Skip to main content
Elsevier - PMC COVID-19 Collection logoLink to Elsevier - PMC COVID-19 Collection
. 2015 Jan 31;23:215–221. doi: 10.1016/j.proenv.2015.01.033

Effects of Curcumin and Pentagamavunon-0 Against Dengue-2 Virus Infection in Vero Cells; an in Vitro Study

Dewi Marbawati a,, Sitti Rahmah Umniyati b
PMCID: PMC7129986  PMID: 32288928

Abstract

The research aims was to determine the cytotoxic effects and the highest safe concentration of curcumin and PGV-0 on vero cells. This research also compare the effect of curcumin and PGV-0 against vero cells infected by Dengue virus (in vitro) in one and three days incubation period. The highest safe concentrations against vero cells from curcumin was 6.25 ppm and 1.5625 ppm for PGV-0. Immunocytochemistry test of curcumin and PGV-0 in both incubation period (one and three days) shows no significant difference (significant value 0.925), but RT-PCR result indicates that PGV - 0 have potential antiviral better than curcumin.

Keywords: Dengue, curcumin, PGV-0, immunocytochemistry, RT-PCR

Footnotes

Peer-review under responsibility of scientific committee of the ICTCRED 2014.

References

  • 1.Singhi S., Kisson N., Bansai A. Dengue and dengue hemorrhagic fever: management issue in an intensive care unit. J Pediatr (Rio J). 2007;83:522–535. doi: 10.2223/JPED.1622. [DOI] [PubMed] [Google Scholar]
  • 2.WHO., 2013. Dengue and severe Dengue. at; www.who.int/media centre/factsheets/fs117/en/.
  • 3.Harris E., Holden K.L., Edgil D., Polacek C., Clyde K. Molecular biology of flaviviruses. Novartis Found Symp. 2006;277:23–29. [PubMed] [Google Scholar]
  • 4.Rai D., Yadav, J., Balzarini, E., De Clercq and R., K., Singh., 2008. Design and Development of Curcumin Bioconjugates as Antiviral Agent, at; http://nas.oxfordjournals.org/cgi/content/short/52/1/599. [DOI] [PubMed]
  • 5.Dutta K., Debapriya G., Anirban B. Curcumin Protects Neuronal Cells from Japanese Encephalitis Virus-Mediated Cell Death and also Inhibits Infective Viral Particle Formation by Dysregulation of Ubiquitin–Proteasome System. J of Neuro Phar. 2009;4(3):328–337. doi: 10.1007/s11481-009-9158-2. [DOI] [PubMed] [Google Scholar]
  • 6.Chattopadhyay I., Biswas K., Bandyopadhyay U., Banerjee R.K. Turmeric and Curcumin: Biological Actions and Medicinal Applications. Current Science. 2004;87(1):44–53. [Google Scholar]
  • 7.Majeed M., Badmaev V., Shirakumar U., Rajendrar R. Nutri Science Publisher; New Jersey: 1995. Curcumin antioxidant phytonutrients; pp. 3–80. [Google Scholar]
  • 8.Sardjiman, Reksohadiprodjo, Hakim L., Hakim L., Vand der Goot Timmerman H. 1,5-Diphenyl-1-4-pentadiene-3-ones and cyclic analogues as antioxidative agents. Synthesis and structure-activity relationship. Eur. J. of Med.Chem. 1997;32:625–630. [Google Scholar]
  • 9.Sardjiman. Synthesis of Some New Series of Curcumin Analogues, Anti-oxidative, antiinflamatory, antibacterial activities and qualitative-structure Activity Relationship [dissertation]. Gadjah Mada University. Yogyakarta; 2000.
  • 10.Umniyati SR, Sutaryo, Wahyono D, Artama WT. Application of monoclonal antibody DSSC7 for early detection of dengue infection in blood smear preparation based on immunocytochemical streptavidin biotin peroxidase complex assay. Int. Joint. Symp. Frontier Sciences from gene to application. Faculty of Medicine. Gadjah Mada University. Yogyakarta, 2008.
  • 11.Yong Y.K., Thayan R., Chong H.T., Sekaran S.D. Rapid detection and serotyping of dengue virus by muiltiplex RT-PCR and real time SYBR green RT-PCR. Singapore Med J. 2007;(48):662–668. [PubMed] [Google Scholar]
  • 12.Nurminha. Karakterisasi dan Aplikasi Antibodi Monoklonal WDSSB5 Untuk Deteksi Virus Dengue Pada Sel C6/36 Dengan Metode Imunositokimia [Tesis]. Program Studi Ilmu Kedokteran Tropis. Fakultas Kedokteran UGM. Yogyakarta; 2011.
  • 13.Harris E., Roberts G., Smith L., Selle J., Kramer L.D., Valle S., Sandoval E., Balmaseda A. Typing of Dengue Viruses in clinical specimens and mosquito by single-tube multiplex reverse transcriptase, PCR. J Clin Microbiol. 1998;36:2634–2639. doi: 10.1128/jcm.36.9.2634-2639.1998. [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 14.Jittmittraphap A., Thamapalo S., Ratanasetyuhth N., Wongba N., Mammen M.P., Jampangern W. Rapid detection of Dengue viral RNA in mosquitoes by Nucleic Acid-Squence Based Amplification (NASBA) South Asian. J. Trop. Med. Public Health. 2006;(37):1117–1124. [PubMed] [Google Scholar]
  • 15.Widiastuti D. Deteksi Infeksi Virus Dengue-3 Pada Nyamuk Aedes aegypti dengan Teknik Imunisitokimia Menggunakan Antibodi Monoklonal DSSE10 [Tesis]. Program Studi Ilmu Kedokteran Tropis. Fakultas Kedokteran UGM. Yogyakarta; 2011.
  • 16.Yasmon A., Fatmawati N.N.D., Ibrahim F., Bela B. A second generation of RT-PCR assay for detection of human immunodeficiency virus type 1 (HIV-1) infection. Med. J Indones. 2010;(19):154–157. [Google Scholar]

Articles from Procedia Environmental Sciences are provided here courtesy of Elsevier

RESOURCES