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Key Documents

L7533

Sigma-Aldrich

LB Broth with agar (Lennox)

EZMix powder microbial growth medium

Synonyme(s) :

LB broth

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About This Item

Code UNSPSC :
41106200
Nomenclature NACRES :
NA.85

Qualité

for molecular biology

Niveau de qualité

Stérilité

non-sterile

Forme

powder

Composition

Agar, 15 g/L
NaCl, 5 g/L
Tryptone, 10 g/L
Yeast Extract, 5 g/L

Technique(s)

microbiological culture: suitable

Application(s)

agriculture
food and beverages
microbiology

Température de stockage

room temp

Adéquation

nonselective for Escherichia coli
nonselective for coliforms

Description générale

Lennox LB is a highly-referenced microbial growth medium used for the cultivation of E. coli. This nutrient-rich microbial broth contains peptides, amino acids, water-soluble vitamins, and carbohydrates in a low-salt formulation. The addition of agar provides a solid medium for microbial growth.

Application

Suitable for non-selective cultivation of E. coli strains for cloning, DNA plasmid production and production of recombinant proteins. Also suitable for selective cultivation when appropriate antibiotics are added, including those that require low-salt conditions, such as Zeocin®.

Caractéristiques et avantages

Lennox EZMix powder with agar provides:
  • A budget-friendly alternative to pre-poured plates
  • Granulated, dust-free format for safer handling and faster mixing
  • Convenient small package to eliminate weighing
  • Easy scale-up using larger package sizes
  • Standard formulation

Notes préparatoires

1. Suspend 35.6 g in 1 L of distilled water.
2. Heat to boiling while stirring to dissolve all ingredients completely.
3. Autoclave for 15 minutes at 121°C.
To prepare Lennox L Agar: Add 1 g glucose and proceed with preparation instructions as above.
To prepare the medium of Enquist and Sternberg: Aseptically add 10 ml of sterile 1 M magnesium sulfate after autoclaving.

Reconstitution

Add 35.6g powder in 1L water. Heat to boiling while stirring to dissolve powder. Autoclave for 15 minutes at 121C to sterilize. Allow to cool slightly before making additions, such as antibiotics (if desired). Pour into petri dishes and allow to solidify.

Informations légales

Zeocin is a registered trademark of Cayla Sarl

Code de la classe de stockage

11 - Combustible Solids

Classe de danger pour l'eau (WGK)

WGK 2

Point d'éclair (°F)

Not applicable

Point d'éclair (°C)

Not applicable


Certificats d'analyse (COA)

Recherchez un Certificats d'analyse (COA) en saisissant le numéro de lot du produit. Les numéros de lot figurent sur l'étiquette du produit après les mots "Lot" ou "Batch".

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Retrouvez la documentation relative aux produits que vous avez récemment achetés dans la Bibliothèque de documents.

Consulter la Bibliothèque de documents

Sambrook, J., et al
Molecular Cloning: A Laboratory Manual, 2, 1-1 (1989)
Ausubel, F. M.
Current Protocols in Molecular Biology, 1, 3-3 (1994)
Alexis Kaushansky et al.
Nature protocols, 5(4), 773-790 (2010-04-03)
Protein microarrays provide an efficient way to identify and quantify protein-protein interactions in high throughput. One drawback of this technique is that proteins show a broad range of physicochemical properties and are often difficult to produce recombinantly. To circumvent these
Raymond Liang et al.
Cell stem cell, 26(3), 359-376 (2020-02-29)
Quiescence is a fundamental property that maintains hematopoietic stem cell (HSC) potency throughout life. Quiescent HSCs are thought to rely on glycolysis for their energy, but the overall metabolic properties of HSCs remain elusive. Using combined approaches, including single-cell RNA
Shuang Wang et al.
STAR protocols, 2(2), 100440-100440 (2021-04-27)
Studies to identify genes relevant to mammalian hepatocyte biology in vivo are largely carried out using germline genetic-engineering approaches, which can be costly and time-consuming. We describe hydrodynamic tail vein injection as an alternative approach to introduce genetic elements into

Articles

General protocols for growth of competent cells and their transformation (uptake of DNA).

General protocols for growth of competent cells and their transformation (uptake of DNA).

General protocols for growth of competent cells and their transformation (uptake of DNA).

General protocols for growth of competent cells and their transformation (uptake of DNA).

Protocoles

Technical Article on competent cells. Transformation is a process by which some bacteria take up foreign genetic material (naked DNA) from the environment.

Technical Article on competent cells. Transformation is a process by which some bacteria take up foreign genetic material (naked DNA) from the environment.

Technical Article on competent cells. Transformation is a process by which some bacteria take up foreign genetic material (naked DNA) from the environment.

Technical Article on competent cells. Transformation is a process by which some bacteria take up foreign genetic material (naked DNA) from the environment.

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