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Items: 16

1.

Antibacterial Property of Composites of Reduced Graphene Oxide with Nano-Silver and Zinc Oxide Nanoparticles Synthesized Using a Microwave-Assisted Approach.

Hsueh YH, Hsieh CT, Chiu ST, Tsai PH, Liu CY, Ke WJ.

Int J Mol Sci. 2019 Oct 29;20(21). pii: E5394. doi: 10.3390/ijms20215394.

2.

Characterization of a Potential Probiotic Lactobacillus brevis RK03 and Efficient Production of γ-Aminobutyric Acid in Batch Fermentation.

Wu CH, Hsueh YH, Kuo JM, Liu SJ.

Int J Mol Sci. 2018 Jan 4;19(1). pii: E143. doi: 10.3390/ijms19010143.

3.

Poly-γ-glutamic Acid Synthesis, Gene Regulation, Phylogenetic Relationships, and Role in Fermentation.

Hsueh YH, Huang KY, Kunene SC, Lee TY.

Int J Mol Sci. 2017 Dec 7;18(12). pii: E2644. doi: 10.3390/ijms18122644. Review.

4.

Antimicrobial effects of zero-valent iron nanoparticles on gram-positive Bacillus strains and gram-negative Escherichia coli strains.

Hsueh YH, Tsai PH, Lin KS, Ke WJ, Chiang CL.

J Nanobiotechnology. 2017 Nov 3;15(1):77. doi: 10.1186/s12951-017-0314-1.

5.

Hydrogel Film-Immobilized Lactobacillus brevis RK03 for γ-Aminobutyric Acid Production.

Hsueh YH, Liaw WC, Kuo JM, Deng CS, Wu CH.

Int J Mol Sci. 2017 Nov 3;18(11). pii: E2324. doi: 10.3390/ijms18112324.

6.

pH-Dependent Antimicrobial Properties of Copper Oxide Nanoparticles in Staphylococcus aureus.

Hsueh YH, Tsai PH, Lin KS.

Int J Mol Sci. 2017 Apr 8;18(4). pii: E793. doi: 10.3390/ijms18040793.

7.

Antiviral Activity of Graphene-Silver Nanocomposites against Non-Enveloped and Enveloped Viruses.

Chen YN, Hsueh YH, Hsieh CT, Tzou DY, Chang PL.

Int J Environ Res Public Health. 2016 Apr 19;13(4):430. doi: 10.3390/ijerph13040430.

8.

The Antimicrobial Properties of Silver Nanoparticles in Bacillus subtilis Are Mediated by Released Ag+ Ions.

Hsueh YH, Lin KS, Ke WJ, Hsieh CT, Chiang CL, Tzou DY, Liu ST.

PLoS One. 2015 Dec 15;10(12):e0144306. doi: 10.1371/journal.pone.0144306. eCollection 2015.

9.

Water surface tension modulates the swarming mechanics of Bacillus subtilis.

Ke WJ, Hsueh YH, Cheng YC, Wu CC, Liu ST.

Front Microbiol. 2015 Sep 24;6:1017. doi: 10.3389/fmicb.2015.01017. eCollection 2015.

10.

ZnO Nanoparticles Affect Bacillus subtilis Cell Growth and Biofilm Formation.

Hsueh YH, Ke WJ, Hsieh CT, Lin KS, Tzou DY, Chiang CL.

PLoS One. 2015 Jun 3;10(6):e0128457. doi: 10.1371/journal.pone.0128457. eCollection 2015.

11.

Microbe-associated molecular patterns-triggered root responses mediate beneficial rhizobacterial recruitment in Arabidopsis.

Lakshmanan V, Kitto SL, Caplan JL, Hsueh YH, Kearns DB, Wu YS, Bais HP.

Plant Physiol. 2012 Nov;160(3):1642-61. doi: 10.1104/pp.112.200386. Epub 2012 Sep 12.

12.

SlrA/SinR/SlrR inhibits motility gene expression upstream of a hypersensitive and hysteretic switch at the level of σ(D) in Bacillus subtilis.

Cozy LM, Phillips AM, Calvo RA, Bate AR, Hsueh YH, Bonneau R, Eichenberger P, Kearns DB.

Mol Microbiol. 2012 Mar;83(6):1210-28. doi: 10.1111/j.1365-2958.2012.08003.x. Epub 2012 Feb 22.

13.

DegU-phosphate activates expression of the anti-sigma factor FlgM in Bacillus subtilis.

Hsueh YH, Cozy LM, Sham LT, Calvo RA, Gutu AD, Winkler ME, Kearns DB.

Mol Microbiol. 2011 Aug;81(4):1092-108. doi: 10.1111/j.1365-2958.2011.07755.x. Epub 2011 Jul 18.

14.

Characterization of the codY gene and its influence on biofilm formation in Bacillus cereus.

Hsueh YH, Somers EB, Wong AC.

Arch Microbiol. 2008 Jun;189(6):557-68. doi: 10.1007/s00203-008-0348-8. Epub 2008 Jan 24.

PMID:
18214442
15.

Biosurfactant production and surface translocation are regulated by PlcR in Bacillus cereus ATCC 14579 under low-nutrient conditions.

Hsueh YH, Somers EB, Lereclus D, Ghelardi E, Wong AC.

Appl Environ Microbiol. 2007 Nov;73(22):7225-31. Epub 2007 Oct 5.

16.

Biofilm formation by Bacillus cereus is influenced by PlcR, a pleiotropic regulator.

Hsueh YH, Somers EB, Lereclus D, Wong AC.

Appl Environ Microbiol. 2006 Jul;72(7):5089-92. Erratum in: Appl Environ Microbiol. 2006 Nov;72(11):7428.

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