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Mechanisms of mycobacterial pathogenesis : Studies in Mycobacterium avium and Mycobacterium marinum

Laschanzky, Katie LU orcid (2026)
Abstract
Understanding the basic biology of both a host and the pathogens they are afflicted by is a prerequisite for the development of effective clinical interventions. Mycobacterium tuberculosis, the causative agent of tuberculosis, remains one of the leading causes of disease worldwide. Despite extensive research, the appearance of highly drug-resistant bacterial strains and the prevalence of HIV co-infection in the most vulnerable populations have hindered the eradication of this devastating pathogen. Infections caused by non-tuberculous mycobacteria (NTM) such as Mycobacterium avium are much less common but are increasing globally. NTM infections are exceptionally difficult to diagnose and treat due to high
levels of intrinsic drug... (More)
Understanding the basic biology of both a host and the pathogens they are afflicted by is a prerequisite for the development of effective clinical interventions. Mycobacterium tuberculosis, the causative agent of tuberculosis, remains one of the leading causes of disease worldwide. Despite extensive research, the appearance of highly drug-resistant bacterial strains and the prevalence of HIV co-infection in the most vulnerable populations have hindered the eradication of this devastating pathogen. Infections caused by non-tuberculous mycobacteria (NTM) such as Mycobacterium avium are much less common but are increasing globally. NTM infections are exceptionally difficult to diagnose and treat due to high
levels of intrinsic drug resistance, and the relative paucity of knowledge surrounding NTM infections further complicates the development of more effective treatments. Numerous observations have associated the smooth transparent (SmT) morphology of M. avium with human disease, however substantial gaps in knowledge remain regarding the underlying mechanisms of disease establishment and progression. Likewise, while the ESX-1 type VII secretion system is well-
established to be a key driver of virulence in M. tuberculosis and close relatives such as Mycobacterium marinum, the exact mechanisms responsible for causing disease remain elusive. Further study of these two virulence determinants is thus an essential step towards understanding mycobacterial pathogenesis, facilitating the development of improved patient treatments. The work undertaken as a part of this thesis investigates how mycobacteria interact with their hosts, focusing on the bacterial and immunological processes that shape infection outcomes. (Less)
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author
supervisor
opponent
  • Professor G Russell, David, Cornell University, Ithaca, NY
organization
publishing date
type
Thesis
publication status
published
subject
keywords
Infection, Mycobacterial pathogenesis, non-tuberculous mycobacteria, ESX-1, inflammasome, lipid peroxidation, type I interferon, neutrophil
pages
94 pages
publisher
Lund University
defense location
Blue Hall, Department of Biology, Sölvegatan 37, Lund, Sweden.
defense date
2026-05-08 13:00:00
ISBN
978-91-8104-927-5
978-91-8104-928-2
language
English
LU publication?
yes
id
6056175c-7970-4d58-8112-83f12412b669
date added to LUP
2026-03-31 16:51:38
date last changed
2026-04-24 10:01:27
@phdthesis{6056175c-7970-4d58-8112-83f12412b669,
  abstract     = {{Understanding the basic biology of both a host and the pathogens they are afflicted by is a prerequisite for the development of effective clinical interventions. Mycobacterium tuberculosis, the causative agent of tuberculosis, remains one of the leading causes of disease worldwide. Despite extensive research, the appearance of highly drug-resistant bacterial strains and the prevalence of HIV co-infection in the most vulnerable populations have hindered the eradication of this devastating pathogen. Infections caused by non-tuberculous mycobacteria (NTM) such as Mycobacterium avium are much less common but are increasing globally. NTM infections are exceptionally difficult to diagnose and treat due to high<br/>levels of intrinsic drug resistance, and the relative paucity of knowledge surrounding NTM infections further complicates the development of more effective treatments. Numerous observations have associated the smooth transparent (SmT) morphology of M. avium with human disease, however substantial gaps in knowledge remain regarding the underlying mechanisms of disease establishment and progression. Likewise, while the ESX-1 type VII secretion system is well-<br/>established to be a key driver of virulence in M. tuberculosis and close relatives such as Mycobacterium marinum, the exact mechanisms responsible for causing disease remain elusive. Further study of these two virulence determinants is thus an essential step towards understanding mycobacterial pathogenesis, facilitating the development of improved patient treatments. The work undertaken as a part of this thesis investigates how mycobacteria interact with their hosts, focusing on the bacterial and immunological processes that shape infection outcomes.}},
  author       = {{Laschanzky, Katie}},
  isbn         = {{978-91-8104-927-5}},
  keywords     = {{Infection; Mycobacterial pathogenesis; non-tuberculous mycobacteria; ESX-1; inflammasome; lipid peroxidation; type I interferon; neutrophil}},
  language     = {{eng}},
  month        = {{04}},
  publisher    = {{Lund University}},
  school       = {{Lund University}},
  title        = {{Mechanisms of mycobacterial pathogenesis : Studies in Mycobacterium avium and Mycobacterium marinum}},
  url          = {{https://lup.lub.lu.se/search/files/247437429/Katie_Laschanzky_-_WEBB.pdf}},
  year         = {{2026}},
}