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Total 3 results found since Jan 2013.

Pollutants In Your Salt!?
Your doctor, the media, and the medical establishment continue to warn that flavoring your food with salt will kill you. They link sodium consumption to a higher risk of high blood pressure, stroke – and of course, heart disease. As usual, the powers that be are missing the real picture… You see, salt has been part of human life for thousands of years – long before these chronic diseases became as common as they are today. Humans started adding salt to their food for more than 5,000 years. It was the most effective way to preserve food. Some historians even go as far as to credit salt for the development of human civ...
Source: Al Sears, MD Natural Remedies - December 23, 2022 Category: Complementary Medicine Authors: Jacob Tags: Anti-Aging Health Source Type: news

Correlation Between Intracranial Arterial Calcification and Imaging of Cerebral Small Vessel Disease
Conclusion: Intracranial artery calcification is common in patients with ischemic cerebrovascular disease and the intracranial carotid artery is most frequently affected. Intracranial arterial calcifications might be associated with imaging markers of SVD and are highly correlated with WMHs, lacunes, and CMBs. Quantification of calcification on CT provides additional information on the pathophysiology of SVD. Intracranial arterial calcification could act as a potential marker of SVD. Introduction Atherosclerosis is a systemic vascular process that is considered a major cause of cerebrovascular and cardiovascular di...
Source: Frontiers in Neurology - April 30, 2019 Category: Neurology Source Type: research

Orexin-A Prevents Lipopolysaccharide-Induced Neuroinflammation at the Level of the Intestinal Barrier
We examined a possible protective effect of OX-A against LPS-induced ROS formation and microglia activation. To mimic in vitro the connection between gut and brain and to study the putative effect on the cortical microglia, we used a co-culture of Caco-2 cells and primary cortical microglia with Caco-2 cells placed at the apical side of a transwell and primary cortical microglia at the basolateral side. All treatments used to study the apical vs. basal connection were applied to the apical compartment. We used DHR (10 μM, 20 min), a cell-permeable fluorogenic probe useful for the detection of ROS formation, to dete...
Source: Frontiers in Endocrinology - April 9, 2019 Category: Endocrinology Source Type: research