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Infection01:20

Infection

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When a pathogen enters the body and reproduces, it can cause an infection, damage body cells, and cause illness symptoms that eventually lead to disease. Therefore, its prevention requires breaking the chain of infection.
The chain begins with pathogens: bacteria, viruses, fungi, prions, or parasites such as protozoa helminths. These can be present on the skin as transient or resident flora, or they can be acquired from the environment. Identifying and treating the type of infection and...
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Urinary Tract Infection II: Pathophysiology01:25

Urinary Tract Infection II: Pathophysiology

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The pathophysiology of urinary tract infections (UTIs) encompasses several progressive stages, beginning with bacterial colonization and culminating in potential systemic complications if untreated. UTIs are primarily initiated by bacteria, such as Escherichia coli, which often originate from the gastrointestinal tract and migrate to the urinary system through the periurethral area. This migration can occur via several routes, including improper hygiene practices, sexual activity, or...
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Cystic Fibrosis: Pathogenesis01:23

Cystic Fibrosis: Pathogenesis

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Cystic fibrosis (CF), an autosomal recessive disorder, significantly affects the function of exocrine glands. This genetically inherited disease is characterized by the production of thick and sticky mucus, which can severely affect various organs and systems in the body.
CF is primarily caused by a genetic mutation in a chromosome 7 gene coding for the cystic fibrosis transmembrane conductance regulator (CFTR) protein. The most common gene mutation leading to CF is the ΔF508 mutation,...
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Pneumonia II: Pathophysiology01:29

Pneumonia II: Pathophysiology

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The pathophysiology of pneumonia involves the following steps:
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Stages of Infection01:26

Stages of Infection

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Stages of infection describe what happens to a susceptible host once a pathogen invades the human body. The stages of infection are incubation, prodromal, illness, stage of decline, and convalescence. The incubation stage is the period from exposure to a pathogen until symptoms start. The infected person is unaware of impending illness as the pathogens grow and multiply within the body. The duration may vary depending on the type of infection. The incubation period of measles averages ten to...
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Defense Against Bacterial Pathogens01:31

Defense Against Bacterial Pathogens

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The human immune system is a complex network of cells, tissues, and organs that work together to defend the body against bacterial infections. It consists of various immune cells, each playing a specific role in the defense mechanism.
Phagocytes
Phagocytes are the frontline soldiers of the immune system. They include neutrophils and macrophages. Neutrophils are the most abundant type of white blood cell and are quickly mobilized to the site of infection. Macrophages are larger cells that patrol...
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Video Experimental Relacionado

Updated: Jan 7, 2026

Mouse Footpad Inoculation Model to Study Viral-Induced Neuroinflammatory Responses
09:07

Mouse Footpad Inoculation Model to Study Viral-Induced Neuroinflammatory Responses

Published on: June 14, 2020

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Ciencia básica y patogénesis

Anant Gupta1

  • 1Centre for Brain Research, Banglore, Karnataka, India.

Alzheimer's & dementia : the journal of the Alzheimer's Association
|December 25, 2025
PubMed
Resumen

Alzheimer

Área de la Ciencia:

  • Neurociencia e Investigación sobre el Envejecimiento
  • Biología Molecular y Mecanismos de Estrés Oxidativo
  • Patogénesis de Enfermedades Neurodegenerativas

Sus antecedentes:

  • La enfermedad de Alzheimer (EA) está relacionada con el estrés oxidativo, la disfunción sináptica y el daño mitocondrial.
  • La Perorredoxina-V (PrxV) es una enzima neuronal que puede mitigar el estrés oxidativo y proteger las mitocondrias.
  • La PrxV ha mostrado potencial en la prevención del daño mitocondrial inducido por beta-amiloide y la muerte neuronal.

Objetivo del estudio:

  • Investigar la posible desregulación de los niveles de Perorredoxina-V (PrxV) en el cerebro de la enfermedad de Alzheimer (EA).
  • Examinar la relación entre los niveles de PrxV, el estrés oxidativo y la función mitocondrial en un modelo de ratón de EA.
  • Evaluar los cambios dependientes de la edad en la expresión de PrxV en el contexto de la patogénesis de la EA.
Palabras clave:
Perorredoxina-VEstrés oxidativoDisfunción mitocondrialEnfermedad de AlzheimerNeurodegeneración

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Principales métodos:

  • Se midieron los niveles de peróxido de hidrógeno (H2O2) en tejidos cerebrales de ratones transgénicos APP/PS1 y controles de tipo salvaje.
  • Se evaluó el estrés oxidativo en cultivos de neuronas primarias utilizando el tinte CellROX.
  • Se analizaron los niveles de PrxV y mitocondriales en sinaptosomas y neuronas primarias mediante immunoblotting e inmunocitoquímica.

Principales resultados:

  • Los ratones APP/PS1 mostraron niveles significativamente elevados de H2O2 en tejidos corticales y del hipocampo.
  • Los niveles de PrxV disminuyeron significativamente en los sinaptosomas de ratones APP/PS1 en múltiples edades.
  • Las neuronas APP/PS1 exhibieron un aumento de los marcadores de estrés oxidativo y una reducción de la intensidad mitocondrial.

Conclusiones:

  • La alteración de los niveles de PrxV y la desregulación mitocondrial contribuyen al estrés oxidativo en el cerebro de la EA.
  • La restauración de los niveles de PrxV puede ofrecer una estrategia terapéutica para mitigar el estrés oxidativo y la neurodegeneración en la EA.
  • Los hallazgos resaltan la PrxV como un objetivo potencial para intervenciones dirigidas a prevenir la progresión de la EA.