STUDIES OF THE PNEUMOCOCCUS AND ALLIED ORGANISMS WITH REFERENCE TO THEIR OCCURRENCE IN THE HUMAN MOUTH

L Buerger1

  • 1Assistant in the Pathological Laboratory, Mt. Sinai Hospital, New York.

Insights

This study details a reliable plate method for isolating pneumococci from oral secretions, identifying optimal culture media, and employing capsule-stains for precise identification. Findings show pneumococci are common in healthy individuals and can be transmitted, highlighting the importance of morphological and cultural identification methods.

Area of Science:

  • Microbiology
  • Bacteriology
  • Infectious Diseases

Background:

  • Pneumococci are frequently found in human oral secretions, posing a challenge for accurate isolation and identification.
  • Understanding the prevalence and transmission of pneumococci in both healthy individuals and patients is crucial for public health.
  • Distinguishing pneumococci from morphologically similar bacteria like Streptococcus mucosus capsulatus is essential for diagnosis and treatment.

Purpose of the Study:

  • To establish a reliable method for isolating pneumococci from oral secretions.
  • To determine the most favorable culture medium for pneumococcal growth and identification.
  • To investigate the prevalence, persistence, and transmission of pneumococci in various human populations.

Main Methods:

  • Utilized a "plate method" for isolating pneumococci from oral secretions.
  • Employed an alkaline two-percent glucose-serum-agar medium for optimal colony development.
  • Used a special capsule-stain for precise morphological identification of pneumococci in various samples.
  • Conducted animal tests for virulence and agglutination tests with immune sera.

Main Results:

  • The "plate method" proved highly reliable for pneumococcal isolation.
  • Alkaline two-percent glucose-serum-agar facilitated rapid pneumococcal colony development.
  • Capsule-staining provided precise morphological identification in blood, exudate, and culture media.
  • Pure cultures were obtained within 48 hours for virulence testing.
  • Pneumococci were detected in 39 out of 78 examined individuals (50%) and in 34.8% of "normal" cases (71/204).
  • Pneumococci can persist in the mouths of recovered pneumonia patients and be acquired in hospital settings.
  • Transmission occurs via fomites like handkerchiefs, dishes, and drinking cups.
  • Characteristic morphological types (typical, small, large, bacillary, streptococcus) were identified.
  • All pneumococci fermented inulin with acid formation using a modified medium.
  • A "ring-form" colony morphology was diagnostic for pneumococci.
  • Virulent pneumococci were present in 79% of normal mouths and 77% of pneumonia cases.
  • Pneumococci, Streptococcus mucosus capsulatus, and atypical organisms showed varying agglutination patterns with immune sera.

Conclusions:

  • The described plate method and culture media are effective for pneumococcal isolation and identification.
  • Pneumococci are common inhabitants of the human mouth and can be transmitted through various means.
  • Morphological characteristics, especially the "ring-form" colony, and inulin fermentation are key diagnostic features.
  • Distinction between pneumococci and related bacteria like Streptococcus mucosus capsulatus is possible through combined morphological, cultural, and serological methods.

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