Literature DB >> 28582715

In vivo stem cell tracking with imageable nanoparticles that bind bioorthogonal chemical receptors on the stem cell surface.

Sangmin Lee1, Hwa In Yoon2, Jin Hee Na3, Sangmin Jeon4, Seungho Lim5, Heebeom Koo6, Sang-Soo Han7, Sun-Woong Kang7, Soon-Jung Park8, Sung-Hwan Moon8, Jae Hyung Park9, Yong Woo Cho10, Byung-Soo Kim11, Sang Kyoon Kim12, Taekwan Lee12, Dongkyu Kim12, Seulki Lee13, Martin G Pomper13, Ick Chan Kwon14, Kwangmeyung Kim15.   

Abstract

It is urgently necessary to develop reliable non-invasive stem cell imaging technology for tracking the in vivo fate of transplanted stem cells in living subjects. Herein, we developed a simple and well controlled stem cell imaging method through a combination of metabolic glycoengineering and bioorthogonal copper-free click chemistry. Firstly, the exogenous chemical receptors containing azide (-N3) groups were generated on the surfaces of stem cells through metabolic glycoengineering using metabolic precursor, tetra-acetylated N-azidoacetyl-d-mannosamine(Ac4ManNAz). Next, bicyclo[6.1.0]nonyne-modified glycol chitosan nanoparticles (BCN-CNPs) were prepared as imageable nanoparticles to deliver different imaging agents. Cy5.5, iron oxide nanoparticles and gold nanoparticles were conjugated or encapsulated to BCN-CNPs for optical, MR and CT imaging, respectively. These imageable nanoparticles bound chemical receptors on the Ac4ManNAz-treated stem cell surface specifically via bioorthogonal copper-free click chemistry. Then they were rapidly taken up by the cell membrane turn-over mechanism resulting in higher endocytic capacity compared non-specific uptake of nanoparticles. During in vivo animal test, BCN-CNP-Cy5.5-labeled stem cells could be continuously tracked by non-invasive optical imaging over 15 days. Furthermore, BCN-CNP-IRON- and BCN-CNP-GOLD-labeled stem cells could be efficiently visualized using in vivo MR and CT imaging demonstrating utility of our stem cell labeling method using chemical receptors. These results conclude that our method based on metabolic glycoengineering and bioorthogonal copper-free click chemistry can stably label stem cells with diverse imageable nanoparticles representing great potential as new stem cell imaging technology.
Copyright © 2017 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Bioorthogonal copper-free click chemistry; Chemical receptors; Metabolic glycoengineering; Stem cell imaging; Unnatural sialic acids

Mesh:

Substances:

Year:  2017        PMID: 28582715     DOI: 10.1016/j.biomaterials.2017.05.050

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  15 in total

Review 1.  "Clicking" Gene Therapeutics: A Successful Union of Chemistry and Biomedicine for New Solutions.

Authors:  Kira Astakhova; Roslyn Ray; Maria Taskova; Jesper Uhd; Annika Carstens; Kevin Morris
Journal:  Mol Pharm       Date:  2018-02-26       Impact factor: 4.939

2.  Exploiting metabolic glycoengineering to advance healthcare.

Authors:  Christian Agatemor; Matthew J Buettner; Ryan Ariss; Keerthana Muthiah; Christopher T Saeui; Kevin J Yarema
Journal:  Nat Rev Chem       Date:  2019-09-06       Impact factor: 34.035

Review 3.  Tracking of Oral and Craniofacial Stem Cells in Tissue Development, Regeneration, and Diseases.

Authors:  Arvind Hariharan; Janaki Iyer; Athena Wang; Simon D Tran
Journal:  Curr Osteoporos Rep       Date:  2021-11-06       Impact factor: 5.096

4.  100th Anniversary of Macromolecular Science Viewpoint: Re-Engineering Cellular Interfaces with Synthetic Macromolecules Using Metabolic Glycan Labeling.

Authors:  Ruben M F Tomás; Matthew I Gibson
Journal:  ACS Macro Lett       Date:  2020-06-25       Impact factor: 6.903

5.  Design of experiment (DoE)-driven in vitro and in vivo uptake studies of exosomes for pancreatic cancer delivery enabled by copper-free click chemistry-based labelling.

Authors:  Lizhou Xu; Farid N Faruqu; Revadee Liam-Or; Omar Abu Abed; Danyang Li; Kerrie Venner; Rachel J Errington; Huw Summers; Julie Tzu-Wen Wang; Khuloud T Al-Jamal
Journal:  J Extracell Vesicles       Date:  2020-06-19

6.  Caspase-3/-7-Specific Metabolic Precursor for Bioorthogonal Tracking of Tumor Apoptosis.

Authors:  Man Kyu Shim; Hong Yeol Yoon; Sangmin Lee; Mun Kyeong Jo; Jooho Park; Jong-Ho Kim; Seo Young Jeong; Ick Chan Kwon; Kwangmeyung Kim
Journal:  Sci Rep       Date:  2017-11-30       Impact factor: 4.379

7.  Safety and Optimization of Metabolic Labeling of Endothelial Progenitor Cells for Tracking.

Authors:  Sang-Soo Han; Hye-Eun Shim; Soon-Jung Park; Byoung-Chul Kim; Dong-Eun Lee; Hyung-Min Chung; Sung-Hwan Moon; Sun-Woong Kang
Journal:  Sci Rep       Date:  2018-09-04       Impact factor: 4.379

8.  Efficient Route to Label Mesenchymal Stromal Cell-Derived Extracellular Vesicles.

Authors:  Diego Alberti; Cristina Grange; Stefano Porta; Silvio Aime; Lorenzo Tei; Simonetta Geninatti Crich
Journal:  ACS Omega       Date:  2018-07-19

9.  Bio-orthogonal click-targeting nanocomposites for chemo-photothermal synergistic therapy in breast cancer.

Authors:  Jianan Qiao; Fengchun Tian; Yudi Deng; Yunkai Shang; Shijie Chen; Enhao Chang; Jing Yao
Journal:  Theranostics       Date:  2020-04-06       Impact factor: 11.556

10.  Silica-Coated Magnetic Nanoparticles Decrease Human Bone Marrow-Derived Mesenchymal Stem Cell Migratory Activity by Reducing Membrane Fluidity and Impairing Focal Adhesion.

Authors:  Tae Hwan Shin; Da Yeon Lee; Abdurazak Aman Ketebo; Seungah Lee; Balachandran Manavalan; Shaherin Basith; Chanyoung Ahn; Seong Ho Kang; Sungsu Park; Gwang Lee
Journal:  Nanomaterials (Basel)       Date:  2019-10-17       Impact factor: 5.076

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