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Items: 1 to 20 of 3965

1.

Development of a species-specific PCR-RFLP targeting rpoD gene fragment for discrimination of Aeromonas species.

Puah SM, Khor WC, Kee BP, Tan JAMA, Puthucheary SD, Chua KH.

J Med Microbiol. 2018 Jul 19. doi: 10.1099/jmm.0.000796. [Epub ahead of print]

PMID:
30024365
2.

Bacteriological, Clinical and Virulence Aspects of Aeromonas-associated Diseases in Humans.

Bhowmick UD, Bhattacharjee S.

Pol J Microbiol. 2018 Jun 30;67(2):137-149. doi: 10.21307/pjm-2018-020.

PMID:
30015452
3.

Growth of mesophilic Aeromonas salmonicida in an experimental model of nigiri sushi during cold storage.

Hoel S, Vadstein O, Jakobsen AN.

Int J Food Microbiol. 2018 Jul 6;285:1-6. doi: 10.1016/j.ijfoodmicro.2018.07.008. [Epub ahead of print]

PMID:
30005315
4.

Caspase -1, -3, -8 and antioxidant enzyme genes are key molecular effectors following Vibrio parahaemolyticus and Aeromonas veronii infection in fish leukocytes.

Reyes-Becerril M, Sanchez V, Delgado K, Guerra K, Velazquez E, Ascencio F, Angulo C.

Immunobiology. 2018 Jul 4. pii: S0171-2985(18)30038-X. doi: 10.1016/j.imbio.2018.07.002. [Epub ahead of print]

PMID:
30001906
5.

Completion of genome of Aeromonas salmonicida subsp. salmonicida 01-B526 reveals how sequencing technologies can influence sequence quality and result interpretations.

Vincent AT, Charette SJ.

New Microbes New Infect. 2018 May 31;25:24-26. doi: 10.1016/j.nmni.2018.05.007. eCollection 2018 Sep.

6.

Virulence of the fish pathogen Aeromonas dhakensis: genes involved, characterization and histopathology of experimentally infected hybrid tilapia.

Soto-Rodriguez SA, Lozano-Olvera R, Garcia-Gasca MT, Abad-Rosales SM, Gomez-Gil B, Ayala-Arellano J.

Dis Aquat Organ. 2018 Jul 4;129(2):107-116. doi: 10.3354/dao03247.

PMID:
29972371
7.

Prevalence and genetic analysis of mcr-3-positive Aeromonas species from humans, retail meat, and environmental water samples.

Shen Y, Xu C, Sun Q, Schwarz S, Ou Y, Yang L, Huang Z, Eichhorn I, Walsh TR, Wang Y, Zhang R, Shen J.

Antimicrob Agents Chemother. 2018 Jul 2. pii: AAC.00404-18. doi: 10.1128/AAC.00404-18. [Epub ahead of print]

PMID:
29967026
8.

Outcome of co-infection with opportunistic and multidrug resistant Aeromonas hydrophila and A. veronii in zebrafish: Identification, characterization, pathogenicity and immune responses.

Chandrarathna HPSU, Nikapitiya C, Dananjaya SHS, Wijerathne CUB, Wimalasena SHMP, Kwun HJ, Heo GJ, Lee J, De Zoysa M.

Fish Shellfish Immunol. 2018 Jun 28;80:573-581. doi: 10.1016/j.fsi.2018.06.049. [Epub ahead of print]

PMID:
29964197
9.

Modulation of immune response and protective efficacy of recombinant outer-membrane protein F (rOmpF) of Aeromonas hydrophila in Labeo rohita.

Yadav SK, Dash P, Sahoo PK, Garg LC, Dixit A.

Fish Shellfish Immunol. 2018 Jun 27;80:563-572. doi: 10.1016/j.fsi.2018.06.041. [Epub ahead of print]

PMID:
29958980
10.

Silver nanoparticles: Their role as antibacterial agent against Aeromonas salmonicida subsp. salmonicida in rainbow trout (Oncorhynchus mykiss).

Shaalan M, El-Mahdy M, Theiner S, Dinhopl N, El-Matbouli M, Saleh M.

Res Vet Sci. 2018 Jun 21;119:196-204. doi: 10.1016/j.rvsc.2018.06.019. [Epub ahead of print]

PMID:
29958154
11.

Ceftriaxone-Resistant Aeromonas hydrophila Infection Following Leech Therapy: A New Resistant Strain.

Bykowski MR, Zhu X, Diaz-Garcia R.

Ann Plast Surg. 2018 Jun 26. doi: 10.1097/SAP.0000000000001540. [Epub ahead of print]

PMID:
29944526
12.

Pharmacokinetic/pharmacodynamic relationship of enrofloxacin against Aeromonas hydrophila in crucian carp (Carassius auratus gibelio).

Shan Q, Wang J, Wang J, Ma L, Yang F, Yin Y, Huang R, Liu S, Li L, Zheng G.

J Vet Pharmacol Ther. 2018 Jun 25. doi: 10.1111/jvp.12678. [Epub ahead of print]

PMID:
29943470
13.

Growth arrest and DNA damage inducible 45-beta activates pro-inflammatory cytokines and phagocytosis in the grass carp (Ctenopharyngodon idella) after Aeromonas hydrophila infection.

Bai Y, Shen Y, Xu XY, Bai Y, Fang Y, Zhang M, Miao Y, Zhang X, Li JL.

Dev Comp Immunol. 2018 Jun 19;87:176-181. doi: 10.1016/j.dci.2018.06.010. [Epub ahead of print]

PMID:
29932964
14.

Bioinformatic analysis of the fold type I PLP-dependent enzymes reveals determinants of reaction specificity in l-threonine aldolase from Aeromonas jandaei.

Fesko K, Suplatov D, Švedas V.

FEBS Open Bio. 2018 May 21;8(6):1013-1028. doi: 10.1002/2211-5463.12441. eCollection 2018 Jun.

15.

KatG plays an important role in Aeromonas hydrophila survival in fish macrophages and escape for further infection.

Zhang M, Yan Q, Mao L, Wang S, Huang L, Xu X, Qin Y.

Gene. 2018 Sep 25;672:156-164. doi: 10.1016/j.gene.2018.06.029. Epub 2018 Jun 12.

PMID:
29906530
16.

Draft Genome Sequence of Fish Pathogen Aeromonas bestiarum GA97-22.

Kumru S, Tekedar HC, Griffin MJ, Waldbieser GC, Liles MR, Sonstegard T, Schroeder SG, Lawrence ML, Karsi A.

Genome Announc. 2018 Jun 14;6(24). pii: e00524-18. doi: 10.1128/genomeA.00524-18.

17.

Draft Genome Sequences of Cloacibacterium normanense IMET F, a Microalgal Growth-Promoting Bacterium, and Aeromonas jandaei IMET J, a Microalgal Growth-Inhibiting Bacterium.

Singh SK, Major SR, Cai H, Chen F, Hill RT, Li Y.

Genome Announc. 2018 Jun 14;6(24). pii: e00503-18. doi: 10.1128/genomeA.00503-18.

18.

The stress hormone norepinephrine increases the growth and virulence of Aeromonas hydrophila.

Gao J, Xi B, Chen K, Song R, Qin T, Xie J, Pan L.

Microbiologyopen. 2018 Jun 13:e00664. doi: 10.1002/mbo3.664. [Epub ahead of print]

19.

Dietary Withania sominefera root confers protective and immunotherapeutic effects against Aeromonas hydrophila infection in Nile tilapia (Oreochromis niloticus).

Zahran E, Abd El-Gawad EA, Risha E.

Fish Shellfish Immunol. 2018 Jun 7;80:641-650. doi: 10.1016/j.fsi.2018.06.009. [Epub ahead of print]

PMID:
29886140
20.

The disturbance of antioxidant/oxidant balance in fish experimentally infected by Aeromonas caviae: Relationship with disease pathophysiology.

Baldissera MD, Souza CF, Parmeggiani B, Leipnitz G, Verdi CM, Santos RV, Stefani LM, Baldisserotto B.

Microb Pathog. 2018 Jun 7;122:53-57. doi: 10.1016/j.micpath.2018.06.011. [Epub ahead of print]

PMID:
29886086

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