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Body odor usually becomes evident if measures are not taken when a human reaches puberty - 14-16 years of age in females and 15-17 years of age in males. People who sweat too much - those with hyperhidrosis - may also be susceptible to body odor, however, often the salt level of their sweat is too high for the bacteria to break down - it depends where the excess sweating is occurring and which type of sweat glands are involved. Sweat itself is virtually odorless to humans; it is the rapid multiplication of bacteria in the presence of sweat and what they do (break sweat down into acids) that eventually causes the unpleasant smell. Body odor can have a nice and specific smell to the individual, and can be used - especially by dogs and other animals - to identify people. Isovaleric acid (3-methyl butanoic acid) is another source of body odor as a result of actions of the bacteria Staphylococcus epidermidis, which are also present in several strong cheese types. Apocrine glands - these glands are found in the breasts, genital area, eyelids, armpits and ear.
Most of the apocrine glands in the skin are located in the groin, armpits and around the nipples of the breast. You body smells differently - if it is a fruity smell it could be due to diabetes, liver or kidney disease often makes the individual have a bleach-like smell.
A large concentration of apocrine glands exist in the armpits, making that area susceptible to rapid development of body odor. Keep the armpits clean - wash them regularly using anti-bacterial soap, and the number of bacteria will be kept low, resulting in less body odor.
Hair under the armpits slows down the evaporation of sweat, giving the bacteria more time to break it down into smelly substances; shaving the armpits regularly has been found to help body odor control in that area.

The patient is given approximately 12 injections of botulinum toxin in the armpits - a procedure that should not last more than 45 minutes. For 90% of all Americans, slathering on deodorants and antiperspirants is a daily occurrence, a precautionary measure against foul odors and unsightly sweat stains.
The researchers analyzed the diversity and abundance of subjects' armpit bacteria at various timepoints before they stopped using antiperspirant, during the period of abstaining from antiperspirant, and for a few weeks after resuming the use of antiperspirant.
Callewaert also says that this is the first study to specifically examine the effect of deodorant on the diversity and abundance of armpit bacteria. While the current study strongly suggests that antiperspirants can make their users smell worse via the growth of Actinobacteria, it does not directly assess body odor. Some source says that since Brad Pitt is of the land and all green and shit, he has crapped on soaps and deodorants, and is using a natural potion of lemon, water and apple cider vinegar to rinse the thick layer of pore cheese off his body. People who are obese, those who regularly eat spicy foods, as well as individuals with certain medical conditions, such as diabetes, are more susceptible to having body odor. The apocrine glands are mainly responsible for body odor because the sweat they produce is high in protein which bacteria can break down easily.
Some experts believe a diet high in red meat may also raise the risk of developing more rapid body odor. If your body does not respond to the home remedies mentioned above, talk to a pharmacist or your doctor about a suitable product containing aluminum chloride.
The odors arise when bacteria living in our armpits break down lipids and amino acids excreted in sweat into more smelly substances.

Switching hygiene habits plainly altered the armpit bacterial communities of every subject.
As a follow up, Callewaert should recruit subjects to use antiperspirants and utilize methods like gas chromatography to directly measure the amount of the stinky volatile organic compounds emanating from their armpits. Body odor is most likely to occur in our feet, groin, armpits, genitals, pubic hair and other hair, belly button, anus, behind the ears, and to some (lesser) extent on the rest of our skin. Deodorants employ antimicrobial agents that kill off bacteria, as well as chemicals that replace noxious odors with pleasant aromas. Since no two armpits and their resident bacteria are identical, it was difficult to pinpoint precise changes brought about by deodorants or antiperspirants, but one clear trend did materialize: antiperspirants resulted in a clear increase of Actinobacteria. Other microbes that inhabit the armpit, like Firmicutes and Staphylococcus, don't produce odors as quickly, nor are those odors nearly as pungent. Deodorants that double as antiperspirants, like Degree, Old Spice, and Dove, take the process one step further by physically plugging sweat glands with aluminum-based compounds.

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