Identification of emerging human-pathogenic Pythium insidiosum by serological and molecular assay-based methods
Pythium insidiosum is a pathogen that causes disease in both animals and humans. Human infection is rare; however, when it does occur, most patients, especially those having underlying hemoglobinopathy syndromes, such as thalassemia, exhibit a severe form. We identified four isolates of P. insidiosu...
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th-cmuir.6653943832-39032014-08-30T02:35:27Z Identification of emerging human-pathogenic Pythium insidiosum by serological and molecular assay-based methods Vanittanakom N. Supabandhu J. Khamwan C. Praparattanapan J. Thirach S. Prasertwitayakij N. Louthrenoo W. Chiewchanvit S. Tananuvat N. Pythium insidiosum is a pathogen that causes disease in both animals and humans. Human infection is rare; however, when it does occur, most patients, especially those having underlying hemoglobinopathy syndromes, such as thalassemia, exhibit a severe form. We identified four isolates of P. insidiosum. Two were recovered from tissue biopsy specimens from thalassemic and leukemic patients, one was derived from brain tissue from a thalassemic patient, and another was isolated from a corneal ulcer from a fourth patient Western blotting and an enzyme-linked immunosorbent assay (ELISA) were performed with a serum sample derived from one thalassemic patient. The methods used to identify the P. insidiosum isolates were based on morphology, nucleic acid sequencing, and a PCR assay. To confirm the identification, portions of the 18S rRNA genes of these four isolates were sequenced. The sequences were shown to be homologous to previously described P. insidiosum DNA sequences. In addition, PCR amplification of the internal transcribed spacer region specific for P. insidiosum was positive for all four isolates. The ELISA with the serum sample from the thalassemic patient gave a positive result from a serum dilution of 1:800. Finally, Western immunoblotting with this serum sample showed positive immunoglobulin G recognition for proteins of 110, 73, 56, 42 to 35, 30 to 28, 26, and 23 kDa. The results of this study show that both molecularly based diagnostic and serodiagnostic techniques are useful for the rapid identification of human pythiosis. The predominant antigens recognized by Western blotting may be useful in the development of a more sensitive and specific diagnostic tool for this disease. 2014-08-30T02:35:27Z 2014-08-30T02:35:27Z 2004 Article 00951137 10.1128/JCM.42.9.3970-3974.2004 15364977 JCMID http://www.scopus.com/inward/record.url?eid=2-s2.0-4644249496&partnerID=40&md5=31c17933c340faabb3778d87f98f6faa http://www.ncbi.nlm.nih.gov/pubmed/15364977 http://cmuir.cmu.ac.th/handle/6653943832/3903 English |
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Pythium insidiosum is a pathogen that causes disease in both animals and humans. Human infection is rare; however, when it does occur, most patients, especially those having underlying hemoglobinopathy syndromes, such as thalassemia, exhibit a severe form. We identified four isolates of P. insidiosum. Two were recovered from tissue biopsy specimens from thalassemic and leukemic patients, one was derived from brain tissue from a thalassemic patient, and another was isolated from a corneal ulcer from a fourth patient Western blotting and an enzyme-linked immunosorbent assay (ELISA) were performed with a serum sample derived from one thalassemic patient. The methods used to identify the P. insidiosum isolates were based on morphology, nucleic acid sequencing, and a PCR assay. To confirm the identification, portions of the 18S rRNA genes of these four isolates were sequenced. The sequences were shown to be homologous to previously described P. insidiosum DNA sequences. In addition, PCR amplification of the internal transcribed spacer region specific for P. insidiosum was positive for all four isolates. The ELISA with the serum sample from the thalassemic patient gave a positive result from a serum dilution of 1:800. Finally, Western immunoblotting with this serum sample showed positive immunoglobulin G recognition for proteins of 110, 73, 56, 42 to 35, 30 to 28, 26, and 23 kDa. The results of this study show that both molecularly based diagnostic and serodiagnostic techniques are useful for the rapid identification of human pythiosis. The predominant antigens recognized by Western blotting may be useful in the development of a more sensitive and specific diagnostic tool for this disease. |
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Article |
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Vanittanakom N. Supabandhu J. Khamwan C. Praparattanapan J. Thirach S. Prasertwitayakij N. Louthrenoo W. Chiewchanvit S. Tananuvat N. |
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Vanittanakom N. Supabandhu J. Khamwan C. Praparattanapan J. Thirach S. Prasertwitayakij N. Louthrenoo W. Chiewchanvit S. Tananuvat N. Identification of emerging human-pathogenic Pythium insidiosum by serological and molecular assay-based methods |
author_facet |
Vanittanakom N. Supabandhu J. Khamwan C. Praparattanapan J. Thirach S. Prasertwitayakij N. Louthrenoo W. Chiewchanvit S. Tananuvat N. |
author_sort |
Vanittanakom N. |
title |
Identification of emerging human-pathogenic Pythium insidiosum by serological and molecular assay-based methods |
title_short |
Identification of emerging human-pathogenic Pythium insidiosum by serological and molecular assay-based methods |
title_full |
Identification of emerging human-pathogenic Pythium insidiosum by serological and molecular assay-based methods |
title_fullStr |
Identification of emerging human-pathogenic Pythium insidiosum by serological and molecular assay-based methods |
title_full_unstemmed |
Identification of emerging human-pathogenic Pythium insidiosum by serological and molecular assay-based methods |
title_sort |
identification of emerging human-pathogenic pythium insidiosum by serological and molecular assay-based methods |
publishDate |
2014 |
url |
http://www.scopus.com/inward/record.url?eid=2-s2.0-4644249496&partnerID=40&md5=31c17933c340faabb3778d87f98f6faa http://www.ncbi.nlm.nih.gov/pubmed/15364977 http://cmuir.cmu.ac.th/handle/6653943832/3903 |
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1681420136459796480 |