Effectiveness Regarding Hantavirus Detection in Rodent Tissue Samples and Urine
Abstract
:1. Introduction
2. Materials and Methods
2.1. Sample Collection
2.2. Extraction of Nucleic Acid, PCR Amplification, Sequencing
2.3. Serological Screening by Western Blot Analysis
3. Results
4. Discussion
Author Contributions
Funding
Institutional Review Board Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Schmaljohn, C.; Dalrymple, J.M. Analysis of Hantaan Virus RNA: Evidence for a New Genus of Bunyaviridae. Virology 1985, 491, 482–491. [Google Scholar] [CrossRef]
- Chandy, S.; Mathai, D. Globally Emerging Hantaviruses: An Overview. Indian J. Med. Microbiol. 2018, 36, 369–375. [Google Scholar] [CrossRef]
- Bi, Z.; Formenty, P.B.H.; Roth, C.E. Hantavirus infection: A review and global update. J. Infect. Dev. Ctries 2008, 2, 3–23. [Google Scholar] [CrossRef] [PubMed]
- Golden, J.W.; Hammerbeck, C.D.; Mucker, E.M.; Brocato, R.L. Animal models for the study of rodent-borne hemorrhagic fever viruses: Arenaviruses and hantaviruses. Biomed. Res. Int. 2015, 2015. [Google Scholar] [CrossRef] [Green Version]
- Avsic-Zupanc, T.; Saksida, A.; Korva, M. Hantavirus infections. Clin. Microbiol. Infect. 2015, 1–14. [Google Scholar] [CrossRef] [Green Version]
- Schmaljohn, C.; Hjelle, B. Hantaviruses: A Global Disease Problem. Emerg. Infect. Dis. 1997, 3, 95–104. [Google Scholar] [CrossRef] [PubMed]
- Vaheri, A.; Henttonen, H.; Voutilainen, L.; Mustonen, J.; Sironen, T.; Vapalahti, O. Hantavirus infections in Europe and their impact on public health. Rev. Med. Virol. 2013, 23, 35–49. [Google Scholar] [CrossRef] [PubMed]
- Plyusnin, A.; Vapalahti, O.; Vaheri, A. Hantaviruses: Genome structure, expression and evolution. J. Gen. Virol. 1996, 77, 2677–2687. [Google Scholar] [CrossRef]
- Jonsson, C.B.; Figueiredo, L.T.M.; Vapalahti, O. A Global Perspective on Hantavirus Ecology, Epidemiology, and Disease. Clin. Microbiol. Rev. 2010, 23, 412–441. [Google Scholar] [CrossRef] [Green Version]
- Jakab, F.; Horváth, G.; Ferenczi, E.; Sebők, J.; Szűcs, G. First detection of Tula hantaviruses in Microtus arvalis voles in Hungary. Arch. Virol. 2008, 153, 2093–2096. [Google Scholar] [CrossRef]
- Zelená, H.; Mrázek, J.; Kuhn, T. Tula hantavirus infection in immunocompromised host, Czech Republic. Emerg. Infect. Dis. 2013, 19, 1873–1876. [Google Scholar] [CrossRef]
- Kallio, E.R.; Voutilainen, L.; Vapalahti, O.; Vaheri, A.; Henttonen, H.; Koskela, E.; Mappes, T. Endemic Hantavirus Infection Impairs the Winter Survival of Its Rodent Host. Ecology 2007, 88, 1911–1916. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Luis, A.D.; Douglass, R.J.; Hudson, P.J.; Mills, J.N.; Bjørnstad, O.N. Sin Nombre hantavirus decreases survival of male deer mice. Oecologia 2012, 169, 431–439. [Google Scholar] [CrossRef] [PubMed]
- Voutilainen, L.; Sironen, T.; Tonteri, E.; Bäck, A.T.; Razzauti, M.; Karlsson, M.; Wahlström, M.; Niemimaa, J.; Henttonen, H.; Lundkvist, Å. Life-long shedding of Puumala hantavirus in wild bank voles (Myodes glareolus). J. Gen. Virol. 2015, 96, 1238–1247. [Google Scholar] [CrossRef] [PubMed]
- Forbes, K.M.; Sironen, T.; Plyusnin, A. Hantavirus maintenance and transmission in reservoir host populations. Curr. Opin. Virol. 2018, 28, 1–6. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Klempa, B.; Fichet-Calvet, E.; Lecompte, E.; Auste, B.; Aniskin, V.; Meisel, H.; Denys, C.; Koivogui, L.; Ter Meulen, J.; Krüger, D.H. Hantavirus in African wood mouse, Guinea. Emerg. Infect. Dis. 2006, 12, 838–840. [Google Scholar] [CrossRef] [PubMed]
- Németh, V.; Madai, M.; Maráczi, A.; Bérczi, B.; Horváth, G.; Oldal, M.; Kisfali, P.; Bányai, K.; Jakab, F. Detection of Dobrava-Belgrade hantavirus using recombinant-nucleocapsid-based enzyme-linked immunosorbent assay and SYBR Green-based real-time reverse transcriptase-polymerase chain reaction. Arch. Virol. 2011, 156, 1655–1660. [Google Scholar] [CrossRef]
- Oldal, M.; Németh, V.; Madai, M.; Pintér, R.; Kemenesi, G.; Dallos, B.; Kutas, A.; Sebők, J.; Horváth, G.; Bányai, K.; et al. Serosurvey of pathogenic hantaviruses among forestry workers in Hungary. Int. J. Occup. Med. Environ. Health 2014, 27, 766–773. [Google Scholar] [CrossRef]
- Safronetz, D.; Lindsay, R.; Dibernardo, A.; Hjelle, B.; Xiao, R.; Artsob, H.; Drebot, M.A. A preliminary study of the patterns of Sin Nombre Viral Infection and shedding in naturally infected deer mice (Peromyscus maniculatus). Vector Borne Zoonotic Dis. 2005, 5, 127–132. [Google Scholar] [CrossRef] [Green Version]
- Bernshtein, A.D.; Apekina, N.S.; Mikhailova, T.V.; Myasnikov, Y.A.; Khlyap, L.A.; Korotkov, Y.S.; Gavrilovskaya, I.N. Dynamics of Puumala hantavirus infection in naturally infected bank voles (Clethrinomys glareolus). Arch. Virol. 1999, 144, 2415–2428. [Google Scholar] [CrossRef] [PubMed]
- Meyer, B.; Schmaljohn, C. Persistent hantavirus infections: Characteristics and mechanisms. Trends Microbiol. 2000, 8, 61–67. [Google Scholar] [CrossRef] [Green Version]
- Lee, H.W.; Lee, P.W.; Baek, L.J.; Song, C.K.; Seong, I.W. Intraspecific transmission of Hantaan virus, etiologic agent of Korean hemorrhagic fever, in the rodent Apodemus agrarius. Am. J. Trop. Med. Hyg. 1981, 30, 1106–1112. [Google Scholar] [CrossRef]
- Yanagihara, R.; Amyx, H.L.; Gajdusek, D.C. Experimental Infection with Puumala Virus, the Etiologic Agent of Nephropathia Epidemica, in Bank Voles ( Clethrionomys glareolus ). J. Virol. 1985, 55, 34–38. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Hjelle, B.; Torres-pérez, F. Hantaviruses in the Americas and Their Role as Emerging Pathogens. Viruses 2010, 2559–2586. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Botten, J.; Mirowsky, K.; Kusewitt, D.; Ye, C.; Gottlieb, K.; Prescott, J.; Hjelle, B. Persistent Sin Nombre virus infection in the deer mouse (Peromyscus maniculatus) model: Sites of replication and strand-specific expression. J. Virol. 2003, 77, 1540–1550. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Gavrilovskaya, I.N.; Apekina, N.S.; Bernshtein, A.D.; Demina, V.T.; Okulova, N.M.; Myasnikov, Y.A.; Chumakov, M.P. Pathogenesis of hemorrhagic fever with renal syndrome virus infection and mode of horizontal transmission of hantavirus in bank voles. Arch. Virol. 1990, 57–62. [Google Scholar] [CrossRef]
- Asada, H.; Tamura, M.; Kondo, K.; Okuno, Y.; Takahashi, Y.; Dohi, Y.; Nagai, T.; Kurata, T.; Yamanishi, K. Role of T lymphocyte subsets in protection and recovery from Hantaan virus infection in mice. J. Gen. Virol. 1987, 68, 1961–1969. [Google Scholar] [CrossRef] [PubMed]
- Ermonval, M.; Baychelier, F.; Tordo, N. What Do We Know about How Hantaviruses Interact with Their Different Hosts? Viruses 2016, 8, 223. [Google Scholar] [CrossRef] [Green Version]
- Easterbrook, J.D.; Klein, S.L. Immunological mechanisms mediating hantavirus persistence in rodent reservoirs. PLoS Pathog. 2008, 4. [Google Scholar] [CrossRef]
PCR-Positive Rodents | |||||||
---|---|---|---|---|---|---|---|
Rodent Species | Lung | Liver | Kidney | Urine | Serology (IgG) | Virus Species | |
(nRT-PCR) | (WB) | ||||||
1 | AAG | Pos | Pos | Pos | - | - | Dobrava–Belgrade |
2 | AAG | - | Pos | Pos | Pos | - | |
3 | AAG | Pos | Pos | Pos | - | Pos | |
4 | AAG | Pos | Pos | Pos | - | Pos | |
5 | AAG | - | Pos | Pos | - | Pos | |
6 | AAG | - | Pos | Pos | - | Pos | |
7 | AAG | - | Pos | Pos | - | Pos | |
8 | AAG | - | Pos | Pos | - | Pos | |
9 | AAG | - | - | Pos | - | Pos | |
10 | AFL | Pos | Pos | Pos | - | - | Dobrava–Belgrade |
11 | AFL | Pos | Pos | Pos | - | Pos | |
12 | AFL | Pos | Pos | Pos | - | Pos | |
13 | AFL | Pos | Pos | Pos | - | Pos | |
14 | AFL | - | Pos | Pos | - | Pos | |
15 | AFL | - | Pos | Pos | - | Pos | |
16 | MAG | Pos | Pos | Pos | Pos | nt. | Tula |
17 | MAR | Pos | Pos | Pos | - | nt. | Tula |
18 | MAR | Pos | Pos | Pos | - | nt. | |
19 | MAR | Pos | Pos | Pos | Pos | nt. | |
20 | MGL | - | Pos | Pos | - | Pos | Puumala |
Total | 11/20 | 19/20 | 20/20 | 3/20 | 13/16 | ||
Seropositive Rodents | |||||||
21 | AFL | - | - | - | - | Pos * | Dobrava–Belgrade |
22 | AFL | - | - | - | - | Pos * | |
23 | AFL | - | - | - | - | Pos * | |
24 | AFL | - | - | - | - | Pos * | |
25 | MGL | - | - | - | - | Pos * | Puumala |
Total | 0/5 | 0/5 | 0/5 | 0/5 | 5/5 |
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Madai, M.; Horváth, G.; Herczeg, R.; Somogyi, B.; Zana, B.; Földes, F.; Kemenesi, G.; Kurucz, K.; Papp, H.; Zeghbib, S.; et al. Effectiveness Regarding Hantavirus Detection in Rodent Tissue Samples and Urine. Viruses 2021, 13, 570. https://doi.org/10.3390/v13040570
Madai M, Horváth G, Herczeg R, Somogyi B, Zana B, Földes F, Kemenesi G, Kurucz K, Papp H, Zeghbib S, et al. Effectiveness Regarding Hantavirus Detection in Rodent Tissue Samples and Urine. Viruses. 2021; 13(4):570. https://doi.org/10.3390/v13040570
Chicago/Turabian StyleMadai, Mónika, Győző Horváth, Róbert Herczeg, Balázs Somogyi, Brigitta Zana, Fanni Földes, Gábor Kemenesi, Kornélia Kurucz, Henrietta Papp, Safia Zeghbib, and et al. 2021. "Effectiveness Regarding Hantavirus Detection in Rodent Tissue Samples and Urine" Viruses 13, no. 4: 570. https://doi.org/10.3390/v13040570
APA StyleMadai, M., Horváth, G., Herczeg, R., Somogyi, B., Zana, B., Földes, F., Kemenesi, G., Kurucz, K., Papp, H., Zeghbib, S., & Jakab, F. (2021). Effectiveness Regarding Hantavirus Detection in Rodent Tissue Samples and Urine. Viruses, 13(4), 570. https://doi.org/10.3390/v13040570