Killing of trypanosomatid parasites by a modified bovine host defense peptide, BMAP-18
about
The Potential Use of Natural and Structural Analogues of Antimicrobial Peptides in the Fight against Neglected Tropical DiseasesEffect of BMAP-28 antimicrobial peptides on Leishmania major promastigote and amastigote growth: role of leishmanolysin in parasite survivalCathelicidin-like helminth defence molecules (HDMs): absence of cytotoxic, anti-microbial and anti-protozoan activities imply a specific adaptation to immune modulationLaminaria japonica Extract, an Inhibitor of Clavibater michiganense Subsp. SepedonicumThe plasma membrane of bloodstream-form African trypanosomes confers susceptibility and specificity to killing by hydrophobic peptidesKilling of Trypanozoon Parasites by the Equine Cathelicidin eCATH1.Major surface protease of trypanosomatids: one size fits all?High affinity nanobodies against the Trypanosome brucei VSG are potent trypanolytic agents that block endocytosisDifferential microbicidal effects of human histone proteins H2A and H2B on Leishmania promastigotes and amastigotes.Antimicrobial action of the cyclic peptide bactenecin on Burkholderia pseudomallei correlates with efficient membrane permeabilization.Antimicrobial peptide killing of African trypanosomes.Microbiome influences on insect host vector competencePeptide Inhibition of Topoisomerase IB from Plasmodium falciparum.Efficacy of synthetic peptides RP-1 and AA-RP-1 against Leishmania species in vitro and in vivoEfficacy of OH-CATH30 and its analogs against drug-resistant bacteria in vitro and in mouse models.PGRP-LB is a maternally transmitted immune milk protein that influences symbiosis and parasitism in tsetse's offspring.Protection efficacy of the Brucella abortus ghost vaccine candidate lysed by the N-terminal 24-amino acid fragment (GI24) of the 36-amino acid peptide PMAP-36 (porcine myeloid antimicrobial peptide 36) in murine modelsAntimicrobial properties and membrane-active mechanism of a potential α-helical antimicrobial derived from cathelicidin PMAP-36.Peptide design for antimicrobial and immunomodulatory applications.Apoptotic markers in protozoan parasites.Modes of action of Leishmanicidal antimicrobial peptides.Entamoeba histolytica induces intestinal cathelicidins but is resistant to cathelicidin-mediated killing.Helminth defence molecules-immunomodulators designed by parasites!
P2860
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P2860
Killing of trypanosomatid parasites by a modified bovine host defense peptide, BMAP-18
description
2009 nî lūn-bûn
@nan
2009 թուականին հրատարակուած գիտական յօդուած
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2009 թվականին հրատարակված գիտական հոդված
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2009年の論文
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2009年論文
@yue
2009年論文
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2009年論文
@zh-hk
2009年論文
@zh-mo
2009年論文
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2009年论文
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name
Killing of trypanosomatid parasites by a modified bovine host defense peptide, BMAP-18
@ast
Killing of trypanosomatid parasites by a modified bovine host defense peptide, BMAP-18
@en
Killing of trypanosomatid parasites by a modified bovine host defense peptide, BMAP-18
@nl
type
label
Killing of trypanosomatid parasites by a modified bovine host defense peptide, BMAP-18
@ast
Killing of trypanosomatid parasites by a modified bovine host defense peptide, BMAP-18
@en
Killing of trypanosomatid parasites by a modified bovine host defense peptide, BMAP-18
@nl
prefLabel
Killing of trypanosomatid parasites by a modified bovine host defense peptide, BMAP-18
@ast
Killing of trypanosomatid parasites by a modified bovine host defense peptide, BMAP-18
@en
Killing of trypanosomatid parasites by a modified bovine host defense peptide, BMAP-18
@nl
P2093
P2860
P3181
P1476
Killing of trypanosomatid parasites by a modified bovine host defense peptide, BMAP-18
@en
P2093
Angela M Jackson
Brent Gowen
Brett A Eyford
Cristalle N Watson
Jamie M Thomas
Morteza Razavi
Terry W Pearson
P2860
P3181
P356
10.1371/JOURNAL.PNTD.0000373
P407
P577
2009-01-01T00:00:00Z