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Brucella melitensis Rev1Δwzm: Placental pathogenesis studies and safety in pregnant ewes.
Poveda-Urkixo, Irati; Mena-Bueno, Sara; Ramírez, Gustavo A; Zabalza-Baranguá, Ana; Tsolis, Renee M; Grilló, María-Jesús.
Afiliação
  • Poveda-Urkixo I; Animal Health Department, Institute of Agrobiotechnology (IdAB; CSIC-Navarra Government), Avda. Pamplona 123, 31192 Mutilva, Navarra, Spain.
  • Mena-Bueno S; Animal Health Department, Institute of Agrobiotechnology (IdAB; CSIC-Navarra Government), Avda. Pamplona 123, 31192 Mutilva, Navarra, Spain; Public University of Navarra (UPNA), Avda. de Pamplona 123, 31192 Mutilva, Spain.
  • Ramírez GA; Animal Health Department, University of Lleida, 25198 Lleida, Spain.
  • Zabalza-Baranguá A; Animal Health Department, Institute of Agrobiotechnology (IdAB; CSIC-Navarra Government), Avda. Pamplona 123, 31192 Mutilva, Navarra, Spain.
  • Tsolis RM; Medical Microbiology and Immunology, University of California, Davis, 95616 USA.
  • Grilló MJ; Animal Health Department, Institute of Agrobiotechnology (IdAB; CSIC-Navarra Government), Avda. Pamplona 123, 31192 Mutilva, Navarra, Spain. Electronic address: mj.grillo@csic.es.
Vaccine ; 42(17): 3710-3720, 2024 Jun 20.
Article em En | MEDLINE | ID: mdl-38755066
ABSTRACT
One of the main causes of human brucellosis is Brucella melitensis infecting small ruminants. To date, Rev1 is the only vaccine successfully used to control ovine and caprine brucellosis. However, it is pathogenic for pregnant animals, resulting in abortions and vaginal and milk shedding, as well as being infectious for humans. Therefore, there is an urgent need to develop an effective vaccine that is safer than Rev1. In efforts to further attenuate Rev1, we recently used wzm inactivation to generate a rough mutant (Rev1Δwzm) that retains a complete antigenic O-polysaccharide in the bacterial cytoplasm. The aim of the present study was to evaluate the placental pathogenicity of Rev1Δwzm in trophoblastic cells, throughout pregnancy in mice, and in ewes inoculated in different trimesters of pregnancy. This mutant was evaluated in comparison with the homologous 16MΔwzm derived from a virulent strain of B. melitensis and the naturally rough sheep pathogen B. ovis. Our results show that both wzm mutants triggered reduced cytotoxic, pro-apoptotic, and pro-inflammatory signaling in Bewo trophoblasts, as well as reduced relative expression of apoptosis genes. In mice, both wzm mutants produced infection but were rapidly cleared from the placenta, in which only Rev1Δwzm induced a low relative expression of pro-apoptotic and pro-inflammatory genes. In the 66 inoculated ewes, Rev1Δwzm was safe and immunogenic, displaying a transient serological interference in standard RBT but not CFT S-LPS tests; this serological response was minimized by conjunctival administration. In conclusion, these results support that B. melitensis Rev1Δwzm is a promising vaccine candidate for use in pregnant ewes and its efficacy against B. melitensis and B. ovis infections in sheep warrants further study.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Placenta / Brucelose / Brucella melitensis Limite: Animals / Female / Humans / Pregnancy Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Placenta / Brucelose / Brucella melitensis Limite: Animals / Female / Humans / Pregnancy Idioma: En Ano de publicação: 2024 Tipo de documento: Article