Author:
Abdelaziz Rewan,Tartor Yasmine H.,Barakat Ahmed B.,EL-Didamony Gamal,El-Samadony Hanaa A.,Amer Shimaa A.,Gado Marwa M.
Abstract
Abstract
Background
Newcastle disease virus (NDV) is a severe disease that affects domestic and wild birds. Controlled antibiotics derived from probiotics have been examined as prospective solutions for preserving seroconversion in NDV-vaccinated fowl. In this study, the secondary metabolite “telomycin” was extracted from Streptomyces coeruleorubidus (S. coeruleorubidus) isolated from Egypt's cultivated soil. The structure of telomycin was determined by the elucidation of spectroscopic analysis, including nuclear magnetic resonance (NMR) and mass spectrometry (MS) spectra, and comparison with the literature. The antiviral activity of the secondary metabolite was tested by checking its effect on NDV hemagglutination activity (HA). Moreover, HA of NDV was tested after inoculation of NDV (control) and a combination of telomycin and NDV in 10- days- specific pathogen-free embryonated chicken eggs (SPF-ECE) daily candling. Histopathological examination was performed for chorioallantoic membranes and liver of SPF-ECE.
Results
S. coeruleorubidus secondary metabolite “telomycin” showed complete hemagglutination inhibition (HI) activity of NDV strain (MN635617) with log106 infectivity titers (EID50/mL). The HA of NDV strain was 8 log2 and 9 log2 with 0.5% and 0.75% of chicken RBCs, respectively. Preserved structures of chorioallantoic-membranes (CAM) with dilated capillary networks were observed in the treated group inoculated with telomycin and NDV. Histological changes in SPF-ECE liver were examined after inoculation in ova to further characterize the telomycin effect. Telomycin and NDV mixture inoculated group showed preserved cytoarchitecture of hepatocytes with the presence of perivascular foci of lymphocytes. The group that was inoculated with telomycin alone showed normal histology of hepatic acini, central veins, and portal triads.
Conclusion
S. coeruleorubidus telomycin is a promising bioactive agent that might be a biological weapon against a deadly chicken NDV that costs farmers a lot of money.
Funder
The Science, Technology & Innovation Funding Authority
Publisher
Springer Science and Business Media LLC
Subject
General Veterinary,General Medicine
Reference41 articles.
1. Egorov N. Fundamentals of theory of antibiotics. M: MGU 2004.
2. Ziemska J, Rajnisz A, Solecka J. New perspectives on antibacterial drug research. Open Life Sciences. 2013;8(10):943–57.
3. El-Hamid A, Hatem S, Shafi ME, Albaqami NM, Ellakany HF, Abdelaziz NM, Abdelaziz MN, El-Hack A, Mohamed E, Taha AE. Sequence analysis and pathogenicity of Avian Orthoavulavirus 1 strains isolated from poultry flocks during 2015–2019. BMC Vet Res. 2020;16(1):1–15.
4. Amarasinghe GK, Aréchiga Ceballos NG, Banyard AC, Basler CF, Bavari S, Bennett AJ, Blasdell KR, Briese T, Bukreyev A, Caì Y. Taxonomy of the order Mononegavirales: update 2018. Adv Virol. 2018;163(8):2283–94.
5. Adamson CS, Chibale K, Goss RJ, Jaspars M, Newman DJ, Dorrington RA. Antiviral drug discovery: Preparing for the next pandemic. Chem Soc Rev. 2021;50(6):3647–55.
Cited by
6 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献