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Journal ArticleDOI

Pathogenesis and pathobiology of brucellosis in livestock

TLDR
The type IV secretion system translocates Brucella effector proteins into host cells and is critical for both survival and replication of brucella in infected host cells.
Abstract
Summary Brucella species are facultative, intracellular, Gram-negative bacteria with marked tropism for the pregnant reproductive tract of domestic animals. All Brucella species establish persistent infection in the reticuloendothelial system of their natural hosts. The mechanisms of placenta localisation, trophoblast tropism and abortion are poorly understood. A complete picture of the molecular determinants and mechanisms of the cell internalisation process began to emerge only recently. Cyclic β-1,2-glucan is a molecule secreted into the periplasm of Brucella and is required for intracellular Brucella to avoid fusion of the phagosome with lysosomes. The type IV secretion system translocates Brucella effector proteins into host cells and is critical for both survival and replication of Brucella in infected host cells. Some aspects of the pathogenesis and pathobiology of brucellosis in productive domestic animals are discussed in this section.

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Journal ArticleDOI

Brucellosis remains a neglected disease in the developing world: a call for interdisciplinary action

TL;DR: Brucellosis places significant burdens on the human healthcare system and limits the economic growth of individuals, communities, and nations where such development is especially important to diminish the prevalence of poverty.
Journal ArticleDOI

Advancement of knowledge of Brucella over the past 50 years.

TL;DR: Although pathogenic Brucella spp have preferred reservoir hosts, their ability to infect numerous mammalian hosts has been increasingly documented and the maintenance of infection in new reservoirhosts, such as wildlife, has become an issue for both public health and animal health regulatory personnel.
Book ChapterDOI

Chapter 4 – Female Genital System

TL;DR: • SEER Extent of Disease 1988: Codes and Coding Instructions (3rd Edition, 1998) (https://seer.cancer.gov/archive/manuals/EOD10Dig.3rd.
Journal ArticleDOI

An Overview of Brucellosis in Cattle and Humans, and its Serological and Molecular Diagnosis in Control Strategies.

TL;DR: In this review, the recent literature, significant advancements, and challenges in the treatment and vaccination against brucellosis are summarized, with a special focus on developing countries.

Brucella Melitensisの胆汁反応(辺野喜)に関する研究

勇 福留
TL;DR: Caprine and ovine brucellosis, caused by the zoonotic bacterium Brucella melitensis, is an economically important cause of abortion in small ruminants and an important human pathogen.
References
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Journal ArticleDOI

An Overview of Human Brucellosis

TL;DR: Since brucellosis is now rare in the United States, physicians may be unfamiliar with the clinical manifestations, methods for diagnosis, and options for treatment of this zoonotic infection.
Journal ArticleDOI

Brucella evades macrophage killing via VirB-dependent sustained interactions with the endoplasmic reticulum.

TL;DR: It is shown in a model of Brucella abortus infection of murine bone marrow–derived macrophages that a fraction of the bacteria that survive an initial macrophage killing proceed to replicate in a compartment segregated from the endocytic pathway.
Book

Pathogenesis of bacterial infections in animals

TL;DR: The role of fungal infections in the development of antibiotics and their role in antibiotic resistance is still under investigation.
Journal ArticleDOI

A homologue of the Agrobacterium tumefaciens VirB and Bordetella pertussis Ptl type IV secretion systems is essential for intracellular survival of Brucella suis.

TL;DR: Phylogenetic trees based on the sequences of VirB4 and VirB9 protein homologues suggest that evolution of the systems from DNA transfer towards protein secretion did not stem from a single event but that the protein secretion systems have evolved independently.
Journal ArticleDOI

Brucella abortus transits through the autophagic pathway and replicates in the endoplasmic reticulum of nonprofessional phagocytes

TL;DR: The results are compatible with the hypothesis that pathogenic B. abortus exploits the autophagic machinery of HeLa cells to establish an intracellular niche favorable for its replication within the ER.
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