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The cutaneous infiltrates of leprosy. A transmission electron microscopy study
Abstract:
The dermal lesions of 18 patients with leprosy have been examined by transmission electron microscopy. The patients exhibited a spectrum of disease from polar lepromatous to polar tuberculoid with intermediate stages in various states of therapy and relapse. The nature and quantities of inflammatory cells and bacteria have been determined by electron microscopy to supplement previous light and fluorescence microscopy studies. Lepromatous leprosy was characterized by many parasitized foam cells containing large, multibacillary vacuoles with intact, osmiophilic Mycobacterium leprae: Bacteria were embedded in an electron-lucent matrix. No extracellular bacteria were evident. Only small numbers of scattered lymphocytes were found. As one approached the borderline state, smaller numbers of bacilli were present as singlets and doublets in small vacuoles of macrophages. The more reactive forms showed increasing bacillary fragmentation, larger numbers of lymphoid cells, and an occasional epithelioid cell. At the tuberculoid end of the spectrum, clear evidence of an exuberant lymphocyte response was evident. Large numbers of T cells with extremely long and complex filipodia were closely associated with epithelioid and multinucleated giant cells. Many of the mononuclear phagocytes appeared nonviable, and areas of necrosis were evident. Bacillary remnants were scarce and the cytoplasm of the epithelioid cells contained occasional dense bodies and many stacks of endoplasmic reticulum and mitochondria. These results suggest that Leu 3a/OKT4 helper cells may be capable of driving the effector function of mononuclear phagocytes. This would lead to a significant microbicidal effect on M. leprae, perhaps through the production of toxic oxygen intermediates.
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.

