Biologics Process Development, Bristol-Myers Squibb Company, Devens, MA 01434, United States.
Molecular and Analytical Development, Bristol-Myers Squibb Company, Pennington, NJ 08534, United States.
Eur J Pharm Biopharm. 2018 Jun;127:37-43. doi: 10.1016/j.ejpb.2018.02.007. Epub 2018 Feb 7.
As macromolecules, biologics are susceptible to light exposure, which induces oxidation of multiple amino acid residues including tryptophan, tyrosine, phenylalanine, cysteine and methionine. Pertaining to safety, efficacy and potency, light-induced oxidation of biologics has been widely studied and necessary precautions need to be taken during biologics manufacturing process, drug substance and products handling and storage. Proteins will degrade to varying extents depending on the protein properties, degradation pathways, formulation compositions and type of light source. In addition to UV light, which has been widely known to degrade proteins, visible light from indoor fluorescent lighting also can mediate protein degradation. In this report, we examine and identify wavelengths in the visual spectrum (400-700 nm) that can cause monoclonal antibody and histidine buffer degradation. Installation of safe lights which exclude the identified damaging wavelengths from visible spectra in manufacturing and storage areas can provide a balance between lighting requirement for human operators and their safety and conservation of product quality.
作为大分子,生物制剂容易受到光照的影响,这会导致包括色氨酸、酪氨酸、苯丙氨酸、半胱氨酸和蛋氨酸在内的多个氨基酸残基氧化。关于安全性、有效性和效力,生物制剂的光诱导氧化已被广泛研究,在生物制剂制造过程、药物物质和产品处理以及储存过程中需要采取必要的预防措施。根据蛋白质的性质、降解途径、配方成分和光源类型,蛋白质的降解程度会有所不同。除了众所周知会降解蛋白质的紫外线外,室内荧光照明发出的可见光也可以介导蛋白质降解。在本报告中,我们检查并确定了可见光谱(400-700nm)中的波长,这些波长会导致单克隆抗体和组氨酸缓冲液降解。在制造和储存区域安装安全灯,可以排除可见光谱中已识别的有害波长,在满足操作人员照明需求及其安全的同时,还可以保持产品质量。