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综上所述,PB能抑制红色毛癣菌的黏附过程,减少 tetrazolium hydroxide-based method for testing antifungal
菌丝的形成;该作用机制可能与抑制生物被膜中甾醇代 susceptibility of dermatophytes[J]. J Clin Microbiol,
谢相关基因ERG6、ERG11 mRNA的表达有关。但PB抑 2008,46(11):3668-3671.
制红色毛癣菌生物被膜的明确作用机制还有待于进一 [15] HAWSER SP,DOUGLAS LJ. Biofilm formation by Can-
步探讨。 dida species on the surface of catheter materials in vitro[J].
参考文献 Infect Immun,1994,62(3):915-921.
[16] ANDES D,NETT J,OSCHEL P,et al. Development and
[ 1 ] 李斌,郭鑫,裴贵珍.黄连萃取物体外抗红色毛癣菌活性
characterization of an in vivo central venous catheter Can-
初步研究[J].新疆中医药,2019,37(2):39-41.
dida albicans biofilm model[J]. Infect Immun,2004,72
[ 2 ] 上官信一,丁晓艳,范俣琳,等.一种蒺藜甾体皂苷对人工
(10):6023-6031.
诱导耐药的红色毛癣菌体外抗菌活性研究[J].药学研
[17] KIM S,ALI AL,JYOTSNA C,et al. Parenteral lipid emul-
究,2018,37(3):142-145.
sion induces germination of Candida albicans and increa-
[ 3 ] PIANALTO KM,ALSPAUGHl JA. New horizons in anti-
ses biofilm formation on medical catheter surfaces[J]. J In-
fungal therapy[J]. J Fungi(Basel),2016,2(4):26.
fect Dis,2009,200(3):473-480.
[ 4 ] SINGH A,MASIH A,KHURANA A,et al. High terbi-
[18] BONDARYK M,OCHAL Z,STANISZEWSKA M. Sul-
nafine resistance in trichophyton interdigitale isolates in
fone derivatives reduce growth,adhesion and aspartic pro-
Delhi,India harbouring mutations in the squalene epoxi-
tease SAP2 gene expression[J]. World J Microbiol Bio-
dase gene[J]. Mycoses,2018,61(7):477-484.
technol,2014,30(9):2511-2521.
[ 5 ] DE FREITAS ALD,KAPLIM V,ROSSI DCP,et al. Pro-
[19] NIKAWA H,NISHIMURA H,HAMADA T,et al. Effect
anthocyanidin polymeric tannins from stryphnodendron
adstringens are effective against Candida spp. isolates and of serum concentration on Candida biofilm formation on
for vaginal candidiasis treatment[J]. J Ethnopharmacol, acrylic surfaces[J]. Mycoses,2010,43(3/4):139-143.
2018,24(216):184-190. [20] FRADE J,ATILDE,PEDRO O. Effect of serum and sur-
[ 6 ] RAMAGE G,RAJENDRAN R,SHERRY L,et al. Fungal face characteristics on Candida albicans biofilm forma-
biofilm resistance[J/OL]. Int J Microbiol,2012:528521 tion[J]. Mycoses,2011,54(4):154-162.
[2020-08-07].https://pubmed.ncbi.nlm.nih.gov/22518145/. [21] CHANDRA J,MUKHERJEE PK. Candida biofilms:de-
DOI:10.1155/2012/528521. velopment,architecture,and resistance[J]. Microbiol Spec-
[ 7 ] 韩叙,廖国建.白色念珠菌麦角甾醇的储存、调节和功能[J]. tr,2015,3(4):1-14.
国外医药(抗生素分册),2018,39(5):424-429. [22] LIN H,LIU X,SHEN Z,et al. The effect of isoflavaspidic
[ 8 ] 严园园,汪天明,施高翔,等.黄连解毒汤联合氟康唑对耐 acid PB extracted from Dryopteris fragrans(L.)Schott
药白念珠菌麦角甾醇的影响[J].中国中药杂志,2015,40 on planktonic and biofilm growth of dermatophytes and
(4):727-732. the possible mechanism of antibiofilm[J/OL]. J Ethnophar-
[ 9 ] 曹龙辉,李晓珺,赵文红,等.麦角甾醇的研究进展[J].中 macol,2019,241:111956[2020-08-07].https://pubmed.
国酿造,2014,33(4):9-12. ncbi.nlm.nih.gov/31129309/.DOI:10.1016/JCO.2019.
[10] BITENCOURT TA ,MACEDO C ,FRANCO M E ,et al. 111956.
Transcription profile of Trichophyton rubrum conidia [23] 汪天明,张梦翔,施高翔,等.黄连解毒汤乙酸乙酯提取物
grown on keratin reveals the induction of an adhesin-like 对光滑念珠菌黏附作用的影响[J].中国中药杂志,2015,
protein gene with a tandem repeat pattern[J/OL]. BMC 40(3):516-521.
Genomics,2016,17:249[2020-08-07].https://pubmed.ncbi. [24] 姜路路.重楼皂苷Ⅶ抑制白色念珠菌生物被膜形成的作
nlm.nih.gov/26993619.DOI:10.1186/s12864-016-2567-8. 用机制[D].大连:辽宁师范大学,2018.
[11] 胡绿荫,宰淑蓓,金鑫,等.白念珠菌唑类耐药和生物膜相 [25] HENRY KW,NICKELS JT,EDLIND TD. Upregulation
关基因的表达[J].检验医学,2014,29(6):597-602. of ERG Genes in Candida species by azoles and other ste-
[12] 朱冲冲,彭冰,曾祖平,等.香鳞毛蕨的化学成分及药理作 rol biosynthesis inhibitors[J]. J Antimicrob Chemother,
用研究进展[J].中国药房,2017,28(10):1418-1423. 2000,44(10):2693-2700.
[13] 刘雪萍,林浩琪,沈志滨,等.异黄绵马酸PB对红色毛癣 [26] CARDOZA RE,VIZCAINO JA,HERMOSA MR,et al.
菌生物被膜的抑制作用观察[J].山东医药,2018,58 Cloning and characterization of the erg1 gene of Tricho-
(40):32-37. derma harzianum:effect of the erg1 silencing on ergoster-
[14] SHEHATA AS,MUKHERJEE PK,GHANNOUM MA. ol biosynthesis and resistance to terbinafine[J]. Fungal
Comparison between the standardized clinical and labora- Genet Biol,2006,43(3):164-178.
tory standards institute M38-A2 method and a 2,3-bis (收稿日期:2020-09-08 修回日期:2020-12-31)
(2-methoxy-4-nitro-5-[(sulphenylamino) carbonyl]-2H- (编辑:唐晓莲)
中国药房 2021年第32卷第5期 China Pharmacy 2021 Vol. 32 No. 5 ·589 ·