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Dive into the research topics where Pongrama Ramasoota is active.

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Featured researches published by Pongrama Ramasoota.


Environmental Health Perspectives | 2006

Periplaneta americana arginine kinase as a major cockroach allergen among Thai patients with major cockroach allergies.

Nitat Sookrung; Wanpen Chaicumpa; Anchalee Tungtrongchitr; Pakit Vichyanond; Chaweewan Bunnag; Pongrama Ramasoota; Pongsri Tongtawe; Yuwaporn Sakolvaree; Pramuan Tapchaisri

Periplaneta americana is the predominant cockroach (CR) species and a major source of indoor allergens in Thailand. Nevertheless, data on the nature and molecular characteristics of its allergenic components are rare. We conducted this study to identify and characterize the P. americana allergenic protein. A random heptapeptide phage display library and monoclonal antibody (MAb) specific to a the P. americana component previously shown to be an allergenic molecule were used to identify the MAb-bound mimotope and its phylogenic distribution. Two-dimensional gel electrophoresis, liquid chromatography, mass spectrometry, peptide mass fingerprinting, and BLAST search were used to identify the P. americana protein containing the MAb-specific epitope. We studied the allergenicity of the native protein using sera of CR-allergic Thai patients in immunoassays. The mimotope peptide that bound to the MAb specific to P. americana was LTPCRNK. The peptide has an 83–100% identity with proteins of Anopheles gambiae, notch homolog scalloped wings of Lucilia cuprina, delta protein of Apis mellifera; neu5Ac synthase and tyrosine phosphatase of Drosophila melanogaster, and a putative protein of Drosophila pseudoobscura. This finding implies that the mimotope-containing molecule of P. americana is a pan-insect protein. The MAb-bound protein of P. americana was shown to be arginine kinase that reacted to IgE in the sera of all of the CR-allergic Thai patients by immunoblotting, implying its high allergenicity. In conclusion, our results revealed that P. americana arginine kinase is a pan-insect protein and a major CR allergen for CR-allergic Thai patients.


Biochemical and Biophysical Research Communications | 2012

Human monoclonal antibodies to neutralize all dengue virus serotypes using lymphocytes from patients at acute phase of the secondary infection

Chayanee Setthapramote; Tadahiro Sasaki; Orapim Puiprom; Kriengsak Limkittikul; Pannamthip Pitaksajjakul; Chonlatip Pipattanaboon; Mikiko Sasayama; Pornsawan Leuangwutiwong; Weerapong Phumratanaprapin; Supat Chamnachanan; Teera Kusolsuk; Akanitt Jittmittraphap; Azusa Asai; Juan Fernando Arias; Itaru Hirai; Motoki Kuhara; Yoshinobu Okuno; Takeshi Kurosu; Pongrama Ramasoota; Kazuyoshi Ikuta

The global spread of the four dengue virus serotypes (DENV-1 to -4) has made this virus a major and growing public health concern. Generally, pre-existing neutralizing antibodies derived from primary infection play a significant role in protecting against subsequent infection with the same serotype. By contrast, these pre-existing antibodies are believed to mediate a non-protective response to subsequent heterotypic DENV infections, leading to the onset of dengue illness. In this study, we prepared hybridomas producing human monoclonal antibodies (HuMAbs) against DENV using peripheral blood mononuclear cells (PBMCs) from patients in the acute phase (around 1 week after the onset of illness) or the convalescent phase (around 2weeks after the onset of illness) of secondary infection. Interestingly, a larger number of hybridoma clones was obtained from patients in the acute phase than from those in the convalescent phase. Most HuMAbs from acute-phase infections were cross-reactive with all four DENV serotypes and showed significant neutralization activity to all four DENV serotypes. Thus, secondary DENV infection plays a significant role in stimulating memory cells to transiently increase the number of antibody-secreting plasma cells in patients in the early phase after the secondary infection. These HuMAbs will enable us to better understand the protective and pathogenic effects of DENV infection, which could vary greatly among secondarily-infected individuals.


Virology | 2014

Monoclonal antibody targeting chikungunya virus envelope 1 protein inhibits virus release

Promsin Masrinoul; Orapim Puiprom; Atsushi Tanaka; Miwa Kuwahara; Panjaporn Chaichana; Kazuyoshi Ikuta; Pongrama Ramasoota; Tamaki Okabayashi

Chikungunya virus (CHIKV) causes an acute clinical illness characterized by sudden high fever, intense joint pain, and skin rash. Recent outbreaks of chikungunya disease in Africa and Asia are a major public health concern; however, there is currently no effective licensed vaccine or specific treatment. This study reported the development of a mouse monoclonal antibody (MAb), CK47, which recognizes domain III within the viral envelope 1 protein and inhibited the viral release process, thereby preventing the production of progeny virus. The MAb had no effect on virus entry and replication processes. Thus, CK47 may be a useful tool for studying the mechanisms underlying CHIKV release and may show potential as a therapeutic agent.


Veterinary Microbiology | 2001

Differentiation of avian pathogenic Escherichia coli (APEC) strains by random amplified polymorphic DNA (RAPD) analysis

Niwat Chansiripornchai; Pongrama Ramasoota; Jiroj Sasipreeyajan; Stefan B Svenson

Here we describe the application of a random amplified polymorphic DNA (RAPD) analysis for molecular genetic typing avian pathogenic Escherichia coli (APEC) strains. The RAPD technique was shown to be highly reproducible. Stable banding patterns with a high discriminatory capacity were obtained using two different primers. Overall, 55 E. coli strains were analyzed with a RAPD technique. The RAPD analysis showed that the E. coli strains isolated from poultry in Thailand and Sweden could be grouped into 50 of RAPD types by using these two different primer sets. Most of these different E. coli RAPD types were not geographically restricted. There was, as expected, a tendency of higher genetic relationship among E. coli strains isolated from the same farm. It is suggested that the RAPD technique may provide a rapid, low cost, simple and powerful tool to study the clonal epidemiology of avian E. coli infections.


Journal of Clinical Microbiology | 2015

Detection of chikungunya virus antigen by a novel rapid immunochromatographic test.

Tamaki Okabayashi; Tadahiro Sasaki; Promsin Masrinoul; Nantarat Chantawat; Sutee Yoksan; Narong Nitatpattana; Sarunyou Chusri; Ronald Enrique Morales Vargas; Marc Grandadam; Paul T. Brey; Soegeng Soegijanto; Kris Cahyo Mulyantno; Siti Churrotin; Tomohiro Kotaki; Oumar Faye; Ousmane Faye; Abdourahmane Sow; Amadou A. Sall; Orapim Puiprom; Panjaporn Chaichana; Takeshi Kurosu; Seiji Kato; Mieko Kosaka; Pongrama Ramasoota; Kazuyoshi Ikuta

ABSTRACT Chikungunya fever is a mosquito-borne disease of key public health importance in tropical and subtropical countries. Although severe joint pain is the most distinguishing feature of chikungunya fever, diagnosis remains difficult because the symptoms of chikungunya fever are shared by many pathogens, including dengue fever. The present study aimed to develop a new immunochromatographic diagnosis test for the detection of chikungunya virus antigen in serum. Mice were immunized with isolates from patients with Thai chikungunya fever, East/Central/South African genotype, to produce mouse monoclonal antibodies against chikungunya virus. Using these monoclonal antibodies, a new diagnostic test was developed and evaluated for the detection of chikungunya virus. The newly developed diagnostic test reacted with not only the East/Central/South African genotype but also with the Asian and West African genotypes of chikungunya virus. Testing of sera from patients suspected to have chikungunya fever in Thailand (n = 50), Laos (n = 54), Indonesia (n = 2), and Senegal (n = 6) revealed sensitivity, specificity, and real-time PCR (RT-PCR) agreement values of 89.4%, 94.4%, and 91.1%, respectively. In our study using serial samples, a new diagnostic test showed high agreement with the RT-PCR within the first 5 days after onset. A rapid diagnostic test was developed using mouse monoclonal antibodies that react with chikungunya virus envelope proteins. The diagnostic accuracy of our test is clinically acceptable for chikungunya fever in the acute phase.


Experimental Parasitology | 2013

The anthelmintic effect of plumbagin on Schistosoma mansoni

Natcha Lorsuwannarat; Naruwan Saowakon; Pongrama Ramasoota; Chaitip Wanichanon; Prasert Sobhon

The anthelmintic effects of plumbagin (PB, 5-hydroxy-2-methyl-1,4-naphthoquinone) and praziquantel (PZQ) against adult Schistosoma mansoni in vitro were compared by estimating the relative motility (RM) values, survival indices (SI) and alterations of the tegument of flukes incubated in M-199 medium containing 1, 10 and 100 μg/ml of the drugs, at 1, 3, 6, 12 and 24 h. For the parasites incubated in 10 μg/ml, the RM values of the PB-treated group decreased at a more rapid rate than the PZQ-treated group. When incubated in 100 μg/ml all PB-treated flukes appeared immobile from 1 to 24 h when 91-100% died, while in the PZQ-treated group RM values were higher than that of PB and most flukes were still alive at 1-12 h, and at 24 h only 21% of flukes were killed. Furthermore, male parasites were more affected by PZQ than females as their RM values were significantly less than that of females at all doses. While in PB treatment, males and females showed less difference in response to the drug as their RM values were closer than those treated with PZQ. When observed by SEM, the tegument of untreated S. mansoni displayed no alteration, while in PB treated parasites it exhibited swelling, blebbing, loss of spines, disruption of tubercles and ridges, leading to erosion and lesion, exposure of the basal lamina, and sloughing of the tegument. PZQ induced similar tegumental changes as those observed in PB treatment but at longer incubation time and higher doses. These data indicated that PB had more anthelmintic effect on both sexes of adult S. mansoni than PZQ.


Biochemical and Biophysical Research Communications | 2010

Fab MAbs specific to HA of influenza virus with H5N1 neutralizing activity selected from immunized chicken phage library.

Pannamthip Pitaksajjakul; Porntippa Lekcharoensuk; Narin Upragarin; Carlos F. Barbas; Madiha S. Ibrahim; Kazuyoshi Ikuta; Pongrama Ramasoota

Hemagglutinin protein (HA) was considered to be the primary target for monoclonal antibody production. This protein not only plays an important role in viral infections, but can also be used to differentiate H5N1 virus from other influenza A viruses. Hence, for diagnostic and therapeutic applications, it is important to develop anti-HA monoclonal antibody (MAb) with high sensitivity, specificity, stability, and productivity. Nine unique Fab MAbs were generated from chimeric chicken/human Fab phage display library constructed from cDNA derived from chickens immunized with recombinant hemagglutinin protein constructed from H5N1 avian influenza virus (A/Vietnam/1203/04). The obtained Fab MAbs showed several characteristics for further optimization and development-three clones were highly specific to only H5N1 virus. This finding can be applied to the development of H5N1 diagnostic testing. Another clone showed neutralization activity that inhibited H5N1 influenza virus infection in Madin-Darby canine kidney (MDCK) cells. In addition, one clone showed strong reactivity with several of the influenza A virus subtypes tested. The conversion of this clone to whole IgG is a promising study for a cross-neutralization activity test.


Infection, Genetics and Evolution | 2013

Genetic and evolutionary analysis of cell-fusing agent virus based on Thai strains isolated in 2008 and 2012

Atsushi Yamanaka; Supatra Thongrungkiat; Pongrama Ramasoota; Eiji Konishi

Increasing attention is being devoted to ecological and evolutionary relationships between insect-specific flaviviruses and globally important human-pathogenic flaviviruses such as dengue viruses. One such insect flavivirus, cell-fusing agent virus (CFAV), remains poorly investigated. In this study, we isolated 13 and 16 CFAV strains from Aedes aegypti mosquitoes collected in Thailand in 2008 and 2012, respectively, and performed genetic and evolutionary analyses based on gene regions encoding the envelope protein (E) and nonstructural proteins 3 (NS3) and 5 (NS5). Consistent with previously reported CFAV strains, E, NS3 and NS5 regions comprised 1,290, 1,761 and 2,664 nucleotides, respectively. Nucleotide and amino acid identities of these three regions were >98% among the 29 isolates, and approximately 95-96% and 96-99%, respectively, between the isolates and previously reported CFAV strains. When amino acid sequences from representative strains of six insect-specific and seven mosquito-borne flaviviruses were compared, average identities of 14.9%, 31.8% and 44.3% were calculated for E, NS3 and NS5 regions, respectively. Phylogenetic analysis based on nucleotide and amino acid data indicated that the Thai CFAV isolates of the current study were distinct from previously reported CFAV strains from Indonesia and Puerto Rico. Analysis of each gene region consistently uncovered a clade made up of nearly the same subset of Thai CFAV isolates; this result, and the isolation of CFAV from mosquitoes reared from larvae, suggest that the virus is maintained by vertical transmission and conserved in a particular environment without considerable evolutionary alteration. The most recent common ancestor of the Thai CFAV isolates in this study was dated to 11-27 years ago, and is estimated to have diverged 46-86 years ago from previously reported CFAV strains. Superinfection with CFAV of Aedes mosquitoes carrying dengue viruses present in Thailand for over 50 years has most likely taken place.


PLOS ONE | 2014

Low levels of antibody-dependent enhancement in vitro using viruses and plasma from dengue patients.

Panjaporn Chaichana; Tamaki Okabayashi; Orapim Puiprom; Mikiko Sasayama; Tadahiro Sasaki; Akifumi Yamashita; Pongrama Ramasoota; Takeshi Kurosu; Kazuyoshi Ikuta

Background The majority of dengue patients infected with any serotype of dengue virus (DENV) are asymptomatic, but the remainder may develop a wide spectrum of clinical symptoms, ranging from mild dengue fever (DF) to severe dengue hemorrhagic fever (DHF). Severe cases occur more often in patients who experience a secondary infection with a different virus serotype. A phenomenon called antibody-dependent enhancement (ADE) has been proposed to explain the onset of these severe cases, but the exact mechanism of ADE remains unclear. Methodology/Principal Finding Virus neutralization and ADE assays were performed using ultracentrifugation supernatants of acute-phase sera from patients with secondary infections or human monoclonal antibodies (HuMAbs) as anti-DENV antibodies. Virus sources included infectious serum-derived viruses from the ultracentrifugation precipitates, laboratory-culture adapted DENV, or recombinant DENVs derived from patient sera. In contrast to the high levels of ADE observed with laboratory virus strains, low ADE was observed with autologous patient-derived viruses, when patient sera were used to provide the antibody component in the ADE assays. Similar results were obtained using samples from DF and DHF patients. Recombinant-viruses derived from DHF patients showed only minor differences in neutralization and ADE activity in the presence of HuMAbs or plasma derived from the same DHF patient. Conclusion/Significance Serum or plasma taken from patients during the acute phase of a secondary infection showed high levels of ADE, but no neutralization activity, when assayed in the presence of laboratory-adapted virus strains. By contrast, serum or plasma from the same patient showed high levels of neutralization activity but failed to induce significant ADE when the assays were performed with autologous virus. These results demonstrate the significance of the virus source when measuring ADE. They also suggest that repeated passage of DENV in cell culture has endowed it with the capacity to induce high levels of ADE.


Infection, Genetics and Evolution | 2013

Characterization of chikungunya virus infection of a human keratinocyte cell line: role of mosquito salivary gland protein in suppressing the host immune response.

Orapim Puiprom; Ronald Enrique Morales Vargas; Rutcharin Potiwat; Panjaporn Chaichana; Kazuyoshi Ikuta; Pongrama Ramasoota; Tamaki Okabayashi

The chikungunya virus (CHIKV) is a mosquito-borne virus that has recently re-emerged in several countries. On infection, the first vertebrate cells to come into contact with CHIKV are skin cells; mosquitoes inoculate the virus together with salivary gland protein into host skin while probing and feeding on blood. However, there is little known about the susceptibility of human skin cells to CHIKV infection. To clarify this, we investigated the kinetics of CHIKV in the human keratinocyte cell line, HaCaT. CHIKV actively replicated in HaCaT cells, with virus titers in the supernatant increasing to 2.8 × 10(4) plaque-forming units (PFU) ml(-1) 24h post infection. CHIKV infection suppressed production of interleukin-8 (IL-8) in HaCaT cells. The function of IL-8 is to recruit immune cells to virus-infected sites, a process known as chemotaxis. Furthermore, we assessed the role of mosquito salivary gland protein in CHIKV infections by comparing the levels of CHIKV gene expression and chemokine production in HaCaT cells with and without salivary gland extract (SGE). SGE enhanced both the expression of the CHIKV gene and the suppression effect of CHIKV on IL-8 production. Our data suggest that the HaCaT cell line represents an effective tool for investigating the mechanism of CHIKV transmission and spread in skin cells. At the mosquito bite site, CHIKV works together with SGE to ensure the virus replicates in skin cells and escapes the host immune system by suppression of IL-8 production.

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