scholarly journals Cadmium-mediated oxidative stress and ultrastructural changes in root cells of poplar cultivars

2012 ◽  
Vol 83 ◽  
pp. 98-108 ◽  
Author(s):  
W. Ge ◽  
Y.Q. Jiao ◽  
B.L. Sun ◽  
R. Qin ◽  
W.S. Jiang ◽  
...  
2021 ◽  
Vol 23 (1) ◽  
pp. 35-38
Author(s):  
L. I. Bon ◽  
◽  
S. M. Zimatkin ◽  

The aim of this work was to study the ultrastructure of the internal pyramidal neurons of the neocortex of 5-day-old rat pups after antenatal alcoholization. The studies were carried out on female outbred white rats with an initial weight of 230 ± 20 g and their offspring. Prenatal alcoholization causes deep and varied ultrastructural changes in pyramidal neurons in the neocortex of 5-day-old rats. Moreover, these violations of direct action not only as a consequence of the damaging effect of alcohol, its metabolite acetehyde or the oxidative stress they cause on the membranes and organelles of neurons during embryogenesis, but also as a violation of the normal "program" of development" of neurons in the cortex.


2014 ◽  
Vol 56 (1) ◽  
pp. 77-91 ◽  
Author(s):  
Mieczysław Karaś

In the germinating rape embryo the columella and basal part of hypocotyl undergo earliest activation. Its first ultrastructural symptom is the appearance of numerous ER vesicles after 3-6 h of seed swelling. Their number is the highest in the external layers of the columella and decreases in basipetal direction. Dermatogen cells in the basal zone of the hypocotyl contain the greatest amount of ER structures, whereas decreasing amounts are found in both directions along the embryo axis and centripetally. Further changes in the ER spread in a similar order. The vesicles merge and form a tubular and plate-like ER. Then, they disappear and are replaced by tubular and vesicular forms. The changes in the ER are gradually followed by ultrastructural symptoms of activation of mitochondria, plastids and dictyosomes. The highest number of ER structures and other organelles accumulate in root cells shortly before piercing of the seed coat. After germination their amount decreases and remains almost stable.


Author(s):  
Mukund P Srinivasan ◽  
Kamlesh K Bhopale ◽  
Anna A Caracheo ◽  
Lata Kaphalia ◽  
Bin Gong ◽  
...  

Alcoholic chronic pancreatitis (ACP) is a fibroinflammatory disease of the pancreas. However, metabolic basis of ACP is not clearly understood. In this study, we evaluated differential pancreatic injury in hepatic alcohol dehydrogenase deficient (ADH-) deer mice fed chronic ethanol (EtOH), chronic plus binge EtOH, and chronic plus binge EtOH and fatty acid ethyl esters (FAEEs, nonoxidative metabolites of EtOH) to understand the metabolic basis of ACP. Hepatic ADH- and ADH normal (ADH+) deer mice were fed Lieber-DeCarli liquid diet containing 3% (w/v) EtOH for three months. One week before the euthanization, chronic EtOH fed mice were further administered with an oral gavage of binge EtOH with/without FAEEs. Blood alcohol concentration (BAC), pancreatic injury and inflammatory markers were measured. Pancreatic morphology, ultrastructural changes, endoplasmic reticulum (ER)/oxidative stress were examined using H & E staining, electron microscopy, immunostaining, and/or Western blot, respectively. Overall, BAC was substantially increased in chronic EtOH fed groups of ADH- vs. ADH+ deer mice. A significant change in pancreatic acinar cell morphology, with mild to moderate fibrosis and ultrastructural changes evident by dilatations and disruption of ER cisternae, ER/oxidative stress along with increased levels of inflammatory markers were observed in the pancreas of chronic EtOH fed groups of ADH- vs. ADH+ deer mice. Furthermore, chronic plus binge EtOH and FAEEs exposure elevated BAC, enhanced ER/oxidative stress and exacerbated chronic EtOH-induced pancreatic injury in ADH- deer mice suggesting a role of increased body burden of EtOH and its metabolism under reduced hepatic ADH in initiation and progression of ACP.


2020 ◽  
Vol 149 ◽  
pp. 170-177 ◽  
Author(s):  
Lucia Giorgetti ◽  
Carmelina Spanò ◽  
Simonetta Muccifora ◽  
Stefania Bottega ◽  
Francesco Barbieri ◽  
...  

2008 ◽  
Vol 70 (2) ◽  
pp. 300-310 ◽  
Author(s):  
V. Mohan Murali Achary ◽  
Suprava Jena ◽  
Kamal K. Panda ◽  
Brahma B. Panda

2015 ◽  
Vol 16 (7) ◽  
pp. 15852-15871 ◽  
Author(s):  
Eleftherios Eleftheriou ◽  
Ioannis-Dimosthenis Adamakis ◽  
Emmanuel Panteris ◽  
Maria Fatsiou

PROTOPLASMA ◽  
2020 ◽  
Author(s):  
Ritika Rajpoot ◽  
Rajneesh Kumar Srivastava ◽  
Anjana Rani ◽  
Poonam Pandey ◽  
R. S. Dubey

2020 ◽  
Author(s):  
Lei Chen ◽  
Wensu Chen ◽  
Yao Zhang ◽  
Zhirong Wang

Abstract Background The pathogenesis of atrial fibrillation(AF) is complex, and the treatment method is still not satisfactory. A rapid atrial pacing (RAP) model was constructed to study the effects of alpha-lipoic acid (ALA) on electrical and structural remodeling, as well as its possible mechanism in rabbits.Methods A total of 30 rabbits were randomly divided into a sham-operated group (SHAM group), a rapid atrial pacing model group (RAP group) and an alpha-lipoic acid+rapid atrial pacing model group (ALA+RAP group). Their right atriums were paced at a speed of 600 beats/min for 12 h in the RAP and ALA+RAP groups, and the atrial effective refractory period (AERP) and AERP frequency adaptability were determined during the pace. In each group, malondialdehyde (MDA), superoxide dismutase (SOD) and reactive oxygen species (ROS) were detected to observe the effects of oxidative stress. The pathological structure of the atrial tissue was observed through HE and Masson staining. Ultrastructural changes in the atrial myocytes were observed by transmission electron microscopy (TEM), and the expression levels of Nox2 and Nox4 were detected by immunohistochemistry, western blot and ELISA.Conclusion ALA can inhibit atrial electrical remodeling and structural remodeling by reducing ROS production and alleviating oxidative stress injury induced by rapid right atrial pacing, and its mechanism may be related to inhibiting the activity of NADPH oxidase.


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