Showing posts with label Optimized Turmeric Extract. Show all posts
Showing posts with label Optimized Turmeric Extract. Show all posts

Saturday, January 12, 2019

Benefits of turmeric

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Salk Institute's J147 is a derivative of turmeric, a spice used in curry. Learn how it fights memory deficits and has a host of unexpected anti-aging effects in the lab. 




Salk Institute researchers have found that J147, which is an experimental drug candidate aimed at combating Alzheimer's disease, has a host of unexpected anti-aging effects in animals.

J147, Alzheimer's and Old Age

The Salk team expanded upon their previous development of the drug candidate they labeled J147. It is a derivative of the common spice, turmeric, and takes a different tack by targeting Alzheimer's major risk factor -- old age. In the new work, the team showed that the drug candidate worked well in a mouse model of aging not typically used in Alzheimer's research. When these mice were treated with J147, they had better memory and cognition, healthier blood vessels in the brain and other improved physiological features, as detailed in the journal Aging.

Fighting Alzheimer's By Fighting Aging

"Initially, the impetus was to test this drug in a novel animal model that was more similar to 99 percent of Alzheimer's cases," says Antonio Currais, the lead author and a member of Professor David Schubert's Cellular Neurobiology Laboratory at Salk. "We did not predict we'd see this sort of anti-aging effect, but J147 made old mice look like they were young, based upon a number of physiological parameters."

Alzheimer's disease is a progressive brain disorder, recently ranked as the third leading cause of death in the United States and affecting more than five million Americans. It is also the most common cause of dementia in older adults, according to the National Institutes of Health.

"While most drugs developed in the past 20 years target the amyloid plaque deposits in the brain (which are a hallmark of the disease), none have proven effective in the clinic," says Schubert, senior author of the study.

Expanding the Fight to More Common Dementias

Several years ago, Schubert and his colleagues began to approach the treatment of the disease from a new angle. Rather than target amyloid, the lab decided to zero in on the major risk factor for the disease--old age. Using cell-based screens against old age-associated brain toxicities, they synthesized J147.

Previously, the team found that J147 could prevent and even reverse memory loss and Alzheimer's pathology in mice that have a version of the inherited form of Alzheimer's, the most commonly used mouse model. However, this form of the disease comprises only about 1 percent of Alzheimer's cases. For everyone else, old age is the primary risk factor, says Schubert. The team wanted to explore the effects of the drug candidate on a breed of mice that age rapidly and experience a version of dementia that more closely resembles the age-related human disorder.

Young Mice, Old Mice and J147-fed Mice

In this latest work, the researchers used a comprehensive set of assays to measure the expression of all genes in the brain, as well as over 500 small molecules involved with metabolism in the brains and blood of three groups of the rapidly aging mice. The three groups of rapidly aging mice included one set that was young, one set that was old and one set that was old but fed J147 as they aged.

7 Benefits

The old mice fed J147 saw the following benefits:
  1. They performed better on memory and other tests for cognition
  2. They displayed more robust motor movements.
  3. They had fewer pathological signs of Alzheimer's in their brains.
  4. J147 prevented the leakage of blood from the microvessels in the brains of old mice. "Damaged blood vessels are a common feature of aging in general, and in Alzheimer's, it is frequently much worse," says Currais.

    Importantly, because of the large amount of data collected on the three groups of mice, it was possible to demonstrate that many aspects of gene expression and metabolism in the old mice fed J147 were very similar to those of the young animals. These included:
  5. markers for increased energy metabolism,
  6. reduced brain inflammation and
  7. reduced levels of oxidized fatty acids in the brain.

Human Clinical Trials

Currais and Schubert note that while these studies represent a new and exciting approach to Alzheimer's drug discovery and animal testing in the context of aging, the only way to demonstrate the clinical relevance of the work is to move J147 into human clinical trials for Alzheimer's disease.

"If proven safe and effective for Alzheimer's, the apparent anti-aging effect of J147 would be a welcome benefit," adds Schubert. The team aims to begin human trials next year.

Related Article:

Curry Derivative J147 Beats Aricept for Alzheimer's


MORE INFORMATION:
  • Other authors on the paper include Oswald Quehenberger of the University of California, San Diego; and Joshua Goldberg, Catherine Farrokhi, Max Chang, Marguerite Prior, Richard Dargusch, Daniel Daugherty and Pamela Maher of the Salk Institute.
  • This study was supported by the Salk Institute Pioneer Fund Postdoctoral Scholar Award and the Salk Nomis Fellowship Award, fellowships from the Hewitt Foundation and Bundy Foundation, and grants from the Burns Foundation and NIH.
SOURCE:

Saturday, September 5, 2009

Research Demonstrates that Optimized Turmeric Extract Inhibits Amyloid-Beta...

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HerbalScience Research Demonstrates that Optimized Turmeric Extract Inhibits
Amyloid-Beta Accumulation, a Hallmark of Alzheimer's Disease
- Results of Laboratory Study Detecting Previously Unidentified Bioactives in
Standardized Turmeric Extract Will Be Published in Upcoming Issue of Current
Alzheimer's Research -




NAPLES, Fla., Sept. 3 /PRNewswire/ -- Alzheimer's disease is the most common
cause of dementia among the elderly and is projected to increase in prevalence
over the next decades as the population ages -- creating an urgent need for
treatments that will prevent or reverse the now-inexorable course of cognitive
deterioration and memory loss. Because development of synthetic drugs is
expensive and complex, many researchers are focusing on botanical extracts
whose benefits have been documented by traditional medicine systems. In that
vein, scientists with HerbalScience Group LLC, working with researchers from
other organizations and medical institutions, conducted an in-depth study of
optimized turmeric extracts, demonstrating that key bioactives in the
botanical extracts inhibit aggregation and release of amyloid, a protein
fragment considered a prime causal suspect in Alzheimer's disease.

An article detailing the study, titled "Optimized Turmeric Extracts Have
Potent Anti-Amyloidogenic Effects," will be published in the December 2009
issue of Current Alzheimer's Research, a peer-reviewed scientific journal. The
authors are affiliated with several research organizations and medical
institutions, including HerbalScience Group LLC; the University of Miami
Leonard M. Miller School of Medicine, Miami, Florida; the University of South
Florida College of Medicine, Tampa, Florida; Veterans Administration Hospital,
Research Service, Tampa, Florida; and Natura Therapeutics, Tampa, Florida.

"The optimized extracts outperformed curcumin, the best studied anti-Alzheimer
extract from turmeric," said Randall S. Alberte, Ph.D., one of the authors of
the study and Chief Scientific Officer of HerbalScience Group LLC, a Naples,
Florida, and Singapore-based company dedicated to applying advanced science
and technology to the production of botanical drugs and nutraceuticals.

For the research, three standardized turmeric extracts were prepared that were
enriched in curcuminoids and turmerones, two major classes of compounds
present in turmeric. Each of the three proprietary extracts had a different
chemical profile and was standardized using advanced extraction technology
developed by HerbalScience to create herbal extracts that are dose-reliable
and efficacious. The activities of the extracts were compared to standard
curcuminoids.

Inhibition of amyloid aggregation and secretion was studied in vitro among the
different extracts and standards, and it was found that one of the extracts
had the greatest activity in inhibiting the aggregation and secretion of
amyloid. This extract, containing the highest levels of curcuminoids among all
of the extracts, demonstrated activity that was significantly greater than
curcumin alone, the most active of the four curcuminoid standards. This result
indicates that an enriched turmeric extract could be just as or more effective
than curcumin, the most commonly studied turmeric material for Alzheimer's
disease.

The HerbalScience study also used advanced DART (Direct Analysis in Real Time)
Time-of-Flight mass spectrometry technology to generate detailed chemical
profiles of each extract in order to determine the key bioactive compounds.
Only 5% of the compounds were known chemicals, with the remaining 95% being
identified for the first time. With further chemical analysis and
identification of key bioactives, highly standardized extracts such as these
could offer a rich new source for potential drug discovery for Alzheimer's and
other therapeutic targets.

The journal article detailing the study will appear in the December 2009 issue
of Current Alzheimer's Research (Vol. 6, No. 6). Authors are R. Douglas
Shytle, Paula C. Bickford, Kavon Rezai-zadeh, L Hou, Jin Zeng, Jun Tan, and
Paul Sanberg, with University of South Florida College of Medicine
affiliations including the Department of Neurosurgery Center for Excellence in
Aging and Brain Repair, Department of Psychiatry and Behavioral Medicine
Silver Child Development Center, and Neuroscience Program; Cyndy D. Sanberg of
Natura Therapeutics, Inc., Tampa, Florida; Bill Roschek Jr. and Randall S.
Alberte, of HerbalScience Group LLC, Naples, Florida; and Ryan C. Fink,
Department of Biochemistry and Molecular Biology, The University of Miami
Leonard M. Miller School of Medicine, Miami, Florida. Dr. Bickford is also
affiliated with the Veterans Administration Hospital, Research Service, Tampa,
Florida; and Drs. Shytle, Bickford, Tan, and Paul Sanberg are also affiliated
with Natura Therapeutics.

HerbalScience is a privately-held life sciences company headquartered in
Naples, Florida, with facilities in Singapore. HerbalScience is engaged in the
discovery, development, manufacture, and marketing of proprietary botanical
compounds for human health in the U.S. and international markets. The company
has prominent alliances with prestigious university laboratories and prominent
researchers in the U.S., as well as research institutions in China.
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