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Current Status of Natural Products from Plants as Anti-herpes Simplex Virus 1 Agents 被引量:1

Current Status of Natural Products from Plants as Anti-herpes Simplex Virus 1 Agents
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摘要 Nucleoside analogues have been the mainstay of clinical treatment of herpes simplex virus 1 (HSV-1) infections since their development. However, the emergence of drug resistant strains has underlined the urgency of the discovery of novel anti-HSV-1 drugs. Natural products, which provided many novel drug leads, are known to be an important source of anti-HSV-1 agents. Herein, we present an overview of natural products with anti-HSV-1 activities isolated from a variety of plants reported in recent years. Several different compounds, mainly belonging to the three groups of polysaccharides, polyphenols and terpenes, showed antiviral effects against HSV-1, indicating their potential to be promising anti-HSV-1 agents. Nucleoside analogues have been the mainstay of clinical treatment of herpes simplex virus 1 (HSV-1) infections since their development. However, the emergence of drug resistant strains has underlined the urgency of the discovery of novel anti-HSV-1 drugs. Natural products, which provided many novel drug leads, are known to be an important source of anti-HSV-1 agents. Herein, we present an overview of natural products with anti-HSV-1 activities isolated from a variety of plants reported in recent years. Several different compounds, mainly belonging to the three groups of polysaccharides, polyphenols and terpenes, showed antiviral effects against HSV-1, indicating their potential to be promising anti-HSV-1 agents
出处 《Virologica Sinica》 SCIE CAS CSCD 2008年第5期305-314,共10页 中国病毒学(英文版)
基金 Joint funds of National Natural Science Foundation of China (U0632010)
关键词 抗单纯疱疹病毒 植物 细胞 抗性 Herpes simplex virus 1 (HSV-1) Antiviral Anti-HSV-1 Natural product
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  • 1[1]Adhikari U,Mateu C G,Chattopadhyay K,et al.2006.Structure and antiviral activity of sulfated fucans from Stoechospermum marginatum.Phytochemistry,67 (22):2474-2482.
  • 2[2]AIban S,Franz G.2002.Partial synthetic glucan sulfates as potential new antithrombotics.Biomacromolecules,2 (2):354-361.
  • 3[3]Barbosa J P,Pereira R C,Abrantes J L,et al.21304.In vitro antiviral diterpenes from the Brazilian brown alga Dictyota pfaffii.Planta Med,70 (9):856-860.
  • 4[4]Chattopadhyay K,Mateu C G,Mandal P,et al.2007.Galactan sulfate of Grateloupia indica:Isolation,structural features and antiviral activity.Phytochemistry,68 (10):1428-1435.
  • 5[5]Cooper E L.2001.Drug discovery,CAM and natural products,eCAM,1 (3):215-217.
  • 6[6]Corey L,Adams H G,Brown Z A,et al.1983.Genital herpes simplex virus infections:clinical manifestations,course,and complications.Ann Intern Med,98 (6):958-972.
  • 7[7]Fatahzadeh M,Schwartz R A.2007.Human herpes simplex virus infections:Epidemiology,pathogenesis,symptomatology,diagnosis,and management.J Am Acad Dermatol,57 (5):737-763.
  • 8[8]Fiiho I C,Cortez D A G,Ueda-Nakamura T,et al.2008.Antiviral activity and mode of action of a peptide isolated from Sorghum bicolor.Phytomedicine,15 (3):202-208.
  • 9[9]Fritz D,Venturi C R,Cargnin S,et al.2007.Herpes virus inhibitory substances from Hypericum connatum Lain.,a plant used in southern Brazil to treat oral lesions.J Ethnopharmaco,113 (3):517-520.
  • 10[10]Grabley S,Thiericke R.2000.Drug Discovery from Nature,Berlin:Springer,p3-37.

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