Phan Tony, Devine Christian, Laursen Erik D, Simpson Adrian, Kahn Aaron, Khandhar Amit P, Mesite Steven, Besse Brad, Mabery Ken J, Flanagan Elizabeth I, Fox Christopher B
Infectious Disease Research Institute, 1616 Eastlake Avenue E #400, Seattle, WA 98102, USA.
Microfluidics Corp., 90 Glacier Drive #1000, Westwood, MA 02090, USA.
Pharmaceuticals (Basel). 2020 Jul 28;13(8):168. doi: 10.3390/ph13080168.
Squalene emulsions are among the most widely employed vaccine adjuvant formulations. Among the demonstrated benefits of squalene emulsions is the ability to enable vaccine antigen dose sparing, an important consideration for pandemic response. In order to increase pandemic response capabilities, it is desirable to scale up adjuvant manufacturing processes. We describe innovative process enhancements that enabled the scale-up of bulk stable squalene emulsion (SE) manufacturing capacity from a 3000- to 5,000,000-dose batch size. Manufacture of concentrated bulk along with the accompanying viscosity change in the continuous phase resulted in a ≥25-fold process efficiency enhancement. Process streamlining and implementation of single-use biocontainers resulted in reduced space requirements, fewer unit operations, and minimization of cleaning requirements. Emulsion physicochemical characteristics were measured by dynamic light scattering, laser diffraction, and HPLC with charged aerosol detection. The newly developed full-scale process was demonstrated by producing two 5,000,000-dose batches of bulk concentrated SE. A scale-up of adjuvant manufacturing capacity through process innovation enables more efficient production capabilities for pandemic response.
角鲨烯乳剂是应用最为广泛的疫苗佐剂配方之一。角鲨烯乳剂已证实的益处包括能够减少疫苗抗原剂量,这是应对大流行时的一项重要考量因素。为了提高应对大流行的能力,扩大佐剂生产工艺的规模很有必要。我们描述了一些创新性的工艺改进措施,这些措施使散装稳定角鲨烯乳剂(SE)的生产能力从每批次3000剂扩大到500万剂。生产浓缩散装产品以及连续相随之发生的粘度变化使工艺效率提高了≥25倍。工艺流程的简化和一次性生物容器的应用减少了空间需求、减少了单元操作,并将清洁需求降至最低。通过动态光散射、激光衍射以及带电荷气溶胶检测的高效液相色谱法对角鲨烯乳剂的物理化学特性进行了测定。通过生产两批500万剂的散装浓缩SE证明了新开发的全规模工艺的可行性。通过工艺创新扩大佐剂生产能力能够提高应对大流行的生产效率。