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Merck

L5283

Leukemia Inhibitory Factor human

≥95% (SDS-PAGE), recombinant, expressed in E. coli, buffered aqueous solution, suitable for cell culture

Sinónimos:

Human LIF, Human Leukemia Inhibitory Factor, hLIF, LIF, rLIF

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UNSPSC Code:
12352202
NACRES:
NA.77
MDL number:
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Nombre del producto

Leukemia Inhibitory Factor human, LIF, recombinant, expressed in E. coli, 10 μg/ml, buffered aqueous solution (pH 7.4), suitable for cell culture

recombinant

expressed in E. coli

assay

≥95% (SDS-PAGE)

form

buffered aqueous solution (pH 7.4)

potency

0.1-1.5 ng/mL ED50/EC50

quality

endotoxin tested

technique(s)

cell culture | mammalian: suitable

storage temp.

2-8°C

Quality Level

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Analysis Note

The proliferative activity of human LIF is measured in culture using the human leukemic cell line, TF-1.

Biochem/physiol Actions

Leukemia Inhibitory Factor (LIF) is a pleiotropic glycoprotein originally described to inhibit the proliferation of the murine myeloid leukemic cell line M1, while inducing differentiation into macrophages. Other activities were later identified to LIF, which is known by a variety of synonyms, including DIF, D-factor, DIA, DRF, CNDF, HILDA, HSF-III, and MLPLI. Human LIF exerts its actions through a receptor comprising a 190 kDa LIF-binding α-chain (130 kDa, mouse) and a 130 kDa signal-transducing β-chain (gp130), which is shared with CNTF, OSM, L-6 and IL-11. As such, it is a member of the gp130 family of the cytokine receptor superfamily. LIF receptors have been identified on several cells, including monocytes, liver, placenta and embryonic stem cells. Natural LIF is heavily glycosylated, showing an apparent molecular weight of 32 kDa to 62 kDa, depending on the source, but absence of glycosylation appears not to affect its biological activity. A single gene encodes LIF, which is secreted as a single chain glycoprotein containing 180 amino acids for human or mouse with a conserved disulfide bond. Human and mouse LIF share 78% sequence homology. Human LIF can activate mouse cells, but mouse LIF cannot activate human cells.
Leukemia Inhibitory Factor (LIF) is a pleiotropic glycoprotein that inhibits the proliferation of the murine myeloid leukemic cell line M1, while inducing differentiation into macrophages. Human and mouse LIF share 78% sequence homology. Human LIF can activate mouse cells, but mouse LIF cannot activate human cells.

Physical form

Solution, 0.2 μm filtered, in phosphate buffered saline containing 0.02% TWEEN® 20.

Legal Information

TWEEN is a registered trademark of Croda International PLC

Clase de almacenamiento

11 - Combustible Solids

wgk

WGK 3

flash_point_f

Not applicable

flash_point_c

Not applicable

ppe

Eyeshields, Gloves, type N95 (US)


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A Rodríguez et al.
Theriogenology, 67(5), 1092-1095 (2007-01-11)
Leukemia inhibitory factor (LIF) is a cytokine that shows conflicting effects on in vitro produced (IVP) bovine embryos. Bovine LIF (bLIF) has been cloned and used in culture, but there is no commercially available bLIF. Thus, researchers use human LIF
Arno Germond et al.
Analytical chemistry, 92(22), 14915-14923 (2020-10-29)
Monitoring cell-state transition in pluripotent cells is invaluable for application and basic research. In this study, we demonstrate the pertinence of noninvasive, label-free Raman spectroscopy to monitor and characterize the cell-state transition of mouse stem cells undergoing reprogramming. Using an
Pluripotent stem cell-derived models of neurological diseases reveal early transcriptional heterogeneity.
Sorek, et al.
Genome Biology, 22, 73-73 (2021)
Benjamin J Hale et al.
Reproductive biology and endocrinology : RB&E, 19(1), 107-107 (2021-07-11)
Heat stress (HS) occurs when body heat accumulation exceeds heat dissipation and is associated with swine seasonal infertility. HS contributes to compromised oocyte integrity and reduced embryo development. Autophagy is a potential mechanism for the oocyte to mitigate the detrimental
Jin Gyoung Jung et al.
Biology of reproduction, 76(1), 173-182 (2006-10-13)
We recently succeeded in inducing germline transmission by transferring chicken testicular cells into heterologous testes. This study was designed subsequently to identify pluripotent cells in the testicular cells, which would induce the germline transmission. Testicular cells retrieved from juvenile (4-wk-old)

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