is a novel derivative of the echinocandin class of antifungal agents. The in vitro activities of LY, itraconazole (ITZ), and amphotericin B (AMB) were assessed against 60 Aspergillus isolates, including 35 isolates of A. fumigatus, eight isolates of A. terreus, eight isolates of A. flavus, eight isolates of A. niger and one isolate of A. nidulans. Four A. fumigatus isolates were resistant to ITZ. Susceptibility testing for all drugs was performed with a broth microdilution procedure. LY was tested in two media: antibiotic medium 3 (AM3) and Casitone with 2% glucose (CAS) with an inoculum of 2 x 10(3) spores/ml. ITZ and AMB were tested in RPMI 1640 with 2% glucose with an inoculum of 1 x 10(6) spores/ml. All tests were incubated at 37 degrees C for 48 h. A novel end point was used to determine a minimal effective concentration (MEC) for LY, i. e., almost complete inhibition of growth save a few tiny spherical colonies attached to the microplate. MICs were measured for ITZ and AMB with a no-growth end point. Ranges and geometric mean (GM) MECs were from 0.0018 to >0.5 and 0.0039 mg/liter and from 0.0018 to >0.5 and 0.008 mg/liter for LY in AM3 and LY in CAS, respectively. Differences between species were apparent, with A. flavus being significantly less susceptible to LY than any other species tested with both media (P </= 0.05). Ranges and GM MICs were from 0.125 to >16 and 0.7 mg/liter for ITZ and from 0.25 to 16 and 1.78 mg/liter for AMB. Minimal fungicidal concentrations (MFCs) were also determined for all drugs. GM MFCs were 0.018, 0.09, 19.76, and 12.64 mg/liter for LY in AM3, LY in CAS, ITZ, and AMB, respectively. LY in AM3 and LY in CAS were fungicidal for 86.7 and 68% of isolates, respectively (98% killing). In comparison, ITZ and AMB were fungicidal for 35 and 70% of isolates, respectively (99.99% killing). A reproducibility study was performed on 20% of the isolates. For 12 isolates retested, the MEC or MIC was the same or was within 1 dilution of the original value for 11, 11, 10, and 9 isolates for LY in AM3, LY in CAS, ITZ, and AMB, respectively. In conclusion, LY seems to be a promising antifungal agent with excellent in vitro activity against Aspergillus spp.
LY303,366(LY)是棘白菌素类抗真菌药物的一种新型衍生物。评估了LY、伊曲康唑(ITZ)和两性霉素B(AMB)对60株曲霉菌株的体外活性,其中包括35株烟曲霉、8株土曲霉、8株黄曲霉、8株黑曲霉和1株构巢曲霉。4株烟曲霉对ITZ耐药。所有药物的药敏试验均采用肉汤微量稀释法进行。LY在两种培养基中进行测试:抗生素培养基3(AM3)和含2%葡萄糖的酪蛋白胨(CAS),接种量为2×10³个孢子/毫升。ITZ和AMB在含2%葡萄糖的RPMI 1640中进行测试,接种量为1×10⁶个孢子/毫升。所有测试均在37℃孵育48小时。采用一种新的终点来确定LY的最低有效浓度(MEC),即几乎完全抑制生长,仅在微孔板上附着有一些微小的球形菌落。采用无生长终点测量ITZ和AMB的最低抑菌浓度(MIC)。LY在AM3和LY在CAS中的MEC范围和几何平均值(GM)分别为0.0018至>0.5和0.0039毫克/升,以及0.0018至>0.5和0.008毫克/升。不同菌种之间存在明显差异,黄曲霉对LY的敏感性明显低于在两种培养基中测试的任何其他菌种(P≤0.05)。ITZ的MIC范围和GM为0.125至>16和0.7毫克/升,AMB为0.25至16和1.78毫克/升。还测定了所有药物的最低杀菌浓度(MFC)。LY在AM3、LY在CAS、ITZ和AMB中的GM MFC分别为0.018、0.09、19.76和12.64毫克/升。LY在AM3和LY在CAS中分别对86.7%和68%的分离株具有杀菌作用(98%杀灭)。相比之下,ITZ和AMB分别对35%和70%的分离株具有杀菌作用(99.99%杀灭)。对20%的分离株进行了重复性研究。对于重新测试的12株分离株,LY在AM3、LY在CAS、ITZ和AMB中,MEC或MIC与原始值相同或在原始值的1个稀释度范围内的分离株分别为11株、11株、10株和9株。总之,LY似乎是一种有前景的抗真菌药物,对曲霉菌种具有优异的体外活性。