| [1] |
CHAN Y T V, LAU S Y F, HUI S Y A, et al. Incidence of neonatal sepsis after universal antenatal culture-based screening of group B Streptococcus and intrapartum antibiotics:a multicentre retrospective cohort study[J]. BJOG, 2023, 130(1):24-31.
DOI
URL
|
| [2] |
PUOPOLO K M, LYNFIELD R, CUMMINGS J J, et al. Management of infants at risk for group B streptococcal disease[J]. Pediatrics, 2019, 144(2):e20191881.
DOI
URL
|
| [3] |
关小珊, 刘海英, 钟华敏, 等. 广州地区低龄婴儿侵袭性B族链球菌的发病率及临床特征[J]. 中华实用儿科临床杂志, 2016, 31(10):765-768.
|
| [4] |
YING Q, WANG S, LOU X, et al. Burden and risk factors of invasive group B Streptococcus disease among neonates in a Chinese maternity hospital[J]. BMC Infect Dis, 2019, 19(1):123.
DOI
|
| [5] |
HSU J F, LU J J, CHU S M, et al. The clinical and genetic characteristics of Streptococcus agalactiae meningitis in neonates[J]. Int J Mol Sci, 2023, 24(20):15387.
DOI
URL
|
| [6] |
郭孟杨, 高薇, 袁林, 等. 新生儿B族链球菌感染流行病学和预防策略近十年来的研究进展[J]. 中国当代儿科杂志, 2023, 25(5):534-540.
|
| [7] |
王超, 赵扬玉. 规范临床用药,改善母婴结局:美国《预防新生儿早发型B族链球菌病:ACOG委员会共识》解读[J]. 协和医学杂志, 2020, 11(4):402-407.
|
| [8] |
TEATERO S, FERRIERI P, MARTIN I, et al. Serotype distribution, population structure,and antimicrobial resistance of group B Streptococcus strains recovered from colonized pregnant women[J]. J Clin Microbiol, 2017, 55(2):412-422.
DOI
URL
|
| [9] |
SUNKARA B, BHEEMREDDY S, LORBER B, et al. Group B Streptococcus infections in non-pregnant adults:the role of immunosuppression[J]. Int J Infect Dis, 2012, 16(3):e182-e186.
|
| [10] |
EL-GENDY A A, HASSAN S E T, GERTZ B, et al. Serotyping and antibiotic susceptibility of invasive Streptococcus agalactiae in Egyptian patients with or without diabetes mellitus[J]. Am J Trop Med Hyg, 2021, 105(6):1684-1689.
DOI
URL
|
| [11] |
MOHAMED N A, HINGE M, LARSEN O H, et al. Streptococcus agalactiae do not penetrate human chorioamniotic membranes in vitro but alter their biomechanical properties[J]. Acta Obstet Gynecol Scand, 2021, 100(10):1814-1821.
DOI
URL
|
| [12] |
中华医学会儿科学分会新生儿学组, 中国医师协会新生儿科医师分会感染专业委员会. 新生儿败血症诊断及治疗专家共识(2019年版)[J]. 中华儿科杂志, 2019, 57(4):252-257.
|
| [13] |
Clinical and Laboratory Standards Institute. Performance standards for antimicrobial suscepitibility testing[S]. M100,CLSI, 2022.
|
| [14] |
CHEN S, ZHOU Y, CHEN Y, et al. Fastp:an ultra-fast all-in-one FASTQ preprocessor[J]. Bioinformatics, 2018, 34(17):i884-i890.
|
| [15] |
PRJIBELSKI A, ANTIPOV D, MELESHKO D, et al. Using SPAdes de novo assembler[J]. Curr Protoc Bioinformatics, 2020, 70(1):e102.
DOI
URL
|
| [16] |
SEEMANN T. Prokka:rapid prokaryotic genome annotation[J]. Bioinformatics, 2014, 30(14):2068-2069.
DOI
URL
|
| [17] |
LETUNIC I, BORK P. Interactive tree of life(iTOL)v3:an online tool for the display and annotation of phylogenetic and other trees[J]. Nucleic Acids Res, 2016, 44(W1):W242-W245.
|
| [18] |
段道云, 刘雨露, 王战胜, 等. 2019—2022年某院新生儿无乳链球菌医院感染血清分型及其流行病学[J]. 中华医院感染学杂志, 2023, 33(21):3292-3296.
|
| [19] |
LANCASTER H, ROBERTS A P, BEDI R, et al. Characterization of Tn916S,a Tn916-like element containing the tetracycline resistance determinant tet(S)[J]. J Bacteriol, 2004, 186(13):4395-4398.
DOI
URL
|
| [20] |
WENDLANDT S, LI B, LOZANO C, et al. Identification of the novel spectinomycin resistance gene spw in methicillin-resistant and methicillin-susceptible Staphylococcus aureus of human and animal origin[J]. J Antimicrob Chemother, 2013, 68(7):1679-1680.
DOI
URL
|
| [21] |
TENENBAUM T, SPELLERBERG B, ADAM R, et al. Streptococcus agalactiae invasion of human brain microvascular endothelial cells is promoted by the laminin-binding protein Lmb[J]. Microbes Infect, 2007, 9(6):714-720.
DOI
URL
|
| [22] |
PRACHT D, ELM C, GERBER J, et al. PavA of Streptococcus pneumoniae modulates adherence,invasion,and meningeal inflammation[J]. Infect Immun, 2005, 73(5):2680-2689.
|
| [23] |
BOHNSACK J F, MOLLISON K W, BUKO A M, et al. Group B streptococci inactivate complement component C5a by enzymic cleavage at the C-terminus[J]. Biochem J, 1991, 273(Pt 3):635-640.
|
| [24] |
DORAN K S, CHANG J C, BENOIT V M, et al. Group B streptococcal beta-hemolysin/cytolysin promotes invasion of human lung epithelial cells and the release of interleukin-8[J]. J Infect Dis, 2002, 185(2):196-203.
PMID
|
| [25] |
RING A, BRAUN J S, NIZET V, et al. Group B streptococcal beta-hemolysin induces nitric oxide production in murine macrophages[J]. J Infect Dis, 2000, 182(1):150-157.
PMID
|
| [26] |
LANG S, PALMER M. Characterization of Streptococcus agalactiae CAMP factor as a pore-forming toxin[J]. J Biol Chem, 2003, 278(40):38167-38173.
DOI
URL
|
| [27] |
ZHOU J, ZHANG L, ZHANG Y, et al. Analysis of molecular characteristics of CAMP-negative Streptococcus agalactiae strains[J]. Front Microbiol, 2023, 14:1189093.
DOI
URL
|
| [28] |
TSAI I A, SU Y, WANG Y H, et al. Alterations in genes rib,scpB and Pilus Island decrease the prevalence of predominant serotype Ⅴ,not Ⅲ and Ⅵ,of Streptococcus agalactiae from 2008 to 2012[J]. Pathogens, 2022, 11(10):1145.
DOI
URL
|
| [29] |
LARTIGUE M F, POULARD A F, AL SAFADI R, et al. Variability of neuD transcription levels and capsular sialic acid expression among serotype Ⅲ group B Streptococcus strains[J]. Microbiology(Reading), 2011, 157(Pt 12):3282-3291.
|
| [30] |
LEWIS A L, CAO H, PATEL S K, et al. NeuA sialic acid O-acetylesterase activity modulates O-acetylation of capsular polysaccharide in group B Streptococcus[J]. J Biol Chem, 2007, 282(38):27562-27571.
|