Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 2 de 2
Filter
Add filters








Year range
1.
Pesqui. vet. bras ; 37(1): 52-57, jan. 2017.
Article in Portuguese | LILACS, VETINDEX | ID: biblio-837455

ABSTRACT

A Febre Maculosa Brasileira (FMB) é uma doença infecciosa, transmitida por carrapatos ao homem. Uma nova riquetsiose humana foi descrita como causadora de Febre Maculosa no Estado de São Paulo, sendo denominada de Rickettsia sp. cepa Mata Atlântica. O presente trabalho teve como objetivo detectar e identificar proteínas com potencial de estimular o sistema imune de hospedeiro mamífero, desta nova cepa descrita. Para tanto, foi realizado a extração proteica total de Rickettsia sp. cepa Mata Atlântica. As proteínas extraídas foram fracionadas por eletroforese. As bandas proteicas foram transferidas para membranas de nitrocelulose por migração elétrica e submetidas à técnica de Western-blot, para detecção proteica. Ao todo sete proteínas imunorreativas foram detectadas. Duas proteínas apresentaram maior abundancia, com peso molecular, de 200 e 130 kDa respectivamente. Através da comparação de mapas proteômicos existentes e pelo peso molecular que estas proteínas apresentaram, sugere-se que as duas proteínas detectadas representem rOmpA (200 kDa) e rOmpB (130 kDa). As demais proteínas detectadas apresentaram menor ocorrência e peso molecular inferior a 78 kDa, podendo representar membros da família de antígenos de superfície celular (Sca - Surface cell antigen). As proteínas detectadas poderão servir como base de estudo na elaboração de métodos diagnósticos sensíveis e específicos, no desenvolvimento de vacinas, além de possibilitarem novos estudos para terapias mais eficazes.(AU)


Brazilian Spotted Fever (BSF) is an infectious disease transmitted by ticks to humans. A new human rickettsial infection was reported to cause spotted fever in the State of São Paulo and was named Rickettsia sp. Strain Atlantic Forest. This study aimed to detect and identify proteins with potential to stimulate the immune system of mammalian host of this new strain described. Therefore, we performed total protein extraction Rickettsia sp. Strain Atlantic Forest. The extracted proteins were fractionated by electrophoresis. The protein bands were transferred to nitrocellulose membrane by electrical migration and subjected to Western blot for protein detection. In all, seven immunoreactive proteins were detected. Two proteins showed higher abundance, with molecular weight of 200 and 130 kDa respectively. By comparing existing proteomic maps and the molecular weight of these proteins showed that, it is suggested that the two proteins detected representing rOmpA (200 kDa) and rOmpB (130 kDa). The other detected proteins had lower occurrence and molecular weight less than 78 kDa, which may represent members of the cell surface antigens Family (Sca - Surface cell antigen). The detected proteins may serve as a study based on the development of sensitive and specific diagnostic methods in the development of vaccines and they enable further studies to more effective therapies.(AU)


Subject(s)
Immunogenetic Phenomena , Proteins/immunology , Rickettsia Infections/immunology , Rickettsia/immunology , Rocky Mountain Spotted Fever/diagnosis , Rocky Mountain Spotted Fever/immunology
2.
Rev. Soc. Bras. Med. Trop ; 48(4): 410-416, July-Aug. 2015. ilus
Article in English | LILACS | ID: lil-755963

ABSTRACT

AbstractINTRODUCTION:

The saliva of mosquitoes has an important role in the transmission of several diseases, including malaria, and contains substances with vasomodulating and immunomodulating effects to counteract the host physiological mechanisms and enhance pathogen transmission. As immunomodulatory components, salivary gland proteins can induce the generation of specific IgG antibodies in the host, which can be used as specific biomarkers of exposure to Anopheles sundaicus . The objective of this study was to identify immunogenic proteins from the salivary glands of Anopheles sundaicus by reaction with sera from individuals living in malaria-endemic areas who are thus exposed to Anopheles mosquitoes.

METHODS:

IgG antibodies targeting salivary gland proteins in serum samples from individuals living in malaria-endemic areas were measured by enzyme-linked immunosorbent assay (ELISA). Sera from healthy individuals living in non-endemic areas were used as negative controls. Determination of the presence of salivary gland immunogenic proteins was carried out by western blotting.

RESULTS:

Sixteen bands appeared in sodium dodecyl sulfate polyacrylamide gel electrophoresis, with molecule weights ranging from 22 to 144kDa. Among the exposed individuals, IgG responses to salivary gland proteins were variable. Protein bands with molecular weights of 46, 41, 33, and 31kDa were the most immunogenic. These immunogenic proteins were consistently recognized by pooled serum and individual samples from people living in malaria-endemic areas but not by negative controls.

CONCLUSIONS:

These results support the potential use of immunogenic proteins from the salivary glands of Anopheles as candidate markers of bite exposure or in malaria vaccines.

.


Subject(s)
Adult , Animals , Female , Humans , Anopheles/immunology , Insect Proteins/immunology , Salivary Glands/immunology , Anopheles/chemistry , Biomarkers/analysis , Case-Control Studies , Electrophoresis, Polyacrylamide Gel , Immunoglobulin G/analysis , Immunoglobulin G/immunology , Insect Proteins/analysis , Salivary Proteins and Peptides/analysis
SELECTION OF CITATIONS
SEARCH DETAIL