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12449C

Sigma-Aldrich

Horse Serum

USA origin, Donor herd, suitable for cell culture, suitable for hybridoma

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Synonym(s):
HS, equine sera, equine serum, horse sera, sera, serum
MDL number:

biological source

horse serum

Quality Level

sterility

sterile-filtered

composition

hemoglobin, ≤20 mg/dL

origin

USA origin

technique(s)

cell culture | hybridoma: suitable
cell culture | mammalian: suitable

impurities

≤10 EU/mL endotoxin

shipped in

dry ice

storage temp.

−20°C

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1 of 4

This Item
H1138H1270S2263
vibrant-m

12449C

Horse Serum

vibrant-m

H1138

Horse Serum

vibrant-m

H1270

Horse Serum

vibrant-m

S2263

Sheep Serum

technique(s)

cell culture | hybridoma: suitable, cell culture | mammalian: suitable

technique(s)

cell culture | mammalian: suitable

technique(s)

cell culture | hybridoma: suitable, cell culture | mammalian: suitable

technique(s)

cell culture | mammalian: suitable

sterility

sterile-filtered

sterility

sterile-filtered

sterility

sterile-filtered

sterility

sterile-filtered

origin

USA origin

origin

USA origin

origin

USA origin

origin

USA origin

Quality Level

500

Quality Level

500

Quality Level

500

Quality Level

500

shipped in

dry ice

shipped in

dry ice

shipped in

dry ice

shipped in

dry ice

Application

Donor Herd Serum is suitable for use in diagnostic assays, as a supplement in mycoplasma growth and assay media and for culturing hematopoietic stem and neuronal cells.

Other Notes

Donor Horse Serum is collected from controlled donor herds located in the USA. Horse serum contains high protein and low trace metals compared to Fetal Bovine Serum.

Preparation Note

Collected from a controlled herd.

Storage Class

10 - Combustible liquids

wgk_germany

WGK 3

flash_point_f

Not applicable

flash_point_c

Not applicable


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Toxicologic pathology, 37(2), 170-174 (2009-04-01)
In vitro techniques for the culture of hemopoietic stem cells and committed hemopoietic progenitor cells in rat bone marrow have not been adequately described in the literature. In the present investigations, and using commercially available hemopoietic cytokines and growth factors
Z C Ye et al.
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Juulia H Lautaoja et al.
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Alongside in vivo models, a simpler and more mechanistic approach is required to study the effects of myostatin on skeletal muscle because myostatin is an important negative regulator of muscle size. In this study, myostatin was administered to murine (C2C12)
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