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CAS 7365-45-9 Good's Buffer Good's Buffer High Purity Cell Culture Grade

HEPES Buffer

IUPAC: 4-(2-Hydroxyethyl)piperazine-1-ethanesulfonic acid View on PubChem
CAS NUMBER
7365-45-9
MOL. FORMULA
C8H18N2O4S
MOL. WEIGHT
238.30 g/mol
Scientific Overview

HEPES's dipolar ionic (zwitterionic) structure means it does not form significant complexes with most metal ions, making it a preferred non-coordinating buffer for solutions containing biologically relevant metal cations --- an advantage over phosphate or citrate buffers in many applications. In cell culture specifically, HEPES outperforms bicarbonate-based buffering systems by maintaining stable physiological pH independent of CO2 fluctuations from cellular respiration, making it especially valuable for open-air culture systems, live-cell imaging, and applications outside standard CO2 incubators. A key handling consideration: prolonged exposure to fluorescent light or sunlight causes HEPES to react with riboflavin in culture media, generating cytotoxic hydrogen peroxide.

HEPES is a zwitterionic N-substituted aminosulfonic acid buffer, recognized as one of the "Good's buffers" and among the most widely used all-purpose buffering agents in cell biology, biochemistry, and molecular biology research. With an effective buffering range of pH 6.8--8.2 (pKa 7.48 at 25°C), it excels at maintaining stable physiological pH conditions.

Full Technical Data
Chemical Name HEPES (4-(2-Hydroxyethyl)piperazine-1-ethanesulfonic acid)
CAS Number 7365-45-9
IUPAC Name 4-(2-Hydroxyethyl)piperazine-1-ethanesulfonic acid
Molecular Formula C8H18N2O4S
Molecular Weight 238.30 g/mol g/mol
Reaction Scheme
Piperazine
Ethylene Oxide (Hydroxyethylation)
NA
HEPES
NA
Commercial Applications

Cell Culture Media Buffering

Standard buffering supplement maintaining stable physiological pH in mammalian, insect, and other cell culture systems.

Molecular Biology & Biochemical Assays

Widely used in PCR, protein purification, enzyme assays, immunoprecipitation, and cell lysis buffers.

Chromatography & Electrophoresis

Applied as a running buffer in gel electrophoresis and as an eluent in cation exchange chromatography.

Live-Cell Imaging & Electroporation

Preferred buffer for applications requiring pH stability outside controlled CO2 environments.

Market Therapeutic Focus
GOOD'S BUFFER PHARMACEUTICAL MANUFACTURING CELL & GENE THERAPY / BIOPROCESSING MOLECULAR BIOLOGY & DIAGNOSTICS ACADEMIC & INDUSTRIAL RESEARCH CRO/CDMO
Scientific Literature

Hydrogen Ion Buffers for Biological Research

Authors: Good, N.E. et al.

Biochemistry

Buffers: Principles and Practice

Authors: Beynon, R.J.; Easterby, J.S.

IRL Press (reference text)

HEPES-Induced Cytotoxicity: Photochemical Generation of Hydrogen Peroxide

Authors: Zigler, J.S. et al.

In Vitro Cell. Dev. Biol.

Peer Queries & FAQs
Why is HEPES preferred over bicarbonate buffering in some cell culture applications?
HEPES maintains stable pH independent of dissolved CO2 concentration, unlike bicarbonate buffers which require a controlled CO2 atmosphere, making HEPES advantageous for open-air handling, live-cell imaging, or culture outside standard incubators.
Why does HEPES need to be protected from light in cell culture use?
Prolonged light exposure causes HEPES to photochemically react with riboflavin present in culture media, generating cytotoxic hydrogen peroxide that can harm sensitive cells.
What concentration of HEPES is typically used in cell culture?
Commonly 5--30 mM; concentrations above 40 mM may become cytotoxic to certain cell types, so concentration should be optimized per application.
What is the recommended storage condition?
Store as a dry powder at room temperature, protected from moisture and light; prepared aqueous solutions should be stored appropriately and shielded from prolonged light exposure.

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