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Dive into the research topics where Pichart Uparanukraw is active.

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Featured researches published by Pichart Uparanukraw.


Parasitology Research | 1996

Detection of circulating Trichinella spiralis larvae by polymerase chain reaction

Pichart Uparanukraw; Nimit Morakote

Abstract Several investigators have successfully applied the polymerase chain reaction to the amplification of DNA from Trichinella spiralis muscle-stage larvae. We show herein that specific DNA can be amplified from T. spiralis migratory larvae in the blood of experimentally infected mice. The polymerase chain reaction detected the presence of migratory larvae in mouse blood from day 5 to day 14 of infection. The technique may be applied to human trichinosis, but its diagnostic value will depend on the severity and stage of the infection.


Molecular and Biochemical Parasitology | 2008

Identification and characterization of a cathepsin L-like cysteine protease from Gnathostoma spinigerum.

Natthawan Kongkerd; Pichart Uparanukraw; Nimit Morakote; Mohammed Sajid; James H. McKerrow

Gnathostoma spinigerum is a causative agent of human gnathostomiasis, a common parasitic disease involving skin and visceral organs, especially the central nervous system. In this study, we identified a cDNA encoding a cathepsin L-like cysteine protease (GsCL1) from the lambdaZAP cDNA library of G. spinigerum advanced third-stage larva (aL3) and characterized the biochemical properties of the recombinant enzyme. The cloned cDNA of 1484bp encoded 398 amino acids which contained a typical signal peptide sequence (23 amino acids), a pro-domain (156 amino acids), and a mature domain (219 amino acids) with an approximate molecular weight of 24kDa. The deduced amino acid sequence of GsCL1 gene showed 53-64% identity to cathepsin L proteases of various organisms including a cathepsin L family member (cpl-1) of Caenorhabditis elegans. Recombinant proGsCL1 expressed in Pichia pastoris showed typical biochemical characteristics of cysteine proteases. The expressed enzyme displayed optimal protease activity toward Z-Phe-Arg-AMC substrate at pH 6.0 but not toward Z-Arg-Arg-AMC. The activity was sensitive to cysteine protease inhibitors E-64 and K11777. The preference for large hydrophilic and aromatic residues in the P2 position (I, L, F, W, U, V) was typical of cathepsin L proteases. Mouse anti-GST-proGsCL1 serum showed reactivity with 35-, 38- and 45-kDa proteins in the aL3 extracts. These proteins were shown to localize inside the intestinal cells of aL3.


Revista Do Instituto De Medicina Tropical De Sao Paulo | 2013

POTENTIALLY PATHOGENIC FREE-LIVING AMOEBAE IN SOME FLOOD-AFFECTED AREAS DURING 2011 CHIANG MAI FLOOD

Anchalee Wannasan; Pichart Uparanukraw; Apichart Songsangchun; Nimit Morakote

SUMMARY The survey was carried out to investigate the presence of potentially pathogenic free-living amoebae (FLA) during flood in Chiang Mai, Thailand in 2011. From different crisis flood areas, seven water samples were collected and tested for the presence of amoebae using culture and molecular methods. By monoxenic culture, FLA were detected from all samples at 37 °C incubation. The FLA growing at 37 °C were morphologically identified as Acanthamoeba spp., Naegleria spp. and some unidentified amoebae. Only three samples (42.8%), defined as thermotolerant FLA, continued to grow at 42 °C. By molecular methods, two non-thermotolerant FlA were shown to have 99% identity to Acanthamoeba sp. and 98% identity to Hartmannella vermiformis while the two thermotolerant FLA were identified as Echinamoeba exundans (100% identity) and Hartmannella sp. (99% identity). This first report of the occurrence of FLA in water during the flood disaster will provide information to the public to be aware of potentially pathogenic FLA.


Journal of Helminthology | 1999

Recognition of deglycosylated larval proteins of Gnathostoma spinigerum by a monoclonal antibody and human gnathostomiasis antiserum

Pichart Uparanukraw; Thasaneeya Harnnoi; Anchalee Dantrakool; Nimit Morakote; Wanpen Chaicumpa

The study on the recognition of 35S-labelled somatic antigens of Gnathostoma spinigerum advanced third-stage larva (aL3) has revealed that the mAb GN6/24 immunoprecipitated 26- and 24-kDa proteins from the undigested and N-glycosidase F-digested larval extracts, respectively. The recognition of the deglycosylated form of the glycoprotein indicated that the mAb reacted with the peptide epitope on the 26-kDa protein. Human gnathostomiasis antiserum immunoprecipitated most of the N-glycosidase F-digested larval proteins including the deglycosylated 26-kDa protein.


American Journal of Tropical Medicine and Hygiene | 1999

Fluctuations of larval excretion in Strongyloides stercoralis infection.

Pichart Uparanukraw; Suthep Phongsri; Nimit Morakote


Parasitology Research | 2001

Molecular cloning of a gene encoding matrix metalloproteinase-like protein from Gnathostoma spinigerum.

Pichart Uparanukraw; Nimit Morakote; Thasaneeya Harnnoi; Anchalee Dantrakool


Experimental Parasitology | 2014

Identification of Fasciola species based on mitochondrial and nuclear DNA reveals the co-existence of intermediate Fasciola and Fasciola gigantica in Thailand.

Anchalee Wannasan; Pathamet Khositharattanakool; Prasong Chaiwong; Somsak Piangjai; Pichart Uparanukraw; Nimit Morakote


International Journal of Parasitology Research | 2011

Analysis of haemolymph proteins in the Brugia malayi-susceptible mosquito, Aedes togoi, using SDS-PAGE and two-dimensional gel electrophoresis.

Narissara Jariyapan; Pichart Uparanukraw; Anchalee Wannasarn; Atiporn Saeung; Pathamet Khositharattanakool; Sriwatapron Sor-suwan; Benjarat Phattanawiboon


Southeast Asian Journal of Tropical Medicine and Public Health | 2001

Production of monoclonal antibodies to the cuticle of advanced third-stage larva of Gnathostoma spinigerum

Anchalee Dantrakool; Nimit Morakote; Pichart Uparanukraw


Southeast Asian Journal of Tropical Medicine and Public Health | 2013

THE VASCULATURE OF NURSE CELLS INFECTED WITH NON-ENCAPSULATED TRICHINELLA SPECIES

Khositharattanakool P; Nimit Morakote; Pichart Uparanukraw

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