Single-Exosome-Counting Immunoassays for Cancer Diagnostics.
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Lei Zheng | Shuhuai Yao | Bo Li | S. Yao | Taixue An | Chunchen Liu | Xiaonan Xu | Bo Situ | Weilun Pan | Yu Hu | Taixue An | Lei Zheng | Bo Situ | Yu-ting Hu | Bo Li | Xiaonan Xu | Weilun Pan | Chunchen Liu
[1] Ping Wang,et al. Absolute quantification of lung cancer related microRNA by droplet digital PCR. , 2015, Biosensors & bioelectronics.
[2] Rienk Nieuwland,et al. Bulk immunoassays for analysis of extracellular vesicles , 2017, Platelets.
[3] Tushar Patel,et al. Development of an aptasensor for electrochemical detection of exosomes. , 2016, Methods.
[4] Christian Pilarsky,et al. Glypican-1 identifies cancer exosomes and detects early pancreatic cancer , 2015, Nature.
[5] Alissa M. Weaver,et al. Updating the MISEV minimal requirements for extracellular vesicle studies: building bridges to reproducibility , 2017, Journal of extracellular vesicles.
[6] M. Rusnati,et al. Merging colloidal nanoplasmonics and surface plasmon resonance spectroscopy for enhanced profiling of multiple myeloma-derived exosomes. , 2016, Biosensors & bioelectronics.
[7] Muling Shi,et al. Aptasensor with Expanded Nucleotide Using DNA Nanotetrahedra for Electrochemical Detection of Cancerous Exosomes. , 2017, ACS nano.
[8] Clotilde Théry,et al. Communication by Extracellular Vesicles: Where We Are and Where We Need to Go , 2016, Cell.
[9] Juan Pablo Tosar,et al. Electrochemical Sandwich Immunosensor for Determination of Exosomes Based on Surface Marker-Mediated Signal Amplification. , 2016, Analytical chemistry.
[10] Susan S. Huang,et al. Rapid detection of single bacteria in unprocessed blood using Integrated Comprehensive Droplet Digital Detection , 2014, Nature Communications.
[11] Y. Ba,et al. Exosome-delivered EGFR regulates liver microenvironment to promote gastric cancer liver metastasis , 2017, Nature Communications.
[12] Rustem F Ismagilov,et al. Digital PCR on a SlipChip. , 2010, Lab on a chip.
[13] Johannes Hedman,et al. Accurate Digital Polymerase Chain Reaction Quantification of Challenging Samples Applying Inhibitor-Tolerant DNA Polymerases. , 2017, Analytical chemistry.
[14] John R. Haliburton,et al. Droplet barcoding for massively parallel single-molecule deep sequencing , 2016, Nature Communications.
[15] J. Inal,et al. Exosomes serve as tumour markers for personalized diagnostics owing to their important role in cancer metastasis , 2015, Journal of extracellular vesicles.
[16] Jennifer C. Jones,et al. Labeling Extracellular Vesicles for Nanoscale Flow Cytometry , 2017, Scientific Reports.
[17] David H Wilson,et al. Single molecule enzyme-linked immunosorbent assays: theoretical considerations. , 2012, Journal of immunological methods.
[18] Lei Wang,et al. GPC1 exosome and its regulatory miRNAs are specific markers for the detection and target therapy of colorectal cancer , 2017, Journal of cellular and molecular medicine.
[19] M. Yáñez-Mó,et al. Development of a rapid lateral flow immunoassay test for detection of exosomes previously enriched from cell culture medium and body fluids , 2016, Journal of extracellular vesicles.
[20] A. Hammann,et al. Restoring Anticancer Immune Response by Targeting Tumor-Derived Exosomes With a HSP70 Peptide Aptamer. , 2016, Journal of the National Cancer Institute.
[21] Tza-Huei Wang,et al. Droplet Digital Enzyme-Linked Oligonucleotide Hybridization Assay for Absolute RNA Quantification , 2015, Scientific Reports.
[22] Ji-Ho Park,et al. Exosome Classification by Pattern Analysis of Surface-Enhanced Raman Spectroscopy Data for Lung Cancer Diagnosis. , 2017, Analytical chemistry.
[23] Zhi Zhu,et al. A highly parallel microfluidic droplet method enabling single-molecule counting for digital enzyme detection. , 2014, Biomicrofluidics.
[24] Juergen Popp,et al. A specific spectral signature of serum and plasma-derived extracellular vesicles for cancer screening. , 2017, Nanomedicine : nanotechnology, biology, and medicine.
[25] Long R. Jiao,et al. Glypican-1 is enriched in circulating-exosomes in pancreatic cancer and correlates with tumor burden , 2018, Oncotarget.
[26] David M. Rissin,et al. Single-Molecule enzyme-linked immunosorbent assay detects serum proteins at subfemtomolar concentrations , 2010, Nature Biotechnology.
[27] M. Korc,et al. Label-Free Nanoplasmonic-Based Short Noncoding RNA Sensing at Attomolar Concentrations Allows for Quantitative and Highly Specific Assay of MicroRNA-10b in Biological Fluids and Circulating Exosomes , 2015, ACS nano.
[28] Shana O Kelley,et al. Interrogating Circulating Microsomes and Exosomes Using Metal Nanoparticles. , 2016, Small.
[29] André R Studart,et al. Droplet microfluidics for fabrication of non-spherical particles. , 2010, Macromolecular rapid communications.
[30] Jongmin Park,et al. Integrated Magneto-Electrochemical Sensor for Exosome Analysis. , 2016, ACS nano.
[31] J. Lötvall,et al. A rapid, automated surface protein profiling of single circulating exosomes in human blood , 2016, Scientific Reports.
[32] Yusuke Yoshioka,et al. Ultra-sensitive liquid biopsy of circulating extracellular vesicles using ExoScreen , 2014, Nature Communications.
[33] James M. Wagner,et al. RNA-aptamers-in-droplets (RAPID) high-throughput screening for secretory phenotypes , 2017, Nature Communications.
[34] Zhibin Li,et al. Protein Profiling and Sizing of Extracellular Vesicles from Colorectal Cancer Patients via Flow Cytometry. , 2018, ACS nano.
[35] Taixue An,et al. MiR‐145 detection in urinary extracellular vesicles increase diagnostic efficiency of prostate cancer based on hydrostatic filtration dialysis method , 2017, The Prostate.
[36] Y. Korchev,et al. Single Molecule Trapping and Sensing Using Dual Nanopores Separated by a Zeptoliter Nanobridge , 2017, Nano letters.
[37] Graça Raposo,et al. Extracellular vesicles: Exosomes, microvesicles, and friends , 2013, The Journal of cell biology.
[38] J. Morris,et al. Alzheimer’s Disease: The Challenge of the Second Century , 2011, Science Translational Medicine.
[39] Alison M Stuart,et al. Single-Fluorophore Detection in Femtoliter Droplets Generated by Flow Focusing. , 2015, ACS nano.
[40] Q. Wang,et al. Comparison of isolation methods of exosomes and exosomal RNA from cell culture medium and serum , 2017, International journal of molecular medicine.
[41] Tiancheng Liu,et al. Functional prostate-specific membrane antigen is enriched in exosomes from prostate cancer cells , 2014, International journal of oncology.
[42] Rohan T Ranasinghe,et al. Ultrarapid generation of femtoliter microfluidic droplets for single-molecule-counting immunoassays. , 2013, ACS nano.
[43] Cesar M. Castro,et al. Magnetic nanosensor for detection and profiling of erythrocyte-derived microvesicles. , 2013, ACS nano.
[44] Hakho Lee,et al. Multiplexed Profiling of Single Extracellular Vesicles. , 2018, ACS nano.
[45] Hiroyuki Fujita,et al. Microfabricated arrays of femtoliter chambers allow single molecule enzymology , 2005, Nature Biotechnology.
[46] In‐San Kim,et al. Fibronectin on circulating extracellular vesicles as a liquid biopsy to detect breast cancer , 2016, Oncotarget.
[47] C. Masters,et al. A rigorous method to enrich for exosomes from brain tissue , 2017, Journal of extracellular vesicles.
[48] A. Bosio,et al. A novel multiplex bead-based platform highlights the diversity of extracellular vesicles , 2016, Journal of extracellular vesicles.