Monday, February 10, 2020

Scientists discover biological reason why stress makes your hair turn gray

Just a quick look at Barack Obama in 2008 and Barack Obama in 2016 illustrates one of the not-so-silver linings of stress — it can make your hair turn gray. Obama isn't alone. From John McCain to Marie Antoinette — lots of people have reported hair color changes after periods of intense stress. But nailing down exactly why stress seeps the color out of hair has proved challenging — until now.

In a new study on mice with black coats, researchers discovered that the reason hair loses color as a result of stress may be down to the body's sympathetic nervous system. The sympathetic nervous system controls our body’s fight-or flight-response, triggering a chemical called norepinephrine to circulate throughout the body and making us alert and ready to meet a threat in our environment. But norepinephrine also sends certain cells — pigment-containing stem cells that live in hair follicles — into overdrive. These cells are what give hair its color — and norepinephrine kills them. As a result, with enough stress, hair can lose its pigment.


"When we started to study this, I expected that stress was bad for the body — but the detrimental impact of stress that we discovered was beyond what I imagined," Ya-Chieh Hsu, researcher at Harvard University and senior author of the study, said in a press release.

The change is irreversible, the study suggests. And the findings extend beyond people’s heads — they point out a dark side of fight-or-flight, a protective evolutionary mechanism.

"Acute stress, particularly the fight-or-flight response, has been traditionally viewed to be beneficial for an animal's survival. But in this case, acute stress causes permanent depletion of stem cells," Bing Zhang, an author of the study and researcher at Harvard University, said.

The study was published Wednesday in the journal Nature.


Down the rabbit hole
Originally, the team thought the immune system might be attacking hair color cells. But after removing immune cells from mice, their coats still turned gray under stress.

Next, the researchers turned to the stress hormone, cortisol. In a second experiment, the team removed the mice’s adrenal glands, which produce cortisol-like hormones. But even without cortisol, the mice’s coats still went gray with stress.

After knocking out these possibilities, the researchers focused on the sympathetic nervous system. Stress triggers sympathetic nerves, which branch out into hair follicles, to produce norepinephrine. Nearby stem cells take up the chemical, a process that can have irreversible consequences.

Each hair follicle contains a trove of stem cells, which convert into pigment-producing cells and give hair strands their color. But norepinephrine causes the stem cells to over-activate, making them all convert into pigment-producing cells. This prematurely depletes the “reservoir” of stem cells. As a result, the next time the hair grows, there aren’t any stem cells to give hair its color.

As humans age, these pigment-producing cells gradually die anyway — that's why many elderly folks have gray, silver, or white hair. But this study suggests that stress speeds up the process, aging the body prematurely.

"After just a few days, all of the pigment-regenerating stem cells were lost,” Hsu said. “Once they're gone, you can't regenerate pigment anymore. The damage is permanent."


Stress out, stress in

The affects of stress on hair and skin may be visible to the human eye, but scientists are only just beginning to understand how stress affects the body — both on the outside and the inside.

"By understanding precisely how stress affects stem cells that regenerate pigment, we've laid the groundwork for understanding how stress affects other tissues and organs in the body," Hsu said.

More studies, in humans, are needed to understand how stress — from acute or chronic stressors — gives people a head of gray hair. Further investigation may also reveal just how far reaching stress's physiological effects go in the body, contributing to disease and threatening longevity.

"Understanding how our tissues change under stress is the first critical step towards eventual treatment that can halt or revert the detrimental impact of stress. We still have a lot to learn in this area."


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Thursday, September 12, 2019

Are cooling caps the solution to prevent hair loss during chemotherapy?

Hair loss—one of the most-feared side effects of cancer treatment—may have met its match. Scientists have known since the 80s that cooling a person's scalp can prevent significant hair loss during chemotherapy. A cooling device called DigniCap was approved for women with breast cancer by the U.S. Food and Drug Administration in 2015. This cap was tested in a clinical trial at UCLA led by Dr. Sara Hurvitz, director of hematology and oncology breast cancer program at UCLA's Jonsson Comprehensive Cancer Center. 

Two studies  found that the cap was effective; results showed that women lost less than 50 percent of their hair. The trial Hurvitz participated in paved the way for physicians to help people with cancer overcome one of the most visible signs of treatment.

How did scientists come up with the idea of cooling the scalp to help save the hair of a woman who has cancer, and how long did the development process take?
The idea to cool the scalp during chemotherapy infusion to reduce hair loss is not a new one. It has been in place for over three decades and evaluated by several other companies. There are other devices in use clinically. This is the first one to be FDA approved.

How did your research play a role in the FDA approval of this cooling cap?
We participated in the clinical trial that led to the FDA approval of this device. We enrolled and treated multiple patients on this study who were undergoing standard chemotherapy for early stage breast cancer.

How does the cooling cap actually work?
Cooling the scalp slows down blood flow to the hair follicles during the infusion of chemotherapy, which in turn limits the delivery of chemotherapy to the scalp. This lessens the toxic effects of chemotherapy on the hair follicle, thus limiting hair loss. Several devices utilize ice caps that are cumbersome to store and to manage. The device we evaluated is a tight-fitting cap, much like a bathing cap, that is attached to a cooling machine and worn during chemotherapy and for an hour or two after chemotherapy. This machine avoids the need to use a freezer or change caps during treatment.


Why do you think this cooling cap is beneficial for women going through treatment?
Hair loss from chemotherapy causes a major impact on quality of life for many women with early stage breast cancer. The hope is that reduction in or prevention of hair loss will reduce the emotional stress associated with a cancer diagnosis.

Why is it that some women still lose their hair after using the cooling cap?
Hair loss is not completely prevented in the majority of patients with scalp cooling, but half of patients are able to keep more than 50 percent of their hair with cooling (whereas nearly all patients who take curative chemotherapy without cooling cap use will lose over 50 percent of their hair). This allows a woman to look more like herself during chemotherapy. Hair also tends to fill in and look normal more quickly after chemotherapy has completed, compared to women who did not use scalp cooling.

What is the future of the cooling cap and could it prevent hair loss in people with other cancer types as well as men who have cancer?
Different devices are being evaluated in clinical trials in a variety of cancer types. This could certainly be utilized by male cancer patients as well. 

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Scientists discover new breakthrough in treatment for cancer hair loss

Scientists have determined a new way to protect the hair follicle from chemotherapy in an effort to prevent hair loss as a result of cancer treatments.

Researchers have discovered a new strategy for how to protect hair follicles from chemotherapy, which could lead to new treatments that prevent chemotherapy-induced hair loss—arguably one of the most psychologically distressing side effects of modern cancer therapy.

The study describes how damage in the hair follicle caused by taxanes, cancer drugs which can cause permanent hair loss, can be prevented.

To do this, scientists have exploited the properties of a newer class of drugs called CDK4/6 inhibitors, which blocks cell division and are already medically approved as so-called "targeted" cancer therapies.

The lead author on the study explains: "Although at first this seems counter-intuitive, we found that CDK4/6 inhibitors can be used temporarily to halt cell division without promoting additional toxic effects in the hair follicle. When we bathed organ-cultured human scalp hair follicles in CDK4/6 inhibitors, the hair follicles were much less susceptible to the damaging effects of taxanes"

Taxanes are very important anti-cancer drugs commonly used to treat, for example, patients with breast or lung carcinoma and particularly cause anxieties among breast cancer patients for the very distressing and sometimes long-lasting hair loss taxanes can induce. (Thousands of patients in the US are currently suing pharmaceutical company Sanofi over a lack of warning of the risk of permanent hair loss after treatment with the taxane drug Taxotere.)

Dr. emphasizes: "A pivotal part of our study was to first get to grips with how exactly hair follicles responded to taxane chemotherapy, and we found that the specialized dividing cells at the base of the hair follicle that are critical for producing hair itself, and the stem cells from which they arise, are most vulnerable to taxanes. Therefore, we must protect these cells most from undesired chemotherapy effects—but so that the cancer does not profit from it."

The team hope that their work will support the development of externally applicable medicines that will slow or briefly suspend cell division in the scalp hair follicles of patients undergoing 
chemotherapy to mitigate against chemotherapy-induced hair damage. This could complement and enhance the efficacy of existing preventive approaches i.e. scalp cooling devices. 

The researchers underscore that more work is desperately needed in this lamentably under-funded field of cancer medicine, where patients have waited for so long to see real breakthroughs in pharmacological hair loss prevention.

Dr.  said: "Despite the fact that taxanes have been used in the clinic for decades, and have long been known to cause hair loss, we're only now scratching the surface of how they damage the human hair follicle."

He added: "We also don't really know why some patients show greater hair loss than others even though they get the same drug and drug-dose, and why it is that certain chemotherapy regimens and drug combinations have much worse outcomes than others"

"We need time to further develop approaches like this to not only prevent hair loss, but promote hair follicle regeneration in patients who have already lost their hair due to chemotherapy." 

this is only for your information, kindly take the advice of your doctor for medicines, exercises and so on.   
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Friday, February 08, 2019

Onion Juice Is Elixir For Hair Growth

If you want such dense, healthy and shiny hair, you can use onion juice. Rich in antibacterial and anti-fungal properties, onion keeps hair loss at bay. Here are some benefits of this juice that you must know of:
Good for hair follicles, onion helps in restoring lost nutrients to your scalp.
Onion is super-rich in sulphur, this helps in minimising breakage and thinning.
This super ingredient has anti-bacterial properties which help in fighting infections of the scalp. This, in turn, reduces hair fall.
Naturally potent antioxidants in onions help reverse the effects of premature greying.
This vegetable lends a healthy shine to hair.
You can happily say bye-bye to lice.
Add volume to your hair.
No More dandruff for sure.  

Learn How to Make Onion Juice at Home
  • Cut onions into 4 parts.
  • Blend them in a grinder.
  • add some water and filter it through a muslin cloth.
  • This will ensure that no onion chunks are stuck in your hair while you use the juice. 
How to use onion juice



  • Apply the juice on your scalp using circular movements.
  • Let it sit for one hour.
  •  
  • Rinse it off with a mild shampoo with a nice fragrance to get rid of the pungent smell of onions. 
  • Do this once a week for 2 months to see some visible difference.
Try this remedy and we are sure that you will see the results with time!

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/       
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Friday, September 14, 2018

How to Prevent & Treat Scalp Acne

Acne is less commonly found on the scalp than on certain other areas of the body, however, it can be just as much of a nightmare. Read on to discover the causes behind scalp acne, as well as how to prevent and treat it.
 
 
The Causes of Scalp AcneScalp Acne
Scalp acne typically appears as small zits or pimples on the scalp, as well as on the back of the head, both of which can be sore and itchy. Like most kinds of pimples, the ones found on your scalp form after hair follicles or pores get clogged with sebum or dead skin cells. It is also possible for acne to appear after mites, yeast or bacteria have gotten into your pores, causing a reaction.

The most common acne-causing factors include:
• a buildup of products, such as hair gels, leave-in treatments, or hairspray
• oil or dead skin cells clogging your follicles
• not washing your hear after sweating a lot
• not taking the time to wash your hair thoroughly
• sweating while wearing hats or head coverings


The main germs that can cause severe scalp acne include:
• Cutibacterium
• Staphylococcus epidermidids
• Demodex folliculorum
• Staphylococcus aureus
• Propionibacterium acnes
• Yeasts from the Malassezia family


Types of Scalp Spots
When spots appear on your scalp, they could appear for quite a number of reasons. Here are some of the most common ones:
Scalp folliculitis - this is a condition where bacteria causes your hair follicles to become inflamed and infected, resulting in the appearance of very itchy, small, red bumps.
Seborrheic dermatitis - this is a condition which causes dandruff and can leave the scalp looking red and scaly, which can leave marks that look like pimples if you pick at them.
Pilar cysts - these are hard bumps that are full of keratin, which form beside the hair root. These bumps do not usually have a white head, unlike scalp acne.
How to Prevent Scalp Acne
Having a clean scalp goes a long way towards preventing the appearance of scalp acne. Therefore, the best way to prevent scalp acne is to wash your hair after every workout and whenever it feels oily.
Further ways to reduce the chances of scalp acne appearing are:
• getting enough vitamin A, D, and E, to keep the skin healthy
• wearing loosely-fitting headgear
• switching to natural, hypoallergenic hair care products
• avoiding using too many different hair products
• watching your diet to see what kinds of foods cause flare-ups
How to Treat Scalp Acne
Doctors usually recommend medicated or scalp treatment shampoo to treat scalp acne since they will remove any dirt or excess oil while preventing future buildups from occurring.
Many natural shampoos for scalp acne can be found online, and the most common ingredients they use include:
• tea tree oil
• glycolic acid
• salicylic acid
• ketoconazole
• ciclopirox
• benzoyl peroxide
For more severe cases of scalp acne, your doctor may need to prescribe some of the following treatments:
• steroid injections
• oral antibiotics
• topical antibiotic ointments or steroid creams
• antihistamines
• stronger acne medication, such as isotretinoin
• phototherapy sessions
 

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/  
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Thursday, July 05, 2018

Goosebumps

Goosebumps appear on our skin when the muscles of our hair follicles contract. When you feel cold, scared or impressed the hair follicles raise causing the hairs to stand up. This rudimentary reflex is beyond our control. Another function is that it scares enemies away, though because we have such little hair it is unlikely that anyone would be scared away. 
Fact: Piloerection, the scientific name for this phenomena happens to 50% of people when they listen to their favorite music. 

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/  

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Tuesday, June 19, 2018

Novel drug may help treat hair loss

Lab studies showed that the drug had dramatic stimulatory effect on human hair follicles

For people with receding hairlines, help may soon be on the way, as scientists have identified a drug — originally designed as a treatment for osteoporosis — that can stimulate hair growth.

In a study published , researchers  showed that the drug has a dramatic stimulatory effect on human hair follicles donated by patients undergoing hair transplantation surgery.

Currently only two drugs — minoxidil and finasteride — are available for treatment of male-pattern balding (androgenetic alopecia). However, both agents have moderate side effects and often produce disappointing hair regrowth results. The only other option available to patients is hair transplantation surgery.

Genetic analysis

Researchers sought to develop new ways to promote human hair growth with the hope of finding novel, well-tolerated agents for treating androgenetic alopecia. The approach was to first identify the molecular mechanisms of an old immunosuppressive drug, Cyclosporine A (CsA). Cyclosporine A has been commonly used since the 1980s as a crucial drug that suppresses transplant rejection and autoimmune diseases. However, it often has severe side-effects, the least serious - but most interesting - of which is that it enhances cosmetically unwanted hair growth.

The team carried out a full gene expression analysis of isolated human scalp hair follicles treated with CsA. This revealed that CsA reduces the expression of SFRP1, a protein that inhibits the development and growth of many tissues, including hair follicles. This identifies a completely novel mechanism of action of this old and widely used immunosuppressant.

The research also explains why CsA so often induces undesired hair growth in patients as it removes an inbuilt and potent molecular brake on human hair growth. The inhibitory mechanism is completely unrelated to CsA’s immunosuppressive activities, making SFRP1 a new and highly promising therapeutic target for anti-hair loss strategies.

Researchers found that a compound originally developed to treat osteoporosis, called WAY-316606, targets the same mechanism as CsA by specifically antagonising SFRP1. When they then treated hair follicles with WAY-316606, the unrelated agent also effectively enhanced human hair growth like CsA.

The external application of WAY-316606 or similar compounds to balding human scalp, he argued, may promote hair growth to the same magnitude as CsA or even better, but without its side effects.

New hopes

“We were able to conduct our experiments with scalp hair follicles that had generously been donated by over 40 patients and were then tested in organ cultures,” said the author. “This makes our research clinically very relevant, as many hair research studies only use cell culture. When the hair growth-promoting effects of CsA were previously studied in mice, a very different molecular mechanism of action was suggested; had we relied on these mouse research concepts, we would have been barking up the wrong tree,” he said.

“The fact this new agent, which had never even been considered in a hair loss context, promotes human hair growth is exciting because of its transitional potential: it could one day make a real difference to people who suffer from hair loss. Clearly though, a clinical trial is required next to tell us whether this drug or similar compounds are both effective and safe in hair loss patients” he added.

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/  

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Wednesday, April 11, 2018

Novel skin patch can end painful, finger-prick blood tests in diabetic patients

Scientists have developed an adhesive patch, which can non-invasively monitor glucose levels in diabetics through the skin, potentially spelling an end for frequent painful finger-prick blood tests.

The patch does not pierce the skin, instead it draws glucose out from fluid between cells across hair follicles, which are individually accessed via an array of miniature sensors using a small electric current.

The glucose collects in tiny reservoirs and is measured, according to  a study published in the journal Nature Nanotechnology. Readings can be taken every 10 to 15 minutes over several hours.

Due to the design of the array of sensors and reservoirs, the patch does not require calibration with a blood sample - meaning that finger prick blood tests are unnecessary.

Researchers  hope that it can eventually become a low-cost, wearable sensor that sends regular, clinically relevant glucose measurements to the wearer's phone or smartwatch wire-lessly, alerting them when they may need to take action.

The advantage of this device is that each miniature sensor of the array can operate on a small area over an individual hair follicle - this significantly reduces inter- and intra-skin variability in glucose extraction and increases the accuracy of the measurements taken such that calibration via a blood sample is not required.

"A non-invasive - that is, needle-less - method to monitor blood sugar has proven a difficult goal to attain," said the researcher.

"The closest that has been achieved has required either at least a single-point calibration with a classic 'finger-stick', or the implantation of a pre-calibrated sensor via a single needle insertion," said the researcher.

"The monitor developed  promises a truly calibration-free approach, an essential contribution in the fight to combat the ever-increasing global incidence of diabetes," he said.

"We utilised graphene as one of the components as it brings important advantages: specifically, it is strong, conductive, flexible, and potentially low-cost and environmentally friendly," said a researcher.


"In addition, our design can be implemented using high-throughput fabrication techniques like screen printing, which we hope will ultimately support a disposable, widely affordable device," she said.

In this study the team tested the patch on both pig skin, where they showed it could accurately track glucose levels across the range seen in diabetic human patients, and on healthy human volunteers, where again the patch was able to track blood sugar variations throughout the day.

The next steps include further refinement of the design of the patch to optimise the number of sensors in the array, to demonstrate full functionality over a 24-hour wear period, and to undertake a number of key clinical trials.


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/                              

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Scientists have developed an adhesive patch, which can non-invasively monitor glucose levels in diabetics through the skin, potentially spelling an end for frequent painful finger-prick blood tests.

The patch does not pierce the skin, instead it draws glucose out from fluid between cells across hair follicles, which are individually accessed via an array of miniature sensors using a small electric current.

Scientists have developed an adhesive patch, which can non-invasively monitor glucose levels in diabetics through the skin, potentially spelling an end for frequent painful finger-prick blood tests.

The patch does not pierce the skin, instead it draws glucose out from fluid between cells across hair follicles, which are individually accessed via an array of miniature sensors using a small electric current.

The glucose collects in tiny reservoirs and is measured, according to  ..

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