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1.
Acta Psychiatr Scand ; 142(1): 58-65, 2020 07.
Artigo em Inglês | MEDLINE | ID: mdl-32335894

RESUMO

OBJECTIVE: Our aim was to evaluate the relationship between evening chronotype, a proxy marker of circadian system dysfunction, and disordered eating behavior and poor dietary habits in individuals with bipolar disorder (BD). METHODS: In this cross-sectional study, we evaluated 783 adults with BD. Chronotype was determined using item 5 from the reduced Morningness-Eveningness Questionnaire. The Eating Disorder Diagnostic Scale (EDDS) and the Rapid Eating Assessment for Participants-Shortened Version (REAP-S) were used to assess disordered eating behavior and dietary habits respectively. General linear models and logistic regression models were utilized to evaluate differences between chronotype groups. RESULTS: Two hundred and eight (27%) BD participants self-identified as having evening chronotypes. Compared to non-evening types, evening types were younger (P < 0.01) and, after controlling for age, had higher mean EDDS composite z-scores (P < 0.01); higher rates of binge-eating (BE) behavior (P = 0.04), bulimia nervosa (P < 0.01), and nocturnal eating binges (P < 0.01); and a higher body mass index (P = 0.04). Compared to non-evening types, evening chronotypes had a lower REAP-S overall score (P < 0.01) and scored lower on the 'healthy foods' and 'avoidance of unhealthy food' factors. Evening types also skipped breakfast more often (P < 0.01), ate less fruit (P = 0.02) and vegetables (P = 0.04), and consumed more fried foods (P < 0.01), unhealthy snacks (P = 0.02), and soft drinks (P = 0.01). CONCLUSIONS: Our findings suggest that the circadian system plays a role in the disordered eating and unhealthy dietary behaviors observed in BD patients. The circadian system may therefore represent a therapeutic target in BD-associated morbidity that warrants further investigation.


Assuntos
Transtorno Bipolar/complicações , Ritmo Circadiano , Comportamento Alimentar , Transtornos da Alimentação e da Ingestão de Alimentos/complicações , Adulto , Estudos Transversais , Feminino , Humanos , Masculino , Inquéritos e Questionários
2.
J Affect Disord ; 145(3): 405-8, 2013 Mar 05.
Artigo em Inglês | MEDLINE | ID: mdl-22884238

RESUMO

BACKGROUND: The child behavior checklist-Juvenile bipolar disorder phenotype (CBCL-JBD) has been proposed as a distinct profile specific to children and adolescents who have been diagnosed with bipolar disorder. The objective of this study was to examine whether bipolar disorder youth with depression exhibit the "CBCL-Juvenile bipolar disorder phenotype." METHODS: Thirty-two adolescents, ages 12-18 years, with a depressive episode associated with bipolar I disorder were recruited, and their primary caregivers completed the CBCL. RESULTS: Only the internalizing subscale (mean=70.2, SD=9.7) and total score (mean=71.5, SD=8.9) reached clinical significance (>70). Moreover, the CBCL-JBD profile scores of our subjects (204.6, SD=27.5) did not reach clinical significance (>210). LIMITATIONS: Our subjects differed demographically from those in studies that have confirmed the CBCL-Juvenile bipolar disorder phenotype with regards to sex, age and ADHD comorbidity, thus limiting the interpretability of our comparisons with other studies. Furthermore, our investigation involved a small sample size and did not include a control group, which should be addressed in future studies. CONCLUSIONS: The results of our study suggest that the CBCL-JBD profile is not characteristic of depressed youth with bipolar disorder. Better assessment tools for making an accurate and efficient diagnosis of bipolar disorder are needed so that appropriate treatment can be implemented and significant morbidity and mortality are minimized.


Assuntos
Transtorno Bipolar/psicologia , Lista de Checagem , Depressão/epidemiologia , Adolescente , Transtorno do Deficit de Atenção com Hiperatividade/epidemiologia , Comorbidade , Feminino , Humanos , Masculino , Escalas de Graduação Psiquiátrica , Reprodutibilidade dos Testes
3.
Plant Cell Rep ; 12(10): 573-6, 1993 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-24201788

RESUMO

The subcellular localization of tryptophan decarboxylase, strictosidine synthase and strictosidine glucosidase in suspension cultured cells of Catharanthus roseus (L.) G. Don and Tabernaemontana divaricata (L.) R. Br. ex Roem. et Schult, was investigated. It was found that tryptophan decarboxylase is an extra-vacuolar enzyme, whereas strictosidine synthase is active inside the vacuole. Strong indications were obtained for the localization of strictosidine glucosidase on the outside of the tonoplast. The results suggest that tryptamine is transported into the vacuole where it is condensed with secologanin to form strictosidine, and that strictosidine passes the tonoplast and is subsequently hydrolysed outside the vacuole.

4.
Plant Cell Rep ; 11(3): 146-9, 1992 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-24213548

RESUMO

A simple apparatus was designed to allow sedimentation of plant cells grown in batch suspensions in Erlenmeyer flasks. After sedimentation the height of the cell mass along the glass wall was measured with a ruler fixed in the apparatus. The cell volume after sedimentation, calculated from this height, appeared highly correlated with the fresh weight of cells. This result was found with eight cell lines in two Laboratories. The method proved to be very suitable to allow routinely measurement of FW without the destruction of cells, from many samples, in a short time, during each phase of the growth cycle.

5.
Planta ; 183(2): 170-7, 1991 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-24193617

RESUMO

Isolated vacuoles from ajmalicine-producing cell suspensions of Catharanthus roseus accumulated the alkaloid ajmalicine. Dissipation of the transtonoplast pH gradient with nigericin abolished ajmalicine accumulation, whereas dissipation of the transtonoplast potential with valinomycin had no effect. Addition of Mg-ATP resulted in a higher ajmalicine accumulation. Serpentine produced by the cells was largely recovered in isolated vacuoles; in contrast, ajmalicine was lost. Ajmalicine was converted in vitro into serpentine by horseradish basic peroxidases (EC 1.11.1.7). In cultured cells there was a striking conformity between the time course of serpentine content and that of the activity of basic peroxidases. Ajmalicine was converted efficiently into serpentine by basic peroxidases extracted from vacuoles and by intact isolated vacuoles. The results are consistent with the hypothesis that ajmalicine accumulates by an ion-trap mechanism and that the accumulated ajmalicine is converted into serpentine inside the vacuoles. By the transformation of ajmalicine into the charged serpentine a trap is created to retain the alkaloids more efficiently in the vacuole.

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