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P2194

Sigma-Aldrich

Phosphate Buffered Saline

powder, pH 6.9-7.9 ( in water, 1 pouch dissolved in 100 ml), with 3% Non-Fat Milk

Synonym(s):

NFDM blocking buffer, PBS with 3% NFDM, Phosphate Buffered Saline with 3% Non-Fat Dry Milk

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About This Item

UNSPSC Code:
41105319
eCl@ss:
32129211
NACRES:
NA.25

Product Name

Phosphate Buffered Saline with 3% Non-Fat Milk, pH 7.4,

form

powder

pH

6.9-7.9 ( in water, 1 pouch dissolved in 100 ml)

solubility

water: soluble

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Application

Phosphate Buffered Saline with 3% Non-Fat Milk, pH 7.4 has been used as a resuspension buffer during umbilical cord perivascular cells separation.

Packaging

Foil pouches

Reconstitution

Each pouch dissolved in 100 mL deionized water will yield 0.05 M phosphate buffered saline, pH 7.4 at 25 °C, containing 3% (w/v) nonfat milk.

Storage Class Code

11 - Combustible Solids

WGK

WGK 1

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable


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Sensitivity of Vegetative Pathogens to High Hydrostatic Pressure Treatment in Phosphate-Buffered Saline and Foods
Patterson MF, et al.
Journal of Food Protection (1995)
Rodrigo Viana Sepúlveda et al.
Research in veterinary science, 129, 193-202 (2020-02-23)
There are numerous sources of multipotent mesenchymal stromal cells (MSC) with therapeutic potential, and bone marrow is the main one. However, pain, lack of donors and comorbidities associated with harvesting stimulate the search for new sources of MSCs. The aim
Beatriz del Rio et al.
Clinical and vaccine immunology : CVI, 15(9), 1429-1435 (2008-07-18)
Mucosal immunization is advantageous over other routes of antigen delivery because it can induce both mucosal and systemic immune responses. Our goal was to develop a mucosal delivery vehicle based on bacteria generally regarded as safe, such as Lactobacillus spp.
Campylobacter jejuni in penguins, Antarctica.
Petra Griekspoor et al.
Emerging infectious diseases, 15(5), 847-848 (2009-05-01)
Arkadiusz Gertych et al.
Cytometry. Part A : the journal of the International Society for Analytical Cytology, 75(7), 569-583 (2009-05-22)
Today's advanced microscopic imaging applies to the preclinical stages of drug discovery that employ high-throughput and high-content three-dimensional (3D) analysis of cells to more efficiently screen candidate compounds. Drug efficacy can be assessed by measuring response homogeneity to treatment within

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