The cutaneous infiltrates of leprosy. A transmission electron microscopy study

Insights

Transmission electron microscopy reveals Mycobacterium leprae within foam cells in lepromatous leprosy. T-cells drive mononuclear phagocyte function in tuberculoid leprosy, suggesting a microbicidal effect against M. leprae.

Area of Science:

  • Microbiology
  • Immunology
  • Dermatology

Background:

  • Leprosy, a chronic infectious disease, presents a spectrum of clinical and immunological manifestations.
  • Understanding the cellular and bacterial interactions within dermal lesions is crucial for leprosy pathogenesis.

Purpose of the Study:

  • To investigate the ultrastructural characteristics of dermal lesions in leprosy patients across the disease spectrum using transmission electron microscopy.
  • To correlate inflammatory cell types and Mycobacterium leprae (M. leprae) load with disease activity and therapeutic status.

Main Methods:

  • Dermal biopsies from 18 leprosy patients, ranging from lepromatous to tuberculoid forms, were analyzed using transmission electron microscopy.
  • Quantification and characterization of inflammatory cells and intracellular/extracellular M. leprae were performed.

Main Results:

  • Lepromatous leprosy showed numerous parasitized foam cells with abundant M. leprae in large vacuoles; extracellular bacteria were absent.
  • Borderline leprosy exhibited fewer bacilli within macrophages, with increasing lymphocyte and occasional epithelioid cell infiltration.
  • Tuberculoid leprosy displayed a robust lymphocyte response, with T-cells interacting with epithelioid and giant cells, and scarce bacillary remnants.

Conclusions:

  • The study suggests that Leu 3a/OKT4 helper T-cells may activate mononuclear phagocytes, leading to microbicidal activity against M. leprae, potentially via toxic oxygen intermediates.
  • Ultrastructural analysis provides insights into the dynamic interplay between host immune cells and M. leprae across the leprosy spectrum.