Showing posts with label bone strength. Show all posts
Showing posts with label bone strength. Show all posts
Wednesday, July 25, 2018
University Study Public Release - 'Good cholesterol' may not always be good"
PUBLIC RELEASE: 19-JUL-2018
'Good cholesterol' may not always be good
UNIVERSITY OF PITTSBURGH SCHOOLS OF THE HEALTH SCIENCES
PITTSBURGH, July 19, 2018 - Postmenopausal factors may have an impact on the heart-protective qualities of high-density lipoproteins (HDL) - also known as 'good cholesterol' - according to a study led by researchers in the University of Pittsburgh Graduate School of Public Health.
The findings, published today in Arteriosclerosis, Thrombosis, and Vascular Biology, a journal of the American Heart Association (AHA), indicate that this specific type of blood cholesterol may not translate into a lowered risk of cardiovascular disease in older women--bringing into question the current use of HDL cholesterol in a common equation designed to predict heart disease risk, particularly for women.
HDL is a family of particles found in the blood that vary in sizes and cholesterol contents. HDL has traditionally been measured as the total cholesterol carried by the HDL particles, known as HDL cholesterol. HDL cholesterol, however, does not necessarily reflect the overall concentration, the uneven distribution, or the content and function of HDL particles. Previous research has demonstrated the heart-protective features of HDL. This good cholesterol carries fats away from the heart, reducing the build-up of plaque and lowering the potential for cardiovascular disease.
"The results of our study are particularly interesting to both the public and clinicians because total HDL cholesterol is still used to predict cardiovascular disease risk," said lead author Samar R. El Khoudary, Ph.D., M.P.H., F.A.H.A., associate professor in Pitt Public Health's Department of Epidemiology. "This study confirms our previous work on a different group of women and suggests that clinicians need to take a closer look at the type of HDL in middle-aged and older women, because higher HDL cholesterol may not always be as protective in postmenopausal women as we once thought. High total HDL cholesterol in postmenopausal women could mask a significant heart disease risk that we still need to understand."
El Khoudary's team looked at 1,138 women aged 45 through 84 enrolled across the U.S. in the Multi-Ethnic Study of Atherosclerosis (MESA), a medical research study sponsored by the National Heart, Lung and Blood Institute of the National Institutes of Health (NIH). MESA began in 1999 and is still following participants today.
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Tuesday, July 17, 2018
Health News: Synthetic cancer indicator: An artificial mole as an early warning system
ScienceDaily
Date:
April 18, 2018
Source:
ETH Zurich
Summary:
Researchers have developed an early warning system for the four most common types of cancer. Should a tumor develop, a visible mole will appear on the skin.
Alongside cardiovascular disease, cancer has become the top cause of death in industrialised countries. Many of those affected are diagnosed only after the tumour has developed extensively. This often reduces the chance of recovery significantly: the cure rate for prostate cancer is 32 percent and only 11 percent for colon cancer. The ability to detect such tumours reliably and early would not only save lives, but also reduce the need for expensive, stressful treatment.
Researchers working with Martin Fussenegger, Professor at the Department of Biosystems Science and Engineering at ETH Zurich in Basel, have now presented a possible solution for this problem: a synthetic gene network that serves as an early warning system. It recognises the four most common types of cancer -- prostate, lung, colon and breast cancer -- at a very early stage, namely when the level of calcium in the blood is elevated due to the developing tumour.
The early warning system comprises a genetic network that biotechnologists integrate into human body cells, which in turn are inserted into an implant. This encapsulated gene network is then implanted under the skin where it constantly monitors the blood calcium level.
As soon as the calcium level exceeds a particular threshold value over a longer period of time, a signal cascade is triggered that initiates production of the body's tanning pigment melanin in the genetically modified cells. The skin then forms a brown mole that is visible to the naked eye.
The mole appears long before the cancer becomes detectable through conventional diagnosis. "An implant carrier should then see a doctor for further evaluation after the mole appears," explains Fussenegger. It is no reason to panic. "The mole does not mean that the person is likely to die soon," stresses the ETH professor. It simply means that clarification and if necessary treatment are needed.
The researchers used calcium as the indicator of the development of the four types of cancer, as it is regulated strongly in the body. Bones serve as a buffer that can balance out concentration differences. However, when too much calcium is detected in the blood, this may serve as a sign for one of the four cancers.
"Early detection increases the chance of survival significantly," says Fussenegger. For example, if breast cancer is detected early, the chance of recovery is 98 percent; however, if the tumour is diagnosed too late, only one in four women has a good chance of recovery. "Nowadays, people generally go to the doctor only when the tumour begins to cause problems. Unfortunately, by that point it is often too late."
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Monday, July 16, 2018
Science News Probiotics can protect the skeletons of older women
June 21, 2018
Source:
University of Gothenburg
Summary:
Researchers have demonstrated that probiotics, dietary supplements with health-promoting bacteria, can be used to affect the human skeleton. Among older women who received probiotics, bone loss was halved compared to women who received only a placebo. The research opens the door to a new way to prevent fractures among the elderly.
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For the first time in the world, researchers at the University of Gothenburg, Sweden, have demonstrated that probiotics, dietary supplements with health-promoting bacteria, can be used to affect the human skeleton. Among older women who received probiotics, bone loss was halved compared to women who received only a placebo. The research opens the door to a new way to prevent fractures among the elderly.
Brittleness of the bones, or osteoporosis, is characterized by porous and weak bones, which can cause them to break even when subjected to low loads, such as a fall from standing height. The proportion of the population with osteoporosis increases with age, and a majority of women over 80 years of age have the disease.
"Today there are effective medications administered to treat osteoporosis, but because bone fragility is rarely detected before the first fracture, there is a pressing need for preventive treatments," says Mattias Lorentzon, who is a chief physician and professor of geriatrics at Sahlgrenska Academy, University of Gothenburg.
This is the first time that researchers have shown that it is possible to cut age-related bone loss in elderly women in half if they receive health-promoting bacteria, known as probiotics.
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sciencedaily.com
Science Daily: Weight changes associated with reduced bone strength
June 1, 2018
Source:
Hebrew SeniorLife Institute for Aging Research
Summary:
Researchers have found evidence that weight loss can result in worsening bone density, bone architecture and bone strength.
Researchers from Hebrew SeniorLife's Institute for Aging Research, Boston University, Beth Israel Deaconess Medical Center, and University of Calgary have found evidence that weight loss can result in worsening bone density, bone architecture and bone strength. The results were published in the Journal of Bone and Mineral Research.
Douglas P. Kiel, MD, MPH, principal investigator for the study said, "The study is significant because it used data on weight changes over 40 years in participants in the Framingham Study. We showed that men and women with both shorter term weight loss over 4-6 years and longer term weight loss over 40 years had more micro-architectural deterioration of their bones than persons who did not lose weight."
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sciencedaily.com
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