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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Relationship between structure and adjuvanticity of N,N,N-trimethyl chitosan (TMC) structural variants in a nasal influenza vaccine
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Relationship between structure and adjuvanticity of N,N,N-trimethyl chitosan (TMC) structural variants in a nasal influenza vaccine

机译:鼻流感疫苗中N,N,N-三甲基壳聚糖(TMC)结构变体的结构与佐剂性之间的关系

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The aim of this study was to assess the influence of structural properties of N,N,N-trimethyl chitosan (TMC)on its adjuvanticity. Therefore, TMCs with varying degrees of quaternization (DQ, 22–86%), O-methylation (DOM, 0–76%) and acetylation (DAc 9–54%) were formulated with whole inactivated influenza virus (WIV).The formulations were characterized physicochemically and evaluated for their immunogenicity in an intranasal (i.n.) vaccination/challenge study in mice.Simple mixing of the TMCs with WIV at a 1:1 (w/w) ratio resulted in comparable positively charged nanoparticles, indicating coating of WIV with TMC. The amount of free TMC in solution was comparable for all TMC-WIV formulations. After i.n. immunization of mice with WIV and TMC-WIV on days 0 and 21, all TMC-WIV formulations induced stronger total IgG, IgG1 and IgG2a/c responses than WIV alone, except WIV formulated with reacetylated TMC with a DAc of 54% and a DQ of 44% (TMC-RA44). No significant differences in antibody titers were observed for TMCs that varied in DQ or DOM, indicating that these structural characteristics play a minor role in their adjuvant properties. TMC with a DQ of 56% (TMC56) formulated with WIV at a ratio of 5:1 (w/w) resulted in significantly lower IgG2a/c:IgG1 ratios compared to TMC56 mixed in ratios of 0.2:1 and 1:1, implying a shift towards a Th2 type immune response. Challenge of vaccinated mice with aerosolized virus demonstrated protection for all TMC-WIV formulations with the exception of TMC-RA44-WIV.In conclusion, formulating WIV with TMCs strongly enhances the immunogenicity and induces protection against viral challenge in mice after i.n. vaccination. The adjuvant properties of TMCs as i.n. adjuvant are strongly decreased by reacetylation of TMC, whereas the DQ and DOM hardly affect the adjuvanticity of TMC.
机译:这项研究的目的是评估N,N,N-三甲基壳聚糖(TMC)的结构性能对其助剂的影响。因此,用完全灭活的流感病毒(WIV)配制了具有不同程度的季铵化(DQ,22-86%),O-甲基化(DOM,0-76%)和乙酰化(DAc 9-54%)的TMC。在小鼠的鼻内(in)疫苗接种/攻击研究中对它们​​进行了物理化学表征并评估了其免疫原性。将TMC与WIV以1:1(w / w)的比例简单混合,产生了可比的带正电的纳米粒子,表明WIV涂层与TMC。对于所有TMC-WIV制剂,溶液中游离TMC的量均相当。在i.n.之后在第0天和第21天用WIV和TMC-WIV免疫小鼠,所有WMC-WIV制剂均比单独的WIV诱导更强的总IgG,IgG1和IgG2a / c反应,除了WIV用DAc为54%和DQ的重乙酰化TMC配制占44%(TMC-RA44)。对于在DQ或DOM中变化的TMC,没有观察到抗体效价的显着差异,表明这些结构特征在其佐剂特性中起着次要作用。与WIV以5:1(w / w)的比例配制的DQ为56%(TMC56)的TMC导致IgG2a / c:IgG1的比例明显低于以0.2:1和1:1的比例混合的TMC56,暗示向Th2型免疫反应的转变。接种疫苗的小鼠受到雾化病毒的攻击证明对除TMC-RA44-WIV以外的所有TMC-WIV制剂均具有保护作用。总而言之,用TMC配制WIV可以显着增强免疫原性并诱导免疫后小鼠免受病毒攻击。疫苗接种。 TMCs作为i.n.的佐剂性质。通过TMC的重新乙酰化作用,佐剂会大大降低,而DQ和DOM几乎不会影响TMC的佐剂。

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