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1.
Histol Histopathol ; 38(7): 765-777, 2023 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-36524411

RESUMO

The non-ciliated bronchiolar cell (NCBC) is responsible for the defense of the lung and responds to negative stimuli such as exposure to toxic pro-oxidant substances, which triggers the hyperproduction and hypersecretion of mucins and CC16 protein. The literature demonstrates that physiological and pathological responses in the lung can be influenced by the organism's sex. The objective of this report was to evaluate response differences to vanadium (V) inhalation in male and female CD-1 mice. Mice were exposed to V for four weeks. Hyperplasia of bronchiolar epithelium, small inflammatory foci and sloughing of the NCBC were observed, without changes between sexes and throughout the exposure time. Mucosecretory metaplasia was found in both males and females, however it was more drastic in males. The expression of CC16 increased in both sexes. This study demonstrated a different susceptibility between male and female mice exposed to V inhalation regarding mucosecretory metaplasia.


Assuntos
Caracteres Sexuais , Vanádio , Ratos , Camundongos , Masculino , Feminino , Animais , Camundongos Endogâmicos , Ratos Endogâmicos F344 , Vanádio/toxicidade , Pulmão
2.
Gac Med Mex ; 146(2): 136-43, 2010.
Artigo em Espanhol | MEDLINE | ID: mdl-20626130

RESUMO

Hematotoxicology has been studied with less interest than other fields associated with atmospheric pollution. There is limited knowledge about on the effects that certain atmospheric pollutants may provoke in the blood and bone marrow. Suspended particle pollution has become an area of scientific inquiry due to the contaminants adhering to its surface. We have identified the association of inhaled vanadium and variations in megakaryopoyesis and thrombopoyesis. Platelets are the smallest elements in the blood, but they play a strategic role in hemostasis. They are derived from the largest cell of the bone marrow, the megakaryocite. This cell size is about 150 microm, with apolyploid nucleus and unknown origin until few years ago. When TPO was cloned in 1994 the knowledge about megakaryocyte began to growth exponentially, elucidating the mechanisms of proliferation, differentiation and release of platelets. More information is still needed in order to translate knowledge into clinical application for diseases such as thrombocytopenia or thrombocytosis. A review of the current concepts of megakaryopoiesis and its regulation, with emphasis on signaling pathways are presented in this paper; a classification in TPO-dependent and TPO-independent is also detailed. In addition, we review some diseases associated with changes in the signaling pathway of megakaryopoyesis, as well as possible perspectives in this field, including toxicology.


Assuntos
Megacariócitos/fisiologia , Transdução de Sinais , Animais , Quimiocinas/fisiologia , Citocinas/fisiologia , Humanos , Trombopoese/fisiologia
3.
Gac. méd. Méx ; 146(2): 136-143, mar.-abr. 2010. ilus
Artigo em Espanhol | LILACS | ID: lil-566761

RESUMO

La hematotoxicología es un área poco estudiada en nuestro país y es limitado el conocimiento sobre el efecto que ciertos contaminantes atmosféricos inducen en la sangre y en la médula ósea. La contaminación por partículas suspendidas ha cobrado más interés, por los contaminantes que se adhieren a su superficie. Un ejemplo es el benceno, relacionado con aplasia medular y leucemia. Algunos metales que también están en las partículas inhaladas son hematotóxicos. Uno de ellos es el vanadio, que nuestro grupo ha identificado como un agente inductor de alteraciones en la megacariopoyesis, lo que motivó esta revisión. Las plaquetas desempeñan un papel muy importante en la hemostasia y derivan de la célula más grande de la médula ósea: el megacariocito. Hasta hace algunos años desconocíamos casi todo del megacariocito, pero con la clonación de la trombopoyetina, en 1994, la principal hormona reguladora de la producción plaquetaria, ha existido un desarrollo acelerado en el conocimiento de la megacariopoyesis. Este artículo hace una revisión de la megacariopoyesis y su regulación, con énfasis en las vías de señalización implicadas. Además, se mencionan algunas enfermedades relacionadas y se discuten las perspectivas de investigación de este proceso, con énfasis en la toxicología.


Hematotoxicology has been studied with less interest than other fields associated with atmospheric pollution. There is limited knowledge about on the effects that certain atmospheric pollutants may provoke in the blood and bone marrow. Suspended particle pollution has become an area of scientific inquiry due to the contaminants adhering to its surface. We have identified the association of inhaled vanadium and variations in megakaryopoyesis and thrombopoyesis. Platelets are the smallest elements in the blood, but they play a strategic role in hemostasis. They are derived from the largest cell of the bone marrow, the megakaryocite. This cell size is about 150 microm, with apolyploid nucleus and unknown origin until few years ago. When TPO was cloned in 1994 the knowledge about megakaryocyte began to growth exponentially, elucidating the mechanisms of proliferation, differentiation and release of platelets. More information is still needed in order to translate knowledge into clinical application for diseases such as thrombocytopenia or thrombocytosis. A review of the current concepts of megakaryopoiesis and its regulation, with emphasis on signaling pathways are presented in this paper; a classification in TPO-dependent and TPO-independent is also detailed. In addition, we review some diseases associated with changes in the signaling pathway of megakaryopoyesis, as well as possible perspectives in this field, including toxicology.


Assuntos
Humanos , Animais , Megacariócitos/fisiologia , Transdução de Sinais , Citocinas/fisiologia , Quimiocinas/fisiologia , Trombopoese/fisiologia
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