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首页> 外文期刊>Journal of Immune Based Therapies Vaccines >Phytol-based novel adjuvants in vaccine formulation: 1. assessment of safety and efficacy during stimulation of humoral and cell-mediated immune responses
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Phytol-based novel adjuvants in vaccine formulation: 1. assessment of safety and efficacy during stimulation of humoral and cell-mediated immune responses

机译:疫苗配方中基于植物醇的新型佐剂:1.评估体液和细胞介导的免疫应答刺激过程中的安全性和有效性

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Background Vaccine efficacy depends significantly on the use of appropriate adjuvant(s) in the formulation. Phytol, a dietary diterpene alcohol, is similar in structure to naturally occurring isoprenoid adjuvants; but little is known of its adjuvanticity. In this report, we describe the relative safety and efficacy of phytol and its hydrogenated derivative PHIS-01 compared to commercial adjuvants. Methods We tested adjuvant properties using a formulation consisting of either a hapten, phthalate-conjugated to a protein, keyhole limpet hemocyanin (KLH), or ovalbumin (OVA) emulsified with the test adjuvants in mice without any surfactant. Humoral immunity was assessed in terms of titer, specificity, and isotypic profiles. The effect on cell-mediated immunity was studied by assaying the induction of either OVA- or B-lymphoma-specific cytotoxic T-lymphocyte (CTL) activity. Results and Discussion The phytol compounds, particularly PHIS-01, elicit increased titers of all major IgG subclasses, especially IgG2a. Unlike commercial adjuvants, both phytol compounds are capable of inducing specific cytotoxic effector T cell responses specific to both OVA and B-lymphoma tested. Phytols as adjuvants are also distinctive in that they provoke no adverse anti-DNA autoimmune response. Intraperitoneally administered phytol is comparable to complete Freund's adjuvant in toxicity in doses over 40 ug/mouse, but PHIS-01 has no such toxicity. Conclusion These results and our ongoing studies on antibacterial immunity show that phytol and PHIS-01 are novel and effective adjuvants with little toxicity.
机译:背景疫苗效力在很大程度上取决于制剂中适当佐剂的使用。膳食二萜醇植物酚的结构类似于天然存在的类异戊二烯佐剂。但是鲜为人知。在本报告中,我们描述了与市售佐剂相比,植醇及其氢化衍生物PHIS-01的相对安全性和有效性。方法我们在不含任何表面活性剂的小鼠中,使用由半抗原,邻苯二甲酸酯与蛋白质缀合的键合蛋白,匙孔血蓝蛋白(KLH)或卵清蛋白(OVA)组成的配方测试了佐剂的性能。根据滴度,特异性和同型谱评估体液免疫。通过测定OVA或B淋巴瘤特异性细胞毒性T淋巴细胞(CTL)活性的诱导研究了对细胞介导的免疫的影响。结果与讨论植醇化合物(尤其是PHIS-01)引起所有主要IgG亚类(尤其是IgG2a)的滴度增加。与市售佐剂不同,两种植物醇化合物均能够诱导对测试的OVA和B淋巴瘤均特异的特异性细胞毒性效应T细胞应答。植物醇作为佐剂的独特之处还在于它们不会引起不利的抗DNA自身免疫反应。腹膜内施用的植物醇在超过40 ug /小鼠的剂量下具有与完全弗氏佐剂完全相同的毒性,但PHIS-01没有这种毒性。结论这些结果以及我们正在进行的抗菌免疫研究表明,植醇和PHIS-01是新颖有效的佐剂,几乎没有毒性。

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