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理化性质对单克隆抗体的皮下吸收和生物利用度的影响。

Influence of physiochemical properties on the subcutaneous absorption and bioavailability of monoclonal antibodies.

机构信息

Departments of Exploratory Medicine and Pharmacology, Lilly Research Laboratories, Lilly Corporate Center , Indianapolis, IN, USA.

External Innovation, Lilly Research Laboratories, Lilly Corporate Center , Indianapolis, IN, USA.

出版信息

MAbs. 2020 Jan 1;12(1):1770028. doi: 10.1080/19420862.2020.1770028.

Abstract

Many therapeutic monoclonal antibodies (mAbs) were initially developed for intravenous (IV) administration. As a means to improve mAb drug-ability and the patient experience, subcutaneous (SC) administration is an increasingly important delivery route for mAbs. Unlike IV administration, bioavailability limitations for antibodies have been reported following SC injection and can dictate whether a mAb is administered via this parenteral route. The SC bioavailability of antibodies has been difficult to predict, and it can be variable and partial, with values ranging from ~50% to 100%. The mechanisms leading to the incomplete bioavailability of some mAbs relative to others are not well understood. There are some limited data that suggest the physiochemical properties inherent to a mAb can contribute to its SC absorption, bioavailability, and fate. In this study, we evaluated the integrated influence of multiple mAb physiochemical factors on the SC absorption and bioavailability of six humanized mAbs in both rats and cynomolgus monkeys. We demonstrate the physiochemical properties of mAbs are critical to their rate and extent of SC absorption. The combination of high positive charge and hydrophobic interaction significantly reduced the rate of the evaluated mAb's SC absorption and bioavailability. Reduction or balancing of both these attributes via re-engineering the mAbs restored desirable properties of the molecules assessed. This included reduced association with SC tissue, improvements in mAb absorption from the SC space and overall SC bioavailability. Our findings point to the importance of evaluating the relative balance between various physiochemical factors, including charge, hydrophobicity, and stability, to improve the SC drug-ability of mAbs for selecting or engineering mAbs with enhanced absorption and bioavailability following SC administration.

摘要

许多治疗性单克隆抗体(mAbs)最初是为静脉(IV)给药开发的。为了改善 mAb 的药物性质和患者体验,皮下(SC)给药已成为 mAb 的重要给药途径。与 IV 给药不同,据报道,SC 注射后抗体的生物利用度有限,这可能决定 mAb 是否通过这种肠外途径给药。抗体的 SC 生物利用度难以预测,且其具有变异性和部分性,其值范围为~50%至 100%。导致一些 mAb 的生物利用度相对于其他 mAb 不完全的机制尚未得到很好的理解。有一些有限的数据表明,mAb 固有的物理化学特性可能有助于其 SC 吸收、生物利用度和命运。在这项研究中,我们评估了多个 mAb 物理化学因素对六种人源化 mAb 在大鼠和食蟹猴中的 SC 吸收和生物利用度的综合影响。我们证明了 mAb 的物理化学性质对其 SC 吸收的速率和程度至关重要。高正电荷和疏水相互作用的组合显著降低了评估 mAb 的 SC 吸收和生物利用度的速率。通过对 mAb 进行工程改造,减少或平衡这两个属性,恢复了所评估分子的理想性质。这包括减少与 SC 组织的结合,改善 mAb 从 SC 空间的吸收以及整体 SC 生物利用度。我们的研究结果表明,评估各种物理化学因素(包括电荷、疏水性和稳定性)之间的相对平衡对于提高 mAb 的 SC 药物性质以选择或设计在 SC 给药后具有增强吸收和生物利用度的 mAb 具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd07/7531508/83acb86708b7/KMAB_A_1770028_F0001_B.jpg

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