Publications by authors named "J C Sabatier"

Cyanobacteria, also known as blue-green algae, are a diverse phylum of photosynthetic, Gram-negative bacteria and one of the largest microbial taxa. These organisms produce cyanotoxins, which are secondary metabolites that can have significant impacts on both human health and the environment. While toxins like Microcystins and Cylindrospermopsins are well-documented and have been extensively studied, other cyanotoxins, including those produced by and , remain underexplored.

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  • Drug development using medicinal plants is a crucial approach for discovering natural cancer treatments, though the specific mechanisms of action are often unclear.
  • While research has primarily focused on genetic and protein analysis, the study of metabolites (metabolomics) is gaining attention for its potential to identify anticancer compounds and understand how cancer cells respond to treatments.
  • This review highlights the importance of plant metabolomics in cancer research and outlines the necessary components for conducting effective analyses in this field, despite ongoing challenges.
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  • The study aimed to track the outcomes of patients with brain arteriovenous malformations (AVMs) who were managed conservatively, revealing key statistics on related morbidity and mortality over a 10-year period.
  • Out of 1010 patients initially recruited, 434 were analyzed, with a majority having unruptured low-grade AVMs, demonstrating a 5% occurrence of serious outcomes and a higher risk in those with a history of rupture or older age.
  • During the follow-up of approximately 3.2 years, 8% of patients experienced major intracranial hemorrhages, highlighting the ongoing risks associated with conservative management of AVMs.
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Several comorbidities and illnesses have emerged after the COVID-19 pandemic and the introduction of vaccination based on a slightly modified SARS-CoV-2 spike protein. One of these diseases is epilepsy, where the dysfunctional RAS plays a crucial role in the propagation of the disorder. SARS-CoV-2 infects host cells by utilizing the angiotensin-converting enzyme Type 2 (ACE2) receptor, which allows the virus to infect various cell types, including those in the lungs, nasopharynx, kidneys, lymph nodes, small intestine, stomach, spleen, and brain, leading to widespread organ damage.

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