276 results on '"Lin, Tzu-Lung"'
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52. Identification of three podoviruses infectingKlebsiellaencoding capsule depolymerases that digest specific capsular types
53. Probiotic Lactobacillus spp. act Against Helicobacter pylori-induced Inflammation
54. Genomic Insight into the Spread of Meropenem-Resistant Streptococcus pneumoniae Spain23F-ST81, Taiwan.
55. A Novel Role for the Klebsiella pneumoniae Sap (Sensitivity to Antimicrobial Peptides) Transporter in Intestinal Cell Interactions, Innate Immune Responses, Liver Abscess, and Virulence
56. Klebsiella pneumoniaeType VI Secretion System Contributes to Bacterial Competition, Cell Invasion, Type-1 Fimbriae Expression, and In Vivo Colonization
57. Gut commensal Parabacteroides goldsteinii plays a predominant role in the anti-obesity effects of polysaccharides isolated from Hirsutella sinensis
58. Role of the Mycobacterium marinum ESX-1 Secretion System in Sliding Motility and Biofilm Formation
59. A putative RND-type efflux pump, H239_3064, contributes to colistin resistance through CrrB in Klebsiella pneumoniae
60. Two T7-like Bacteriophages, K5-2 and K5-4, Each Encodes Two Capsule Depolymerases: Isolation and Functional Characterization
61. Klebsiella Phage ΦK64-1 Encodes Multiple Depolymerases for Multiple Host Capsular Types
62. A Synthetic Carbohydrate–Protein Conjugate Vaccine Candidate against Klebsiella pneumoniaeSerotype K2
63. Identification of three podoviruses infecting Klebsiella encoding capsule depolymerases that digest specific capsular types.
64. Identification of a capsular variant and characterization of capsular acetylation in Klebsiella pneumoniae PLA-associated type K57
65. Imipenem represses CRISPR-Cas interference of DNA acquisition through H-NS stimulation in Klebsiella pneumoniae
66. Amino Acid Substitutions of CrrB Responsible for Resistance to Colistin through CrrC in Klebsiella pneumoniae
67. TheKlebsiella pneumoniaeYfgL (BamB) lipoprotein contributes to outer membrane protein biogenesis, type-1 fimbriae expression, anti-phagocytosis, andin vivovirulence
68. Correction to “A Synthetic Carbohydrate–Protein Conjugate Vaccine Candidate Against Klebsiella PneumoniaeSerotype K2”
69. Mycobacterium marinum mmar_2318 and mmar_2319 are Responsible for Lipooligosaccharide Biosynthesis and Virulence Toward Dictyostelium
70. Genetic analysis of capsular polysaccharide synthesis gene clusters in 79 capsular types of Klebsiella spp
71. Transfer of CMY-2 Cephalosporinase from Escherichia coli to Virulent Klebsiella pneumoniae Causing a Recurrent Liver Abscess
72. Identification of PblB mediating galactose-specific adhesion in a successful Streptococcus pneumoniae clone
73. Colistin Resistance Mechanisms in Klebsiella pneumoniae Strains from Taiwan
74. Klebsiella pneumoniae Translocates across the Intestinal Epithelium via Rho GTPase- and Phosphatidylinositol 3-Kinase/Akt-Dependent Cell Invasion
75. Identification of Capsular Types in Carbapenem-Resistant Klebsiella pneumoniae Strains by wzc Sequencing and Implications for Capsule Depolymerase Treatment
76. Identification of an immuno-dominant protein from Klebsiella pneumoniae strains causing pyogenic liver abscess: implication in serodiagnosis
77. Gut commensal Parabacteroides goldsteiniiplays a predominant role in the anti-obesity effects of polysaccharides isolated from Hirsutella sinensis
78. Polymerase chain reaction analysis for detectin capsule serotypes K1 and K2 of Klebsiella pneumoniae causing abscesses of the liver and other sites
79. Capsular Types of Klebsiella pneumoniae Revisited by wzc Sequencing
80. Isolation of a Bacteriophage Specific for a New Capsular Type of Klebsiella pneumoniae and Characterization of Its Polysaccharide Depolymerase
81. Synthesis of Neisseria meningitidis Serogroup W135 Capsular Oligosaccharides for Immunogenicity Comparison and Vaccine Development
82. Expansion and Evolution of Streptococcus pneumoniae Serotype 19A ST320 Clone as Compared to Its Ancestral Clone, Taiwan19F-14 (ST236)
83. The Klebsiella pneumoniae YfgL (BamB) lipoprotein contributes to outer membrane protein biogenesis, type-1 fimbriae expression, anti-phagocytosis, and in vivo virulence.
84. Amino Acid Substitutions of MagA in Klebsiella pneumoniae Affect the Biosynthesis of the Capsular Polysaccharide
85. Cellobiose-Specific Phosphotransferase System of Klebsiella pneumoniae and Its Importance in Biofilm Formation and Virulence
86. Lipopolysaccharide O1 Antigen Contributes to the Virulence in Klebsiella pneumoniae Causing Pyogenic Liver Abscess
87. The role of Klebsiella pneumoniae rmpA in capsular polysaccharide synthesis and virulence revisited
88. Pelvic abscess caused by New Delhi metallo-β-lactamase-1–producing Klebsiella oxytoca in Taiwan in a patient who underwent renal transplantation in China
89. Isolation of Genes Involved in Biofilm Formation of a Klebsiella pneumoniae Strain Causing Pyogenic Liver Abscess
90. Functions of Some Capsular Polysaccharide Biosynthetic Genes in Klebsiella pneumoniae NTUH K-2044
91. Use of a Dictyostelium Model for Isolation of Genetic Loci Associated with Phagocytosis and Virulence in Klebsiella pneumoniae
92. CadC RegulatescadandtdcOperons in Response to Gastrointestinal Stresses and Enhances Intestinal Colonization ofKlebsiella pneumoniae
93. Synergistic effect of imp/ostA and msbA in hydrophobic drug resistance of Helicobacter pylori
94. Humoral Immunity against Capsule Polysaccharide Protects the Host from magA + Klebsiella pneumoniae -Induced Lethal Disease by Evading Toll-Like Receptor 4 Signaling
95. Capsular Polysaccharide Synthesis Regions in Klebsiella pneumoniae Serotype K57 and a New Capsular Serotype
96. Serum‐Induced Iron‐Acquisition Systems and TonB Contribute to Virulence inKlebsiella pneumoniaeCausing Primary Pyogenic Liver Abscess
97. Establishment of a young mouse model and identification of an allelic variation of zmpB in complicated pneumonia caused by Streptococcus pneumoniae*
98. Characterization of Integrative and Conjugative Element ICE Kp1 -Associated Genomic Heterogeneity in a Klebsiella pneumoniae Strain Isolated from a Primary Liver Abscess
99. Reply to Yu et al.
100. Characterization of a ComE3 Homologue Essential for DNA Transformation in Helicobacter pylori
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