Ischemia-induced inhibition of mitochondrial complex I in rat brain: effect of permeabilization method and electron acceptor.

Neurochem Res

Faculty of Medicine, Institute of Medical Chemistry, Biochemistry and Clinical Biochemistry, Comenius University, Sasinkova 2, 811 08 Bratislava, Slovakia.

Published: May 2012

In this study we have examined the effect of global brain ischemia/reperfusion on biochemical properties of the mitochondrial respiratory complex I (CI) in rat hippocampus and cortex. Since the inner mitochondrial membrane forms the permeability barrier for NADH, the methodology of enzymatic activity determinations employs membrane permeabilization methods. This action affects the basic character of electrostatic and hydrophobic interactions inside the membrane and might influence functional properties of membrane embedded proteins. Therefore we have performed the comparative analysis of two permeabilization methods (sonication, detergent) and their impact on CI enzymatic activities under global brain ischemic-reperfusion conditions. We have observed that ischemia led to significant decrease of CI activities using both permeabilization methods in both brain areas. However, significant differencies in enzymatic activities were registered during reperfusion intervals according to used permeabilization method. We have also tested the effect of electron acceptors (decylubiquinone, potassium ferricyanide, nitrotetrazolium blue) on CI activities during I/R. Based on our results we assume that the critical site where ischemia affects CI activities is electron transfer to electron acceptor. Further, the observed mitochondrial dysfunction was analyzed by means of one and 2-dimensional BN PAGE/SDS PAGE with the focus on 3-nitrotyrosine immunodetection as a marker of oxidative damage to proteins. Add to this, initialization of p53 mitochondrial apoptosis through p53, Bax, Bcl-X(L) proteins and a possible involvement of GRIM-19, the CI structural subunit, in apoptotic processes were also studied.

Download full-text PDF

Source
http://dx.doi.org/10.1007/s11064-011-0689-6DOI Listing

Publication Analysis

Top Keywords

permeabilization methods
12
complex rat
8
permeabilization method
8
electron acceptor
8
global brain
8
enzymatic activities
8
mitochondrial
5
permeabilization
5
activities
5
ischemia-induced inhibition
4

Similar Publications

Nano-sized polystyrene plastics toxicity: Necroptosis pathway caused by autophagy blockade and lysosomal dysfunction.

NanoImpact

December 2024

National Key Laboratory of Veterinary Public Health and Safety. College of Veterinary Medicine, China Agricultural University, Beijing 100093, China. Electronic address:

The persistent detection of nano-sized plastic particles in humans, animals, and animal-derived products underscores the potential impact of these particles on living organisms. Consequently, the toxicology of such particles has emerged as a pivotal research interests in recent years. In this study, NP was synthesized successfully with an average particle size of 100 nm using a emulsion polymerization method as model particles.

View Article and Find Full Text PDF

Background: poses a significant public health threat. Phage-encoded antimicrobial peptides (AMPs) have emerged as promising candidates in the battle against antibiotic-resistant .

Methods: Antimicrobial peptides from the endolysin of bacteriophage were designed from bacteriophage vB_AbaM_PhT2 and vB_AbaAut_ChT04.

View Article and Find Full Text PDF

Immunofluorescence for Detection of TOR Kinase Activity In Situ in Photosynthetic Organisms.

Bio Protoc

December 2024

Instituto de Investigaciones en Biodiversidad y Biotecnología (INBIOTEC) and FIBA, Vieytes 3103, Mar del Plata, Argentina.

The target of rapamycin (TOR) is a central hub kinase that promotes growth and development in all eukaryote cells. TOR induces protein synthesis through the phosphorylation of the S6 kinase (S6K), which, in turn, phosphorylates ribosomal S6 protein (RPS6) increasing this anabolic process. Therefore, S6K and RPS6 phosphorylation are generally used as readouts of TOR activity.

View Article and Find Full Text PDF

Fluorescence In Situ Hybridization Protocol for Visualization of Oomycetes In Vitro and In Planta.

Methods Mol Biol

December 2024

United States Department of Agriculture, Agricultural Research Service, Foreign Disease/Weed Science Research Unit, Frederick, MD, USA.

Fluorescence in situ hybridization enables the visualization of organisms in the environment without having to culture them. Here, we describe a FISH protocol to visualize oomycete structures (mycelia, sporangiophores, sporangia, and oospores) directly as well as from colonized plant material. The protocol utilizes organic compounds with low toxicities and does not require a permeabilization step.

View Article and Find Full Text PDF

Exploring the Potential of Nitrofurantoin for Infection Control in Regenerative Endodontics: In Vitro Study.

J Endod

December 2024

Postgraduate Program in Dentistry of Fluminense Federal University (UFF), Niteroi, Rio de Janeiro, Brazil; Geriatric Dentistry Department, Faculty of Dentistry of Fluminense Federal University (UFF), Niteroi, Rio de Janeiro, Brazil; Laboratory of Experimental Culture Cell (LECCel), Faculty of Dentistry of Fluminense, Federal University (UFF), Niteroi, Rio de Janeiro, Brazil; Endodontics Department, Faculty of Dentistry of Fluminense Federal University (UFF), Niteroi, Rio de Janeiro, Brazil. Electronic address:

Introduction: This study assessed a new antimicrobial paste formulation containing nitrofurantoin for regenerative endodontics against multispecies biofilms.

Methods: Four groups of 11 single-root teeth each were tested: Negative control group (brain-heart infusion broth + micro-organisms); Hoshino 1 conventional tri-antibiotic paste group (1:1:1 ratio); Hoshino 5 group (5:5:5 ratio); Experimental group with nitrofurantoin, ciprofloxacin, and metronidazole. Minimum inhibitory concentrations of each antimicrobial were determined.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!