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Published Research

A comprehensive listing of published research output based on PubMed data and user notified content.

There are 1155 references in this bibliography folder.

Krishnamurthy, A and Kyd, J (2014).
The roles of epithelial cell contact, respiratory bacterial interactions and phosphorylcholine in promoting biofilm formation by Streptococcus pneumoniae and nontypeable Haemophilus influenzae.
Microbes and infection, 16(8):640–647.

Krishnamurthy, S, Behlke, MA, Apicella, MA, McCray, PB, and Davidson, BL (2014).
Platelet Activating Factor Receptor Activation Improves siRNA Uptake and RNAi Responses in Well-differentiated Airway Epithelia.
Molecular therapy. Nucleic acids, 3:e175.

Kunthalert, D, Baothong, S, Khetkam, P, Chokchaisiri, S, and Suksamrarn, A (2014).
A chalcone with potent inhibiting activity against biofilm formation of nontypeable Haemophilus influenzae.
Microbiology and immunology.

Kurabi, A, Lee, J, Wong, C, Pak, K, Hoffman, HM, Ryan, AF, and Wasserman, SI (2014).
The inflammasome adaptor ASC contributes to multiple innate immune processes in the resolution of otitis media.
Innate immunity.

LaCross, NC, Marrs, CF, and Gilsdorf, JR (2014).
Otitis media associated polymorphisms in the hemin receptor HemR of nontypeable Haemophilus influenzae.
Infection, genetics and evolution : journal of molecular epidemiology and evolutionary genetics in infectious diseases, 26:47–57.

Lalwani, S, Chatterjee, S, Chhatwal, J, Simon, A, Ravula, S, Francois, N, Mehta, S, Strezova, A, and Borys, D (2014).
Impact of age on booster responses to the 10-valent pneumococcal non-typeable Haemophilus influenzae protein D conjugate vaccine (PHiD-CV) in children in India: a randomized, open-label study.
Clinical and vaccine immunology : CVI.

Langereis, JD and Weiser, JN (2014).
Shielding of a lipooligosaccharide IgM epitope allows evasion of neutrophil-mediated killing of an invasive strain of nontypeable Haemophilus influenzae.
mBio, 5(4):e01478–e01414.

Langereis, JD, de Jonge, MI, and Weiser, JN (2014).
Binding of human factor H to outer membrane protein P5 of non-typeable Haemophilus influenzae contributes to complement resistance.
Molecular microbiology, 94(1):89–106.

Larsen, JM, Musavian, HS, Butt, TM, Ingvorsen, C, Thysen, AH, and Brix, S (2014).
COPD and asthma-associated Proteobacteria, but not commensal Prevotella spp.,promote TLR2-independent lung inflammation and pathology.

Leroux-Roels, G, Maes, C, De Boever, F, Traskine, M, Rüggeberg, JU, and Borys, D (2014).
Safety, reactogenicity and immunogenicity of a novel pneumococcal protein-based vaccine in adults: a phase I/II randomized clinical study.
Vaccine, 32(50):6838–6846.

Lichtenegger, S, Bina, I, Roier, S, Bauernfeind, S, Keidel, K, Schild, S, Anthony, M, and Reidl, J (2014).
Characterization of lactate utilization and its implication on the physiology of Haemophilus influenzae.
International journal of medical microbiology : IJMM, 304(3-4):490–498.

Lim, FS, Koh, MT, Tan, KK, Chan, PC, Chong, CY, Shung Yehudi, YW, Teoh, YL, Shafi, F, Hezareh, M, Swinnen, K, and Borys, D (2014).
A randomised trial to evaluate the immunogenicity, reactogenicity, and safety of the 10-valent pneumococcal non-typeable Haemophilus influenzae protein D conjugate vaccine (PHiD-CV) co-administered with routine childhood vaccines in Singapore and Malaysia.
BMC infectious diseases, 14(1):530.

Lin, C, Kou, Y, Liao, C, Li, C, Huang, S, Cheng, Y, Liao, W, Chen, H, Wu, P, Kang, J, Lee, C, and Lai, C (2014).
Zinc oxide nanoparticles impair bacterial clearance by macrophages.
Nanomedicine (London, England), 9(9):1327–1339.

Lugade, AA, Bogner, PN, Thatcher, TH, Sime, PJ, Phipps, RP, and Thanavala, Y (2014).
Cigarette smoke exposure exacerbates lung inflammation and compromises immunity to bacterial infection.
Journal of immunology (Baltimore, Md. : 1950), 192(11):5226–5235.

McCrea, KW, Xie, J, Daniel, D, Ulrich-Lewis, JT, and Zhang, L (2014).
Predicted Configurations of Oligosaccharide Extensions in the Lipooligosaccharide of Non-Typeable Haemophilus influenzae.
Journal of clinical microbiology.

Metcalfe, HJ, Lea, S, Hughes, D, Khalaf, R, Abbott-Banner, K, and Singh, D (2014).
Effects of cigarette smoke on Toll-like receptor (TLR) activation of chronic obstructive pulmonary disease (COPD) macrophages.
Clinical and experimental immunology, 176(3):461–472.

Metcalfe, HJ, Lea, S, Hughes, D, Khalaf, R, Abbott-Banner, K, and Singh, D (2014).
Effects of cigarette smoke on TLR activation of COPD macrophages.
Clinical and experimental immunology.

Mizrahi, A, Cohen, R, Varon, E, Bonacorsi, S, Bechet, S, Poyart, C, Levy, C, and Raymond, J (2014).
Non typable-Haemophilus influenzae biofilm formation and acute otitis media.
BMC infectious diseases, 14(1):400.

Morissette, MC, Shen, P, Thayaparan, D, and Stämpfli, MR (2014).
Impacts of peroxisome proliferator-activated receptor-γ activation on cigarette smoke-induced exacerbated response to bacteria.
The European respiratory journal.

Nikota, JK, Shen, P, Morissette, MC, Fernandes, K, Roos, A, Chu, DK, Barra, NG, Iwakura, Y, Kolbeck, R, Humbles, AA, and Stampfli, MR (2014).
Cigarette smoke primes the pulmonary environment to IL-1α/CXCR-2-dependent nontypeable Haemophilus influenzae-exacerbated neutrophilia in mice.
Journal of immunology (Baltimore, Md. : 1950), 193(6):3134–3145.

Otsuka, T, Kirkham, C, Johnson, A, Jones, MM, and Murphy, TF (2014).
Substrate binding protein SBP2 of a putative ABC transporter as a novel vaccine antigen of Moraxella catarrhalis.
Infection and immunity, 82(8):3503–3512.

Pickering, J, Binks, MJ, Beissbarth, J, Hare, KM, Kirkham, LS, and Smith-Vaughan, H (2014).
A PCR-high-resolution melt assay for rapid differentiation of nontypeable Haemophilus influenzae and Haemophilus haemolyticus.
Journal of clinical microbiology, 52(2):663–667.

Pickering, J, Richmond, PC, and Kirkham, LS (2014).
Molecular tools for differentiation of non-typeable Haemophilus influenzae from Haemophilus haemolyticus.
Frontiers in microbiology, 5:664.

Pizzutto, SJ, Yerkovich, ST, Upham, JW, Hales, BJ, Thomas, WR, and Chang, AB (2014).
Children with chronic suppurative lung disease have a reduced capacity to synthesize interferon-gamma in vitro in response to non-typeable Haemophilus influenzae.
PloS one, 9(8):e104236.

Pizzutto, SJ, Yerkovich, ST, Upham, JW, Hales, BJ, Thomas, WR, and Chang, AB (2014).
Improving immunity to Haemophilus influenzae in children with chronic suppurative lung disease.

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