DISCOVERY OF NOVEL ANTI-SERUM ALBUMIN VHH AS A BUILDING BLOCK FOR PK PROLONGATION

Q2 Medicine Antibody Therapeutics Pub Date : 2023-07-01 DOI:10.1093/abt/tbad014.011
Yunying Chen, Xin Lin, Yi Qin, Donghui Wu, Jijie Gu, Siwei Nie
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Abstract

Abstract Background The serum half-life of endogenous albumin is approximately 19 days in humans and 1.5-2.5 days in rodents. This extended half-life in vivo is primarily due to effective recycling upon internalization mediated by the neonatal Fc receptor (FcRn). Many protein therapeutics smaller than 60 kD have short serum half-life, which can be extended by fusing the proteins of interest with an anti-albumin antibody. The fusion proteins then take advantage of FcRn-mediated recycling. Single domain antibody (VHH) molecules (around 15 kD), derived from camelid heavy-chain-only IgG, are attracting increased attention globally in the field of antibody-based therapies due to several features including small size, high stability, low immunogenicity, good tissue penetration and cost effectiveness in manufacturing. Methods an anti-human/cynomolgus monkey/murine/canine/feline serum albumin VHH lead was discovered from a proprietary, large native phage-displayed VHH library, which was then humanized, and affinity matured. The optimized VHH was fused to bispecific and trispecific antibodies for in vivo PK studies. Results An anti-human serum albumin VHH Ab was discovered, and it also bound to cyno and mouse serum albumin with high affinity without affecting the interaction of HSA with FcRn. The VHH showed good developability and, once fused to protein therapeutics, long half-life and anti-tumor activity in rodents. Conclusions a novel VHH against serum albumin of different species was discovered from native VHH libraries, and it can be easily assembled into bispecific Abs and multispecific Abs to prolong the molecules’ PK profile.
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发现新的抗血清白蛋白VHH作为延长药代动力学的基石
内源性白蛋白的血清半衰期在人体内约为19天,在啮齿动物中约为1.5-2.5天。这种延长的体内半衰期主要是由于新生儿Fc受体(FcRn)介导的内化有效循环。许多小于60 kD的蛋白质疗法具有较短的血清半衰期,可以通过将感兴趣的蛋白质与抗白蛋白抗体融合来延长半衰期。然后融合蛋白利用fcrn介导的再循环。单域抗体(VHH)分子(约15 kD)来源于骆驼重链IgG,由于其小尺寸、高稳定性、低免疫原性、良好的组织穿透性和制造成本效益等特点,在全球基于抗体的治疗领域受到越来越多的关注。方法从具有专利的大型噬菌体展示VHH文库中发现抗人/食虫猴/鼠/犬/猫血清白蛋白VHH铅,将其人源化,并进行亲和成熟。优化后的VHH与双特异性和三特异性抗体融合进行体内PK研究。结果发现了一种抗人血清白蛋白VHH Ab,并能与cyno和小鼠血清白蛋白高亲和力结合,不影响HSA与FcRn的相互作用。在啮齿类动物中,VHH表现出良好的发育性,一旦与蛋白质治疗药物融合,其半衰期长,具有抗肿瘤活性。结论从天然VHH文库中发现了一种新的抗不同种类血清白蛋白的VHH,该VHH可以很容易地组装成双特异性抗体和多特异性抗体,从而延长分子的PK谱。
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来源期刊
Antibody Therapeutics
Antibody Therapeutics Medicine-Immunology and Allergy
CiteScore
8.70
自引率
0.00%
发文量
30
审稿时长
8 weeks
期刊最新文献
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