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Results: 1 to 20 of 107

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1.

Antibacterial characteristics of heated scallop-shell nano-particles.

Watanabe T, Fujimoto R, Sawai J, Kikuchi M, Yahata S, Satoh S.

Biocontrol Sci. 2014;19(2):93-7.

2.

Characterization of antibacterial nanoparticles from the scallop, Ptinopecten yessoensis.

Jeong MS, Park JS, Song SH, Jang SB.

Biosci Biotechnol Biochem. 2007 Sep;71(9):2242-7. Epub 2007 Sep 7.

4.
5.

Sporicidal kinetics of Bacillus subtilis spores by heated scallop shell powder.

Sawai J, Miyoshi H, Kojima H.

J Food Prot. 2003 Aug;66(8):1482-5.

PMID:
12929842
6.

Sporicidal characteristics of heated dolomite powder against Bacillus subtilis spores.

Yasue S, Sawai J, Kikuchi M, Nakakuki T, Sano K, Kikuchi T.

Biocontrol Sci. 2014;19(3):113-9.

7.

Sensitivity of bacteria to diamond nanoparticles of various size differs in gram-positive and gram-negative cells.

Beranová J, Seydlová G, Kozak H, Benada O, Fišer R, Artemenko A, Konopásek I, Kromka A.

FEMS Microbiol Lett. 2014 Feb;351(2):179-86. doi: 10.1111/1574-6968.12373. Epub 2014 Jan 31.

8.

Silica-silver core-shell particles for antibacterial textile application.

Nischala K, Rao TN, Hebalkar N.

Colloids Surf B Biointerfaces. 2011 Jan 1;82(1):203-8. doi: 10.1016/j.colsurfb.2010.08.039. Epub 2010 Sep 22.

PMID:
20864320
9.

Bacterial toxicity comparison between nano- and micro-scaled oxide particles.

Jiang W, Mashayekhi H, Xing B.

Environ Pollut. 2009 May;157(5):1619-25. doi: 10.1016/j.envpol.2008.12.025. Epub 2009 Jan 30.

PMID:
19185963
10.

Fabrication of pDMAEMA-coated silica nanoparticles and their enhanced antibacterial activity.

Song J, Jung Y, Lee I, Jang J.

J Colloid Interface Sci. 2013 Oct 1;407:205-9. doi: 10.1016/j.jcis.2013.06.016. Epub 2013 Jun 19.

PMID:
23838333
11.

TiO2 nanoparticles co-doped with silver and nitrogen for antibacterial application.

Yuan Y, Ding J, Xu J, Deng J, Guo J.

J Nanosci Nanotechnol. 2010 Aug;10(8):4868-74.

PMID:
21125821
12.

Novel hydrogel particles and their IPN films as drug delivery systems with antibacterial properties.

Silan C, Akcali A, Otkun MT, Ozbey N, Butun S, Ozay O, Sahiner N.

Colloids Surf B Biointerfaces. 2012 Jan 1;89:248-53. doi: 10.1016/j.colsurfb.2011.09.024. Epub 2011 Sep 21.

PMID:
21978555
13.

Investigation on the antibacterial micro-porous titanium with silver nano-particles.

Dong W, Zhu Y, Zhang J, Lu L, Zhao C, Qin L, Li Y.

J Nanosci Nanotechnol. 2013 Oct;13(10):6782-6.

PMID:
24245143
14.

Shape-dependent antibacterial activities of Ag2O polyhedral particles.

Wang X, Wu HF, Kuang Q, Huang RB, Xie ZX, Zheng LS.

Langmuir. 2010 Feb 16;26(4):2774-8. doi: 10.1021/la9028172.

PMID:
20141212
15.

Bacterial cell association and antimicrobial activity of a C60 water suspension.

Lyon DY, Fortner JD, Sayes CM, Colvin VL, Hughe JB.

Environ Toxicol Chem. 2005 Nov;24(11):2757-62.

PMID:
16398110
16.

Preparation of TiO(2)/Ag colloids with ultraviolet resistance and antibacterial property using short chain polyethylene glycol.

Su W, Wei SS, Hu SQ, Tang JX.

J Hazard Mater. 2009 Dec 30;172(2-3):716-20. doi: 10.1016/j.jhazmat.2009.07.056. Epub 2009 Jul 22.

PMID:
19674837
17.

Preparation of graphene oxide-silver nanoparticle nanohybrids with highly antibacterial capability.

Zhu Z, Su M, Ma L, Ma L, Liu D, Wang Z.

Talanta. 2013 Dec 15;117:449-55. doi: 10.1016/j.talanta.2013.09.017. Epub 2013 Oct 3.

PMID:
24209367
18.

Synthesis and antibacterial activity of peptide deformylase inhibitors.

Huntington KM, Yi T, Wei Y, Pei D.

Biochemistry. 2000 Apr 18;39(15):4543-51.

PMID:
10758004
19.

Highly selective antibacterial activities of silver nanoparticles against Bacillus subtilis.

Li J, Rong K, Zhao H, Li F, Lu Z, Chen R.

J Nanosci Nanotechnol. 2013 Oct;13(10):6806-13.

PMID:
24245147
20.

Studies on the mechanisms of the sporicidal action of ortho-phthalaldehyde.

Cabrera-Martinez RM, Setlow B, Setlow P.

J Appl Microbiol. 2002;92(4):675-80.

PMID:
11966908
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