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DNA Fingerprinting of Mycobacterium leprae Strains Using Variable Number Tandem Repeat VNTR - Fragment Length Analysis FLA
Published on: July 15, 2011
Reservoirs and transmission routes of leprosy; A systematic review
Thomas Ploemacher1, William R Faber2, Henk Menke1
1Faculty of Science, Freudenthal Institute & Utrecht Institute for Pharmaceutical Sciences (UIPS), Utrecht University, Utrecht, the Netherlands.
Abstract:
Leprosy is a chronic infectious disease caused by Mycobacterium leprae (M. leprae) and the more recently discovered Mycobacterium lepromatosis (M. lepromatosis). The two leprosy bacilli cause similar pathologic conditions. They primarily target the skin and the peripheral nervous system. Currently it is considered a Neglected Tropical Disease, being endemic in specific locations within countries of the Americas, Asia, and Africa, while in Europe it is only rarely reported. The reason for a spatial inequality in the prevalence of leprosy in so-called endemic pockets within a country is still largely unexplained. A systematic review was conducted targeting leprosy transmission research data, using PubMed and Scopus as sources. Publications between January 1, 1945 and July 1, 2019 were included. The transmission pathways of M. leprae are not fully understood. Solid evidence exists of an increased risk for individuals living in close contact with leprosy patients, most likely through infectious aerosols, created by coughing and sneezing, but possibly also through direct contact. However, this systematic review underscores that human-to-human transmission is not the only way leprosy can be acquired. The transmission of this disease is probably much more complicated than was thought before. In the Americas, the nine-banded armadillo (Dasypus novemcinctus) has been established as another natural host and reservoir of M. leprae. Anthroponotic and zoonotic transmission have both been proposed as modes of contracting the disease, based on data showing identical M. leprae strains shared between humans and armadillos. More recently, in red squirrels (Sciurus vulgaris) with leprosy-like lesions in the British Isles M. leprae and M. lepromatosis DNA was detected. This finding was unexpected, because leprosy is considered a disease of humans (with the exception of the armadillo), and because it was thought that leprosy (and M. leprae) had disappeared from the United Kingdom. Furthermore, animals can be affected by other leprosy-like diseases, caused by pathogens phylogenetically closely related to M. leprae. These mycobacteria have been proposed to be grouped as a M. leprae-complex. We argue that insights from the transmission and reservoirs of members of the M. leprae-complex might be relevant for leprosy research. A better understanding of possible animal or environmental reservoirs is needed, because transmission from such reservoirs may partly explain the steady global incidence of leprosy despite effective and widespread multidrug therapy. A reduction in transmission cannot be expected to be accomplished by actions or interventions from the human healthcare domain alone, as the mechanisms involved are complex. Therefore, to increase our understanding of the intricate picture of leprosy transmission, we propose a One Health transdisciplinary research approach.
Insights
Leprosy transmission is complex, involving more than just human-to-human contact. Understanding animal and environmental reservoirs is crucial for controlling this neglected tropical disease.
Area of Science:
- Medical Microbiology
- Infectious Diseases
- Epidemiology
Background:
- Leprosy, caused by Mycobacterium leprae and Mycobacterium lepromatosis, is a neglected tropical disease primarily affecting skin and nerves.
- Its spatial inequality in prevalence remains unexplained, with endemic pockets in Americas, Asia, and Africa.
Purpose of the Study:
- To systematically review research on leprosy transmission pathways.
- To explore potential non-human reservoirs and transmission routes of M. leprae and M. lepromatosis.
Main Methods:
- Systematic review of PubMed and Scopus databases.
- Inclusion of publications from 1945 to 2019 focusing on leprosy transmission.
- Analysis of data on M. leprae and M. lepromatosis in human and animal hosts.
Main Results:
- Human-to-human transmission likely occurs via aerosols, but is not the sole transmission route.
- The nine-banded armadillo is a natural reservoir in the Americas.
- M. leprae and M. lepromatosis DNA detected in red squirrels in the British Isles, suggesting novel zoonotic potential.
Conclusions:
- Leprosy transmission is more complex than previously understood, involving potential zoonotic and environmental reservoirs.
- Understanding M. leprae-complex reservoirs is vital for controlling leprosy incidence.
- A One Health transdisciplinary approach is proposed to investigate leprosy transmission intricacies.
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