Osteoporosis
medical conditions

Osteoporosis

Explore the available health information, treatment context, and integrative evidence for Osteoporosis.

Background
  • Osteoporosis is a disease of the bones that makes them weak and prone to fracture.
  • Osteoporosis is considered a silent disease, because bone loss itself is gradual and painless. There are usually no symptoms to indicate that a person is developing osteoporosis early in the condition. Bone is living tissue that is in a constant state of formation and resorption. Bone resorption is the gradual loss of bone. As individuals age, formation lessens and after a peak bone mass is achieved, bone mass remains stable (resorption and formation are equal). Osteoclasts are the principal cells responsible for bone resorption.
  • By their mid-30s, most individuals begin to gradually lose bone strength as the balance between bone resorption and bone formation shifts, so that more bone is lost than can be replaced. As a result, bones become less dense and structurally weaker, called osteopenia. Osteopenia refers to mild bone loss that is not severe enough to be called osteoporosis, but that increases the risk of developing osteoporosis. As this occurs, bones lose calcium, phosphorus, boron, and other minerals and become lighter, less dense, and more porous. This makes the bones weaker and increases the chance that they might break. If not prevented or if left untreated, osteopenia can progress painlessly into osteoporosis until a bone breaks or fractures.
  • Although any bone is susceptible to fracture, the most common fractures in osteoporosis occur at the spine, wrist, and hip. Spine and hip fractures in particular may lead to chronic pain, long-term disability, and even death.
  • Osteoporosis is more common in older individuals and non-Hispanic white women, but can occur at any age, in men as well as in women, and in all ethnic groups.
  • According to the National Osteoporosis Foundation, about eight million women and two million men in the United States have osteoporosis. Those over the age of 50 are at greatest risk of developing osteoporosis and suffering related fractures. In this age group, one in two women and one in six men will suffer an osteoporosis-related fracture at some point in their life.
  • Significant risk has been reported in people of all ethnic backgrounds. While osteoporosis is often thought of as an condition found in older individuals, it can strike at any age.
  • Osteoporosis may also affect children, although it is rare. This is called juvenile osteoporosis. Juvenile osteoporosis is usually due to a medical condition, such as a thyroid condition or Cushing's disease (a rare condition involving insufficient adrenal hormone output), or medications, including corticosteroids. It's a significant problem because it occurs during the child's prime bone-building years.
  • Conditions that may cause bone loss include osteomalacia, osteochondrosis, Kashin-Beck disease, and skeletal fluorosis. Osteomalacia is a softening of the bones, resulting from defective bone mineralization. Osteomalacia may cause pain, weakness, and fragility of the bones. Osteomalacia is caused by insufficient nutritional quantities or faulty metabolism of vitamin D or calcium, following a parathyroidectomy (removal of the parathyroid gland), or in other conditions such as cystic fibrosis, renal osteodystrophy (failure of kidneys to maintain adequate blood nutrients for bone), and hepatic osteodystrophy (failure of the liver to produce adequate vitamin D).
  • Kashin-Beck disease is a disorder of the bones and joints of the hands, fingers, elbows, knees, and ankles of children and adolescents who slowly develop stiff deformed joints, shortened limb length, and short stature due to necrosis (death) of the growth plates of bones and of joint cartilage.
  • Osteochondrosis is a disease that affects the progress of bone growth by killing bone tissue. Osteochondrosis is seen only in children and teens whose bones are still growing. Osteochondrosis is an inherited condition. Individuals with osteochondrosis nearly all have pain in the location of the bone damage. Some may involve considerable swelling, limping, bending, or kyphosis (exaggerated curve) of the upper spine.
  • Skeletal fluorosis is the chronic intake of excessive fluoride. Skeletal fluorosis can lead to severe and permanent bone and joint deformations. This can lead to softening of the bone and increases in fractures. Skeletal fluorosis should not occur with fluorinated water or toothpaste use.
Signs and Symptoms
  • In the early stages of bone loss, there usually is no pain or symptoms. Once bones have been weakened by osteoporosis, signs and symptoms may include: back pain, which can be severe with a fractured or collapsed vertebra; loss of height over time, with an accompanying stooped posture; and fracture of the vertebrae, wrists, hips, or other bones.
  • While limb fractures (such as wrist or hip) are obvious, spine fractures can be more difficult to diagnose. Spinal fractures might either be painless, or if there is pain, a person may not know it is caused by a fracture because there are so many different causes of back pain. More obvious signs of spine fractures are loss of height and development of kyphosis or a curved upper back, sometimes called a dowagers hump.
Diagnosis
  • Bone mineral density (BMD): Bone mineral density (BMD) is a measurement of the amount of calcium in the bones. Various diagnostic tests exist to determine BMD in individuals susceptible to osteoporosis, such as dual-energy X-ray absorptiometry or DEXA. The National Osteoporosis Foundation recommends a bone density test in women if they are not taking estrogen and any if the following conditions apply: they are taking medications such as corticosteroids (prednisone (Deltasone®) that can cause osteoporosis; they have type 1 diabetes, liver disease, kidney disease, or a family history of osteoporosis; they experience early menopause; they are postmenopausal (older than 50) and have at least one risk factor for osteoporosis; and if they are postmenopausal (older than 65) and have never had a bone density test. Doctors do not generally recommend osteoporosis screening for men because the disease is less common in men than it is in women.
  • Dual-energy X-ray absorptiometry (DEXA): DEXA is the most accurate way to measure BMD. DEXA uses two different x-ray beams to estimate bone density in the spine and hip. Strong, dense bones allow less of the x-ray beam to pass through them. The amounts of each x-ray beam that are blocked by bone and soft tissue are compared to each other. DEXA can measure as little as 2% of bone loss per year. It is fast and uses very low doses of radiation but is more expensive than ultrasound testing. Single-energy x-ray absorptiometry (SXA) uses one x-ray beam and may be used to measure heel and forearm bone density. SXA is not used as often as DEXA due to less accuracy.
  • The results of the DEXA test are scored in comparison to the BMD of young, healthy individuals, resulting in a measurement called a T-score. If the T-score is -2.5 or lower, the individual is considered to have osteoporosis and therefore at high risk for a fracture. T-scores between -1.0 and -2.5 are generally considered to show osteopenia. The risk of fractures generally is lower in individuals with osteopenia when compared with those with osteoporosis but, if bone loss continues, the risk for fracture increases.
  • Peripheral dual-energy X-ray absorptiometry (P-DEXA): Peripheral dual-energy X-ray absorptiometry (P-DEXA) is a type of DEXA test. P-DEXA measures the density of bones in the arms or legs, such as the wrist. P-DEXA cannot measure the density of the bones most likely to break, such as the hip and spine. P-DEXA machines are portable units that can be used in a doctor's office. P-DEXA also uses very low doses of radiation, and the results are ready faster than standard DEXA measurements. P-DEXA is not as useful as DEXA for finding out how well medicine used to treat osteoporosis is working. P-DEXA may be used in less serious cases of osteoporosis.
  • Dual photon absorptiometry (DPA): Dual photon absorptiometry (DPA) uses a radioactive substance to measure bone density. The radioactivity passes through the body similar to an x-ray. DPA can measure BMD in the hip and spine. DPA also uses very low doses of radiation but has a slower scan time than the other methods.
  • Quantitative ultrasound: Ultrasound uses sound waves to measure BMD, usually in the heel. If results from an ultrasound test find low bone density, DEXA is recommended to confirm the results. Machines pass the sound waves through air and some pass them through water. Ultrasound is quick, painless, and does not use potentially harmful radiation like X-rays. One disadvantage of ultrasound is it cannot measure the density of the bones most likely to fracture (the hip and spine) from osteoporosis.
  • Quantitative computed tomography (QCT): Quantitative computer tomography (QCT) is a type of computed tomography scan that measures the density of a bone in the spine (vertebra). A form of QCT called peripheral QCT (pQCT) measures the density of bones in the arms or legs, usually the wrist. QCT is not usually used because it is expensive, uses higher radiation doses, and is less accurate than DEXA, P-DEXA, or DPA.
  • X-rays: X-rays are low doses of radiation that are used to create an image of a body part, organ, or bodily system on film paper or fluorescent screens. X-rays show the alignment of the spine and may reveal degenerative joint disease, fracture, or tumor. X-rays cannot determine BMD, but can determine if a fracture has occurred.
Complications
  • Fractures: Fractures are the most frequent and serious complication of osteoporosis. Fractures often occur in the spine or hips, bones that directly support weight. Hip fractures, the second most common type of osteoporotic fracture, usually result from a fall. Although most individuals do relatively well in recovery with modern surgical treatment, hip fractures can result in disability and even death from postoperative complications, especially in older adults. Wrist fractures from falls are also common. Complications from osteoporotic fractures include chronic pain (neck, lower back), compressed or collapsed vertebra, disability, depression, limited activity, dowager's hump, stooped posture, and loss of height.
Treatment
  • Nutrition and lifestyle:
  • Dietary factors: It is important to that there is enough calcium in the diet for proper bone health. Healthcare professionals recommend calcium intakes of at least 1,000mg daily for everyone over eight years of age. Higher calcium intakes of 1,200mg daily are recommended for adults over 50 years and 1,300mg daily for teens nine to 18 years. Adequate vitamin D intake is also important for calcium absorption and to maintain muscle strength. Healthcare professionals recommend 400 international units of vitamin D daily until age 60, then 600-800 international units per day after age 60. Doses can be adjusted by a doctor according to blood levels of vitamin D.
  • Milk and milk products are calcium-dense foods providing about 300 milligrams calcium per serving. These foods also contain other nutrients important to bone health such as vitamin D (if fortified), phosphorus, and magnesium. Approximately 73% of calcium in the food supply comes from dairy products, 9% from fruits and vegetables, 5% from grain products, and 12% from all other sources such as dietary supplements.
  • Weight-bearing exercises: Exercise is an important treatment for osteoporosis to maintain healthy bones. Weight-bearing aerobic activities, involving the bones supporting body weight, have been shown to have a positive effect in maintaining and increasing bone mass and preventing osteoporosis. These activities include weight-lifting, jogging, hiking, stair-climbing, step aerobics, dancing, racquet sports, and other activities that require muscles to work against gravity. Swimming and simply walking, although good for cardiovascular fitness, are not the best exercises for building bone. Individuals who live a sedentary lifestyle have weaker bones and are subjected to a higher risk of sustaining fractures.
  • Medications:
  • Bisphosphonates: Alendronate (Fosamax®), risedronate (Actonel®), ibandronate (Boniva®), and zoledronate (Zometa®) are approved by the U.S. Food and Drug Administration (FDA) for the prevention and treatment of osteoporosis in postmenopausal women. Alendronate is a drug currently approved for management of osteoporosis in men. Both alendronate and risedronate are approved for the prevention and treatment of steroid-induced osteoporosis in men and women. Bisphosphonates help slow down bone loss and have been shown to decrease the risk of fractures. All are taken on an empty stomach with water. Because bisphosphonates have the potential for irritating the esophagus, remaining upright for at least an hour after taking these medications is recommended by healthcare professionals. Alendronate and risedronate can be taken once a week, while ibandronate can be taken once a month. An IV form of ibandronate, given through the vein every three months, also has been FDA-approved for the management of osteoporosis. Another IV bisphosphonate being studied for osteoporosis is zoledronic acid or zoledronate (Zometa®). This form is injected once yearly.
  • Side effects, which can be severe, include nausea, abdominal pain, and the risk of an inflamed esophagus or esophageal ulcers, especially if the individual has had acid reflux or ulcers in the past. If individuals cannot tolerate oral bisphosphonates, the doctor may recommend the periodic intravenous infusions of a bisphosphonate.
  • Use of bisphosphonates in women who are pregnant or breastfeeding is not well studied. Blood calcium levels in women who take bisphosphonates during pregnancy are usually monitored. Individuals using Boniva® injection will have blood levels of creatinine measured prior to each dose to determine kidney function. Creatinine is measured using blood tests.
  • Calcitonin (Miacalcin®): Calcitonin is a naturally occurring hormone produced by the thyroid gland that can be given as an injection or taken as a nasal spray. Calcitonin also inhibits the function of the cells that breakdown bone, the osteoclasts. Calcitonin has long been known to be beneficial in individuals with osteoporosis, but the injections were difficult to administer and had unpleasant side-effects. The nasal spray has greatly improved the use of calcitonin, and it is much more commonly used today. Calcitonin has been reported to slow bone loss, and also decrease pain associated with osteoporosis fractures.
  • Hormone replacement therapy (HRT): Estrogen therapy alone or in combination with another hormone, progestin, has been reported to decrease the risk of osteoporosis and osteoporotic fractures in women. However, the combination of estrogen with a progestin has been shown to increase the risk for breast and ovarian cancer, strokes, heart attacks, and blood clots. Estrogens alone may increase the risk of strokes. Healthcare professionals recommend weighing all options before choosing HRT as part of osteoporosis prevention.
  • Selective estrogen receptor modulators (SERMs): Selective estrogen receptor modulators (SERMS) mimic the positive effects of estrogen on bones without some of the serious side effects such as breast cancer and stroke. Raloxifene (Evista®) decreases spine fractures in women, and is approved for use only in women at this time. Hot flashes are a common side effect of raloxifene, and individuals with a history of blood clots should not use this drug.
  • Teriparatide (Forteo®

    ): Teriparatide is a form of parathyroid hormone that helps stimulate bone formation. Teriparatide is approved for use in postmenopausal women and men at high risk for osteoporotic fracture. It is given as a daily injection under the skin and can be used for up to two years. If the individual has ever had radiation treatment or if parathyroid hormone levels are already too high, they may not be able to take this medication.

  • Tamoxifen (Nolvadex®): Tamoxifen (Nolvadex®) is a synthetic hormone is used to treat breast cancer and is given to certain high-risk women to help reduce their chances of developing breast cancer. Although tamoxifen blocks estrogen's effect on breast tissue, it has an estrogen-like effect on other cells in the body, including bone cells. As a result, tamoxifen appears to reduce the risk of fractures, especially in women over age 50. Possible side effects of tamoxifen include hot flashes, stomach upset, and vaginal dryness or discharge.
  • Surgery
    :
  • Vertebroplasty: Vertebroplasty is a minimally invasive procedure used to reinforce vertebrae with compression fractures. Compression fractures are common in individuals with osteoporosis. Vertebroplasty involves injecting an acrylic compound into the collapsed vertebra to stabilize the weakened bone. The procedure is performed in an operating room or radiology suite and treatment of each affected vertebra takes approximately one hour.
  • Local anesthesia, usually lidocaine (Xylocaine®), is injected into the vertebra. Then, a small incision is made, and a bone biopsy needle is inserted. Several small syringes of the acrylic cementing material are then injected through the needle into the vertebra. The cement hardens almost immediately.
  • Approximately 70-90% of individuals experience pain relief after vertebroplasty and most are released from the hospital the same day. Anti-inflammatory medications, such as ibuprofen (Motrin®, Advil®), may be used to relieve pain after the procedure.
  • Complications from a vertebroplasty are rare. Bone cement may enter the lung, spinal cord, or epidural space surrounding the vertebra. Other possible complications associated with vertebroplasty include nerve irritation, punctured lung (pneumothorax), and spinal cord injury.
  • Kyphoplasty: Multiple spinal compression fractures caused by osteoporosis may lead to height loss, kyphosis (extreme curvature of the spine), and pain. Kyphoplasty is a minimally invasive procedure that is used to restore the height of the vertebrae and stabilize weakened bone. Kyphoplasty cannot correct established spine deformities and is used in individuals who have experienced recent fractures, usually within two to four months. The procedure is usually performed in the hospital under local or general anesthesia and takes approximately one hour for each affected vertebra.
  • A small incision is made and a fluoroscope (device that consists of a screen and an x-ray tube) is used to guide the insertion of a balloon catheter into the vertebra. The balloon is inflated slowly to raise the compressed vertebra and is deflated. An acrylic compound (cementing material) is then injected into the vertebra through a bone biopsy needle. The material hardens almost immediately. Pain relief usually occurs within two days.
  • Most individuals are released from the hospital the day after kyphoplasty and can resume daily activities upon discharge. Strenuous activity, such as heavy lifting, should be avoided for at least six weeks.
Prevention
  • Smoking cessation: Smokers lose bone more rapidly than nonsmokers. Among 80 year olds, smokers have up to 10% lower bone mineral density, which translates into twice the risk of spinal fractures and a 50% increase in risk of hip fracture. Fractures heal slower in smokers, and are more apt to heal improperly.
  • Alcohol in moderation: Excessive alcohol has been associated with osteoporosis due to the degenerative metabolic effects of alcohol. Alcohol excess may inhibit calcium absorption and bone formation.
  • Healthy body weight: Being underweight is a risk factor for osteoporosis. Staying within a healthy weight for an individual is important. Extreme thinness is a risk factor for osteoporosis. The onset of anorexia nervosa frequently occurs during puberty, the time of life when maximal bone mass accrual occurs, thereby putting adolescent girls with anorexia nervosa at high risk for reduced peak bone mass.
  • Sunlight: Healthcare professionals recommend sun exposure of 15 minutes a day to hands and face to help the body make vitamin D. Vitamin D helps calcium be absorbed and used by the body. Avoid overexposure to the sun.
  • Diet: A high protein diet or high coffee consumption increases calcium loss and may increase the calcium needs for the body. Fiber, oxalates (in rhubarb, spinach, beets, celery, greens, berries, nuts, tea, cocoa), and high zinc foods (such as oysters and red meats) decrease absorption, requiring taking more calcium in dietary supplement form. The plant estrogens found in soy help maintain bone density and may reduce the risk of fractures, particularly in the first 10 years after menopause.
  • Exercise: The amount and type of exercise will vary depending on age and bone health. An exercise program should be individually tailored to the individual's needs and capabilities. Overall, most individuals should aim to exercise for 30-40 minutes three to four times each week, with some weight-bearing and resistance exercises in the program.
  • Although exercise is important in the prevention of osteoporosis, women and teenage girls who exercise to an extreme degree can develop amenorrhea (cessation of menstruation) due to estrogen deficiency. Estrogen deficiency in younger women contributes to bone loss, in much the same way that estrogen deficiency after menopause does. Both male and female athletes who practice excessive exercise without adequate caloric intake are at heightened risk of osteoporosis. Athletes who train hard while trying to keep their weight below a certain level for competitive reasons are at particularly high risk.
  • Eliminating fall hazards: If an individual has osteoporosis, it is important not only to help prevent further bone loss, but also to prevent a fracture. Eliminating hazards in the house that can increase the risk of falling is important. Removing loose wires or throw rugs, installing grab bars in the bathroom and non-skid mats near sinks and in the tub, and not walking in slick shoes or socks is recommended by healthcare professionals. Healthcare professionals also recommend caution when carrying or lifting items, as this could cause a spinal fracture. Wearing sturdy shoes is important. Using a cane or walker is recommended by healthcare professionals if the individual has balance problems or other difficulties walking.
References
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