Maikawa Caitlin L, Smith Anton A A, Zou Lei, Meis Catherine M, Mann Joseph L, Webber Matthew J, Appel Eric A
Department of Bioengineering, Stanford University, Stanford, CA 94305, USA.
Department of Materials Science and Engineering, Stanford University, Stanford, CA 94305, USA.
Adv Ther (Weinh). 2020 Jan;3(1). doi: 10.1002/adtp.201900094. Epub 2019 Dec 17.
Current "fast-acting" insulin analogues contain amino acid modifications meant to inhibit dimer formation and shift the equilibrium of association states toward the monomeric state. However, the insulin monomer is highly unstable and current formulation techniques require insulin to primarily exist as hexamers to prevent aggregation into inactive and immunogenic amyloids. Insulin formulation excipients have thus been traditionally selected to promote insulin association into the hexameric form to enhance formulation stability. This study exploits a novel excipient for the supramolecular PEGylation of insulin analogues, including aspart and lispro, to enhance the stability and maximize the prevalence of insulin monomers in formulation. Using multiple techniques, it is demonstrated that judicious choice of formulation excipients (tonicity agents and parenteral preservatives) enables insulin analogue formulations with 70-80% monomer and supramolecular PEGylation imbued stability under stressed aging for over 100 h without altering the insulin association state. Comparatively, commercial "fast-acting" formulations contain less than 1% monomer and remain stable for only 10 h under the same stressed aging conditions. This simple and effective formulation approach shows promise for next-generation ultrafast insulin formulations with a short duration of action that can reduce the risk of post-prandial hypoglycemia in the treatment of diabetes.
当前的“速效”胰岛素类似物含有旨在抑制二聚体形成并使缔合状态平衡向单体状态转变的氨基酸修饰。然而,胰岛素单体高度不稳定,目前的制剂技术要求胰岛素主要以六聚体形式存在,以防止聚集成无活性和具有免疫原性的淀粉样蛋白。因此,传统上选择胰岛素制剂辅料来促进胰岛素缔合成六聚体形式,以提高制剂稳定性。本研究开发了一种新型辅料,用于胰岛素类似物(包括门冬胰岛素和赖脯胰岛素)的超分子聚乙二醇化,以提高稳定性并使制剂中胰岛素单体的比例最大化。使用多种技术表明,明智地选择制剂辅料(等渗剂和注射用防腐剂)可使胰岛素类似物制剂中单体含量达到70-80%,并且在加速老化条件下超分子聚乙二醇化赋予的稳定性超过100小时,而不会改变胰岛素的缔合状态。相比之下,市售的“速效”制剂中单体含量不到1%,在相同的加速老化条件下仅能稳定10小时。这种简单有效的制剂方法为下一代超短效胰岛素制剂带来了希望,这类制剂作用持续时间短,可降低糖尿病治疗中餐后低血糖的风险。