Literature DB >> 30468237

Integrated nanoscale deterministic lateral displacement arrays for separation of extracellular vesicles from clinically-relevant volumes of biological samples.

Joshua T Smith1, Benjamin H Wunsch, Navneet Dogra, Mehmet E Ahsen, Kayla Lee, Kamlesh K Yadav, Rachel Weil, Michael A Pereira, Jyotica V Patel, Elizabeth A Duch, John M Papalia, Michael F Lofaro, Mantu Gupta, Ashutosh K Tewari, Carlos Cordon-Cardo, Gustavo Stolovitzky, Stacey M Gifford.   

Abstract

Extracellular vesicles (EVs) offer many opportunities in early-stage disease diagnosis, treatment monitoring, and precision therapy owing to their high abundance in bodily fluids, accessibility from liquid biopsy, and presence of nucleic acid and protein cargo from their cell of origin. Despite their growing promise, isolation of EVs for analysis remains a labor-intensive and time-consuming challenge given their nanoscale dimensions (30-200 nm) and low buoyant density. Here, we report a simple, size-based EV separation technology that integrates 1024 nanoscale deterministic lateral displacement (nanoDLD) arrays on a single chip capable of parallel processing sample fluids at rates of up to 900 μL h-1. Benchmarking the nanoDLD chip against commonly used EV isolation technologies, including ultracentrifugation (UC), UC plus density gradient, qEV size-exclusion chromatography (Izon Science), and the exoEasy Maxi Kit (QIAGEN), we demonstrate a superior yield of ∼50% for both serum and urine samples, representing the ability to use smaller input volumes to achieve the same number of isolated EVs, and a concentration factor enhancement of up to ∼3× for both sample types, adjustable to ∼60× for urine through judicious design. Further, RNA sequencing was carried out on nanoDLD- and UC-isolated EVs from prostate cancer (PCa) patient serum samples, resulting in a higher gene expression correlation between replicates for nanoDLD-isolated EVs with enriched miRNA, decreased rRNA, and the ability to detect previously reported RNA indicators of aggressive PCa. Taken together, these results suggest nanoDLD as a promising alternative technology for fast, reproducible, and automatable EV-isolation.

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Year:  2018        PMID: 30468237     DOI: 10.1039/c8lc01017j

Source DB:  PubMed          Journal:  Lab Chip        ISSN: 1473-0189            Impact factor:   6.799


  31 in total

Review 1.  Liquid biopsy technologies based on membrane microfluidics: High-yield purification and selective quantification of biomarkers in nanocarriers.

Authors:  Ceming Wang; Satyajyoti Senapati; Hsueh-Chia Chang
Journal:  Electrophoresis       Date:  2020-04-09       Impact factor: 3.535

2.  Combining DC and AC electric fields with deterministic lateral displacement for micro- and nano-particle separation.

Authors:  Victor Calero; Pablo Garcia-Sanchez; Antonio Ramos; Hywel Morgan
Journal:  Biomicrofluidics       Date:  2019-10-23       Impact factor: 2.800

3.  exRNA Atlas Analysis Reveals Distinct Extracellular RNA Cargo Types and Their Carriers Present across Human Biofluids.

Authors:  Oscar D Murillo; William Thistlethwaite; Joel Rozowsky; Sai Lakshmi Subramanian; Rocco Lucero; Neethu Shah; Andrew R Jackson; Srimeenakshi Srinivasan; Allen Chung; Clara D Laurent; Robert R Kitchen; Timur Galeev; Jonathan Warrell; James A Diao; Joshua A Welsh; Kristina Hanspers; Anders Riutta; Sebastian Burgstaller-Muehlbacher; Ravi V Shah; Ashish Yeri; Lisa M Jenkins; Mehmet E Ahsen; Carlos Cordon-Cardo; Navneet Dogra; Stacey M Gifford; Joshua T Smith; Gustavo Stolovitzky; Ashutosh K Tewari; Benjamin H Wunsch; Kamlesh K Yadav; Kirsty M Danielson; Justyna Filant; Courtney Moeller; Parham Nejad; Anu Paul; Bridget Simonson; David K Wong; Xuan Zhang; Leonora Balaj; Roopali Gandhi; Anil K Sood; Roger P Alexander; Liang Wang; Chunlei Wu; David T W Wong; David J Galas; Kendall Van Keuren-Jensen; Tushar Patel; Jennifer C Jones; Saumya Das; Kei-Hoi Cheung; Alexander R Pico; Andrew I Su; Robert L Raffai; Louise C Laurent; Matthew E Roth; Mark B Gerstein; Aleksandar Milosavljevic
Journal:  Cell       Date:  2019-04-04       Impact factor: 41.582

Review 4.  A review on comparative studies addressing exosome isolation methods from body fluids.

Authors:  Tânia Soares Martins; Margarida Vaz; Ana Gabriela Henriques
Journal:  Anal Bioanal Chem       Date:  2022-07-15       Impact factor: 4.478

5.  Cartilage Repair by Mesenchymal Stem Cell-Derived Exosomes: Preclinical and Clinical Trial Update and Perspectives.

Authors:  Shahrbano Jahangir; Mojtaba Khozaei Ravari; Leila Taghiyar; Mohammad Amin Shamekhi; Mohamadreza Baghaban Eslaminejad
Journal:  Adv Exp Med Biol       Date:  2021       Impact factor: 2.622

6.  Microfluidic device for on-chip isolation and detection of circulating exosomes in blood of breast cancer patients.

Authors:  Wenwen Chen; Hongjing Li; Wentao Su; Jianhua Qin
Journal:  Biomicrofluidics       Date:  2019-10-31       Impact factor: 2.800

7.  Towards Microfluidic-Based Exosome Isolation and Detection for Tumor Therapy.

Authors:  Jie Wang; Peng Ma; Daniel H Kim; Bi-Feng Liu; Utkan Demirci
Journal:  Nano Today       Date:  2021-01-13       Impact factor: 20.722

Review 8.  Small extracellular vesicles in cancer.

Authors:  Komal Abhange; Amy Makler; Yi Wen; Natasha Ramnauth; Wenjun Mao; Waseem Asghar; Yuan Wan
Journal:  Bioact Mater       Date:  2021-04-07

9.  Urinary extracellular vesicles: A position paper by the Urine Task Force of the International Society for Extracellular Vesicles.

Authors:  Uta Erdbrügger; Charles J Blijdorp; Irene V Bijnsdorp; Francesc E Borràs; Dylan Burger; Benedetta Bussolati; James Brian Byrd; Aled Clayton; James W Dear; Juan M Falcón-Pérez; Cristina Grange; Andrew F Hill; Harry Holthöfer; Ewout J Hoorn; Guido Jenster; Connie R Jimenez; Kerstin Junker; John Klein; Mark A Knepper; Erik H Koritzinsky; James M Luther; Metka Lenassi; Janne Leivo; Inge Mertens; Luca Musante; Eline Oeyen; Maija Puhka; Martin E van Royen; Catherine Sánchez; Carolina Soekmadji; Visith Thongboonkerd; Volkert van Steijn; Gerald Verhaegh; Jason P Webber; Kenneth Witwer; Peter S T Yuen; Lei Zheng; Alicia Llorente; Elena S Martens-Uzunova
Journal:  J Extracell Vesicles       Date:  2021-05-21

Review 10.  Extracellular Vesicles as a Therapeutic Tool for Kidney Disease: Current Advances and Perspectives.

Authors:  Raphael Rodrigues Corrêa; Estela Mancheño Juncosa; Rosalinde Masereeuw; Rafael Soares Lindoso
Journal:  Int J Mol Sci       Date:  2021-05-28       Impact factor: 5.923

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