Category Health/Medical

Defective Telomeres are now being linked to Dozens of Diseases, including many types of Cancer

Shelterin recruits accessory proteins to the telomeres that facilitate the complex process of telomere copying and maintenance associated with cell multiplication.

Shelterin recruits accessory proteins to the telomeres that facilitate the complex process of telomere copying and maintenance associated with cell multiplication.

Telomere length related to ageing and cancer, has led to the intense study of telomere-based strategies to combat cancer and diseases associated with ageing. Blasco’s group has recently shown that it is possible to make cancer cells mortal by acting on the telomeres.

We now know that there is a protective structure enveloping telomeric DNA consisting of 6 proteins known as shelterins, which are crucial. Another more recent discovery is there are proteins that, although not in telomeres themselves, interact with them at specific times to enable them to perform their functions...

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How Loss of Bacterial Symbionts Promotes Development of Allergies & acts on Immune System Balance


  
The presence of microbes specifically blocks the immune cells responsible for triggering allergies. It is well known the microbiota is involved in many mechanisms, including digestion, vitamin synthesis and host defense.The hygiene hypothesis suggests a link between a decline in infectious diseases and increase in allergic diseases in industrialized countries. Improvements in hygiene levels lead to reduced contact with microbes that is paralleled by an increased incidence in allergic and autoimmune diseases, eg type 1 diabetes.

Epidemiological studies have substantiated this hypothesis, by showing children living with farm animals – and thus with more microbial agents – develop fewer allergies during their lifetime...

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‘Jumping genes’ ie L1 elements, may add to the Genetic Chaos driving greater than 3/4 of Esophageal Cancer Cases

L1 elements can uproot themselves and move to new areas in the DNA, sometimes accidentally moving into genes that control the cell’s growth. This happened around 100X in each tumour sample, and in some tumours it happened 700X. Cambridge Uni scientists used cutting-edge technology that can read DNA to study the genes of 43 esophageal tumour and blood samples to discover how much these mobile genetic sequences travel.

If a jumping gene lands in or near an important gene that controls cell growth, it can wreak havoc, changing how the gene works so that it inadvertently tells the cell to grow and divide out of control – which could lead to cancer. “Research has shown that this might also happen in lung and bowel cancers...

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“We know from previous research that macrophages are versatile, and signals at the injury site can stimulate repair or destruction–or confusingly, both,” said John Gensel Ph.D., Assistant Professor of Physiology in the Spinal Cord and Brain Injury Research Center at the University of Kentucky. “But the mechanisms through which these signals stimulate the good and/or bad functions in macrophages are not known. So the next big question to answer in the efforts to understand and treat SCI was, ‘Why?'”

Gensel and Popovich looked at more than 50 animals with spinal cord injury to try to identify which macrophage receptors promoted neuronal repair and which directed the destructive process...

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