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人类生殖细胞系的静电特性与小型生物制品的生物分布

Electrostatic properties of human germlines and biodistribution of small biologics.

作者信息

De Souza Cordeiro Leticia Maria, Atkinson Kelley Christine, Aivazian Argin, Joyce Patrick Frank, Jia Fang, Mascioni Alessandro

机构信息

Preclinical discovery, ImaginAb, Inc, Inglewood, CA, USA.

Cell biology, Skye Biologics, El Segundo, CA, USA.

出版信息

MAbs. 2024 Jan-Dec;16(1):2311991. doi: 10.1080/19420862.2024.2311991. Epub 2024 Feb 9.

DOI:10.1080/19420862.2024.2311991
PMID:38334129
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10860348/
Abstract

Off-target biodistribution of biologics bears important toxicological consequences. Antibody fragments intended for use as vectors of cytotoxic payloads (e.g. antibody-drug conjugates, radiotherapy) can accumulate at clearance organs like kidneys and liver, where they can cause dose-limiting toxicities. Renal and hepatic uptakes are known to be affected by protein electrostatics, which promote protein internalization through pinocytosis. Using minibodies as a model of an antibody fragment lacking FcRn recycling, we compared the biodistributions of leads with different degrees of accumulation at the kidney and liver. We identified a positive electrostatic patch highly conserved in a germline family very commonly used in the humanization of approved biologics. Neutralization of this patch led to a drastic reduction in the kidney uptake, leading to a biodistribution more favorable to the delivery of highly cytotoxic payloads. Next, we conducted a high throughput study of the electrostatic properties for all combinations of VH and VL germlines. This analysis shows how different VH/VL combinations exhibit varying tendencies to create electrostatic patches, resulting in Fv variants with different isoelectric points. Our work emphasizes the importance of carefully selecting germlines for humanization with optimal electrostatic properties in order to control the unspecific tissue uptake of low molecular weight biologics.

摘要

生物制品的脱靶生物分布具有重要的毒理学后果。旨在用作细胞毒性载荷载体的抗体片段(如抗体-药物偶联物、放射疗法)可在肾脏和肝脏等清除器官中蓄积,在这些器官中它们可导致剂量限制性毒性。已知肾脏和肝脏摄取受蛋白质静电影响,蛋白质静电通过胞饮作用促进蛋白质内化。我们使用微型抗体作为缺乏FcRn循环的抗体片段模型,比较了在肾脏和肝脏中具有不同蓄积程度的先导物生物分布。我们在常用于已批准生物制品人源化的一个种系家族中鉴定出一个高度保守的正电荷斑块。对该斑块进行中和导致肾脏摄取大幅降低,从而使生物分布更有利于高细胞毒性载荷的递送。接下来,我们对VH和VL种系的所有组合的静电性质进行了高通量研究。该分析表明不同的VH/VL组合如何表现出形成静电斑块的不同倾向,从而产生具有不同等电点的Fv变体。我们的工作强调了仔细选择具有最佳静电性质的种系进行人源化以控制低分子量生物制品非特异性组织摄取的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef69/10860348/0aa6fd21ae1a/KMAB_A_2311991_F0003_OC.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef69/10860348/470e247fba15/KMAB_A_2311991_F0001_OC.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef69/10860348/49e31ef4b5cd/KMAB_A_2311991_F0002_OC.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef69/10860348/0aa6fd21ae1a/KMAB_A_2311991_F0003_OC.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef69/10860348/470e247fba15/KMAB_A_2311991_F0001_OC.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef69/10860348/49e31ef4b5cd/KMAB_A_2311991_F0002_OC.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef69/10860348/0aa6fd21ae1a/KMAB_A_2311991_F0003_OC.jpg

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