• Title/Summary/Keyword: Hantavirus Pulmonary Syndrome(HPS)

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A Case of Hantavirus Pulmonary Syndrome (한타바이러스 폐 증후군)

  • Lee, Kye-Young;Kim, Yun-Seup;Jee, Young-Koo;Bai, Hyun-Ju;Yun, Sung-Cheul;Kim, Keun-Youl
    • Tuberculosis and Respiratory Diseases
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    • v.44 no.6
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    • pp.1382-1389
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    • 1997
  • Hantavirus pulmonary syndrome(HPS) is a systemic disease that is caused by a newly discorved and characterized virus of the Hantavirus genus, which is most frequently referred to as the sin nombre virus. The clinical syndrome resembles other hantavirus syndromes worldwide, except that it is characterized by a brief prodromal illness followed by rapidly progressive, noncardiogenic edema, and that it is more deadly than any previously recognized hantavirus infection. The clinical manifestations of HPS are characterized by four clinical phases : prodrome, pulmonary edema and shock, diuresis, and convalescence. Mortality is greatest in the first 24 hours of the pulmonary edema and shock phase of the illness. These phases are strikingly similar to the clinical phases of Hemorrhagic fever with renal syndrome(HFRS) induced by Hantaan virus, except that HPS has not been associated with renal failure and Disseminated intravascular coagulation(DIC). We here report a case of hantavirus pulmonary syndrome developed in a 58 year-old man. He had a flu-like illness followed by the rapid onset of respiratory failure due to noncardiogenic pulmonary edema. HPS was diagnosed by clinical manifestations, identification of high titer antibody to Hantaan virus antigen and histologic finding of transbronchial lung biopsy (TBLB) specimen. The patient was treated with mechanical ventilation and initial corticosteroid pulse therapy resulting in successful outcome.

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A Case of Hantaan virus Inflammatory Symptom Treated by Galgunhegi-tang (한탄바이러스 감염증 환자에 대한 갈근해기탕을 이용한 치험례)

  • Kang Sei Young;Yoon Ji Won;Kim Hong Joon;Sim Kuk Jin;Lee Sung Geun;Lee Sang Gwan;Lee Jong Deok;Sung Kang Keyng
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.18 no.1
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    • pp.289-293
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    • 2004
  • Hantaviruses are found worldwide and are known to cause two serious and often fatal human disease: hemorrhagic fever with renal syndrome(HFRS) and hantavirus pulmonary syndrome(HPS). The typical clinical prodrome consists of fever, chills, myalgia, headache, and gastrointestinal symptoms. Treatment usually involves maintenance of fluids, blood pressure, ventilation and electrolytes. We report a patient who had multisystem inflammatory symptom with Hantaan virus antibody positive accompanied by mild fever and myalgia. This case was diagnosed as HFRS. This patient was treated by Galgun hegi-tang. As a result of this treatment, symptoms were markedly improved.

Molecular Characterization of Hantavirus Isolates from Bandicota indica Captured in Indonesia and Thailand (인도네시아와 태국의 Bandicota indica 폐장조직에서 분리된 한타바이러스의 분자생물학적 특징)

  • Chu, Yong-Kyu;Cui, Longzhu;Song, Dae-Yong;Woo, Young-Dae;Praseno, Praseno;Leitmeyer, Katrin;Lee, Ho-Wang
    • The Journal of Korean Society of Virology
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    • v.30 no.3
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    • pp.203-210
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    • 2000
  • Hantaviruses are etiologic agents of hemorrhagic fever with renal syndrome (HFRS) and hantavirus pulmonary syndrome (HPS) in the world. Various hantaviruses were isolated from HFRS patients and several different rodent species in the world. Four hantavirus isolates from Indonesia and three isolates from Thailand among 89 Bandicotas captured in Yogyakarta, east region of Sumatra island, Indonesia and at Chiang Mai in Thailand during 1996 were made through several passages in Vero E6 cells. Viral genome M segment from two Indonesian isolates and three Thailand isolates were amplified using hantavirus generic primers of the M segment and cloned into pCRII vector. The genetic differences were analyzed by comparison of partial sequence of the M segment and antigenic differences were made by IFA. Nucleotide sequence homology of two isolates BC 8, BC 34 from Indonesia and two isolates thai 1322, thai 1330 to Seoul virus was 99% and 96%, respectively, but Thai 1164 was 80%Thai 1164 strain has shown 95% homology to Thai 749 virus. In conclusion it is indicated that two different serotype hantaviruses, Seoul and Thailand, are cocirculating among Bandicota in Thailand, in contrast Seoul serotype virus is circulating in Indonesia.

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Cloning and Expression of Nucleocapsid Genes of Hantaviruses in Escherichia coli (대장균에서 한타바이러스 뉴클레오캡시드 유전자의 발현에 관한 연구)

  • 노갑수;하석훈;김종완;홍선표;김형배;최차용
    • KSBB Journal
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    • v.13 no.6
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    • pp.649-655
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    • 1998
  • Hantaviruses are rodent hosts-borne viruses belonging to the family Bunyaviridae, and are etiologic agents for two acute diseases, i.e., Haemorrhagic Fever with Renal Syndrome (HFRS) and Hantavirus Pulmonary Syndrome (HPS). There have been a lot of reports on prophylactic vaccines and diagnostics for the diseases, but most of viral antigens have been prepared by eukaryotic cell culture. Nucleocapsid proteins of Hantaviruses are known as the major viral antigens. Thereby, we prepared nucleocapsid genes of Hantaan virus and Seoul virus by RT-PCR and cloned into plasmid vectors, pET-3a and pKK223-3. Both genes were expressed in Escherichia coli with higher expression level of Seoul viral nucleocapsid protein compared to that of Hantaan in pET-3a. Hantaan viral gene was expressed much higher level in plasmid pET-3a that in pKK223-3. About 30% of expressed nucleocapsid protein was soluble and the rest was remained in insoluble fraction.

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Partial Sequence Analysis of Puumala Virus M Segment from Bats in Korea

  • Yun, Bo-Kyoung;Yoon, Jeong-Joong;Lee, Yun-Tai
    • The Journal of Korean Society of Virology
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    • v.29 no.1
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    • pp.23-31
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    • 1999
  • Hantavirus is a genus of the Bunyaviridae family causing two serious diseases, hemorrhagic fever with renal syndrome (HFRS) and hantavirus pulmonary syndrome (HPS). Puumala virus is a member of hantavirus originally found in Europe, and its natural reservoir is Clethrionomys glareolus. It is also associated with the human disease nephropathia epidemica, a milder form of HFRS. To identify the hantaviruses in bats, bats were collected from Jeong-Sun, Won-Joo, Chung-Ju and Hwa-Cheon area in Korea, and nested RT-PCR was performed with serotype specific primer from M segment. Interestingly, Puumala virus was detected in bats (Rhinolophus ferrum-equinum) only from Won-Joo. The 327 bp nested RT-PCR product, was sequenced. The sequence database search indicates that the sequence is homologous to the published sequence of Puumala viruses. The sequence similarities were ranged from 71% to 97%. The highest sequence similarity was 97% with Puumala virus Vranicam strain, and the lowest was 71% with Puumala virus K27 isolate. Puumala virus Vranicam strain was isolated from a bank vole (Clethrionomys glareolus) in Bosnia-Hercegovina. Puumala virus K27 was isolated from human in Russia. This analysis confirms that bats (Rhinolophus ferrum-equinum) in Korea are natural reservoir of Puumala virus.

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Effects of Environmental Conditions on the Expression of Hantaan Viral Nucleocapsid Gene in Escherichia coli (대장균에서 환경적 요인이 한탄바이러스 뉴클레오캡시드 유전자의 발현에 미치는 영향)

  • 노갑수;김종완;하석훈;최차용
    • KSBB Journal
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    • v.13 no.6
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    • pp.662-668
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    • 1998
  • Viruses belonging to the Hantavirus genus cause two acute severe illness in humans, i.e., Haemorrhagic Fever with Renal Syndrome (HFRS) and Hantavirus Pulmonary Syndrome(HPS). Among them, Hantaan virus is one of the most important viruses causing HFRS. Recombinant expression vectors, pKK-NP and pET-NP, with Hantaan viral nucleocapsid gene were constructed, and used to transform Eschericia coli BL21(DE3). Stability of the vectors in the host strain, and effects of some environmental conditions on the expression of nucleocapsid gene were studied. Expression vector, pKK-NP, was very unstable, and the expression level of nucleocapsid gene was very low compared to that of pET-NP. BL21(pET-NP) produced about 100 mg of N protein per liter of culture broth. Induction time did not show any significant difference on the expression level of nucleocapsid gen and cell growth. BL21(pET-NP) culture at 35$^{\circ}C$ showed a little higher expression level than at 30$^{\circ}C$ during growth phase, but reached to the same level at stationary phase. Total expression level was proportional to supplemented glucose concentration of media up to 0.5% along with cell growth, but expression level per unit cell mass was inversely proportional to glucose concentration and maximal when glucose was not supplemented at all.

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Immune Reaction of the Vaccinated Hamsters with Combined Hantaan-Puumala Vaccine (신증후출혈열의 혼합백신을 접종한 햄스터에서의 면역성 조사)

  • Lee, Ho-Wang;Chu, Yong-Kyu;Cui, Long-Zhu;Woo, Young-Dae;Ahn, Chang-Nam;Kim, Hoon;Jang, Yang-Seok
    • The Journal of Korean Society of Virology
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    • v.27 no.1
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    • pp.39-47
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    • 1997
  • A large number of viruses belonging to Genus Hantavirus in Family Bunyaviridae are etiologic agents for hemorrhagic fever with renal syndrome (HFRS), or hantavirus pulmonary syndrome (HPS). Hantaan (HTN), Seoul (SED), Belgrade (BEL), Puumala (PUU) serotype viruses are well known causative agents for HFRS in Eurasian continent. Among those viruses Hantaan and Seoul serotypes are well known to cause HFRS in Korea, but there are some sporadic incidence by other than Hantaan or Seoul viruses. Recently we have developed the combined Hantaan-Puumala virus vaccine to prevent world-wide occuring HFRS. This combined vaccine is formalin inactivated, suckling mouse and suckling hamster brain extracts for Hantaan and Puumala viruses, respectively. Protein contents of this purified candidate vaccine is $27\;{\mu}g/ml$, which contains 1,024 ELISA antigen units to each virus, but content of myelin basic protein which is causing experimental allergic encephalomyelitis is less than 0.1 ng/ml. Thirty hamsters were given twice at one month interval intra-muscularly and bled on 30 days after each vaccination from retro-orbital sinus vein. Antibody titers were tested against 5 major serotype viruses, Hantaan, Seoul, Belgrade, Puumala and Sin Nombre viruses by IFA and PRNT. The mean IF antibody titers on 30 days after primary shot were 78.4, 68.8, 68.8, 37.9, and 15.6; mean neutralizing antibody titers were 65.4, 12, 6.1, 65.6 and 0.5 against Hantaan, Seoul, Belgrade, Puumala and Sin Nombre viruses, respectively. The mean IF antibody titers on 30 days after booster shot were 686.9, 567.5, 550.4, 516.3, and 430.9; and neutralizing antibody titers were 710.8, 41.9, 24.3, 409.9, and 1.6 against Hantaan, Seoul, Belgrade, Puumala and Sin Nombre viruses, respectively.

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