Friday, August 31, 2018

Mutant KRAS Gene: A Potential Target to Suppress Associated Cancers


RAS is a gene family that makes proteins which control cell growth and cell death in a human body. KRAS, HRAS and NRAS are the members of RAS gene family. This family produces more than 150 proteins. The RAS gene in its mutated (changed) form can be found in one-third of the cancers. This mutated form of RAS gene produces defective proteins, which causes uncontrolled growth of cells leading to cancer, as well as it makes cancer resistant to the existing therapies.
The most researched gene among the RAS family is KRAS. The mutated form of KRAS gene is capable of transforming healthy cells into tumours. It is majorly associated with aggressive cancers; KRAS mutations occur approximately in 30% of all the cancers. The studies say that 95% of pancreatic cancers, 30% of lung cancers, and about 45% of colon cancers have mutations in KRAS genes and do not have any successful treatments currently. While some cancers originate from mutant KRAS, few cancers even seek this gene continuously to survive. Cancer-causing mutated KRAS genes were identified over three decades ago, and yet no therapy has been very effective against them. A lot of research work is being continuously done in this direction and some effective solutions have come to light.
A thorough study of KRAS structure, signalling and processing has helped in finding several anti-cancer treatments. Various direct and indirect methods, targeting KRAS mutations, are being explored. Inhibition of mutated KRAS genes that will block the growth of cancer cells can be categorized as a direct method. Alternately, synthetic lethality falls under indirect methods to eliminate cancers associated with KRAS mutation.
In the healthy cells, the information travels from the cell boundary to cell nucleus due to the protein made by the genes. The mutated cells produce defective proteins. The signals sent by the proteins determine whether or not the cell growth should take place further or the cell should stop dividing and mature. KRAS acts as a switch that turns “on” and “off”; when on, the cell division continues and when off, the cell division stops. Consider a small molecule, x, which is responsible to turn the switch “on”. In a healthy cell, this x molecule is converted to another molecule, y, which is responsible to turn the switch off. The molecule in KRAS functioning is GTP and the molecule is GDP. If the switch does not go to the “off” state the cells will continue to divide uncontrollably, further leading to cancer. Due to KRAS mutation, the switch is stuck at “on” state. This is because the proteins cannot perform to conversion. The stated process initiates the cancer formation. Some of the cancers that seek this mutated gene for survival further trigger the excessive uncontrolled growth of cells. Therefore, even if successfully treated, there are high chances of the tumour to be formed again.
Direct Method Using Inhibitors: Researchers have looked for a drug that can turn the stuck at “on” state switch off. But the molecule forms a very specific bond with the protein. Breaking this bond is very difficult and no proper solution for it has been reached. It was then found that a mutant form of protein, called KRASG12C, can create permanent bonds with the small molecules. These bonded molecules can capture the cell in its inactive state, before it is trapped at the “on” state. This will further stop the growth of cancer cells and cause the shrinking of the tumour.
Certain inhibitors have been discovered for the KRASG12C mutant. These inhibitors have been tested on mice, induced with human cancer. One of them is ARS-853. Inhibitor, GCS-100, has shown the capability of killing the cancer cells addicted to KRAS mutants. A compound named ARS-1620 has also been discovered which is very effective and has to be taken orally. It was tested on a mouse and after some period of regular doses, it resulted in significantly reduced tumour growth. The stated compounds can be used as potential drugs in treating aggressive cancers in the future.
Indirect Method Using Synthetic Lethality: It is found that synthetic lethality can also be used for cancer treatment. Two genes are said to be synthetically lethal if a simultaneous mutation in both leads to the death of both while a mutation in either one does not. Therefore, if the cells associated with cancer are targeted for synthetic lethality, only the cancer cells will die, sparing the normal cells. Synthetic lethality is also possible between genes and molecules. To identify synthetically lethal interaction in particular cells, the screening process is used.
Varieties of screening methods are now available to study these interactions. As the process of synthetic lethality causes cellular death, this can be used in anti-cancer drugs. Synthetic lethality is extensively being used in gene-selective anti-cancer agents.

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Thursday, August 30, 2018

3 Things to Known about Artificial Pancreas

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Diabetes, whenever this word strikes into the mind people mostly assume it with something that is deficiency which near-almost right. But, what is diabetes actually? It is all related with the most important organ in our body i.e. pancreas. We can say a person is troubled with diabetes if only if the body is not able to produce or respond to the insulin hormone. Diabetes can lead to heart attack, kidney related issues, limb amputation, anxiety, depression, stroke and blindness. So, it can get severe if not taken care of. Currently, there is no proper cure for diabetes but you can live an enjoyable life by maintaining the standard blood sugar level. Meanwhile one of the method—Artificial Pancreas, has arrived in the markets for proper intake of insulin in the body. But you must consider certain things about this artificial pancreas prior to purchase.
No it’s Not an Organ
Pancreas produces and releases an enzyme, insulin—this hormone helps to extract sugar from the food and use it to produce energy in the cells. Not to get confused the so-called artificial pancreas with an actual organ, it might share the same name and functions but it is actually referring to the Medtronic’s MiniMed 670G hybrid closed loop system. Pancreas of people with type 1 diabetes are not able to produce insulin for the body hence, this technology helps provide the required insulin dose as per its blood sugar level. It is integrated with certain different systems which monitor as well as regulate the dosages.
First of All it’s No Insulin Pump
You might know insulin pumps to reduce the effects of diabetes in the body. But there are certain times when these pumps becomes fatal if consumed too much. Excess intake can lead to hypoglycaemia which can be deadly for the body so, the balancing act must be taken care of.  Even though these devices do allow us to program it for the release of right amount at specific time, you have to frequently check blood sugar level. With insulin you have to be very conscious about the blood sugar level and the intake you are taking. Whereas, Medtronic’s MiniMed 670G also referred as artificial pancreas combines with an insulin pump but with an adjacent glucose monitor which not only checks the blood sugar but also adjusts your insulin dose as per required.
50 Years of Research yet Drawbacks
The researchers have been developing this type of tech from many years. According to the reports, with the approval of MiniMed 670G, it was sort of bomb-drop on various research institutes as it is not full-proof. It won’t be useful for the people with low hearing and vision problems, pregnant women, and people with kidney diseases. Yet, it is sort of a major achievement in medical science and also in pharmaceuticals.

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Wednesday, August 29, 2018

Advanced Heart Failure Treatment with Tablet Device


The compliance catalyst element as described by the professionals called an OPTILOGG is a dedicated device for heart failure patients. OPTILOGG makes it possible for the patient to take an active part in his/her treatment as a heart patient by coaching the patient to gain an improved self-care behavior.
The growth in technology seems unlimited. Technology has exceeded e-commerce products, education and gaming apps to dive into the health world. There is almost nothing in health that cannot be of aid using the technology products. The area of technology influence, especially in health industries includes; drug production, surgery, medical record keeping, birth facilities and also for managing diuretic dosage in heart failure ailment.
Such technology product is the “OPTILOGG in tablet”. This device was produced by researchers at Linkoping University in Sweden. OPTILOGG is a simple preprogrammed tablet that is attached to a weighing scale, and this device helps to provide some relevant information for treating and diagnosing heart failure patients, it can also register body weight and its symptoms, can assist in managing diuretic dosage.
How To Use The Device ‘OPTILOGG’
The patients who use OPTILOGG are not required to stress while in this process, they don’t need to push the buttons as it is automatic, and it can take only about 30 seconds in a day to complete its cycle.
The OPTILOGG system is installed in the patient’s home and the necessary equipment which includes the tablet is given to the patient by CareLigo. You are not expected to be an expert in technology to use this device. With this device, the patient is trained to become the expert in his/her unique situation. In case there is an unexpected deterioration in health, OPTILOGG quickly identifies it and goes ahead to the patient, then recommends him/her to contact his/her health care provider.
The Feedback From The Users
 According to the studies of about 32 patients from four primary heart failure clinics, the major participants were around 65 years , and 31% of them were female.
The number of patients who are using the device is about 94%, and just as intended. Nurses in various health institutions reported no increase in workload and with a significant decrease of 28.5 at baseline of 18 at four months. The patients, give a good feedback when they use the device of return of improvement in self-behavior  by 10.5 points or 37%. There is a tendency of much safety and more committed patients who now to take better care of themselves when using the tool.
Liljeroos said that “introducing OPTILOGG into primary care is innovative and lucrative, due to its ability to help patients with heart failure to manage their condition.”
Crucial Moment For Intense Care
Old age is really a thing of utmost concern, eHealth-solutions are needed to handle the ever aging population and distribute health care. To achieve a good stand in taking care of the population in this category; OPTILOGG is very much needed like other health facilities. It is the only solution of its kind that really reaches these patients.
Read more..

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Monday, August 27, 2018

Innovation is Now – Robots Can Perform a Complete Brain Surgery in 2.5 Minutes


The human brain is the most complex organ in the human body and to say that brain surgery is a complicated operation would be an understatement. It takes years of practice and knowledge for a surgeon to perform such an intricate operation, yet it’s still prone to human errors. There is not one ‘grand unified theory’ of neuroscience, even after hundreds of hours spent on its research and application. The slightest of error or wrongdoing in such a case can cause severe consequences to the patient.
To tackle this issue, researchers have spent countless hours to come up with a solution wherein robots will perform this delicate surgery on behalf of humans. Although the prospect of robot-assisted surgeries may seem daunting, but it brings with itself unrivaled advantages. Researchers at the University of Utah have developed a machinery that can drastically reduce the time taken to perform surgeries and that too in an efficient manner. One of their robots is able to perform such complicated operations, at least 50 times faster than human conducted surgeries.
The procedure of drilling through the human skull to perform surgery takes over 2 hours of time, however, this robot can do the same operation with flawless accuracy in only 2 and a half minutes. Surgeons use hand drilling techniques to create brain openings in immensely complex surgeries like cranial, which adds hours to the overall procedure. This can be easily taken care of with the help of such robotic assistance.
Said to be a potentially path-breaking healthcare innovation, robot-assisted surgeries can be highly beneficial for brain patients as it dramatically cuts down their chances of infection. It is believed that robot-drilling procedure produces fast, clean and safe cuts, thereby curbing down the total time that the wound would be open. This decreases the likelihood of human error and the cost incurred in such surgeries.

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Now Robots to Perform Delicate Eye Surgeries


The technologies are advancing daily, and the medical science is utilizing these technological advancements to an extreme level. The eyes are one of the most sensitive organs of the human body. It irritates even if a small eyelash falls on the eye-ball. So, an operation inside the eye is something that is quite difficult to imagine. Most people are scared about the words “Operation,” “Surgery” and “Cuts. They still get a hope when some renowned medical surgeon performs the surgery, but it is worrisome to have one’s eye operated by a robot.
It is a well-known fact that computers and robots are more accurate than humans. Humans are more prone to make mistakes, and a mistake during a surgery may even cause the death of the patient or some serious injury which can stay on for the lifetime. But during surgery, the patient feels more confident with the hands of a professional surgeon and they know that even if those knives and scissors make a wrong cut, the experience of the surgeon is going to rectify them and cure the patient with extreme precision and care. On the other hand, robots are something which is emotionless and does not know what it feels like to have pain.
To the scientists and doctors, the main aim is to increase the level of accuracy. An experiment was performed by the surgeons where they used a robot to operate inside a human eye to improve the precision of a delicate surgery while removing the fine membrane growth on the retina. Doctors informed that if it is left unchecked, then such growth distorts vision and can ultimately lead to blindness in the affected eye.
The surgeries were so far performed by the eye surgeons only. While keeping in mind, the narrow opening of the area to operate and the delicacy of the retina, the doctors decided to take the help of robots to perform this. Medical professionals and researchers suggested that even highly skilled surgeons can make unnecessary deeper cuts which can lead to minor hemorrhage and scarring and ultimately leading to visual impairment. They added that even the pulsing of the blood through the surgeon’s hand is quite enough to affect the precision of the cut.
The experiment was performed at a hospital in the United Kingdom where the highly skilled surgeons performed the membrane-removal surgery on 12 patients. During this experiment, six out of 12 went through the traditional process whereas the rest went through the experimental robotic surgery. The result findings showed that the patients who underwent the robotic procedure experienced significantly less hemorrhages and much fewer damages to the retina than the ones who went through traditional surgery.

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Are Supplements Safe?


Supplements are now a part and parcel of our regular life, many of us use supplements due to various reasons. According to some insiders, once the supplement industry was a $32 billion industry, which is expected to grow even further. Supplements that include, vitamins, minerals, and different herbs can help us to get better health. However, do we really need external supplement supply and above all, are they safe? So, let’s take a moment and check out if supplements are really safe for our health.
Like every drug, supplements also come with health risks and side effects. However, the sellers aren’t required to do any research about its side effects and above all most of the supplements are self-prescribed without any input from a registered medical practitioner. All these together, increases the risk factor.
Over exposure to supplements like vitamins, herbs, botanicals and health powders were responsible for more than 1000,000 calls to the US poison control center in 2013. Among all of them, around 8000 patients were treated in various health care facilities, while more than 1,000 were reported to have moderate to severe outcome. However, most of the affected people never call a poison center or the supplement manufacturer, which eventually means we don’t ever get the real number of affected person. Supplements related to weight loss, energy, sexual enhancement, heart health, bodybuilding, sleep, etc are the main dietary supplements that can lead you to the emergency department if consumed more than prescribed.
However, if used properly supplements can help to reduce some discomfort caused by some medications or can even make a person feel better by improving the quality of life. Some of the dietary supplements can be used as a way of lowering cholesterol levels. So, one can say most of the people can take dietary supplements within guidelines, but taking it without any proper guidelines can harm a person to a very severe extent.
One must have a word with the physician before consuming any kind of supplements, as people with kidney or liver disease or diabetes or children under 18 or pregnant women should avoid taking certain supplements. Researchers have also studied that excess consumption of supplements can lead to heart failure, Huntington’s disease, and Neuromuscular disorders. Some of the dietary supplements can increase the risk of bleeding if taken before or after a surgery, it can also affect the response time to anesthesia, and sometimes, supplements can react with prescribed drugs, that might create a problem.

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Friday, August 24, 2018

Trends to be observed in EMR and EHR sector


Technology and advancements in the medical industry are moving at a rapid pace. These advancements are helping doctors, medical professionals and patients to keep a track of their medical records and history. Though the section of Electronic Medical Records (EMR) and Electronic Health Records (EHR) are advancing in a huge speed, still, it is one of the least discussed. It is one such area of healthcare which is about to bring some of the greatest improvements in the medical industry with major benefits to both providers and patients.
The major upcoming goals of EMR-EHR are improvement of the quality, efficiency and safety of healthcare systems, improvement of overall public health, improved collaboration among doctors for treating the same patient, inclusion and engagement of patients in their own care and assurance of privacy and confidentiality of patients. While keeping these goals in mind, the trends which are to be observed in the near future are as follows:
Increase in the access point for patients.
In US, the initiatives which were maximally observed  is the catalyst of IT trends in Health Care in the patient area access are the change in the regulation of US HIPAA (Health Insurance Portability and Accountability Act of 1996) and the financial initiatives to adopt EHR systems.
Direct cloud access
Like any other modern industry, the entire healthcare industry is moving into cloud to make the work, computing and storage to help manage its data. The HIMSS Analytics 2016 Cloud Surveyed the IT Leaders at 105 Healthcare provider organizations and reported that these companies are planning to move to the cloud for analyzing big data and PACS (Picture Archiving and Communication System) storage. Many are already using cloud technology for patient engagement tools.
Wearables to Monitor Health
Technology is evolving and so is the healthcare industry. Minds of people are changing too. People are losing the tendency to wait now and everybody is demanding things to be faster. Patients and consumers of the healthcare industry are demanding to access their test results in the fastest way possible. They now want to use their mobile phones or other portable computing devices to book appointments for them. They are pushing their health data through wearable devices which offers Bluetooth enabled blood-pressure monitors and remote patient monitoring platforms which can send their information to their healthcare specialist teams. With the increase in the use of these technologies, the amount of data is also increasing every day.

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Effect of EHR in Reducing Medical Errors


Medical errors are the third leading cause of death in the U.S. A medical error is a terrible scenario that no physician ever wants to face. While most healthcare professionals and a majority of customers realize that doctors are human beings who sometimes make mistakes, most take measures to ensure accuracy in all aspects of patient care. Health information technology can help in developing patient safety, especially with processes and applications that improve a physician’s decision making, documentation, and communication.
One of the most common medical errors is that of medication. This is especially usual in patient care scenarios where multiple teams or specialists treat one patient. Wrong dosages, interactions with other drugs, or unintended prescription of the wrong drug are not as uncommon as many of us would like to think. But most of these errors can be prevented with the help of Electronic Health Record systems.
One of the biggest benefits of EHR is that it has significantly improved the understanding of health among the patients. This is due to the adoption of ‘meaningful use’ principle. It is also of crucial importance that the provider has the ability to determine whether the error took place due to an issue caused by a user or software.
EHR technologies can help prevent medical errors by highlighting potential drug interactions and adverse reactions. Today, a number of features have been integrated into EHR systems which can prompt alerts for drug-food or drug-drug interactions. Moreover, it can check for allergies, and previous documentation of adverse reactions to a particular drug thus avoiding a medical error.
The EHR database feature helps physicians and other care members to quickly research any drug, its side effects, and contraindications. Such systems often provide formularies for approved and standard dosage and administration of particular drugs.
A recent study revealed that understanding tools and options in EHR systems can reduce medication errors by over 50%. Some of these systems use the latest technology of split screens that lists pre-admission medications and compare them for potential interactions or dangerous adverse reactions with the new medications for a treatment.

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4 Billion Years Before Man with LUCA, The Original Ancestor


The gist is that before you were, there was. The imaginations that follow the science research have a way of dangling with the mind of humans. Did you know? There is a particular organism that is believed to have a circular relationship between every living being on the planet earth today. It is the wonderful, “Last Universal Common Ancestor (LUCA) can also be called as the “Last Universal Ancestor (LUA). This is the most recent population of organisms which scientists and researchers believe that all organisms now living on Earth have a common descent. Life is currently divided into six kingdoms: animals, protists, plants, fungi, eubacteria, and archaebacteria. The first four categories belong to the domain known as eukaryotes, meaning sporting cells with distinct nuclei. Eubacteria and archaebacteria are both single-celled organisms without a distinct nucleus. But all of them evolved to have a descendant relationship from a single-celled ancestor that was believed to have lived about 4 billion years ago when Earth was a celestial baby.
The Role of DNA Studies in LUCA and The Evolutionary Concept
DNA analysis provided the opportunity for researchers to effect changes in the tree of life in an incredibly detailed manner. Which always has a question mark at the base. The question had been who started it all? But they came up with a pretty good description to satisfy this need, which is LUCA, of all of Earth’s creatures, also referred to as microbial Eve. Based on the time of LUCA’s existence on the planet, it may have lived in the really inhospitable environs like underwater and even the volcanos.
LUCA is no less than 4 billion years old and was a single-cell organism at the time. After all, those billions of years and the changes encountered, LUCA’s fingerprints are still clearly seen in the genes of modern organisms. That’s the reason William Martin, a biologist at Heinrich Heine University in Düsseldorf, Germany, engaged more of his time to study LUCA’s trail in the genes of bacteria and archaea, which landed to the note of eukaryotes.
Scientists have been involved in various studies of the inception of man and every living being of which a major key concept is the LUCA which springs beyond superficial learning down to study the early evolution of life’s origin.
The Research on LUCA and The Gene Attributes
There was a study published in Nature Microbiology, stated that LUCA is no less than 4 billion years old, possibly had the worst environmental experience due to their moving tectonic plates and was also a single-cell organism.
William Martin of Heinrich Heine University Düsseldorf led a team of scientists to investigate all clusters and genetic evolutionary trees of 6.1 million genes. They conducted the following studies while trying to get a clear description of LUCA. The team was able to identify 355 genes that trace to the last ancestor by phylogenetic criteria.
The origin of the idea about LUCA was birthed when researcher of Martin’s group was giving a 20-minute summary of a Masters thesis in bioinformatics.
According to Martin, “The genomes have traces of life’s earliest history in an exciting prospect. This makes it even more exciting and probably impossible to decipher some of the found traces of history.”
LUCA lived in a “geochemically active environment,” meaning volcanically active places or areas that tectonic plates are moving apart, hotspots and ocean basins that are rich in carbon dioxide, hydrogen, and iron.

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Wednesday, August 22, 2018

Become a Computational Biologist


Computational Biology entails the application and development of data-analytical and theoretical methods, computational simulation techniques, and mathematical modeling to investigate biological, social and behavioral systems. It is one of the rapidly growing areas of biomedical research, but many students or researches might not find time to formally study and gain expertise in it.
Geoffrey Siwo, who is currently a research assistant professor at the prestigious University of Notre Dame, shares a few tips on how a biologist can keep up with computational biology.
The first and foremost advice is to – “Learn by solving a problem that matters to you
Computational Biology includes a wide area of knowledge from data mining, statistics, nucleic acid and protein sequence analysis, machine learning and so on. If you are a full time biologist and short on time, one practical way is to start with a biological question which interests you the most and then starts thinking about how to solve it using computers instead of experiments. If this proves difficult, try to break down your problem into smaller manageable units.
An individual first has to learn how to use tools like Basic Local Alignment Search Tool (BLAST) which will enable him to find similar nucleic acid or amino acid sequences of interest, CLUSTALW to perform multiple sequence alignment and analyze the similarities among them and databases like PubMed to read peer-reviewed publications. Together, these tools will allow him to learn more about computational biology and bioinformatics.
Share your ideas, interact with crowds, and don’t be afraid of being wrong! When you learn a new skill on your own, there’s a good chance you’ll make a mistake. But discussing your work with other biologists can help you avoid that”, says Siwo.
Many online resources provide a platform wherein users are allowed to ask questions about their subject of computational interest. For example, Biostars, Seqanswers and Bioconductor are forums where beginners and experienced professional can ask and answer questions.

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How to Cure Most Common Sports Injuries by Physiotherapy?



Participating in sports is an amazing way to release stress, exercise, enhance fitness, stay happy and be happy both mentally and physically. With the fun of sports, comes the injuries. But one cannot fear injury and stop taking part in sport. Performing in sports may range from a tennis match with one’s high school friend to Olympics or World Championship. While playing one cannot be cautious enough to avoid injuries as that would result in the distraction of the sport itself and would hamper the performance of the player. Most players take injuries a part of the sports activity.
With age, the chances of getting damage become more, as muscles start loosening up and strength begins to get reduced. It often seems that participating in athletic activities become hard for the body if one is not in a regular practice or getting old. One cannot avoid getting injured, but the person can surely cure those injuries with physiotherapy. Some of the common injuries and their remedies are:
Ankle Sprain
A sprain in the ankle affects the ligaments of the foot and occurs when one turns or rolls over the ankle which can cause bruising and tearing. One can treat sprained ankle with RICE treatment to help reduce inflammation and pain. Read more..
Lower Back Pain
A lot of athletes experience lower back pain at some point in time, and the reasons behind this can be multiple. Read more..
This is a quite big injury which happens to active sportspersons and is mostly caused by repeated stress and strain on the feet and is often caused due to improper footwear and poor technique. Read more..

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Tuesday, August 21, 2018

Bioinformatics Aids in Knowing the Intrinsically Disordered Proteins


Revolutionary changes in IT sector helps to build the best alternatives or options in every sector, especially in healthcare. Bioinformatics is also the outcome of technological development in the field of biology. We all are aware that bioinformatics has wide applications. By taking the advantage of bioinformatics, the scientist revealed the information about the intrinsically disordered proteins.
Proteins are the complex molecules made up of amino acids and act as the building block in every living organism. The proteins are involved in the process of growth and development. Also, it interferes with the metabolic processes carried out at the cellular level and creates the disease conditions. Apart from all, proteins work as an antibody which triggers many viruses and bacteria. Enzymes are also proteins and hence, participate in many chemical reactions and are involved in the process of copying DNA.
Scientists had worked a lot on the proteins and had sequenced 85 million unique proteins, structured and unstructured alike, but still, fails to predict functions of most of the proteins. For this, they need more advanced computer software to predict the functions of the newly discovered proteins.
Major Contributions
Lukasz Kurgan, the scientist from Virginia Commonwealth University, has developed a few bioinformatics software programs to support biological experts in improving knowledge about the functions of intrinsically disordered proteins. They are amorphous and flexible in nature and they do not have any specific three-dimensional structure. Read more..
Prediction of Unknown Functions of Known Structures
At the time of discovery of IDP, some people said that IDPs are just noise in the protein structures. But right now, scientists have obtained a lot of structural and functional knowledge of many proteins. It is a difficult task for them to know the functions of proteins which are totally or partly disordered. 

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Can Physiotherapy Cure Facial Palsy?


While talking about the measures to cure facial palsy, it is very much essential to understand facial paralysis first. Doctors refer the term “Facial Palsy” to a condition where the facial muscles of the patient become weak due to temporary or permanent damage to the facial nerve. Medical practitioners say that a facial nerve is either not functioning properly or missing in the face, makes it almost impossible to receive the necessary signal given by the brain, resulting in its improper functioning. If a patient is suffering from only facial palsy then the patient is supposed to show paralysis only in the affected area of the face. It can affect any part of the face or movement of a particular part like eye(s) and mouth or even the entire face in some severe cases.
Medical practitioners often classify facial palsy by different degrees of the paralysis as sometimes only the lower portion of the face is affected or sometimes the whole one side of the face is affected and sometimes both the sides are affected. The human body is highly sophisticated and sensitive. Neurosurgeons say that each one side of the face has its facial nerve so if only the right side of the face is affected then only the right side will be affected and vice versa. These nerves though look thin and tiny to normal eyes, it serves some of the critical purposes of the body.
Experts commented that each nerve starts at the brain and enters the face to the front of the ear from where it divides itself into five separate branches, and these branches of nerve are essential for supplying message to the muscles which are used for giving facial expression. These facial nerves are the ones which control all our saliva production, taste, and tears. Professionals said that the most known causes for this type of paralysis are viral infections such as Bell’s palsy or Ramsay Hunt syndrome, facial surgerybacterial causeneurological causestraumatic injuries such as fractures, birth traumacongenital conditions such as development of facial nerve or muscle, rare genetic syndromes, and stroke.
Expert physiotherapists suggest that before applying any kind of physiotherapy process, it is essential to assess the face of the patient and condition of the facial nerve accurately by using electromyography (EMG). Though the therapist with high levels of skills and expertise does not always require EMG report,  it is still advisable to undergo the assessment. The principal of the therapist remains to provide a therapy program that will help facilitate facial symmetry and improve the facial paralysis. Professionals say that with proper exercise and physical therapy, the patients who have facial palsy can recover some of the facial movements which they have lost and can regain their normal facial expressions. They have also mentioned that though therapy is very much useful to cure this problem, some critical cases might require surgery too.
The general treatments applied to this kind of health problems are Neuromuscular Retraining (NMR), which includes subtle yet crucial exercises necessary to teach and retrain the brain of the patient to coordinate the facial muscle more efficiently, and Manual Massage, which includes a series of different massage techniques used to increase the flexibility of the facial nerves.

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