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tag mass spectrometry cancer cell molecular biology flow cytometry

Microfluidics: Biology’s Liquid Revolution
Laura Tran, PhD | Feb 26, 2024 | 8 min read
Microfluidic systems redefined biology by providing platforms that handle small fluid volumes, catalyzing advancements in cellular and molecular studies.
Flow Cytometry On-a-Chip
Jeffrey M. Perkel | Jun 1, 2015 | 7 min read
Novel microfluidic devices give researchers new ways to count and sort single cells.
Free Flow
Jeffrey M. Perkel | Dec 1, 2015 | 7 min read
A sampling of free software for flow cytometry data analysis
No Mo’ Slow Flow
Jeffrey M. Perkel | Jan 1, 2012 | 7 min read
Tools and tricks for high-throughput flow cytometry
Mass Spectrometry Applications for Proteomics
Jeffrey Perkel | Aug 19, 2001 | 10+ min read
Click to view the PDF file: Proteomic Mass Spectrometry Equipment Courtesy of CiphergenCiphergen's SELDI process, a MALDI variant that includes a surface-based enrichment step Early in the twentieth century, scientists puzzled over the observation that certain elements that were otherwise physically indistinguishable from each other nevertheless exhibited different radioactive decay characteristics. These elements would ultimately come to be known as isotopes, but at the time this concept was
Flow Cytometry: It's Not Just For Immunologists Anymore
James Kling | Jun 22, 1997 | 9 min read
A low-profile child of the '60s, flow cytometry didn't capture the imagination of most researchers until the early 1980s. The decade saw the birth of the AIDS epidemic, and as attention focused on HIV, researchers needed a method to accurately and reproducibly characterize immune cells. Flow cytometry was suddenly thrust into the spotlight. COMPLETE KITS: Bio-Rad’s KINESIS reagent kits for flow cytometry assays A flow cytometer shines one or more lasers on a sample of cells in suspension
Context Is Key: Unlocking Tissue Complexity with Spatial Biology
Context Is Key: Unlocking Tissue Complexity with Spatial Biology
Deanna MacNeil, PhD | Mar 13, 2023 | 4 min read
Scientists combine spatially resolved imaging analyses with cutting edge single cell techniques for greater insight into fundamental and disease relevant pathways.
Flow Cytometry Expanding In Clinical And Research Labs
Rebecca Krumm | Apr 17, 1994 | 9 min read
The following companies offer flow cytometry instruments, equipment, and/or reagents for clinical and laboratory purposes. Please contact the companies directly for more information concerning specific products. AMAC Inc. 160B Larrabee Rd. Westbrook, Maine (207) 854-0426 Fax: (207) 854-0116 Bangs Laboratories Inc. 979 Keystone Way Carmel, Ind. 46032 (317) 844-7176 Fax: (317) 575-8801 Becton Dickinson Immunocytometry Systems 2350
Flow Cytometry Expanding In Clinical And Research Labs
Rebecca Krumm | Apr 17, 1994 | 9 min read
The following companies offer flow cytometry instruments, equipment, and/or reagents for clinical and laboratory purposes. Please contact the companies directly for more information concerning specific products. AMAC Inc. 160B Larrabee Rd. Westbrook, Maine (207) 854-0426 Fax: (207) 854-0116 Bangs Laboratories Inc. 979 Keystone Way Carmel, Ind. 46032 (317) 844-7176 Fax: (317) 575-8801 Becton Dickinson Immunocytometry Systems 2350
Cancer's Other Conduit
The Scientist Staff | Sep 7, 2003 | 7 min read
Courtesy of Elsevier  DEADLY SPREAD: A: an insulinoma (Ins) in a Rip1Tag2 transgenic mouse. LYVE-1 immunohistochemistry demonstrates the presence of lymphatic vessels in connective tissue, but not near islets of Langerhans. B: Rip1Tag2 mice were crossed with mice which overexpress VEGF-C in pancreatic b-cells. C: An insulinoma cell breaks through a lymphatic vessel. D: An intralymphatic tumor cell mass forms. E: In a lymph node, lymphocytes (L) are surrounded by tumor cells (T). F: Immunof

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