Life Science Supplies

Biological supplies and consumables are an essential part of any life science researcher’s toolbox. These supplies, which include nucleic acids, proteins, enzymes and other organic molecules, are used in applications ranging from medical research, drug discovery and diagnostics to agriculture, animal care and forensics. They form the basis of life science and biotechnology experiments that can be used for identification, purification, gene silencing and gene editing. The supplies also serve as standards and reagents in a variety of methods, including western blot, flow cytometry, immunohistochemistry, HPLC, mass spectrometry and more.

Life science supplies may come as standalone items or as part of a kit. The ability to synthesize, engineer and clone these biological and genetic materials has allowed for a wide range of offerings tailored to researchers’ specific needs. Harnessing the natural building blocks of life enables scientists to better understand the inner workings of organisms and work toward the discovery of new drug targets, diagnostic tools, ecological solutions and more.

CompanyMedChemExpressMedChemExpressMedChemExpressMedChemExpressMedChemExpress
ItemFRETS-VWF73DAMGO TFAHemocyaninInsulin (swine)pTH (39-84) (human)
Catalog NumberHY-P5354HY-P0210BHY-P2853HY-P3479HY-P10078
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Quantity1 mg, 5 mg, 10 mg10 mM * 1 mL, 5 mg, 10 mg, 25 mg5 mg, 10 mg10 mg, 50 mg, 100 mg1 mg, 5 mg, 10 mg
DescriptionFRETS-VWF73, a 73-amino-acid peptide, is a fluorogenic substrate for ADAMTS13 assay (Ex=340 nm; Em=450 nm)[1]DAMGO TFA is a µ-opioid receptor (µ-OPR ) selective agonist with a Kd of 3.46 nM for native µ-OPR[1]Hemocyanin is a large copper-containing respiratory protein. Hemocyanin is an important non-specific innate immune defense molecule with phenoloxidase, antiviral, antibacterial, hemolytic, and antitumor activities[1]Insulin (swine) is a porcine-derived insulin used in diabetes research[1]pTH (39-84) (human) is a parathyroid hormone (PTH) C-terminal fragment. pTH (39-84) (human) stimulates osteoclast formation[1]
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