🦠 Fecal Enterococci in Water

Microbiology PN-EN ISO 7899-2

Detection and quantitative determination of intestinal enterococci in water by membrane filtration method on Slanetz-Bartley medium with confirmation on bile-esculin-azide agar.

Overview

Intestinal enterococci are a group of bacteria from the genus Enterococcus — primarily E. faecalis and E. faecium — which naturally inhabit the gastrointestinal tract of humans and warm-blooded animals. They are a recognized indicator of fecal contamination of water, complementary to E. coli, but characterized by much greater resistance to environmental conditions, chlorination and desiccation.

Enterococci are a particularly valuable indicator in situations where E. coli may undergo rapid inactivation — in seawater, water after intensive disinfection, and when assessing old fecal contamination. The survival of enterococci in aquatic environment is longer than E. coli, making them a better marker of treatment process effectiveness.

The method according to PN-EN ISO 7899-2 includes two stages: presumptive isolation on Slanetz-Bartley medium (agar with sodium azide and triphenyltetrazolium chloride — TTC) and confirmation on bile-esculin-azide agar (BEA). Enterococci reduce TTC to red formazan, forming characteristic red to burgundy colonies. On BEA they hydrolyze esculin, giving dark brown to black coloration around colonies.

Enterococci are a mandatory parameter in drinking water testing (MoH Regulation) with a permissible value of 0 cfu/100 mL. They are also required in bathing water monitoring (Directive 2006/7/EC) and bottled water.

Method principle

The water sample is filtered through a 0.45 µm membrane, which retains bacteria. The membrane is placed on Slanetz-Bartley medium and incubated at 36±1°C for 40–48 h. The medium contains sodium azide (inhibitor of Gram-negative bacteria) and 2,3,5-triphenyltetrazolium chloride (TTC), which enterococci reduce to insoluble red formazan — presumptive colonies are red, burgundy or pink. Then the membrane is transferred to bile-esculin-azide agar (BEA) and incubated at 44±0.5°C for 2 h. Enterococci hydrolyze the glycoside esculin to esculetin, which reacts with iron ions in the medium, forming a dark brown to black complex — result confirmation.

Applications

Key parameters

ParameterValue
Resultcfu/100 mL (colony forming units)
Permissible value (drinking water)0 cfu/100 mL
Isolation temperature36 ± 1°C (presumptive stage)
Confirmation temperature44 ± 0.5°C (confirmatory stage)
Incubation time40–48 h (isolation) + 2 h (confirmation)
Sample volume100 mL (standard)

Standard

Standard number
PN-EN ISO 7899-2:2004
Title (PL)
Jakość wody — Wykrywanie i oznaczanie ilościowe enterokoków kałowych — Część 2: Metoda filtracji membranowej
Title (EN)
Water quality — Detection and enumeration of intestinal enterococci — Part 2: Membrane filtration method

Step-by-step procedure

1. Workstation preparation

Sterilize filtration system. Prepare Slanetz-Bartley and BEA plates. Check incubator temperatures (36°C and 44°C).

⏱ Time: 20 min

2. Chlorine neutralization

Add sodium thiosulfate to sample containing residual chlorine (1.8% tablet). Mix gently.

⏱ Time: 2 min

3. Membrane filtration

Place sterile 0.45 µm filter on funnel. Filter 100 mL sample. Rinse funnel with 20 mL sterile peptone water.

⏱ Time: 5 min

4. Presumptive stage — Slanetz-Bartley

Transfer filter to Slanetz-Bartley medium. Incubate at 36±1°C for 40–48 hours.

⏱ Time: 40–48 h • 🌡 Temperature: 36 ± 1°C

5. Presumptive colony reading

Count red, burgundy or pink colonies (TTC reduction to formazan). Note number and distribution of colonies.

⏱ Time: 10 min

6. Confirmatory stage — BEA

Transfer membrane with colonies to BEA agar surface (without inverting). Incubate at 44±0.5°C for 2 hours. Read immediately after incubation.

⏱ Time: 2 h • 🌡 Temperature: 44 ± 0.5°C

7. Confirmed colony reading

Count colonies surrounded by brown-black zone (esculin hydrolysis). These colonies = confirmed intestinal enterococci.

⏱ Time: 10 min

8. Result calculation

Result = number of confirmed colonies / sample volume × 100. Report result in cfu/100 mL.

⏱ Time: 5 min

9. Quality control

Positive control: E. faecalis ATCC 29212 strain. Negative control: sterile water. Media control: sterility and purity.

⏱ Time: 15 min

10. Disposal

Autoclave all plates with colonies (121°C/30 min) before disposal as infectious waste.

⏱ Time: 30 min

Required equipment and apparatus

EquipmentExampleIndicative price
Membrane filtration systemSartorius Combisart, Merck EZ-Fit, Pall MicroFunnel3,000–12,000 PLN
Vacuum pumpKNF Laboport N 810, Sartorius 166123,000–8,000 PLN
Incubator 36°CBinder BD 56, Memmert IN30, Pol-Eko CLN 325,000–15,000 PLN
Incubator 44°C (precision)Binder BD 23 with ±0.5°C control, Memmert IN30plus6,000–18,000 PLN
Autoclave for sterilizationTuttnauer ELV 2540, Systec VX-4020,000–45,000 PLN
Magnifier / colony counterStuart SC6+, Interscience Scan 5001,500–25,000 PLN
Laminar flow hoodEsco Airstream, Telstar Bio II Advance15,000–40,000 PLN

Reagents, media and consumables

ReagentCASDetails
Slanetz-Bartley AgarSelective medium with sodium azide and TTC for presumptive isolation of enterococci. Manufacturers: Merck, Oxoid, Biokar
Bile-esculin-azide agar (BEA)Confirmatory medium with ox bile, esculin, ferric ammonium citrate and sodium azide
Membrane filters 0.45 µmMixed cellulose ester (MCE), 47 mm diameter, sterile. Merck Millipore, Sartorius
2,3,5-Triphenyltetrazolium chloride (TTC)298-96-4Supplement to Slanetz-Bartley medium, concentration 0.1 g/L
Sodium azide (NaN₃)26628-22-8Inhibitor in medium, inhibits Gram-negative bacteria. WARNING: highly toxic!
Sodium thiosulfate (Na₂S₂O₃)7772-98-7For neutralizing chlorine in tap water samples
Ringer solution (1/4 strength)For diluting samples, sterile 9 mL tubes

Health and safety (OHS)

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