Literature DB >> 28193011

Optimization of an Anti-poly(ethylene glycol) (anti-PEG) Cell-Based Capture System To Quantify PEG and PEGylated Molecules.

Wen-Wei Lin1, Yuan-Chin Hsieh, Yi-An Cheng, Kuo-Hsiang Chuang2, Chien-Chiao Huang, Chih-Hung Chuang, I-Ju Chen, Kai-Wen Cheng1, Yun-Chi Lu, Ta-Chun Cheng, Yeng-Tseng Wang, Steve R Roffler3, Tian-Lu Cheng1.   

Abstract

Sensitive determination of the pharmacokinetics of PEGylated molecules can accelerate the process of drug development. Here, we combined different anti-PEG Fab expressing 293T cells as capture cells (293T/3.3, 293T/6.3, and 293T/15-2b cells) with four detective anti-PEG antibodies (3.3, 6.3, 7A4, or 15-2b) to optimize an anti-PEG cell-based sandwich ELISA. Then, we quantified free PEG (mPEG2K-NH2 and mPEG5K-NH2) or PEG-conjugated small molecules (mPEG5K-biotin and mPEG5K-NIR797), proteins (PegIntron and Pegasys), and nanoparticles (Liposomal-Doxorubicin and quantum-dots). The combination of 293T/15-2b cells and the 7A4 detection antibody was best sensitivity for free PEG, PEG-like molecules, and PEGylated proteins with detection at ng mL-1 levels. On the other hand, 293T/3.3 cells combined with the 15-2b antibody had the highest sensitivity for quantifying Lipo-Dox at 2 ng mL-1. All three types of anti-PEG cells combined with the 15-2b antibody had high sensitivity for quantum dot quantification down to 7 pM. These results suggest that the combination of 293T/15-2b cells and 7A4 detection antibody is the optimal pair for sensitive quantification of free PEG, PEG-like molecules, and PEGylated proteins, whereas the 293T/3.3 cells combined with 15-2b are more suitable for quantifying PEGylated nanoparticles. The optimized anti-PEG cell-based sandwich ELISA can provide a sensitive, precise, and convenient tool for the quantification of a range of PEGylated molecules.

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Year:  2016        PMID: 28193011     DOI: 10.1021/acs.analchem.6b03614

Source DB:  PubMed          Journal:  Anal Chem        ISSN: 0003-2700            Impact factor:   6.986


  6 in total

Review 1.  Polymer Therapeutics: Biomarkers and New Approaches for Personalized Cancer Treatment.

Authors:  Stuart P Atkinson; Zoraida Andreu; María J Vicent
Journal:  J Pers Med       Date:  2018-01-23

2.  Development of a highly sensitive enzyme-linked immunosorbent assay (ELISA) through use of poly-protein G-expressing cell-based microplates.

Authors:  Yi-Jou Chen; Michael Chen; Yuan-Chin Hsieh; Yu-Cheng Su; Chang-Hung Wang; Chiu-Min Cheng; An-Pei Kao; Kai-Hung Wang; Jing-Jy Cheng; Kuo-Hsiang Chuang
Journal:  Sci Rep       Date:  2018-12-14       Impact factor: 4.379

3.  Enhancement of tumor tropism of mPEGylated nanoparticles by anti-mPEG bispecific antibody for ovarian cancer therapy.

Authors:  Wen-Wei Lin; Yi-An Cheng; Chia-Ching Li; Kai-Wen Ho; Huei-Jen Chen; I-J U Chen; Bo-Cheng Huang; Hui-Ju Liu; Yun-Chi Lu; Chiu-Min Cheng; Ming-Yii Huang; Hung-Wen Lai; Tian-Lu Cheng
Journal:  Sci Rep       Date:  2021-04-07       Impact factor: 4.379

4.  Structural determination of an antibody that specifically recognizes polyethylene glycol with a terminal methoxy group.

Authors:  Minh-Tram T Nguyen; Yu-Chien Shih; Meng-Hsuan Lin; Steve R Roffler; Chiao-Yu Hsiao; Tian-Lu Cheng; Wen-Wei Lin; En-Chi Lin; Yuh-Jyh Jong; Chin-Yuan Chang; Yu-Cheng Su
Journal:  Commun Chem       Date:  2022-08-01

5.  Pre-existing anti-polyethylene glycol antibody reduces the therapeutic efficacy and pharmacokinetics of PEGylated liposomes.

Authors:  Yuan-Chin Hsieh; Hsin-Ell Wang; Wen-Wei Lin; Steve R Roffler; Ta-Chun Cheng; Yu-Cheng Su; Jia-Je Li; Chao-Cheng Chen; Chun-Han Huang; Bing-Mae Chen; Jaw-Yuan Wang; Tian-Lu Cheng; Fang-Ming Chen
Journal:  Theranostics       Date:  2018-05-09       Impact factor: 11.556

6.  Structural basis of polyethylene glycol recognition by antibody.

Authors:  Cheng-Chung Lee; Yu-Cheng Su; Tzu-Ping Ko; Li-Ling Lin; Chih-Ya Yang; Stanley Shi-Chung Chang; Steve R Roffler; Andrew H-J Wang
Journal:  J Biomed Sci       Date:  2020-01-07       Impact factor: 8.410

  6 in total

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