DeWinter Madison A, Thames Ariel Helms, Guerrero Laura, Kightlinger Weston, Karim Ashty S, Jewett Michael C
Medical Scientist Training Program, Northwestern University Feinberg School of Medicine, Chicago, Illinois 60611, United States.
Department of Chemical and Biological Engineering, Northwestern University, Evanston, Illinois 60208, United States.
ACS Synth Biol. 2023 Apr 21;12(4):1216-1226. doi: 10.1021/acssynbio.2c00680. Epub 2023 Mar 20.
In resource-limited settings, it can be difficult to safely deliver sensitive biologic medicines to patients due to cold chain and infrastructure constraints. Point-of-care drug manufacturing could circumvent these challenges since medicines could be produced locally and used on-demand. Toward this vision, we combine cell-free protein synthesis (CFPS) and a 2-in-1 affinity purification and enzymatic cleavage scheme to develop a platform for point-of-care drug manufacturing. As a model, we use this platform to synthesize a panel of peptide hormones, an important class of medications that can be used to treat a wide variety of diseases including diabetes, osteoporosis, and growth disorders. With this approach, temperature-stable lyophilized CFPS reaction components can be rehydrated with DNA encoding a SUMOylated peptide hormone of interest when needed. Strep-Tactin affinity purification and on-bead SUMO protease cleavage yield peptide hormones in their native form that are recognized by ELISA antibodies and that can bind their respective receptors. With further development to ensure proper biologic activity and patient safety, we envision that this platform could be used to manufacture valuable peptide hormone drugs in a decentralized way.
在资源有限的环境中,由于冷链和基础设施的限制,将敏感生物药物安全地交付给患者可能会很困难。即时护理药物制造可以规避这些挑战,因为药物可以在当地生产并按需使用。为了实现这一愿景,我们将无细胞蛋白质合成(CFPS)与二合一亲和纯化和酶切方案相结合,以开发一个即时护理药物制造平台。作为一个模型,我们使用这个平台合成了一组肽激素,这是一类重要的药物,可用于治疗多种疾病,包括糖尿病、骨质疏松症和生长障碍。通过这种方法,温度稳定的冻干CFPS反应成分可以在需要时用编码感兴趣的SUMO化肽激素的DNA重新水化。链霉亲和素亲和纯化和珠上SUMO蛋白酶切割产生天然形式的肽激素,这些肽激素可被ELISA抗体识别,并能结合其各自的受体。随着进一步的发展以确保适当的生物活性和患者安全,我们设想这个平台可以用于以分散的方式生产有价值的肽激素药物。