Literature DB >> 31956996

Advancing the understanding of treponemal disease in the past and present.

Brenda J Baker1, Gillian Crane-Kramer2, Michael W Dee3, Lesley A Gregoricka4, Maciej Henneberg5,6, Christine Lee7, Sheila A Lukehart8, David C Mabey9, Charlotte A Roberts10, Ann L W Stodder11, Anne C Stone1, Stevie Winingear1.   

Abstract

Syphilis was perceived to be a new disease in Europe in the late 15th century, igniting a debate about its origin that continues today in anthropological, historical, and medical circles. We move beyond this age-old debate using an interdisciplinary approach that tackles broader questions to advance the understanding of treponemal infection (syphilis, yaws, bejel, and pinta). How did the causative organism(s) and humans co-evolve? How did the related diseases caused by Treponema pallidum emerge in different parts of the world and affect people across both time and space? How are T. pallidum subspecies related to the treponeme causing pinta? The current state of scholarship in specific areas is reviewed with recommendations made to stimulate future work. Understanding treponemal biology, genetic relationships, epidemiology, and clinical manifestations is crucial for vaccine development today and for investigating the distribution of infection in both modern and past populations. Paleopathologists must improve diagnostic criteria and use a standard approach for recording skeletal lesions on archaeological human remains. Adequate contextualization of cultural and environmental conditions is necessary, including site dating and justification for any corrections made for marine or freshwater reservoir effects. Biogeochemical analyses may assess aquatic contributions to diet, physiological changes arising from treponemal disease and its treatments (e.g., mercury), or residential mobility of those affected. Shifting the focus from point of origin to investigating who is affected (e.g., by age/sex or socioeconomic status) and disease distribution (e.g., coastal/ inland, rural/urban) will advance our understanding of the treponemal disease and its impact on people through time.
© 2020 Wiley Periodicals, Inc.

Entities:  

Keywords:  zzm321990Treponema pallidum; archaeological biogeochemistry; archaeometry; genetics; human-pathogen co-evolution; paleopathology; syphilis

Mesh:

Year:  2020        PMID: 31956996     DOI: 10.1002/ajpa.23988

Source DB:  PubMed          Journal:  Am J Phys Anthropol        ISSN: 0002-9483            Impact factor:   2.868


  3 in total

Review 1.  The Immune System and Responses to Cancer: Coordinated Evolution.

Authors:  Brendon J Coventry; Martin Ashdown; Maciej Henneberg
Journal:  F1000Res       Date:  2015-08-12

2.  Human major infections: Tuberculosis, treponematoses, leprosy-A paleopathological perspective of their evolution.

Authors:  Maciej Henneberg; Kara Holloway-Kew; Teghan Lucas
Journal:  PLoS One       Date:  2021-02-25       Impact factor: 3.240

3.  Global phylogeny of Treponema pallidum lineages reveals recent expansion and spread of contemporary syphilis.

Authors:  Mathew A Beale; Michael Marks; Michelle J Cole; Min-Kuang Lee; Rachel Pitt; Christopher Ruis; Eszter Balla; Tania Crucitti; Michael Ewens; Candela Fernández-Naval; Anna Grankvist; Malcolm Guiver; Chris R Kenyon; Rafil Khairullin; Ranmini Kularatne; Maider Arando; Barbara J Molini; Andrey Obukhov; Emma E Page; Fruzsina Petrovay; Cornelis Rietmeijer; Dominic Rowley; Sandy Shokoples; Erasmus Smit; Emma L Sweeney; George Taiaroa; Jaime H Vera; Christine Wennerås; David M Whiley; Deborah A Williamson; Gwenda Hughes; Prenilla Naidu; Magnus Unemo; Mel Krajden; Sheila A Lukehart; Muhammad G Morshed; Helen Fifer; Nicholas R Thomson
Journal:  Nat Microbiol       Date:  2021-11-24       Impact factor: 17.745

  3 in total

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