Molecularly Engineered Nanobodies for Tunable Pharmacokinetics and Drug Delivery

被引:20
|
作者
Glassman, Patrick M. [1 ]
Walsh, Landis R. [1 ]
Villa, Carlos H. [1 ]
Marcos-Contreras, Oscar A. [1 ]
Hood, Elizabeth D. [1 ]
Muzykantov, Vladimir R. [1 ]
Greineder, Colin F. [1 ,2 ,3 ]
机构
[1] Univ Penn, Perelman Sch Med, Dept Syst Pharmacol & Translat Therapeut, Philadelphia, PA 19104 USA
[2] Univ Michigan, Dept Emergency Med, Ann Arbor, MI 48109 USA
[3] Univ Michigan, Dept Pharmacol, Ann Arbor, MI 48109 USA
基金
美国国家卫生研究院;
关键词
DOMAIN ANTIBODY FRAGMENT; ALBUMIN-BINDING; MOUSE MODEL; PROLONGS; RECEPTOR; THERAPY; SYSTEM; MICE;
D O I
10.1021/acs.bioconjchem.0c00003
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
The use of single-domain antibody fragments, or nanobodies, has gained popularity in recent years as an alternative to traditional monoclonal antibody-based approaches. Relatively little is known, however, about the utility of nanobodies as targeting agents for delivery of therapeutic cargoes, particularly to vascular epitopes or in the setting of acute inflammatory conditions. We used a nanobody (VCAMelid) directed against mouse vascular cell adhesion molecule 1 (VCAM-1) and techniques for site-specific radiolabeling and bioconjugation to measure targeting to sites of constitutive and inducible antigen expression and investigate the impact of various characteristics (affinity, valence, circulation time) on nanobody biodistribution and pharmacokinetics. Engineering of VCAMelid for bivalent binding (BiVCAMelid) increased affinity by an order of magnitude and provided 2.8- and 3.6-fold enhancements in splenic and brain targeting in naive mice, with a further 2.6-fold increase in brain uptake in the setting of focal CNS inflammation. In contrast, introduction of an albumin-binding arm (VCAM/ALB8) did not affect binding affinity, but its prolonged circulation time resulted in 3.5-fold and 17.4-fold increases in splenic and brain uptake at 20 min post-dose and remarkable 40-, 25-, and 15-fold enhancements in overall exposure of blood, spleen, and brain, respectively, relative to both VCAMelid and BiVCAMelid. Both therapeutic protein (superoxide dismutase, SOD-1) and nanocarrier (liposome) delivery were enhanced by conjugation to VCAM-1 targeted nanobodies. The bispecific VCAM/ALB8 maintained its superiority over VCAMelid in enhancing both circulation time and organ targeting of SOD1, but its advantages were largely blunted by conjugation to liposomes.
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页码:1144 / 1155
页数:12
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