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Items: 1 to 20 of 134

1.

Broad-spectrum antibacterial activity by a novel abiogenic peptide mimic.

Nüsslein K, Arnt L, Rennie J, Owens C, Tew GN.

Microbiology. 2006 Jul;152(Pt 7):1913-8.

PMID:
16804167
2.

The antibacterial effect of a proline-rich antibacterial peptide A3-APO.

Rozgonyi F, Szabo D, Kocsis B, Ostorházi E, Abbadessa G, Cassone M, Wade JD, Otvos L Jr.

Curr Med Chem. 2009;16(30):3996-4002. Review.

PMID:
19747127
3.

Synthetic membrane-targeted antibiotics.

Vooturi SK, Firestine SM.

Curr Med Chem. 2010;17(21):2292-300. Review.

PMID:
20459377
4.

Identification of novel antibacterial peptides by chemoinformatics and machine learning.

Fjell CD, Jenssen H, Hilpert K, Cheung WA, Panté N, Hancock RE, Cherkasov A.

J Med Chem. 2009 Apr 9;52(7):2006-15. doi: 10.1021/jm8015365.

PMID:
19296598
5.

A linguistic model for the rational design of antimicrobial peptides.

Loose C, Jensen K, Rigoutsos I, Stephanopoulos G.

Nature. 2006 Oct 19;443(7113):867-9.

PMID:
17051220
6.

Ceragenins: cholic acid-based mimics of antimicrobial peptides.

Lai XZ, Feng Y, Pollard J, Chin JN, Rybak MJ, Bucki R, Epand RF, Epand RM, Savage PB.

Acc Chem Res. 2008 Oct;41(10):1233-40. doi: 10.1021/ar700270t. Epub 2008 Jul 11.

PMID:
18616297
7.

Biodiversity of apidaecin-type peptide antibiotics. Prospects of manipulating the antibacterial spectrum and combating acquired resistance.

Casteels P, Romagnolo J, Castle M, Casteels-Josson K, Erdjument-Bromage H, Tempst P.

J Biol Chem. 1994 Oct 21;269(42):26107-15.

8.

The human anionic antimicrobial peptide dermcidin induces proteolytic defence mechanisms in staphylococci.

Lai Y, Villaruz AE, Li M, Cha DJ, Sturdevant DE, Otto M.

Mol Microbiol. 2007 Jan;63(2):497-506. Epub 2006 Dec 14.

9.

Synthetic diastereomeric-antimicrobial peptide: antibacterial activity against multiple drug resistant clinical isolates.

Park SC, Kim JY, Lee JK, Yoo S, Kim H, Seo CH, Nah JW, Hahm KS, Park Y.

Biopolymers. 2011;96(2):130-6. doi: 10.1002/bip.21446.

PMID:
20564032
10.

Isolation, structure, and antibacterial activity of philipimycin, a thiazolyl peptide discovered from Actinoplanes philippinensis MA7347.

Zhang C, Occi J, Masurekar P, Barrett JF, Zink DL, Smith S, Onishi R, Ha S, Salazar O, Genilloud O, Basilio A, Vicente F, Gill C, Hickey EJ, Dorso K, Motyl M, Singh SB.

J Am Chem Soc. 2008 Sep 10;130(36):12102-10. doi: 10.1021/ja803183u. Epub 2008 Aug 13.

PMID:
18698773
11.

Design and synthesis of cationic antimicrobial peptides with improved activity and selectivity against Vibrio spp.

Chou HT, Kuo TY, Chiang JC, Pei MJ, Yang WT, Yu HC, Lin SB, Chen WJ.

Int J Antimicrob Agents. 2008 Aug;32(2):130-8. doi: 10.1016/j.ijantimicag.2008.04.003. Epub 2008 Jun 30.

PMID:
18586467
12.

Use of artificial intelligence in the design of small peptide antibiotics effective against a broad spectrum of highly antibiotic-resistant superbugs.

Cherkasov A, Hilpert K, Jenssen H, Fjell CD, Waldbrook M, Mullaly SC, Volkmer R, Hancock RE.

ACS Chem Biol. 2009 Jan 16;4(1):65-74. doi: 10.1021/cb800240j.

PMID:
19055425
13.

Design of multifunctional peptides expressing both antimicrobial activity and shiga toxin neutralization activity.

Yamada Y, Miura Y, Sakaki A, Yoshida T, Kobayashi K.

Bioorg Med Chem. 2006 Jan 1;14(1):77-82. Epub 2005 Sep 19.

PMID:
16169733
14.

Design and synthesis of novel antibacterial peptide-resin conjugates.

Cho WM, Joshi BP, Cho H, Lee KH.

Bioorg Med Chem Lett. 2007 Nov 1;17(21):5772-6. Epub 2007 Aug 28.

PMID:
17827001
15.

A colorimetric assay for rapid screening of antimicrobial peptides.

Kolusheva S, Boyer L, Jelinek R.

Nat Biotechnol. 2000 Feb;18(2):225-7.

PMID:
10657134
16.

Novel antimicrobial peptides that exhibit activity against select agents and other drug resistant bacteria.

Venugopal D, Klapper D, Srouji AH, Bhonsle JB, Borschel R, Mueller A, Russell AL, Williams BC, Hicks RP.

Bioorg Med Chem. 2010 Jul 15;18(14):5137-47. doi: 10.1016/j.bmc.2010.05.065. Epub 2010 May 27.

PMID:
20558071
17.

Design and characterization of novel hybrid peptides from LFB15(W4,10), HP(2-20), and cecropin A based on structure parameters by computer-aided method.

Tian ZG, Dong TT, Teng D, Yang YL, Wang JH.

Appl Microbiol Biotechnol. 2009 Apr;82(6):1097-103. doi: 10.1007/s00253-008-1839-x. Epub 2009 Jan 16.

PMID:
19148638
18.

New generation of peptide antibiotics.

Dubin A, Mak P, Dubin G, Rzychon M, Stec-Niemczyk J, Wladyka B, Maziarka K, Chmiel D.

Acta Biochim Pol. 2005;52(3):633-8. Review.

19.

Analysis of in vitro activities and modes of action of synthetic antimicrobial peptides derived from an alpha-helical 'sequence template'.

Pag U, Oedenkoven M, Sass V, Shai Y, Shamova O, Antcheva N, Tossi A, Sahl HG.

J Antimicrob Chemother. 2008 Feb;61(2):341-52. doi: 10.1093/jac/dkm479. Epub 2008 Jan 3.

PMID:
18174202
20.

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