DPBS, no calcium, no magnesium
DPBS, no calcium, no magnesium
Gibco™

DPBS, no calcium, no magnesium

Dulbecco's phosphate-buffered saline (DPBS) is a balanced salt solution used for a variety of cell culture applications, such as washingRead more
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Catalog NumberQuantityPackaging Type
14190144500 mLBottle
14190086
also known as 14190-086
100 mLBottle
14190185
also known as 14190-185
20 x 100 mLBottle
14190094
also known as 14190-094
500 mLBottle
1419025010 x 500 mLBottle
14190169
also known as 14190-169
10 x 500 mLBottle
141901361000 mLBottle
141903425 LBag
1419035910 LBag
14190240
also known as 14190-240
10 LBag
1419036720 LBag
Catalog number 14190144
Price (EUR)
30,65
キャンペーン価格
32,96
Save 2,31 (7%)
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Quantity:
500 mL
Packaging Type:
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Price (EUR)
30,65
キャンペーン価格
32,96
Save 2,31 (7%)
Each
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Ask our AI about this Product

Dulbecco's phosphate-buffered saline (DPBS) is a balanced salt solution used for a variety of cell culture applications, such as washing cells before dissociation, transporting cells or tissue samples, diluting cells for counting, and preparing reagents. Formulations without calcium and magnesium are required for rinsing chelators from the culture before cell dissociation.

We offer a variety of Gibco™ DPBS formulations for a range of cell culture applications.

This DPBS is modified as follows:

Without: Calcium, Magnesium, Phenol Red

The complete formulation is available.

For Research Use or Further Manufacturing. Not for diagnostic use or direct administration into humans or animals.
Specifications
AdditiveNo Sodium Pyruvate
ClassificationAnimal Origin-Free
ColorClear
Dilution1 X
For Use With (Application)Mammalian Cell Culture
Manufacturing QualitycGMP-compliant under the ISO 13485 standard
Osmolality270 - 300 mOsm/kg
Packaging TypeBottle
Phenol Red IndicatorNo Phenol Red
Product LineGibco™
Quantity500 mL
Shipping ConditionRoom Temperature
SterilitySterile-filtered
FormLiquid
Product TypeDPBS
Solution TypeDulbecco's Phosphate Buffered Saline
pH7.0 to 7.3
Unit SizeEach
Contents & Storage
Storage conditions: 15°C to 30°C
Shipping conditions: Room temperature
Shelf life: 36 months from date of manufacture
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Certificates

Lot #Certificate TypeDateCatalog Number(s)
3007530Certificate of AnalysisJun 29, 202514190094, 14190359, 14190144, 14190342, 14190367, 14190136, 14190086, 14190240
3166017Certificate of AnalysisJun 29, 202514190094, 14190359, 14190144, 14190342, 14190367, 14190136, 14190086, 14190240
3247049Certificate of AnalysisJun 28, 202514190094, 14190359, 14190144, 14190342, 14190367, 14190136, 14190086, 14190240
3242796Certificate of AnalysisJun 27, 202514190094, 14190359, 14190144, 14190342, 14190367, 14190136, 14190086, 14190240
3165997Certificate of AnalysisJun 25, 202514190094, 14190359, 14190144, 14190342, 14190367, 14190136, 14190086, 14190240
5 results displayed, search above for a specific certificate

Safety Data Sheets

Frequently asked questions (FAQs)

Following are procedures which researchers have followed for handling beta amyloid in tissue and cell samples:

Kienlen-Campard, P, S. Miolet, B. Tasiaux, and J.-N. Octave (2002) Intracellular amyloid beta 1-42, but not extracellular soluble amyloid beta peptides, induces neuronal apoptosis. J. Biol. Chem. 277(18):15666-15670. These authors performed formic acid extraction of whole cells. Neurons (approximately 107) were scraped in ice cold PBS. Cell pellets were solubilized in 300 microliters of 70% formic acid. Formic acid-solubilized cell pellets were cleared by centrifuging at 16,000 x g for 5 minutes at 4 degrees C, and the supernatants were centrifuged at 21,000 x g for 20 minutes at 4 degrees C. The supernatants were vacuum dried and the resulting pellet was resuspended in 1 mL of alkaline carbonate buffer (2% Na2CO3, 0.1 N NaOH) and centrifuged 16,000 x g for 3 minutes at 4 degrees C. Protein concentration was determined by the BCA assay. For immunoprecipitation, 800 microliters of the supernatant was neutralized with 800 microliters of 1 M Tris-HCl, pH 6.8, and diluted 1:3 in H2O containing 10% FCS, 0.5% Triton X-100, and 0.5% Nonident P-40 (final concentrations). Beta amyloid 1-40 and Beta amyloid 1-42 concentrations were determined by ELISA using 100 microliters of neutralized extract.

Fagan, A.M., M. Watson, M. Parsadanian, K.R. Bales, S.M. Paul, and D.M. Holtzman (2002) Human and murine ApoE markedly alters A beta metabolism before and after plaque formation in a mouse model of Alzheimer"s disease. Neurobiol. Dis. 9(3):305-318. This paper discusses analyzing beta amyloid by ELISA. This paper has an interesting variation on the measurement of beta amyloid: they looked at soluble beta amyloid and also insoluble beta amyloid. Here are the key points of their protocol: For analysis of total beta amyloid levels, half of the hippocampus from each animal was Dounce homogenized in 5 M guandine (50 nM Tris-HCl, pH 8.0) and beta amyloid ELISA was performed as described previously (Johnson-Wood, et al. 1997). For analysis of soluble beta amyloid, the other half of the hippocampus was homogenized on ice in 400 microliters TBS (25 mM Tris-HCl, 150 mM NaCl, 3 mM EDTA, pH 7.4) containing protease inhibitors (20 micrograms/mL aprotinin, and 10 micrograms/mL leupeptin). Homogenates were spun at 125,000xg in polyallomer tubes in a Sorvall RP100 AT4-406 rotor for 1 hour at 4 degrees C and levels of beta amyloid total in the resultant supernatant (defines as soluble Abeta total) were obtained by beta amyloid ELISA. Percentage of soluble Abeta total was defined as the soluble (TBS-extractable) value divided by the total tissue (guanidine-extractable) value.

For Brain Tissue Homogenization, Prepare the Following Solutions: 5 M guanidine HCl 50 mM TrisHCl, pH 8.0. Reaction Buffer BSAT-DPBS (Dulbecco’s phosphate buffered saline with 5% BSA and 0.03% Tween-20, see formulation below) supplemented with 1x Protease Inhibitor Cocktail from Calbiochem (catalog code 539131; contains AEBSF, aprotinin, E64, EDTA, and leupeptin). BSAT-DPBS Formulation 0.2 g/L KCl 0.2 g/L KH2PO4 8.0 g/L NaCl 1.150 g/L Na2HPO4 5% BSA 0.03% Tween-20 to 1 L ultrapure water and adjust the pH to 7.4. Protocol: Determine the wet mass of the mouse hemibrain (100 mg) or a human brain sample in an Eppendorf tube (Fisher K749520-0000). Add 8 x mass of cold 5 M guanidineHCl / 50 mM Tris-HCl (Solution "A", above) to the tube by 50 - 100 µL aliquots and grind thoroughly with a hand-held motor (Fisher K749540-0000) after each addition. (Optional: transfer the homogenate from above to 1 mL Dounce homogenizer and homogenize thoroughly.) Mix the homogenate at room temperature for 3 - 4 hours. The sample is stable and can be freeze-thawed many times at this stage. Dilute the sample with cold Reaction Buffer (Solution "B"). Centrifuge (microfuge or Sorvall) at 16,000 x g for 20 minutes at 4°C. Save the supernatant for the assay.

We cannot provide an official expiration date for open bottles as this depends on the customer's use. Once opened, Thermo Fisher Scientific can no longer guarantee the performance of any product. However, if the storage conditions are followed as recommended, the stated expiration date (36 months from the date of manufacture) should apply to opened bottles as DPBS is extremely stable.

Find additional tips, troubleshooting help, and resources within our Cell Culture Support Center.

DPBS has a shelf life of 36 months from the date of manufacture, when stored as recommended (15-30 degrees C).

The basal Diploid Growth Serum-Reduced Medium already contains 6 mM L-glutamine.

Find additional tips, troubleshooting help, and resources within our Cell Culture Support Center.

We recommend evaluating performance with Diploid Production Serum-Free Medium using current conditions, however, multiplicity of infection, time of infection, and time of harvest may be different than with conventional media. Closely monitor cells for cytopathic effect and evaluate viral titers at multiple time points.

Find additional tips, troubleshooting help, and resources within our Cell Culture Support Center.

Citations & References (7)

Citations & References
Abstract
A comparison between different human hepatocyte models reveals profound differences in net glucose production, lipid composition and metabolism in vitro.
Authors:Bonanini F,Singh M,Yang H,Kurek D,Harms AC,Mardinoglu A,Hankemeier T
Journal:Experimental cell research
PubMed ID:38499143
Effects of an indole derivative on cell proliferation, transfection, and alternative splicing in production of lentiviral vectors by transient co-transfection.
Authors:Mier NC,Roper DK
Journal:PloS one
PubMed ID:38833479
Lentiviral vectors derived from human immunodeficiency virus type I are widely used to deliver functional gene copies to mammalian cells for research and gene therapies. Post-transcriptional splicing of lentiviral vector transgene in transduced host and transfected producer cells presents barriers to widespread application of lentiviral vector-based therapies. The present study ... More
Method for Large-scale Production of hIPSC Spheroids.
Authors:Lemarié L,Courtial EJ,Sohier J
Journal:Bio-protocol
PubMed ID:38618177
Stem cell spheroids are rapidly becoming essential tools for a diverse array of applications ranging from tissue engineering to 3D cell models and fundamental biology. Given the increasing prominence of biotechnology, there is a pressing need to develop more accessible, efficient, and reproducible methods for producing these models. Various techniques ... More
Macrophage foam cell formation with native low density lipoprotein.
Authors: Kruth Howard S; Huang Wei; Ishii Itsuko; Zhang Wei-Yang;
Journal:J Biol Chem
PubMed ID:12118008
'This investigation has elucidated a mechanism for development of macrophage foam cells when macrophages are incubated with native low density lipoprotein (LDL). LDL is believed to be the main source of cholesterol that accumulates in monocyte-derived macrophages within atherosclerotic plaques, but native LDL has not previously been shown to cause ... More
Microfluidic single-cell real-time PCR for comparative analysis of gene expression patterns.
Authors:Sanchez-Freire V, Ebert AD, Kalisky T, Quake SR, Wu JC,
Journal:Nat Protoc
PubMed ID:22481529
'Single-cell quantitative real-time PCR (qRT-PCR) combined with high-throughput arrays allows the analysis of gene expression profiles at a molecular level in approximately 11 h after cell sample collection. We present here a high-content microfluidic real-time platform as a powerful tool for comparatively investigating the regulation of developmental processes in single ... More
7 total citations

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