糖复合物
免疫原性
抗原
沙门氏菌
细菌外膜
微生物学
生物
接种疫苗
抗体
免疫
佐剂
病毒学
细菌
免疫学
大肠杆菌
生物化学
基因
遗传学
作者
Francesca Micoli,Simona Rondini,Renzo Alfini,Luisa Lanzilao,Francesca Necchi,Aurel Negrea,Omar Rossi,Cornelia Brandt,Simon Clare,Pietro Mastroeni,Rino Rappuoli,Allan Saul,Calman A. MacLennan
标识
DOI:10.1073/pnas.1807655115
摘要
Significance Bacteria, such as nontyphoidal Salmonella , are responsible for a large global burden of disease. Due to limited need in developed countries and consequent lack of commercial incentive, vaccines are unavailable against many bacteria. Glycoconjugates constitute the standard bacterial vaccine approach, but can be costly, particularly where multivalent preparations are required. This report compares a low-cost vesicle-based technology, known as Generalized Modules for Membrane Antigens (GMMA), with glycoconjugate in bivalent vaccines against nontyphoidal Salmonella . In head-to-head immunogenicity and infection studies in mice, GMMA performed at least as well as equivalent glycoconjugate vaccine, indicating good potential of this approach. Given that many bacteria are amenable to genetic engineering for GMMA production, the GMMA strategy could provide a breakthrough for a range of needed bacterial vaccines.
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