Literature DB >> 35579189

Microfluidic harvesting of breast cancer tumor spheroid-derived extracellular vesicles from immobilized microgels for single-vesicle analysis.

Xilal Y Rima1, Jingjing Zhang1, Luong T H Nguyen1, Aaron Rajasuriyar1, Min Jin Yoon1, Chi-Ling Chiang1, Nicole Walters1, Kwang Joo Kwak2, L James Lee1,2, Eduardo Reátegui1,3.   

Abstract

Investigating cellular and vesicular heterogeneity in breast cancer remains a challenge, which encourages the development of controllable in vitro systems that mimic the tumor microenvironment. Although three-dimensional cell culture better recapitulates the heterogeneity observed in tumor growth and extracellular vesicle (EV) biogenesis, the physiological relevance is often contrasted with the control offered by two-dimensional cell culture. Therefore, to challenge this misconception we developed a novel microfluidic system harboring highly tunable three-dimensional EV microbioreactors (EVμBRs) to model micrometastatic EV release in breast cancer while capitalizing on the convenient, low-volume, and sterile interface provided by microfluidics. The diameter and cellular occupancy of the EVμBRs could be precisely tailored to various configurations, supporting the formation of breast cancer tumor spheroids. To immobilize the EVμBRs within a microchannel and facilitate EV extraction, oxygen inhibition in free-radical polymerization was repurposed to rapidly generate two-layer hydrodynamic traps in situ using a digital-micromirror device (DMD)-based ultraviolet (UV) projection system. Breast cancer tumor spheroid-derived EVs were harvested with as little as 20 μL from the microfluidic system and quantified by single-EV immunofluorescence for CD63 and CD81. Despite the low-volume extraction, differences in biomarker expression and coexpression of the tetraspanins on single EVs were observed. Furthermore, the EVμBRs were capable of recapitulating heterogeneity at a cellular and vesicular degree, indicating the utility and robustness of the microfluidic system to investigate physiologically relevant EVs in breast cancer and other disease models.

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Year:  2022        PMID: 35579189      PMCID: PMC9383696          DOI: 10.1039/d1lc01053k

Source DB:  PubMed          Journal:  Lab Chip        ISSN: 1473-0189            Impact factor:   7.517


  94 in total

1.  High-throughput culture and embedment of spheroid array using droplet contact-based spheroid transfer.

Authors:  Hwisoo Kim; Chang Hyun Cho; Je-Kyun Park
Journal:  Biomicrofluidics       Date:  2018-07-18       Impact factor: 2.800

2.  A versatile microfluidic device for high throughput production of microparticles and cell microencapsulation.

Authors:  Samin Akbari; Tohid Pirbodaghi; Roger D Kamm; Paula T Hammond
Journal:  Lab Chip       Date:  2017-06-13       Impact factor: 6.799

3.  Nanoparticle dispersity in toxicology.

Authors:  Mohammed Baalousha; Jamie R Lead
Journal:  Nat Nanotechnol       Date:  2013-05       Impact factor: 39.213

4.  Tailoring Common Hydrogels into 3D Cell Culture Templates.

Authors:  Aurélien Pasturel; Pierre-Olivier Strale; Vincent Studer
Journal:  Adv Healthc Mater       Date:  2020-08-02       Impact factor: 9.933

Review 5.  Single-cell patterning technology for biological applications.

Authors:  Zihui Wang; Baihe Lang; Yingmin Qu; Li Li; Zhengxun Song; Zuobin Wang
Journal:  Biomicrofluidics       Date:  2019-11-11       Impact factor: 2.800

6.  Surface engineering within a microchannel for hydrodynamic and self-assembled cell patterning.

Authors:  Xilal Y Rima; Nicole Walters; Luong T H Nguyen; Eduardo Reátegui
Journal:  Biomicrofluidics       Date:  2020-01-02       Impact factor: 2.800

7.  Tumour exosomal CEMIP protein promotes cancer cell colonization in brain metastasis.

Authors:  Gonçalo Rodrigues; Ayuko Hoshino; Candia M Kenific; Irina R Matei; Loïc Steiner; Daniela Freitas; Han Sang Kim; Peter R Oxley; Ilana Scandariato; Irene Casanova-Salas; Jinxiang Dai; Chaitanya R Badwe; Brunilde Gril; Milica Tešić Mark; Brian D Dill; Henrik Molina; Haiying Zhang; Alberto Benito-Martin; Linda Bojmar; Yonathan Ararso; Katharine Offer; Quincey LaPlant; Weston Buehring; Huajuan Wang; Xinran Jiang; Tyler M Lu; Yuan Liu; Joshua K Sabari; Sandra J Shin; Navneet Narula; Paula S Ginter; Vinagolu K Rajasekhar; John H Healey; Etienne Meylan; Bruno Costa-Silva; Shizhen Emily Wang; Shahin Rafii; Nasser Khaled Altorki; Charles M Rudin; David R Jones; Patricia S Steeg; Héctor Peinado; Cyrus M Ghajar; Jacqueline Bromberg; Maria de Sousa; David Pisapia; David Lyden
Journal:  Nat Cell Biol       Date:  2019-11-04       Impact factor: 28.824

8.  Investigating Tumor Heterogeneity in Mouse Models.

Authors:  Tuomas Tammela; Julien Sage
Journal:  Annu Rev Cancer Biol       Date:  2019-11-06

9.  Mutational heterogeneity in cancer and the search for new cancer-associated genes.

Authors:  Michael S Lawrence; Petar Stojanov; Paz Polak; Gregory V Kryukov; Kristian Cibulskis; Andrey Sivachenko; Scott L Carter; Chip Stewart; Craig H Mermel; Steven A Roberts; Adam Kiezun; Peter S Hammerman; Aaron McKenna; Yotam Drier; Lihua Zou; Alex H Ramos; Trevor J Pugh; Nicolas Stransky; Elena Helman; Jaegil Kim; Carrie Sougnez; Lauren Ambrogio; Elizabeth Nickerson; Erica Shefler; Maria L Cortés; Daniel Auclair; Gordon Saksena; Douglas Voet; Michael Noble; Daniel DiCara; Pei Lin; Lee Lichtenstein; David I Heiman; Timothy Fennell; Marcin Imielinski; Bryan Hernandez; Eran Hodis; Sylvan Baca; Austin M Dulak; Jens Lohr; Dan-Avi Landau; Catherine J Wu; Jorge Melendez-Zajgla; Alfredo Hidalgo-Miranda; Amnon Koren; Steven A McCarroll; Jaume Mora; Brian Crompton; Robert Onofrio; Melissa Parkin; Wendy Winckler; Kristin Ardlie; Stacey B Gabriel; Charles W M Roberts; Jaclyn A Biegel; Kimberly Stegmaier; Adam J Bass; Levi A Garraway; Matthew Meyerson; Todd R Golub; Dmitry A Gordenin; Shamil Sunyaev; Eric S Lander; Gad Getz
Journal:  Nature       Date:  2013-06-16       Impact factor: 49.962

10.  3D cell culture stimulates the secretion of in vivo like extracellular vesicles.

Authors:  Sirisha Thippabhotla; Cuncong Zhong; Mei He
Journal:  Sci Rep       Date:  2019-09-10       Impact factor: 4.379

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