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1.
Curr Microbiol ; 79(2): 57, 2022 Jan 04.
Artículo en Inglés | MEDLINE | ID: mdl-34982247

RESUMEN

Leptospirosis is a worldwide zoonosis and a serious public health threat in tropical and subtropical areas. The etiologic agents of leptospirosis are pathogenic spirochetes from the genus Leptospira. In severe cases, patients develop a pulmonary hemorrhage that is associated with high fatality rates. Several animal models were established for leptospirosis studies, such as rodents, dogs, and monkeys. Although useful to study the relationship among Leptospira and its hosts, the animal models still exhibit economic and ethical limitation reasons and do not fully represent the human infection. As an attempt to bridge the gap between animal studies and clinical information from patients, we established a three-dimensional (3-D) human lung cell culture for Leptospira infection. We show that Leptospira is able to efficiently infect the cell lung spheroids and also to infiltrate in deeper areas of the cell aggregates. The ability to infect the 3-D lung cell aggregates was time-dependent. The 3-D spheroids infection occurred up to 120 h in studies with two serovars, Canicola and Copenhageni. We standardized the number of bacteria in the initial inoculum for infection of the spheroids and we also propose two alternative culture media conditions. This new approach was validated by assessing the expression of three genes of Leptospira related to virulence and motility. The transcripts of these genes increased in both culture conditions, however, in higher rates and earlier times in the 3-D culture. We also assessed the production of chemokines by the 3-D spheroids before and after Leptospira infection, confirming induction of two of them, mainly in the 3-D spheroids. Chemokine CCL2 was expressed only in the 3-D cell culture. Increasing of this chemokine was observed previously in infected animal models. This new approach provides an opportunity to study the interaction of Leptospira with the human lung epithelium in vitro.


Asunto(s)
Técnicas de Cultivo Tridimensional de Células , Leptospira , Leptospirosis , Animales , Humanos , Leptospirosis/veterinaria , Pulmón , Virulencia
2.
Curr Microbiol, v. 70, p. 57, jan. 2022
Artículo en Inglés | SES-SP, SES SP - Instituto Butantan, SES-SP | ID: bud-4095

RESUMEN

Leptospirosis is a worldwide zoonosis and a serious public health threat in tropical and subtropical areas. The etiologic agents of leptospirosis are pathogenic spirochetes from the genus Leptospira. In severe cases, patients develop a pulmonary hemorrhage that is associated with high fatality rates. Several animal models were established for leptospirosis studies, such as rodents, dogs, and monkeys. Although useful to study the relationship among Leptospira and its hosts, the animal models still exhibit economic and ethical limitation reasons and do not fully represent the human infection. As an attempt to bridge the gap between animal studies and clinical information from patients, we established a three-dimensional (3-D) human lung cell culture for Leptospira infection. We show that Leptospira is able to efficiently infect the cell lung spheroids and also to infiltrate in deeper areas of the cell aggregates. The ability to infect the 3-D lung cell aggregates was time-dependent. The 3-D spheroids infection occurred up to 120 h in studies with two serovars, Canicola and Copenhageni. We standardized the number of bacteria in the initial inoculum for infection of the spheroids and we also propose two alternative culture media conditions. This new approach was validated by assessing the expression of three genes of Leptospira related to virulence and motility. The transcripts of these genes increased in both culture conditions, however, in higher rates and earlier times in the 3-D culture. We also assessed the production of chemokines by the 3-D spheroids before and after Leptospira infection, confirming induction of two of them, mainly in the 3-D spheroids. Chemokine CCL2 was expressed only in the 3-D cell culture. Increasing of this chemokine was observed previously in infected animal models. This new approach provides an opportunity to study the interaction of Leptospira with the human lung epithelium in vitro.

3.
Int J Food Sci Nutr ; 59(3): 202-10, 2008 May.
Artículo en Inglés | MEDLINE | ID: mdl-17852482

RESUMEN

The present study aims to assess the vitamin A liver store in individuals who died of several causes and to compare them with those who died of violent causes. A case-control study was performed with 60 individuals, where 30 died of violent causes (control) and 30 of other causes (cardiovascular diseases, infections, other chronic degenerative diseases, several causes). According to the cause of death, the mean retinol from liver stores was 281.5 +/- 63.50 mg/g for individuals who died of violent causes--a significantly higher amount (P < 0.05) than those observed in the other group (105.4 +/- 87.54 mg/g by cardiovascular diseases, 88.1 +/-78.03 mg/g by infections, 162.4 +/- 119.19 mg/g by other chronic degenerative diseases and 205.5 + 126.63 mg/g by several causes). The highest prevalence of low vitamin A was observed in individuals who died of infections and cardiovascular diseases, which emphasizes the role of vitamin A in these pathological processes.


Asunto(s)
Enfermedades Cardiovasculares/metabolismo , Enfermedades Transmisibles/metabolismo , Hígado/metabolismo , Violencia , Vitamina A/análisis , Adulto , Brasil , Estudios de Casos y Controles , Causas de Muerte , Cromatografía Liquida/métodos , Humanos , Masculino , Espectrometría de Masas/métodos , Factores de Riesgo , Estadística como Asunto , Vitamina A/metabolismo
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