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多巴胺 D 和血清素 5-HT 二聚体受体结合单克隆抗体 scFv 作为一种携带靶向大脑特定区域药物的潜在配体。

Dopamine D and Serotonin 5-HT Dimeric Receptor-Binding Monomeric Antibody scFv as a Potential Ligand for Carrying Drugs Targeting Selected Areas of the Brain.

机构信息

Department of Physical Biochemistry, Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University, 30-387 Krakow, Poland.

Department of Pharmacology, Maj Institute of Pharmacology, Polish Academy of Science, 31-343 Krakow, Poland.

出版信息

Biomolecules. 2022 May 26;12(6):749. doi: 10.3390/biom12060749.

Abstract

Targeted therapy uses multiple ways of ensuring that the drug will be delivered to the desired site. One of these ways is an encapsulation of the drug and functionalization of the surface. Among the many molecules that can perform such a task, the present work focused on the antibodies of single-chain variable fragments (scFvs format). We studied scFv, which specifically recognizes the dopamine D and serotonin 5-HT receptor heteromers. The scFv protein was analyzed biochemically and biologically, and the obtained results indicated that the antibody is properly folded and non-toxic and can be described as low-immunogenic. It is not only able to bind to the D-5-HT receptor heteromer, but it also influences the cAMP signaling pathway and-when surfaced on nanogold particles-it can cross the blood-brain barrier in in vitro models. When administered to mice, it decreased locomotor activity, matching the effect induced by clozapine. Thus, we are strongly convinced that scFvD-5-HT, which was a subject of the present investigation, is a promising targeting ligand with the potential for the functionalization of nanocarriers targeting selected areas of the brain.

摘要

靶向治疗采用多种方法确保药物被递送到目标部位。其中一种方法是将药物包裹起来并对其表面进行功能化。在可以执行此类任务的众多分子中,本工作专注于单链可变片段 (scFv 格式) 的抗体。我们研究了特异性识别多巴胺 D 和血清素 5-HT 受体异源二聚体的 scFv。对 scFv 蛋白进行了生化和生物学分析,所得结果表明抗体正确折叠且无毒,可以被描述为低免疫原性。它不仅能够与 D-5-HT 受体异源二聚体结合,还可以影响 cAMP 信号通路,并且——当它位于纳米金颗粒上时——它可以在体外模型中穿过血脑屏障。当给小鼠施用时,它降低了运动活性,与氯氮平诱导的效果相匹配。因此,我们坚信,本研究的 scFvD-5-HT 是一种很有前途的靶向配体,具有对靶向大脑特定区域的纳米载体进行功能化的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5dbf/9221303/04261569da55/biomolecules-12-00749-g001.jpg

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