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Therapeutic potential and toxicity of antimicrobial peptide RW-BP100 in ICR mice infected with Brucella canis

Authors
Seong Eun ChoTran Xuan Ngoc HuyTrang Thi NguyenChed Nicole Turbela AguilarEoin Quiatchon LajaraIl-Hwa HongWonGi MinHu-Jang LeeJi-Hyun YeomSuk Kim
Issue Date
Dec-2025
Publisher
한국예방수의학회
Keywords
Brucella canis; RW-BP100; ICR mice; immune response; toxicity
Citation
예방수의학회지, v.49, no.4, pp 228 - 235
Pages
8
Indexed
KCI
Journal Title
예방수의학회지
Volume
49
Number
4
Start Page
228
End Page
235
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/81849
ISSN
2287-7991
2287-8009
Abstract
It is challenging to treat canine brucellosis due to the immune evading and stealthy characteristic of the causative bacteria, Brucella (B.) canis. Gold nanoparticle aptamer (AuNP-Apt) conjugated antimicrobial peptide (AMP) is a promising alternative to antibiotics for various bacterial infections. However, the toxicity of AuNP-Apt has been variable throughout research, and the in vivo toxic mechanism has not been fully elucidated. This study evaluated the therapeutic potential against B. canis, and the toxicity of AuNP-Apt conjugated antimicrobial peptide, RW-BP100 (AuNP-AptHis-RW-BP100His), in a mouse model. Intravenous (IV) treatment with AuNP-AptHis-RW-BP100His reduced the bacteria burden and histopathologic lesions. The IV treatment also induced CD4+ T cell differentiation and modulated serum cytokine levels. However, high-dose AuNP-Apt was lethal, resulting in tissue accumulation and vessel embolism. Therefore, AuNP-AptHis-RW-BP100His is a promising therapeutic agent for B. canis treatment, but due to its toxicity, further studies are needed for its utilization in clinical practice.
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