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DTSTART:19960101T000000 END:STANDARD BEGIN:STANDARD TZNAME:GMT TZOFFSETFROM:+0100 TZOFFSETTO:+0000 DTSTART:19961027T020000 RRULE:FREQ=YEARLY;BYMONTH=10;BYDAY=-1SU END:STANDARD END:VTIMEZONE BEGIN:VEVENT DTSTAMP:20260614T001600Z DTSTART;VALUE=DATE-TIME:20180131T130000 DTEND;VALUE=DATE-TIME:20180131T140000 SUMMARY:Seminar by Professor Paul Thornalley and Dr Chrystala Constantini dou\, Division of Biomedical Sciences\, ÌÇÐÄTV Medical School TZID:Europe/London UID:20180131-8a17841b5e514981015e5bd11dcd65a0@warwick.ac.uk CREATED:20170907T100944Z DESCRIPTION:When the sweet turns nasty! Prerequisites\, mechanisms and ne w therapeutics for chronic vascular complications of diabetes Chronic va scular complications are the major cause of morbidity and premature mort ality in the diabetic patient population. These are: microvascular compl ications – nephropathy\, retinopathy and neuropathy\; and macrovascular complications - coronary artery disease\, peripheral arterial disease an d stroke. Current treatment is ineffective and new options are limited. For example\, on-treatment mortality of diabetic patients with nephropat hy is higher than for cancer and the last clinical trials leading to lic ensed new drugs for diabetic nephropathy reported 17 years ago. Dysregul ation and misuse of glucose in peripheral sites in hyperglycemia drives the development of diabetic vascular complications. The seminar will add ress recent advances that have identified the key prerequisites for cell and tissue vulnerability to the chronic damaging effects of hyperglycem ia\, the mechanisms involved and a new approach to therapy in clinical e valuation – Glyoxalase 1 inducers. Flagella assembly and regulation in p olar bacteria Flagella are complex structures formed by up to 100 differ ent proteins. The assembly of the proteins follows a specific order\, be ginning from the inner end of the construction (cytoplasm and inner memb rane) and finishing at the outer end of the organelle outside the bacter ium. Flagella-gene expression is mediated in a hierarchical manner. Addi ng to the complexity are the diverse patterns and numbers of flagella di fferent bacterial species possess. For pathogenic bacteria such as Campy lobacter jejuni\, flagellar motility and chemotaxis play key roles in in testinal colonisation\, invasion of epithelial cells\, biofilm formation and protein secretion. A number of genes of unknown function have been identified as crucial for the correct assembly of the flagellar structur es in C. jejuni and other polar bacteria. Studies on one such gene\, flh F\, have provided us with novel insights into the regulation of flagella r biogenesis. LOCATION:MTC Lecture Theatre\, ÌÇÐÄTV Medical School CATEGORIES:BiomedicalSciences,DivisionalSeminars LAST-MODIFIED:20180131T090700Z ORGANIZER;CN=Jas Bains: END:VEVENT END:VCALENDAR