Forsythe Neil L, Tan Mikayla F, Maynard Heather D
Department of Chemistry and Biochemistry, California NanoSystems Institute, University of California Los Angeles California 90095-1569 USA
Chem Sci. 2022 Mar 7;13(13):3888-3893. doi: 10.1039/d1sc06242e. eCollection 2022 Mar 30.
To improve the efficacy of antibody drug conjugates (ADCs), there has been significant focus on increasing the drug-to-antibody ratio (DAR) in order to deliver more payload. However, due to the hydrophobicity of many cytotoxics, highly-loaded conjugates often have lower physicochemical stability and poorer pharmacokinetic outcomes, requiring the development of new hydrophilic linkers. Herein, we report a platform for the preparation of functional, sequence-defined polymers for conjugation to antibodies. We demonstrate the successful synthesis of novel diazido macrocyclic sulfate monomers of varied size ranging from 4 to 7 ethylene glycol repeat units. These monomers were then successively ring-opened to produce sequence-defined polymers that contained either 4 or 6 azides for post-synthesis functionalization. Given the hydrophilic ethylene glycol backbone and chemically defined nature of the polymers, we envisioned this as a useful strategy in the preparation of highly-loaded ADCs. To demonstrate this, we prepared a model polymer-fluorophore scaffold composed of 4 coumarin molecules and conjugated it to Herceptin. We fully characterized the conjugate mass spectrometry, which yielded a polymer-to-antibody ratio of 6.6, translating to a total of 26 fluorophores conjugated to the antibody at the inter-chain disulfides. We believe this technology to not only be a meaningful contribution to the field of sequence-defined polymers and conjugates, but also as a general and tunable platform for drug delivery.
为提高抗体药物偶联物(ADC)的疗效,人们一直高度关注提高药物与抗体比率(DAR)以递送更多的有效载荷。然而,由于许多细胞毒素具有疏水性,高负载的偶联物通常具有较低的物理化学稳定性和较差的药代动力学结果,这就需要开发新的亲水性连接子。在此,我们报道了一个用于制备可与抗体偶联的功能性、序列定义聚合物的平台。我们展示了成功合成了尺寸各异、含有4至7个乙二醇重复单元的新型二叠氮基大环硫酸酯单体。然后这些单体依次开环以生成含有4个或6个叠氮基的序列定义聚合物,用于合成后功能化。鉴于聚合物具有亲水性的乙二醇主链和化学定义明确的性质,我们设想这是制备高负载ADC的一种有用策略。为证明这一点,我们制备了一种由4个香豆素分子组成的模型聚合物 - 荧光团支架,并将其与赫赛汀偶联。我们通过质谱对该偶联物进行了全面表征,结果显示聚合物与抗体的比率为6.6,这意味着在链间二硫键处共有26个荧光团与抗体偶联。我们认为这项技术不仅对序列定义聚合物和偶联物领域有重要贡献,而且是一种通用且可调节的药物递送平台。