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Botulinum toxin produced by Clostridium botulinum is the cause of botulism.[9] Humans most commonly ingest the toxin from eating improperly-canned foods in which C. botulinum has grown. However, the toxin can also be introduced through an infected wound. In infants, the bacteria can sometimes grow in the intestines and produce botulinum toxin within the intestine and can cause a condition known as floppy baby syndrome.[32] In all cases, the toxin can then spread, blocking nerves and muscle function. In severe cases, the toxin can block nerves controlling the respiratory system or heart, resulting in death.[1] Botulism can be difficult to diagnose, as it may appear similar to diseases such as Guillain–Barré syndrome, myasthenia gravis, and stroke. Other tests, such as brain scan and spinal fluid examination, may help to rule out other causes. If the symptoms of botulism are diagnosed early, various treatments can be administered. In an effort to remove contaminated food which remains in the gut, enemas or induced vomiting may be used.[33] For wound infections, infected material may be removed surgically.[33] Botulinum antitoxin is available and may be used to prevent the worsening of symptoms, though it will not reverse existing nerve damage. In severe cases, mechanical respiration may be used to support patients suffering from respiratory failure.[33] The nerve damage heals over time, generally over weeks to months.[4] With proper treatment, the case fatality rate for botulinum poisoning can be greatly reduced.[33]


Study 2 compared 3 doses of BOTOX with placebo and included 91 patients [BOTOX 360 Units (N=21), BOTOX 180 Units (N=23), BOTOX 90 Units (N=21), and placebo (N=26)] with upper limb spasticity (expanded Ashworth score of at least 2 for elbow flexor tone and at least 3 for wrist flexor tone) who were at least 6 weeks post-stroke. BOTOX and placebo were injected with EMG guidance into the flexor digitorum profundus, flexor digitorum sublimis, flexor carpi radialis, flexor carpi ulnaris, and bic eps brachii (see Table 27).
The most frequently reported adverse reactions following injection of BOTOX® for Chronic Migraine vs placebo include, respectively: neck pain (9% vs 3%), headache (5% vs 3%), eyelid ptosis (4% vs < 1%), migraine (4% vs 3%), muscular weakness (4% vs < 1%), musculoskeletal stiffness (4% vs 1%), bronchitis (3% vs 2%), injection-site pain (3% vs 2%), musculoskeletal pain (3% vs 1%), myalgia (3% vs 1%), facial paresis (2% vs 0%), hypertension (2% vs 1%), and muscle spasms (2% vs 1%).
There have been spontaneous reports of death, sometimes associated with dysphagia, pneumonia, and/or other significant debility or anaphylaxis, after treatment with botulinum toxin. There have also been reports of adverse events involving the cardiovascular system, including arrhythmia and myocardial infarction, some with fatal outcomes. Some of these patients had risk factors including cardiovascular disease. The exact relationship of these events to the botulinum toxin injection has not been established.
Therefore, it is important to remember that if a clinic or medical spa states that they are providing Botox at a certain dollar amount per unit, it is quite possible that they are diluting the Botox and actually not providing the agreed-upon amount. This is much like the concept of a watered-down drink at a bar, but the costs are much larger when it comes to Botox or its alternatives, Dysport and Xeomin.
BOTOX blocks neuromuscular transmission by binding to acceptor sites on motor or sympathetic nerve terminals, entering the nerve terminals, and inhibiting the release of acetylcholine. This inhibition occurs as the neurotoxin cleaves SNAP -25, a protein integral to the successful docking and release of acetylcholine from vesicles situated within nerve endings. When injected intramuscularly at therapeutic doses, BOTOX produces partial chemical denervation of the muscle resulting in a localized reduction in muscle act ivity. In addition, the muscle may atrophy, axonal sprouting may occur, and extrajunctional acetylcholine receptors may develop. There is evidence that reinnervation of the muscle may occur, thus slowly reversing muscle denervation produced by BOTOX.
The Botox used for migraines and the Botox used for cosmetic procedures is actually exactly the same. "Basically, young and middle-aged women were getting [Botox] for cosmetic purposes, and that’s the most common person that has migraines, and that’s how they figured out it was helpful," Ravitz tells me. Women were getting Botox for aesthetic reasons and happened to notice relief from their migraine symptoms, and doctors began looking into it as a direct treatment. In fact, women are disproportionately affected by migraines — about 85 percent of chronic-migraine sufferers are women, and the condition affects 28 million in just the U.S.
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When BOTOX was administered intramuscularly to pregnant rats (0.125, 0.25, 0.5, 1, 4, or 8 Units/kg) or rabbits (0.063, 0.125 , 0.25, or 0.5 Units/kg) daily during the period of organogenesis (total of 12 doses in rats, 13 doses in rabbits), reduced fetal body weights and decreased fetal skeletal ossification were observed at the two highest doses in rats and at the highest dose in rabbit s. These doses were also associated with significant maternal toxicity, including abortions, early deliveries, and maternal death. The developmen tal no-effect doses in these studies of 1 Unit/kg in rats and 0.25 Units/kg in rabbits are less than the human dose of 400 Units, based on Units/kg.
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Sharona Hoffman, professor of law and bioethics at Case Western Reserve University School of Law, says that step therapy is driven by a single motivator: saving costs. Hoffman, who’s written about the legal and ethical implications of step therapy, says that sometimes step therapy can have sensible outcomes, like pushing patients to take generics instead of brand-name drugs. But these policies can also keep doctors from prescribing the more expensive drugs of choice, forcing patients to take medications that are less effective or have worse side effects.
Botox essentially paralyzes the muscles and stops them from contracting. Results are visible within one week after treatment and remain for a minimum of three months. Some surgeons suggest that Zytaze, a new prescription zinc supplement, can extend these results if taken in the days leading up to your Botox injections. Ask your doctor about Zytaze before your next Botox injection.

Botox is a brand name of a toxin produced by the bacterium Clostridium botulinum. There are other brand names for botulinum, such as Xeomin. In large amounts, this toxin can cause botulism, which you probably associate with food poisoning. Despite the fact that one of the most serious complications of botulism is paralysis, scientists have discovered a way to use it to human advantage. Small, diluted amounts can be directly injected into specific muscles causing controlled weakening of the muscles.
Botulinum toxin exerts its effect by cleaving key proteins required for nerve activation. First, the toxin binds specifically to nerves which use the neurotransmitter acetylcholine. Once bound to the nerve terminal, the neuron takes up the toxin into a vesicle. As the vesicle moves farther into the cell, it acidifies, activating a portion of the toxin which triggers it to push across the vesicle membrane and into the cell cytoplasm.[1] Once inside the cytoplasm, the toxin cleaves SNARE proteins preventing the cell from releasing vesicles of neurotransmitter. This stops nerve signaling, leading to paralysis.[1]

Shah says that it’s harder to treat wrinkles with just Botox as they get more and more ingrained into the face. “Some people may need just a few injections, but some may require more treatments, such as laser treatments or a series of smaller procedures, which are going to cost more. Whereas if they came in five years earlier, I may have just been able to use Botox to get the same effect,” she says.


Once the protein stops functioning at the neuromuscular junction, it is broken down into its harmless components (amino acids) and either recycled for use in other proteins or excreted by the kidneys. "The bigger the muscle, the quicker you'll see motion return," says Rowe. "Likewise, the smaller the muscle, the longer the effect of botox lasts." It doesn't have a tolerance effect, either—your body never gets used to Botox.
Proper refrigeration at temperatures below 3 °C (38 °F) retards the growth of Clostridium botulinum. The organism is also susceptible to high salt, high oxygen, and low pH levels.[citation needed] The toxin itself is rapidly destroyed by heat, such as in thorough cooking.[72] The spores that produce the toxin are heat-tolerant and will survive boiling water for an extended period of time.[73]
Significant improvements compared to placebo in the primary efficacy variable of change from baseline in daily frequency of incontinence episodes were observed for BOTOX® (100 Units) at the primary efficacy time point at week 6. Increases in maximum cystometric capacity and reductions in maximum detrusor pressure during the first involuntary detrusor contraction were also observed. These primary and secondary endpoints are shown in Table 23.
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Safety and effectiveness of BOTOX® have not been established for the treatment of other upper or lower limb muscle groups or for the treatment of spasticity in pediatric patients under age 18 years. BOTOX® has not been shown to improve upper extremity functional abilities, or range of motion at a joint affected by a fixed contracture. Treatment with BOTOX® is not intended to substitute for usual standard of care rehabilitation regimens.
This product contains albumin, a derivative of human blood. Based on effective donor screening and product manufacturing processes, it carries an extremely remote risk for transmission of viral diseases and variant Creutzfeldt-Jakob disease (vCJD). There is a theoretical risk for transmission of Creutzfeldt-Jakob disease (CJD), but if that risk actually exists, the risk of transmission would also be considered extremely remote. No cases of transmission of viral diseases, CJD or vCJD have ever been identified for licensed albumin or albumin contained in other licensed products.
Botox injections for migraines have been proven to reduce the intensity and duration of migraines for those who suffer. Botox was developed in the 1970s by an ophthalmologist who was looking to develop a treatment for strabismus (crossed eyes). This simple migraine treatment was discovered accidentally when people undergoing plastic surgery also experienced migraine relief. While they don’t work for everyone, Botox injections for migraines offer another way to approach treatment of migraine headaches.
The more areas that need treatment the higher the cost of treatment. The reason is also simple – the cost of Botox or Dysport that the doctor pays for the drugs is relatively expensive and therefore that cost is obviously passed along to the patient. A second factor that many patients are unaware of is that Botox and Dysport come in a powder form that must be mixed with sterile saline to reconstitute the vial. The amount of water that is mixed with the Botox or Dysport determines the concentration of the medicine. Some doctors and nurses dilute the powder too much so that the concentration of Botox or Dysport is weak. So if you go to a provider who advertises a cheap price for injections you should question whether or not you are receiving a very dilute injection.This dilute mixture typically does not produce the same effect as a more or not concentrated (more expensive) injection and does not last as long.
The potency Units of BOTOX (onabotulinumtoxinA) for injection are specific to the preparation and assay method utilized. They are not interchangeable with other preparations of botulinum toxin products and, therefore, units of biological activity of BOTOX cannot be compared to nor converted into units of any other botulinum toxin products assessed with any other specific assay method [see WARNINGS AND PRECAUTIONS and DESCRIPTION] .
The cost of Botox can range in price based on a number of factors. To help you understand how much a Botox treatment will cost you in NYC. I have created a complete Botox guide that will help you understand everything that must be considered when evaluating the procedure. Here you can obtain the basic information you need to make an informed decision before you get a Botox treatment. Along with learning about the differential cost of Botox, I will also briefly give you an overview of the reasons to consider a Botox treatment, and how you can maintain its beneficial effects.
Tell your doctor if you have received any other botulinum toxin product in the last 4 months; have received injections of botulinum toxin such as Myobloc®, Dysport®, or Xeomin® in the past (tell your doctor exactly which product you received); have recently received an antibiotic by injection; take muscle relaxants; take an allergy or cold medicine; take a sleep medicine; take aspirin-like products or blood thinners.
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