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物理化学修饰对小鼠抗尼古丁疫苗诱导抗体功能的影响

The Effect of Physicochemical Modification on the Function of Antibodies Induced by Anti-Nicotine Vaccine in Mice.

作者信息

Thorn Jennifer M, Bhattacharya Keshab, Crutcher Renata, Sperry Justin, Isele Colleen, Kelly Barbara, Yates Libbey, Zobel James, Zhang Ningli, Davis Heather L, McCluskie Michael J

机构信息

Pfizer Biotherapeutics Pharmaceutical Sciences, Chesterfield, MO 63017, USA.

Pfizer Vaccine Immunotherapeutics, Ottawa Laboratories, Ottawa, ON K2K 3A2, Canada.

出版信息

Vaccines (Basel). 2017 May 17;5(2):11. doi: 10.3390/vaccines5020011.

Abstract

Smoking remains one of the major causes of morbidity and mortality worldwide. One approach to assisting smoking cessation is via anti-nicotine vaccines, composed of nicotine-like haptens conjugated to a carrier protein plus adjuvant(s). We have previously shown that the carrier, hapten, linker, hapten load, degree of conjugate aggregation, and presence of adducts can each influence the function (nicotine-binding capacity) of the antibody (Ab) induced. Herein, we extend those findings and show that tertiary structure is also critical to the induction of functional immune responses and that this can be influenced by conjugation conditions. We evaluated immunogenicity in mice using six lots of NIC7-CRM, a conjugate of 5-aminoethoxy-nicotine (Hapten 7), and a single point (glycine 52 to glutamic acid) mutant nontoxic form of diphtheria toxin, cross-reactive material 197 (CRM), which were synthesized under different reaction conditions resulting in conjugates with equivalent molecular characteristics (hapten load, aggregates, adducts), but a different tertiary structure. When tested in mice, better functional responses (reduced nicotine in the brain of immunized animals relative to non-immunized controls) were obtained with conjugates with a more closed structure than those with an open conformation. These studies highlight the need for a better understanding of the physicochemical properties of small molecule conjugate vaccines.

摘要

吸烟仍是全球发病和死亡的主要原因之一。协助戒烟的一种方法是通过抗尼古丁疫苗,其由与载体蛋白加佐剂缀合的尼古丁样半抗原组成。我们之前已经表明,载体、半抗原、连接子、半抗原负载量、缀合物聚集程度和加合物的存在均会影响所诱导抗体(Ab)的功能(尼古丁结合能力)。在此,我们扩展了这些发现,并表明三级结构对于功能性免疫反应的诱导也至关重要,且这会受到缀合条件的影响。我们使用六批NIC7-CRM(5-氨基乙氧基尼古丁(半抗原7)与白喉毒素的单点(甘氨酸52突变为谷氨酸)突变无毒形式交叉反应物质197(CRM)的缀合物)在小鼠中评估免疫原性,这些缀合物是在不同反应条件下合成的,产生了具有等效分子特征(半抗原负载量、聚集体、加合物)但不同三级结构的缀合物。在小鼠中进行测试时,与具有开放构象的缀合物相比,具有更紧密结构的缀合物能产生更好的功能性反应(相对于未免疫对照,免疫动物大脑中的尼古丁减少)。这些研究强调了更好地理解小分子缀合疫苗物理化学性质的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/082c/5492008/64d2404a8fae/vaccines-05-00011-g001.jpg

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