The anti-rabies activity of Caspian cobra venom
TOXICON
Authors: Farzad, Reza; Gholami, Alireza; Roodbari, Nasim Hayati; Shahbazzadeh, Delavar
Abstract
Rabies is acute encephalitis that continuously kills thousands of people annually. There is no clinical cure for rabies so far and its prevention is limited to sero-vaccinations based on standard WHO protocols. Certain compounds such as snake venoms contain active biological components with tendency toward acetylcholine receptors and ion channels at the cell surface. These compounds then are able to reduce aggregation of the virus in neuromuscular junction that may lead to inhibit the virus activity. In this study we worked on cytotoxicity and antiviral activity effects of Naja naja oxiana (Iranian Caspian cobra) snake venom components, on Rabies Lyssavirus (Rabies virus; RABV) infected mammalian cells. The concentration of 25 mu g/ml F5 fraction separated by FPLC showed minor toxicity on BHK-21 cells by MTT test and high antiviral activity against infected cells by FAT assay. Further studies on F5 fractionation by HPLC showed that the proliferation of infected BHK-21 cells by rabies virus CVS-11 strain was decreased up to 80% by using 20 mu g/ml P5 peak, after 48 h. We assume that P5-peptide (MW < 10 kDa) enters the cells through AChR receptors same as rabies virus without competition in binding to the cell receptors and is able to reduce the virus proliferation on post viral infection phase. This is the first report of the presence of an anti-rabies effect of Caspian cobra snake venom component. As per our results the P5 peak is a suitable candidate for further studies as a new agent to reduce CVS-11 rabies virus.
A large-scale exome array analysis of venous thromboembolism
GENETIC EPIDEMIOLOGY
Authors: Lindstrom, Sara; Brody, Jennifer A.; Turman, Constance; Germain, Marine; Bartz, Traci M.; Smith, Erin N.; Chen, Ming-Huei; Puurunen, Marja; Chasman, Daniel; Hassler, Jeffrey; Pankratz, Nathan; Basu, Saonli; Guan, Weihua; Gyorgy, Beata; Ibrahim, Manal; Empana, Jean-Philippe; Olaso, Robert; Jackson, Rebecca; Braekkan, Sigrid K.; McKnight, Barbara; Deleuze, Jean-Francois; O'Donnell, Cristopher J.; Jouven, Xavier; Frazer, Kelly A.; Psary, Bruce M.; Wiggins, Kerri L.; Taylor, Kent; Reiner, Alexander P.; Heckbert, Susan R.; Kooperberg, Charles; Ridker, Paul; Hansen, John-Bjarne; Tang, Weihong; Johnson, Andrew D.; Morange, Pierre-Emmanuel; Tregouet, David A.; Kraft, Peter; Smith, Nicholas L.; Kabrhel, Christopher
Abstract
Although recent Genome-Wide Association Studies have identified novel associations for common variants, there has been no comprehensive exome-wide search for low-frequency variants that affect the risk of venous thromboembolism (VTE). We conducted a meta-analysis of 11 studies comprising 8,332 cases and 16,087 controls of European ancestry and 382 cases and 1,476 controls of African American ancestry genotyped with the Illumina HumanExome BeadChip. We used the seqMeta package in R to conduct single variant and gene-based rare variant tests. In the single variant analysis, we limited our analysis to the 64,794 variants with at least 40 minor alleles across studies (minor allele frequency [MAF] similar to 0.08%). We confirmed associations with previously identified VTE loci, including ABO, F5, F11, and FGA. After adjusting for multiple testing, we observed no novel significant findings in single variant or gene-based analysis. Given our sample size, we had greater than 80% power to detect minimum odds ratios greater than 1.5 and 1.8 for a single variant with MAF of 0.01 and 0.005, respectively. Larger studies and sequence data may be needed to identify novel low-frequency and rare variants associated with VTE risk.