Infectious Disease Research Institute, 1124 Columbia St., Ste 400, Seattle, WA 98104, United States.
Vaccine. 2011 Nov 28;29(51):9563-72. doi: 10.1016/j.vaccine.2011.08.089. Epub 2011 Sep 9.
Squalene-based oil-in-water emulsions have been used for years in some seasonal and pandemic influenza vaccines. However, concerns have been expressed regarding squalene source and potential biological activities. Little information is available regarding the immunomodulatory activity of squalene in comparison with other metabolizable oils in the context of oil-in-water emulsions formulated with vaccines. The present work describes the manufacture and physical characterization of emulsions composed of different classes of oils, including squalene, long chain triglycerides, a medium chain triglyceride, and a perfluorocarbon, all emulsified with egg phosphatidylcholine. Some differences were apparent among the non-squalene oils in terms of emulsion stability, including higher size polydispersity in the perfluorocarbon emulsion, more rapid visual instability at 60°C for the long-chain triglyceride and perfluorocarbon emulsions, and an increased creaming rate in the medium-chain triglyceride emulsion at 60°C as detected by laser scattering optical profiling. The biological activity of each of these emulsions was compared when formulated with either a recombinant malaria antigen or a split-virus inactivated influenza vaccine. Overall, vaccines containing the squalene emulsion elicited higher antibody titers and more abundant long-lived plasma cells than vaccines containing emulsions based on other oils. Since squalene-based emulsions show higher adjuvant potency compared to the other oils tested, non-squalene oils may be more suitable as carriers of amphiphilic or hydrophobic immunostimulatory molecules (such as TLR agonists) rather than as stand-alone adjuvants.
角鲨烯水包油乳剂多年来已被应用于一些季节性和大流行性流感疫苗中。然而,人们对角鲨烯的来源和潜在生物学活性表示担忧。与水包油乳剂中用疫苗乳化的其他可代谢油相比,有关角鲨烯的免疫调节活性的信息很少。本工作描述了由不同类别的油(包括角鲨烯、长链甘油三酯、中链甘油三酯和全氟碳)组成的乳剂的制造和物理特性,这些油均与卵磷酯酰胆碱乳化。在非角鲨烯油中,乳剂的稳定性存在一些差异,包括全氟碳乳剂的粒径多分散性更高、长链甘油三酯和全氟碳乳剂在 60°C 时的视觉不稳定性更快、中链甘油三酯乳剂在 60°C 时的增稠速率更高,这些差异通过激光散射光学轮廓法检测到。将这些乳剂中的每一种与重组疟疾抗原或裂解病毒灭活流感疫苗一起配制时,比较它们的生物学活性。总体而言,含有角鲨烯乳剂的疫苗比含有其他油基乳剂的疫苗引起更高的抗体滴度和更丰富的长寿浆细胞。由于角鲨烯乳剂与所测试的其他油相比具有更高的佐剂效力,因此非角鲨烯油可能更适合作为两亲或疏水性免疫刺激分子(如 TLR 激动剂)的载体,而不是作为独立的佐剂。