제품 이름
Protamine sulfate, meets USP testing specifications
agency
meets USP testing specifications
assay
≥92% (chromatography), 90.0-110.0% dry basis
form
solid
Quality Level
technique(s)
transduction: suitable
shipped in
ambient
storage temp.
2-8°C
General description
Protamine sulfate is a cationic polypeptide having a molecular weight of 5 kDa, isolated from salmon sperm.
Application
Protamine sulfate has been used in the transduction of
- lentiviruses into human embryonic 293T cells
- shRNA into mesenchymal stem cells/marrow stromal cells (MSC)
- lenti Sca1-OCT4 plasmid into human cord blood hematopoietic progenitor CD34+ cells
Biochem/physiol Actions
Alkaline protamine binds to negatively charged heparin. Use of protamine during cardiovascular surgery sometime triggers anaphylactic reactions.
Protamine facilitates direct transfection of microbial cells, and of human cells using cationic liposomes. Protamine effectively neutralizes the anticoagulation effects of heparin.
저장 등급
11 - Combustible Solids
flash_point_f
Not applicable
flash_point_c
Not applicable
ppe
Eyeshields, Gloves, type N95 (US)
Protamine sulfate down-regulates thrombin generation by inhibiting factor V activation
Ainle FN, et al.
Blood, 114(8), 1658-1665 (2009)
Moosung Lee et al.
eLife, 9 (2020-12-18)
The immunological synapse (IS) is a cell-cell junction between a T cell and a professional antigen-presenting cell. Since the IS formation is a critical step for the initiation of an antigen-specific immune response, various live-cell imaging techniques, most of which
V Diness et al.
Thrombosis and haemostasis, 56(3), 318-322 (1986-12-15)
The neutralization of a low molecular weight heparin (LHN-1) and conventional heparin (CH) by protamine sulfate has been studied in vitro and in vivo. In vitro, the APTT activity of CH was completely neutralized in parallel with the anti-Xa activity.
Serious anaphylactic reactions due to protamine sulfate: a systematic literature review
Nybo M and Madsen JS
Basic and Clinical Pharmacology and Toxicology, 103(2), 192-196 (2008)
shRNA-mediated decreases in c-Met levels affect the differentiation potential of human mesenchymal stem cells and reduce their capacity for tissue repair
Rosova I, et al.
Tissue Engineering: Part A, 16(8), 2627-2639 (2010)
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