Streptococci are among the most important bacteria you’ll encounter in nursing practice. These spherical bacteria arrange themselves in chains and cause infections ranging from simple sore throats to life-threatening conditions. Understanding their classification, the diseases they cause, and how to diagnose them is essential for providing quality patient care.
Table of Contents
- What are streptococci and how are they classified?
- Beta-hemolytic streptococci: The pathogenic powerhouse
- Respiratory infections caused by Streptococcus pyogenes
- Skin and soft tissue infections
- Puerperal fever and other serious infections
- Alpha-hemolytic streptococci: Generally less aggressive
- Gamma-hemolytic streptococci and enterococci
- How are streptococcal infections diagnosed?
- Throat swab culture for respiratory infections
- Examination of pus and wound specimens
- Advanced diagnostic methods
- Clinical significance for nursing practice
What are streptococci and how are they classified?
Streptococci are Gram-positive, catalase-negative cocci that occur in pairs or chains. They’re found throughout the human body, particularly in the respiratory tract, skin, and gastrointestinal system. What makes them particularly interesting is how we classify them based on their behavior on blood agar plates.
When grown on sheep blood agar, streptococci produce three distinct patterns called hemolysis. Beta-hemolytic streptococci create zones of complete clearing around colonies because they completely destroy red blood cells. Alpha-hemolytic streptococci produce a greenish discoloration from incomplete hemolysis. Gamma-hemolytic streptococci don’t break down red blood cells at all, showing no color change.
Beyond hemolysis patterns, streptococci are further divided into groups based on their cell wall carbohydrates, a system called Lancefield classification that recognizes groups A through H and K through V.
Beta-hemolytic streptococci: The pathogenic powerhouse
Among all streptococci, Streptococcus pyogenes stands out as the most clinically significant pathogen. Also known as Group A Streptococcus (GAS), this beta-hemolytic bacterium is responsible for a wide range of infections.
Respiratory infections caused by Streptococcus pyogenes
Group A strep accounts for 15-30% of pediatric sore throats and 5-10% of cases in adults. Strep throat typically presents with sudden onset of fever, severe sore throat, swollen tonsils with white patches, and tender neck lymph nodes. Unlike viral infections, strep throat doesn’t usually cause cough or runny nose.
When certain strains of S. pyogenes produce an erythrogenic toxin, they cause scarlet fever. This condition features a distinctive sandpaper-like rash that blanches with pressure, along with the characteristic “strawberry tongue” appearance. The rash typically lasts 2 to 5 days and may be followed by skin peeling.
Skin and soft tissue infections
S. pyogenes causes several types of skin infections. Impetigo appears as crusty, honey-colored lesions that typically affect children’s faces. Erysipelas is a superficial infection involving both skin and lymphatics, creating raised, shiny red patches with distinct borders. Cellulitis affects deeper skin layers and spreads rapidly due to numerous enzymes and toxins produced by the bacteria.
Puerperal fever and other serious infections
Historically known as childbed fever, puerperal sepsis occurs when S. pyogenes infects the uterus after childbirth. This life-threatening condition requires prompt antibiotic treatment. The bacteria can also cause pneumonia, bacteremia, and in severe cases, toxic shock syndrome and necrotizing fasciitis.
Alpha-hemolytic streptococci: Generally less aggressive
Alpha-hemolytic streptococci, commonly called viridans streptococci, are generally less pathogenic than their beta-hemolytic cousins. The name “viridans” comes from the Latin word for green, referring to the greenish discoloration they produce on blood agar.
These bacteria are normal inhabitants of the mouth and respiratory tract. While they rarely cause problems in healthy individuals, they can become serious pathogens under certain circumstances. The most important clinical association is with bacterial endocarditis.
When viridans streptococci enter the bloodstream-such as during dental procedures-they can adhere to damaged heart valves and form vegetations, leading to subacute bacterial endocarditis. This is why patients with heart valve abnormalities may need antibiotic prophylaxis before dental work.
Gamma-hemolytic streptococci and enterococci
Gamma-hemolytic streptococci produce no hemolysis on blood agar. The most clinically relevant member of this group is Streptococcus faecalis, now reclassified as Enterococcus faecalis.
Enterococci are normal inhabitants of the gastrointestinal tract but can cause urinary tract infections, wound infections, and bacteremia, particularly in hospitalized patients with catheters. These organisms are concerning because they show intrinsic resistance to many antibiotics and can acquire resistance to vancomycin, creating difficult-to-treat infections.
Enterococcus faecalis is responsible for approximately 16% of hospital-acquired urinary tract infections. The bacteria can also cause endocarditis, especially in patients with underlying heart valve disease.
How are streptococcal infections diagnosed?
Accurate diagnosis of streptococcal infections relies on proper specimen collection and laboratory testing. The specific approach depends on the type of infection suspected.
Throat swab culture for respiratory infections
For suspected strep throat, throat swabs cultured on sheep blood agar remain the gold standard with 90% or higher sensitivity. A healthcare provider uses a sterile swab to collect samples from the back of the throat and tonsils. The sample is then placed on a culture plate that allows bacteria to grow.
Rapid antigen detection tests provide results in minutes by detecting the Group A streptococcal carbohydrate antigen directly from throat swabs. While these tests are highly specific (over 95%), their sensitivity varies from 70-90%. A negative rapid test in children should be confirmed by culture, though this is less critical in adults.
Examination of pus and wound specimens
For skin infections, samples from pus, wound drainage, or infected tissue can be examined. The specimen is cultured on blood agar to identify the causative organism. Results typically become available in two to seven days, though preliminary findings may be available sooner.
Advanced diagnostic methods
Molecular tests using nucleic acid amplification (PCR) are increasingly used because they detect more positive cases than traditional methods and provide results within hours rather than days. These tests are particularly useful when rapid, accurate diagnosis is critical.
Clinical significance for nursing practice
Understanding streptococcal classification and infections has direct implications for your nursing practice. You’ll need to recognize the clinical presentations, ensure proper specimen collection, and understand when isolation precautions are necessary.
Patients with active Group A streptococcal pharyngitis are highly contagious through respiratory droplets from coughing and sneezing. They remain infectious until they’ve been on appropriate antibiotics for at least 12-24 hours.
When collecting throat swabs, proper technique is crucial for accurate results. Swab both tonsils and the posterior pharynx, avoiding the tongue and cheeks. Patients should not use antiseptic mouthwash before testing as it may affect results.
For patients with enterococcal infections, be vigilant about infection control practices, especially handwashing and contact precautions for those with vancomycin-resistant strains.
What do you think? How might understanding the different hemolytic patterns help you anticipate the severity of a patient’s infection? Consider how proper specimen collection techniques could impact diagnosis and treatment decisions in your clinical practice.
References
- https://www.ncbi.nlm.nih.gov/books/NBK554528/
- https://www.merckmanuals.com/professional/infectious-diseases/gram-positive-cocci/streptococcal-infections
- https://en.wikipedia.org/wiki/Streptococcus
- https://medlineplus.gov/lab-tests/strep-a-test/
- https://journals.asm.org/doi/10.1128/cmr.00101-13
- https://www.hopkinsguides.com/hopkins/view/Johns_Hopkins_ABX_Guide/540525/all/Streptococcus_species
- https://en.wikipedia.org/wiki/Viridans_streptococci
- https://microbiologyjournal.org/a-review-on-updated-species-list-of-viridans-streptococci-causing-infective-endocarditis/
- https://www.ncbi.nlm.nih.gov/books/NBK567759/
- https://en.wikipedia.org/wiki/Enterococcus_faecium
- https://www.canada.ca/en/public-health/services/laboratory-biosafety-biosecurity/pathogen-safety-data-sheets-risk-assessment/enterococcus-faecalis.html
- https://www.ncbi.nlm.nih.gov/books/NBK343617/
- https://kidshealth.org/en/parents/labtest11.html
- https://www.cdc.gov/group-a-strep/testing/index.html
- https://my.clevelandclinic.org/health/diagnostics/24533-throat-culture
- https://www.biron.com/en/glossary/streptococcus-throat-by-pcr/
- https://www.healthline.com/health/throat-swab-culture
- https://www.mountsinai.org/health-library/tests/throat-swab-culture
Leave a Reply