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Showing 2 results for Bilayer Lipid

Mansourian Ar (phd), Saifi A (pharm.d),
Volume 1, Issue 2 (6-1999)
Abstract

All the Lipids within the cellular membranes are existed in bilayer structure, but it has been proved that when some of these Lipids extracted from the native membrane and dispersed in water, it does exhibit non-bilayer structure, although the same Lipids have got bilayer structure in the membrane itself. It has been reported that some factors such as, enzymes (Lipase), temperature, change of pH and presence of some ions, some biochemical, biophysical and physiological variation, can convert the bilayer forming Lipids into the non-bilayer structure within the native membrane itself. Endocytotic vesicles are generated when segments of plasma membrane invaginated enclosing a minute volume of extracellular fluid and its contents. In exocytosis also remodeling of membrane is involved and most cells release macromolecules to the exterior by exocytosis, the processes of diffusion also happen with some Lipids change into the non-bilayer structure. The question that represent the subject of this review article is the way the Lipids in cellular membrane change their molecular structure from the bilayer to non-bilayer structure, to pave the way for the above processes.
Ashrafpour M (phd), Sepehri H (phd), Eliassi A (phd), Saghiri R (phd), Fahanik Babaei J (msc),
Volume 14, Issue 1 (3-2012)
Abstract

Background and Objective: The role of ion channels and particularly cationic channels in the pathogenesis of various diseases are being considered carefully. The diabetes mellitus is a common disease which is initiated by ion channel disturbances. This study was done to determine the characteristics of hepatocyte rough endoplasmic reticulum single cationic channel in Streptozocin- induced diabetic rats.

Materials and Methods: This experimental study was done on 10 male adult Wistar rats and animals were randomly allocaied into diabetic and control groups. Diabetes induced by STZ (65 mg/kg/bw) intraperitounally. Rough endoplasmic reticulum vesicles were extracted following rat liver excision, homogenization and ultracentrifuging. The bilayer membrane formation was prepared by painting phosphatidylcholine on 250µM aperture in between Cis and Trans sides. The RER vesicles incorporation was performed through gentle and delicate touch of membrane using a dentistry needle. The Pclamp9 software was used for ion channel activity characteristic analysis.

Results: The cationic channel current amplitude did not change significantly in voltages more than +3o mV but their open probability (Po) decreased in diabetic group (P<0.05). More severe changes in channel activity were seen in potentials less than the reverse potential. In addition to significant increase of channel Po (P<0.05), also, the channel unitary currents were significantly decreased (P<0.05). The mean current amplitude and channel open probability in voltage +40 mV were 17±2.14 pA and 0.68±0.01 in control group respectively, whereas, the values of these parameters reached to 18.5±2.5 and 0.26±0.03, respectively. In voltage -10 mV, the values of mean current amplitude and Po were -22.3±2.14 pA and <0.1 in control group, respectively but the values changed to -13.1±0.08 and 0.62±0.03 in diabetic group.

Conclusion: It seems that RER cationic channel is involved in metabolic changes which cause by diabetes mellitus and this disease can cause probably a channel gating kinetic and behavior change by inducing metabolic stresses.



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مجله دانشگاه علوم پزشکی گرگان Journal of Gorgan University of Medical Sciences
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