Reactions of complexed hosts, of incarcerated guests, and host protection of guests from self destruction

Keyword(s):  
PLoS ONE ◽  
2010 ◽  
Vol 5 (12) ◽  
pp. e14472 ◽  
Author(s):  
Jose-Andres C. Portillo ◽  
Genevieve Okenka ◽  
Erin Reed ◽  
Angela Subauste ◽  
Jennifer Van Grol ◽  
...  

Author(s):  
Brandon Anton Paarwater ◽  
Jomien Mouton ◽  
Samantha L Sampson ◽  
Stephanus T Malherbe ◽  
Jane A Shaw ◽  
...  

The influence of smoke- or air pollution-derived cytoplasmic particulate matter (PM) can be detrimental and lead to failed lung immunity. We investigated mycobacterial uptake, intracellular replication, and soluble immune mediator responses of human bronchoalveolar lavage cells (BALC) loaded with/without PM, to infection with mycobacterial strains. We observed that only BALC containing PM display an ex vivo phenotypic profile dominated by spontaneous interleukin (IL) -10 production. PM loaded BALC retained the ability to phagocytose both Mycobacterium bovis Bacille Calmette Guérin (BCG) and Mycobacterium tuberculosis (M.tb) ΔleuDΔpanCD at equal efficacy as clear non-PM loaded BALC. However, immune responsiveness, such as the production of IL-6 (p=0.015) and tumor necrosis factor (TNF)-α (p= 0.0172) immediately post M.bovis BCG infection, were dramatically lower in black BALC loaded with PM versus clear non-PM loaded BALC. By 24 hour post infection, differential immune responses to M.bovis BCG between black versus clear BALC waned, and instead, production of IL-6 (p= 0.03) and IL-1α (p= 0.04 ) by black BALC were lower versus clear BALC following M.tb ΔleuDΔpanCD infection. Considering that TNFα and IL-6 are characterized as critical to host protection against mycobacteria, our findings suggest that BALC loaded with inhaled PM, display lower levels of anti-mycobacterial mediators, and that the response magnitude differs according to infective mycobacterial strain. Even though this did not translate into altered mycobacterial killing at early time points post infection, the long-term impact of such changes remains to be established.


2001 ◽  
Vol 69 (12) ◽  
pp. 7743-7752 ◽  
Author(s):  
L. Spencer ◽  
L. Shultz ◽  
T. V. Rajan

ABSTRACT Interleukin-4 (IL-4) has been shown to be crucial in parasite expulsion in several gastrointestinal nematode infection models. Data from both epidemiological studies with humans and experimental infections in animals imply a critical role for the type II helper response, dominated by IL-4, in host protection. Here we utilized inbred mice on two distinct backgrounds to document the involvement of IL-4 in the clearance of a primary infection of Brugiafrom the murine host. Our data from infections of IL-4 receptor−/− and Stat6−/− mice further indicate that IL-4 exerts its effects by activating the Stat6 molecule in host target cells, a finding which links clearance requirements of a gastrointestinal tract-dwelling nematode with those of a tissue-dwelling nematode. Additionally, we show that the requirements for IL-4 receptor binding and Stat6 activation extend to accelerated clearance of a secondary infection as well. The data shown here, including analysis of cell populations at the site of infection and infection of immunoglobulin E (IgE)−/− mice, lead us to suggest that deficiencies in eosinophil recruitment and isotype switching to IgE production may be at least partially responsible for slower parasite clearance in the absence of IL-4.


2007 ◽  
Vol 82 (6) ◽  
pp. 2620-2630 ◽  
Author(s):  
Mulu Z. Tesfay ◽  
Jun Yin ◽  
Christina L. Gardner ◽  
Mikhail V. Khoretonenko ◽  
Nadejda L. Korneeva ◽  
...  

ABSTRACT The alpha/beta interferon (IFN-α/β) response is critical for host protection against disseminated replication of many viruses, primarily due to the transcriptional upregulation of genes encoding antiviral proteins. Previously, we determined that infection of mice with Sindbis virus (SB) could be converted from asymptomatic to rapidly fatal by elimination of this response (K. D. Ryman et al., J. Virol. 74:3366-3378, 2000). Probing of the specific antiviral proteins important for IFN-mediated control of virus replication indicated that the double-stranded RNA-dependent protein kinase, PKR, exerted some early antiviral effects prior to IFN-α/β signaling; however, the ability of IFN-α/β to inhibit SB and protect mice from clinical disease was essentially undiminished in the absence of PKR, RNase L, and Mx proteins (K. D. Ryman et al., Viral Immunol. 15:53-76, 2002). One characteristic of the PKR/RNase L/Mx-independent antiviral effect was a blockage of viral protein accumulation early after infection (K. D. Ryman et al., J. Virol. 79:1487-1499, 2005). We show here that IFN-α/β priming induces a PKR-independent activity that inhibits m7G cap-dependent translation at a step after association of cap-binding factors and the small ribosome subunit but before formation of the 80S ribosome. Furthermore, the activity targets mRNAs that enter across the cytoplasmic membrane, but nucleus-transcribed RNAs are relatively unaffected. Therefore, this IFN-α/β-induced antiviral activity represents a mechanism through which IFN-α/β-exposed cells are defended against viruses that enter the cytoplasm, while preserving essential host activities, including the expression of antiviral and stress-responsive genes.


2018 ◽  
Vol 9 (1) ◽  
Author(s):  
Jin Kyung Kim ◽  
Yi Sak Kim ◽  
Hye-Mi Lee ◽  
Hyo Sun Jin ◽  
Chiranjivi Neupane ◽  
...  

2018 ◽  
Vol 2018 ◽  
pp. 1-6
Author(s):  
Claudio Costantini ◽  
Giorgia Renga ◽  
Vasilis Oikonomou ◽  
Giuseppe Paolicelli ◽  
Monica Borghi ◽  
...  

Mast cells are increasingly being recognized as crucial cells in the response of the organism to environmental agents. Interestingly, the ability of mast cells to sense and respond to external cues is modulated by the microenvironment that surrounds mast cells and influences their differentiation. The scenario that is emerging unveils a delicate equilibrium that balances the effector functions of mast cells to guarantee host protection without compromising tissue homeostasis. Among the environmental components able to mold mast cells and fine-tune their effector functions, the microorganisms that colonize the human body, collectively known as microbiome, certainly play a key role. Indeed, microorganisms can regulate not only the survival, recruitment, and maturation of mast cells but also their activity by setting the threshold required for the exploitation of their different effector functions. Herein, we summarize the current knowledge about the mechanisms underlying the ability of the microorganisms to regulate mast cell physiology and discuss potential deviations that result in pathological consequences. We will discuss the pivotal role of the aryl hydrocarbon receptor in sensing the environment and shaping mast cell adaptation at the host-microbe interface.


2004 ◽  
Vol 48 (10) ◽  
pp. 3662-3669 ◽  
Author(s):  
O. Etienne ◽  
C. Picart ◽  
C. Taddei ◽  
Y. Haikel ◽  
J. L. Dimarcq ◽  
...  

ABSTRACT Infection of implanted materials by bacteria constitutes one of the most serious complications following prosthetic surgery. In the present study, we developed a new strategy based on the insertion of an antimicrobial peptide (defensin from Anopheles gambiae mosquitoes) into polyelectrolyte multilayer films built by the alternate deposition of polyanions and polycations. Quartz crystal microbalance and streaming potential measurements were used to follow step by step the construction of the multilayer films and embedding of the defensin within the films. Antimicrobial assays were performed with two strains: Micrococcus luteus (a gram-positive bacterium) and Escherichia coli D22 (a gram-negative bacterium). The inhibition of E. coli D22 growth at the surface of defensin-functionalized films was found to be 98% when 10 antimicrobial peptide layers were inserted in the film architecture. Noticeably, the biofunctionalization could be achieved only when positively charged poly(l-lysine) was the outermost layer of the film. On the basis of the results of bacterial adhesion experiments observed by confocal or electron microscopy, these observations could result from the close interaction of the bacteria with the positively charged ends of the films, which allows defensin to interact with the bacterial membrane structure. These results open new possibilities for the use of such easily built and functionalized architectures onto any type of implantable biomaterial. The modified surfaces are active against microbial infection and represent a novel means of local host protection.


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