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Updated: Feb 7, 2026

Generation and Assembly of Virus-Specific Nucleocapsids of the Respiratory Syncytial Virus
Published on: July 27, 2021
Synthesis of three triterpene series and their activity against respiratory syncytial virus
Gloria N Santos da Silva1, Diana Monti Atik2, Jheini L Antunes Fernandes2
1Phytochemistry and Organic Synthesis Laboratory, School of Pharmacy, Federal University of Rio Grande do Sul, Porto Alegre, Brazil.
Insights
New triterpene derivatives show promise as treatments for human respiratory syncytial virus (hRSV) infections. A synthesized betulin derivative demonstrated significant antiviral activity, offering a potential new lead compound for hRSV therapy.
Area of Science:
- Virology
- Medicinal Chemistry
- Drug Discovery
Background:
- Human respiratory syncytial virus (hRSV) is a major cause of severe respiratory illness in infants and young children.
- Current treatment options for hRSV infection are limited, with ribavirin being the only approved drug for severe cases.
- There is a critical need for novel therapeutic agents against hRSV.
Purpose of the Study:
- To synthesize and evaluate novel triterpene derivatives for anti-hRSV activity.
- To identify potential lead compounds for the development of new hRSV therapies.
Main Methods:
- Synthesis of 17 triterpene derivatives from betulin, betulinic acid, and ursolic acid via esterification.
- Antiviral activity assessment using infected A549 cells and MTT assay for cell viability.
- Real-time PCR amplification to evaluate the efficacy of promising compounds.
Main Results:
- The 3,28-di-O-acetylbetulin derivative (1a) exhibited the best cell viability results.
- Compound 1a demonstrated significant antiviral effects against hRSV.
- A novel anti-hRSV prototype was successfully synthesized from betulin.
Conclusions:
- Triterpene derivatives, particularly compound 1a, represent promising candidates for anti-hRSV drug development.
- The straightforward synthesis of these derivatives facilitates further research and potential therapeutic application.
- This study provides a new lead compound for the development of effective hRSV treatments.
Abstract:
The human respiratory syncytial virus (hRSV) is a leading cause of hospitalization due to acute lower respiratory infection especially in infants and young children, sometimes causing fatal cases. The monoclonal antibody palivizumab is one of the available options for preventing this virus, and at the moment there are several hRSV vaccine trials underway. Unfortunately, the only drug option to treat hRSV infection is ribavirin, which can be used in severe high-risk cases. For this reason, new medicines are needed and, in this context, the triterpenes and their derivatives are promising alternatives, since many of them have shown important antiviral activity, such as bevirimat. Therefore, we report three series of triterpene (betulin (BE), betulinic acid (BA), and ursolic acid (UA)) derivatives tested against hRSV. The derivatives were synthesized by using commercial anhydrides in an easy and inexpensive step reaction. For the antiviral assay, A549 cells were infected by hRSV and after 96 h of compound or ribavirin (positive control) treatment, the cell viability was tested by MTT assay. DMSO, non-infected cells and infected cells without treatment were used as negative control. The triterpene esterification at the hydroxyl group resulted in 17 derivatives. The 3,28-di-O-acetylbetulin derivative (1a) showed the best results for cell viability, and real-time PCR amplification was performed for 1a treatment. Remarkably, one new anti-hRSV prototype was obtained through an easy synthesis of BE, which shall represent an alternative for a new lead compound for anti-hRSV therapy.
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