African horse sickness virus NS4 protein is an important virulence factor and interferes with JAK-STAT signaling during viral infection

2021 ◽  
Vol 298 ◽  
pp. 198407
Author(s):  
Gayle V. Wall ◽  
Isabella M. Wright ◽  
Carin Barnardo ◽  
Baltus J. Erasmus ◽  
Vida van Staden ◽  
...  
Virology ◽  
2016 ◽  
Vol 499 ◽  
pp. 144-155 ◽  
Author(s):  
Andelé M. Conradie ◽  
Liesel Stassen ◽  
Henk Huismans ◽  
Christiaan A. Potgieter ◽  
Jacques Theron

2015 ◽  
Vol 116 ◽  
pp. 27-33 ◽  
Author(s):  
Eva Calvo-Pinilla ◽  
Francisco de la Poza ◽  
Simon Gubbins ◽  
Peter Paul Clement Mertens ◽  
Javier Ortego ◽  
...  

2019 ◽  
Vol 47 (1) ◽  
Author(s):  
Aila Fabiane Peixoto ◽  
Elizabeth Sampaio De Medeiros ◽  
Rinaldo Aparecido Mota ◽  
José Wilton Pinheiro Júnior ◽  
Karla Danielle Almeida Soares ◽  
...  

Background: Mastitis is one of the diseases that cause damage to dairy cattle, and coagulase positive Staphylococcus (CPS), are its main etiological agents. The production of biofilms gives these microorganisms a physiological advantage, being an important virulence factor, as it confers their resistance to the action of disinfectants used in hygiene procedures. Therefore, the objective of this study was to evaluate the capacity of CPS, isolated from milk samples from cases of bovine subclinical mastitis in the Alagoas dairy basin, biofilm production and its sensitivity to disinfectant agents used before and after dipping.Materials, Methods & Results: In the Alagoas Milk Basin Region, 10 properties were selected from the municipalities of Batalha, Cacimbinhas, Major Isidoro and Minador do Negrão, which used a mechanical milking system and supplied milk to a dairy under federal inspection. The California Mastitis Test (CMT) was performed on 1155 cows. The animals diagnosed with subclinical mastitis were classified as: mild (+); moderate (++) and severe (+++). CMT positive samples were collected from 2+, totaling 891 samples. After cleaning the papillary ostium, 2 to 5 mL of milk was collected from each fourth breast before milking began. Subsequently, 0.5 µL of each sample was streak plated by exhaustion on 5% Sheep Blood Agar and incubated at 37°C, with readings at 24 and 48 h. The macroscopic and microscopic characteristics of the colonies, catalase and coagulase test were evaluated. Biofilm formation was determined by the microplate adhesion test. The efficacy of the sanitizers was evaluated with the active ingredients: lactic acid (2%), allantoin (0.05%), iodine (0.5%), chlorhexidine (2.0%), chlorine (2.5%), at times 15, 30 and 60 seconds. It was observed that 91.2% of the samples were able to form biofilm; Of these, 22.2%, 29.6% and 48.2% were strong, moderate and weak producers, respectively. The sensitivity profile of chlorhexidine isolates was 79.73%, 80.41% and 83.78%; iodine was 59.46%, 65.54% and 66.22% sensitivity over the evaluated time. For allantoin, the isolates presented sensitivity of 22.30%, 27.03% and 37.74%, for lactic acid, 18.92%, 20.95% and 22.30% of the samples were sensitive, and to chlorine, 12.6%, 15.58% and 17.57% of the isolates were sensitive. Moreover, it was observed that the longer the exposure to the disinfectant, the greater the effectiveness of the same.Discussion: The results are in line with literature data. Staphylococcus spp. from milk samples of animals with subclinical mastitis are able to form biofilm, thus being an important virulence factor. The heterogeneity regarding the biofilm production potential of the isolates is due to the different species of Staphylococcus spp. that, through distinct mechanisms, triggers a greater or lesser formation of this virulent factor, as well as having their adhesion tested, end up becoming more strongly attached to the plate. Among the disinfectants tested, it was confirmed that chlorhexidine and iodine are more effective than SCP, which tend to have high levels of sensitivity to these disinfectants. However, although chlorhexidine was more sensitive to SCP, its use in the field should be done with caution, as its effectiveness may be reduced in the presence of chlorinated water or excess organic matter. It is concluded that SCP isolates from bovine milk from subclinical mastitis mammary quarters were able to produce biofilms. These isolates were also in vitro sensitive to chlorhexidine and iodine, but periodic evaluation of the efficacy of disinfectants used before and after milking is necessary.


2005 ◽  
Vol 73 (12) ◽  
pp. 7869-7877 ◽  
Author(s):  
Christopher G. Earnhart ◽  
Eric L. Buckles ◽  
John Stephen Dumler ◽  
Richard T. Marconi

ABSTRACT Outer surface protein C (OspC) of the Lyme disease spirochetes is an important virulence factor that has potential utility for vaccine development. Of the 21 OspC types that have been identified, it has been postulated that types A, B, I, and K are specifically associated with invasive infections. Through an analysis of isolates collected from patients in Maryland we found that OspC types C, D, and N are also associated with invasive infections. This observation suggests that there is greater diversity in the group of OspC types associated with invasive infection than has been previously suggested. Detailed knowledge of the antigenic structure of OspC is essential for vaccine development. To determine if the antibody response to OspC is type specific, recombinant proteins of several different OspC types were immunoblotted and screened with sera from mice infected with isolates having known OspC types. These analyses revealed a high degree of specificity in the antibody response and suggested that the immunodominant epitopes of OspC reside in the variable domains of the protein. To localize these epitopes, OspC fragments were generated and screened with serum collected from infected mice. These analyses led to identification of previously uncharacterized epitopes that define the type specificity of the OspC antibody response. These analyses provide important insight into the antigenic structure of OspC and also provide a basis for understanding the variable nature of the antibody response to this important virulence factor of the Lyme disease spirochetes.


1993 ◽  
Vol 31 (8) ◽  
pp. 2241-2243 ◽  
Author(s):  
N Staeuber ◽  
B Fye ◽  
J Zinsstag ◽  
K C McCullough

1994 ◽  
Vol 32 (3) ◽  
pp. 697-700 ◽  
Author(s):  
M Stone-Marschat ◽  
A Carville ◽  
A Skowronek ◽  
W W Laegreid

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