Sunday, February 09, 2020

Scientists find new target for Parkinson’s disease

Contrary to earlier discovery that a chemical found in a synthetic opioid, MPTP, induced a form of Parkinson’s disease, a new study has found that it is an enzyme in the body that can metabolise compounds formed in the brain from alkaloids causing a neurodegenerative condition in mice.

The study led by Narayan Avadhani and Mrittika Chattopadhyay, suggested that the enzyme, mitochondrial CYP2D6, presents a potentially powerful new target for Parkinson’s treatment. “Over the past two or three decades, researchers have tried inhibiting the process by they believed MPTP was metabolised, with mixed success,” said Avadhani.

“We believe that mitochondrial CYP2D6 is the more direct drug target, which might prove better in treating idiopathic Parkinson’s disease,” added Avadhani. The study published in the ‘Journal of Biological Chemistry’ investigated the mechanism of Parkinson’s disease when a specific cause cannot be pinpointed. Previous studies have shown that MPTP and similar toxic compounds induce Parkinson’s disease in rodents and primates.

The mechanism of action, as scientists understood it, involved the compounds being oxidised to form MPP+, a toxic metabolite. The enzyme that was believed to be responsible is called monoamine oxidase B (MAO-B), present in the nervous system’s glial cells. In that conception of the mechanism, MPP+ was thought to then be transferred to dopamine neurons by dopamine transporter proteins, and, indeed, Parkinson’s is characterised by unusually low dopamine levels in the brain.

Researchers have tried to stem the effects of Parkinson’s by targeting two players in this presumed pathway, both MAO-B and the dopamine transporter protein, with only mixed success. In earlier work, Avadhani and colleagues had shown that the enzyme CYP2D6, localised to the body’s energy factories, the mitochondria, could play a role in metabolising MPTP to MPP+.

In the new investigation, they took a closer look at beta-carbolines and isoquinolines, toxins that resemble MPTP which the body produces from substances found in tobacco smoke, alcohol, and some foods. They found that, instead of MAO-B, it was mitochondrial CYP2D6 that activate the beta-carbolines and isoquinolines inside the dopamine-producing neurons, rather than the glial cells.

This route of activation, in a mouse model, results in neuronal damage and oxidative stress, symptoms akin to Parkinson’s. “CYP2D6 is known to play a role in influencing the activity of a number of drugs,” said Avadhani. In an attempt to target this pathway, the researchers showed that mice lacking CYP2D6 did not exhibit severe symptoms than mice with the protein did. In addition, an inhibitor of CYP2D6 prevented neuronal damage in the mice.

“The CYP2D6 inhibitor ajmalicine is a member of the reserpine family of alkaloids, found in the plant Rauwolfia serpentine and was long used in India for treating mental illness, such as paranoia and schizophrenia,” said Avadhani. “Mitochondrial targeting of such compounds is likely to be effective in treating Parkinson’s patients, and pursuing that is our future strategy,” said Avadhani.


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Monday, June 24, 2019

New method found to inhibit Parkinson’s disease

Contrary to earlier discovery that a chemical found in a synthetic opioid, MPTP, induced a form of Parkinson's disease, a new study has found that it is an enzyme in the body that can metabolise compounds formed in the brain from alkaloids causing a neurodegenerative condition in mice.

The study  suggested that the enzyme, mitochondrial CYP2D6, presents a potentially powerful new target for Parkinson's treatment. "Over the past two or three decades, researchers have tried inhibiting the process by they believed MPTP was metabolised, with mixed success," he said.

"We believe that mitochondrial CYP2D6 is the more direct drug target, which might prove better in treating idiopathic Parkinson's disease," added one of the researchers. The study investigated the mechanism of Parkinson's disease when a specific cause cannot be pinpointed.

Previous studies have shown that MPTP and similar toxic compounds induce Parkinson's disease in rodents and primates. The mechanism of action, as scientists understood it, involved the compounds being oxidised to form MPP+, a toxic metabolite.

The enzyme that was believed to be responsible is called monoamine oxidase B (MAO-B), present in the nervous system's glial cells. In that conception of the mechanism, MPP+ was thought to then be transferred to dopamine neurons by dopamine transporter proteins, and, indeed, Parkinson's is characterised by unusually low dopamine levels in the brain.

Researchers have tried to stem the effects of Parkinson's by targeting two players in this presumed pathway, both MAO-B and the dopamine transporter protein, with only mixed success. In earlier work, Avadhani and colleagues had shown that the enzyme CYP2D6, localised to the body's energy factories, the mitochondria, could play a role in metabolising MPTP to MPP+.

In the new investigation, they took a closer look at beta-carbolines and isoquinolines, toxins that resemble MPTP which the body produces from substances found in tobacco smoke, alcohol, and some foods.

They found that, instead of MAO-B, it was mitochondrial CYP2D6 that activate the beta-carbolines and isoquinolines inside the dopamine-producing neurons, rather than the glial cells. This route of activation, in a mouse model, results in neuronal damage and oxidative stress, symptoms akin to Parkinson's. "CYP2D6 is known to play a role in influencing the activity of a number of drugs," said a researcher.

In an attempt to target this pathway, the researchers showed that mice lacking CYP2D6 did not exhibit severe symptoms than mice with the protein did. In addition, an inhibitor of CYP2D6 prevented neuronal damage in the mice.

"The CYP2D6 inhibitor ajmalicine is a member of the reserpine family of alkaloids, found in the plant Rauwolfia serpentine and was long used in India for treating mental illness, such as paranoia and schizophrenia," he said. "Mitochondrial targeting of such compounds is likely to be effective in treating Parkinson's patients, and pursuing that is our future strategy," said the researcher.

THIS IS ONLY FOR INFORMATION, ALWAYS CONSULT YOU PHYSICIAN BEFORE HAVING ANY PARTICULAR FOOD/ MEDICATION/EXERCISE/OTHER REMEDIES.                                    PS- THOSE INTERESTED IN RECIPES ARE FREE TO  VIEW MY BLOG-                                                                                           https://gseasyrecipes.blogspot.com/                                                                                                                                                FOR INFO ABOUT KNEE REPLACEMENT, YOU CAN VIEW MY BLOG-                                                  https:// kneereplacement-stickclub.blogspot.com/                                                                      FOR CROCHET DESIGNS                                                                                                                                                                                     https://gscrochetdesigns.blogspot.com

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Tuesday, November 20, 2018

The Health Benefits of Passion Flowers

The beautiful passion flower, native to the Americas, has been used for hundreds of years to heal a number of illnesses. Its name was coined in the 15th century by Spanish missionaries in Peru, who felt that it was symbolic of Christ's crucifixion. This stunning flower is still used by natural healers to this day. Keep reading to learn all about it.
 
Passion Flower
What's in a Passion Flower? Passion flowers contain many potent chemicals, in particular, a whole host of alkaloids and flavonoids. The alkaloids they contain are harman, harmine, harmaline, harmalol, and passaflorine. The flavonoids they contain are isovitexin, kaempferol, luteolin, apigenin, various glycosides, homoorientin, rutin, saponaretin, saponarin, orientin, quercetin, and vitexen.
Passion Flower
Using It to Lower Blood Pressure Research shows that passion flower extracts may help to reduce high blood pressure (hypertension). Studies show that one cup of passion flower tea a day can help in the regulation of blood pressure levels in people with mild hypertension. A word of warning though - people on blood pressure medication avoid this herb since it may lower blood pressure to hazardous levels.
Passion Flower
Dealing With Menopause Passion flower has been found to alleviate a number of symptoms related to the menopause, such as night sweat and hot flashes. Passion flower also helps to reduce the activity of depression-inducing brain cells, as well as causing the brain to become more balanced overall.
Treating Insomnia Those people who find it hard to get a good night's sleep may want to consider consuming more passion flower. This is because it is able to reduce a good deal of the anxiety so often associated with insomnia. What's more, it is also an effective muscle relaxant, which also promotes a good night's sleep.
Passion Flower
The Antioxidant & Anti-inflammatory Properties of Passion Flowers Passion flowers are bursting with powerful anti-inflammatory and antioxidant effects. This is why passion flowers are perfect for the natural treatment of mild-to-moderate pain, as well as for getting rid of harmful free radical molecules that have been found to be one of the primary causes of aging.
Precautions 1. Never consume passion flower if pregnant, breastfeeding or suffering from liver disease/damage.
2. Due to its sedative effects, driving or operating machinery should be avoided after the consumption of passion flower.
3. Passion flower can interfere with blood pressure and blood thinning drugs. Check with your doctor before consuming passion flower if you are on any form of medication.
 THIS IS ONLY FOR INFORMATION, ALWAYS CONSULT YOU PHYSICIAN BEFORE HAVING ANY PARTICULAR FOOD/ MEDICATION/EXERCISE/OTHER REMEDIES.                                                                                                                                                                                                                                                                                        PS- THOSE INTERESTED IN RECIPES ARE FREE TO  VIEW MY BLOG-                                                                                           https://gseasyrecipes.blogspot.com/                                                                                                                                                                             FOR INFO ABOUT KNEE REPLACEMENT, YOU CAN VIEW MY BLOG-                                                                                                                             https:// kneereplacement-stickclub.blogspot.com/                                                                                       FOR CROCHET DESIGNS                                                                                                                                                                                                                                 https://gscrochetdesigns.blogspot.com 
 

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