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近红外响应高灵敏度纳米探针用于肝类器官和小鼠肝脏中白蛋白的稳态可视化检测。

Near-Infrared-Responded High Sensitivity Nanoprobe for Steady and Visualized Detection of Albumin in Hepatic Organoids and Mouse Liver.

机构信息

Shandong Key Laboratory of Biophysics, Institute of Biophysics, College of Physics and Electronic Information, Dezhou University, Dezhou, 253023, China.

State Key Laboratory of Genetic Engineering, School of Life Sciences, Zhongshan Hospital, Fudan University, Shanghai, 200438, China.

出版信息

Adv Sci (Weinh). 2022 Sep;9(26):e2202505. doi: 10.1002/advs.202202505. Epub 2022 Jul 19.

Abstract

Exploring the advanced techniques for protein detection facilitates cell fate investigation. However, it remains challenging to quantify and visualize the protein with one single probe. Here, a luminescent approach to detect hepatic cell fate marker albumin in vitro and living cell labeling with upconversion nanoparticles (UCNPs), which are conjugated with antibody (Ab) and rose bengal hexanoic acid (RBHA) is reported. To guarantee the detection quality and accuracy, an "OFF-ON" strategy is adopted: in the presence of albumin, the luminescence of nanoparticles remains suppressed owing to energy transfer to the quencher. Upon albumin binding to the antibody, the luminescence is recovered under near-infrared light. In various bio-samples, the UCNPs-Ab-RBHA (UCAR) nanoprobe can sense albumin with a broad detection range (5-315 ng mL ). When applied to liver ductal organoid culture medium, the UCAR can monitor hepatocyte differentiation in real time by sensing the secreted albumin. Further, UCAR enables live imaging of cellular albumin in cells, organoids, and tissues. In a CCl -induced liver injury model, UCAR detects reduced albumin in liver tissue and serum. Thus, a biocompatible nanoprobe for both quantification and imaging of protein in complex biological environment with superior stability and high sensitivity is provided.

摘要

探索蛋白质的先进检测技术有助于细胞命运的研究。然而,用单一探针定量和可视化蛋白质仍然具有挑战性。本研究报道了一种基于上转换纳米粒子(UCNPs)的体外检测肝细胞命运标志物白蛋白的荧光方法和活细胞标记方法,该方法将抗体(Ab)和玫瑰红十六酸(RBHA)与 UCNPs 偶联。为了保证检测质量和准确性,采用了“关-开”策略:在白蛋白存在的情况下,由于能量转移到猝灭剂,纳米粒子的发光仍然受到抑制。当白蛋白与抗体结合时,在近红外光下发光恢复。在各种生物样本中,UCNPs-Ab-RBHA(UCAR)探针可以在 5-315ng mL-1 的较宽检测范围内检测白蛋白。当应用于胆管类器官培养基时,UCAR 可以通过检测分泌的白蛋白实时监测肝细胞的分化。此外,UCAR 可以对细胞、类器官和组织中的细胞内白蛋白进行活细胞成像。在 CCl4 诱导的肝损伤模型中,UCAR 检测到肝组织和血清中白蛋白的减少。因此,提供了一种具有优异稳定性和高灵敏度的生物相容性纳米探针,用于复杂生物环境中蛋白质的定量和成像。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b15/9475548/1d55f68801c4/ADVS-9-2202505-g006.jpg

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