Wednesday, July 27, 2011

Antioxidant

Ginkgo : Improve blood circulation in the brain and limbs, ameliorate diabetes-induced retinopathy, eliminate toxic free radicals from the blood, protect vascular wall from blood clot accumulation, inhibit platelet aggregation to reduce thrombosis formation, enhance peripheral oxygen supply and improve peripheral circulation

Ginseng : Dilate blood vessels, regulate blood pressure, reduce radiation damage to hematopoietic system, promote lipid metabolism and reduce blood sugar.


Tea extract: Increase cell metabolism rate, lower blood cholesterol, prevent cardiovascular diseases such as atherosclerosis and anti radiation.

Adzuki Bean Extract: Tested experimentally to lower blood cholesterol and triglycerides, inhibit fat synthesis and absorption, promote lipolysis, inhibit platelet aggregation, counteract with thrombosis formation and serum lipid oxidation

Berries (Blueberries, Acai Berry): Blueberries can fight against free radical damage to collagen layer in cells and tissues. Acai Berry helps to maintain cardiovascular and digestive health.

Tuesday, July 5, 2011

Feeding the Eyes (The Star)

The important role diet can play in preventing vision problems.

WE all know that carrots are good for sight. Our mums drummed that into us when we were growing up; we’re probably still drumming this fact to our kids or grandkids.
What exactly is in carrots or spinach that is good for our eyesight? What other foods are good for the eyes?

In 2009, a study published in Opthamology found that proper diet, especially a low glycaemic index diet, can be very helpful in preventing age-related macular degeneration (AMD) and other sight-robbing diseases. The nutrients that have been found to be most protective are lutein, zeaxanthin, beta carotene, vitamins C and E, zinc, and the omega-3 fatty acids DHA and EPA.
Some of the foods that are known to foster good eyesight and eye health include:
Spinach, kale and green leafy vegetables – These foods are rich in carotenoids, especially lutein and zeaxanthin. Lutein, a yellow pigment, protects the macula from the damaging effects of the sun’s ultraviolet rays. Lutein and zeaxanthin are the only two primary plant pigments contained within the macula and retina of the eye.
Eggs – Eggs are rich in sulphur, cysteine, lecithin, amino acids and lutein. Sulphur-containing compounds protect the lens of the eye from cataract formation. Sulphur is also necessary for the production of glutathione, an important antioxidant for the lens of the eye and the whole body.
Cold water fish (sardines, cod, mackerel, tuna) – These are excellent sources of DHA, a compound which provides structural support to cell membranes and is recommended for dry eyes. DHA is also used as a treatment for macular degeneration and for sight preservation.
Carrots – Carrots are rich in beta carotene. Beta carotene is a provitamin A carotenoid that is converted to retinol (vitamin A) by the body after the food is ingested. Vitamin A is an antioxidant that protects the eyes from free radicals and also helps the surface of the eye, mucous membranes and skin be effective barriers to bacteria and viruses, reducing the risk of eye infections, respiratory problems and other infectious diseases.
Blueberries, blackberries, bilberries – These are high in flavonoids and contain anthocyanins, which help improve night vision.
Nuts – They are excellent sources of vitamin E and minerals such as zinc that help keep your eyes healthy and may decrease your risk of cataracts and age-related macular degeneration.
Presbyopia and cataract
The lens is also subject to the ageing process, and the resulting conditions – cataracts and presbyopia – will eventually affect just about everyone. When we are born, our lenses are crystal clear, meaning that the image entering the eye is not degraded by any opacity. They are also very pliable, meaning that the lens can change its shape to help focus images that are very far away as well as very close.
Unfortunately, as we grow older, two things happen to the lens: it clouds up and it becomes less pliable. The clouding of the lens – or cataract – forces an image to travel through a distorted medium, resulting in diminished vision.
Cataracts are the leading cause of impaired vision and blindness worldwide, affecting up to 40% of people over 75.
They are most often caused by overexposure to intense light (sunlight) but other factors can contribute to them: cigarette smoking, hereditary factors, injury, diabetes, and some medications.
Cataracts usually develop slowly, starting with blurred vision, spots, and the impression that a film is covering the eyes.
Similarly, when the lens loses its pliability, it also loses its ability to focus over a wide range of distances. A hardened lens becomes more fixed on distant objects and cannot focus as well on nearby objects or vice versa. This hardening often occurs in middle age, when people notice the need to hold the newspaper farther away in order to read the print – presbyopia.
Age-related macular degeneration (AMD)
Age-related macular degeneration (AMD) is a disease affecting the elderly that gradually destroys the macula, resulting in loss of sharp, central vision. The retina is the light-sensitive tissue at the back of the eye. The centre of this retina is called the macula. It is the macula that is responsible for the sharp central vision needed for activities like reading, writing, driving and even recognising faces. It enables us to see fine detail and differentiate colour.
Macular degeneration causes no pain. Macular degeneration affects one-third of adults over the age of 75, and is the principal cause of visual disability in people over 65 years of age.
Age is by far the greatest risk factor.
Lutein and zeaxanthin declines with age
Like many other important nutrients, lutein and zeaxanthin are not manufactured in the body. The only way to consume it is by eating food rich in these antioxidants or by supplementing with lutein and zeaxanthin.
Unfortunately, as we age, the concentration of lutein and zeaxanthin in the eyes decline. Increasing one’s dietary intake of lutein and zeaxanthin increases the density in the macula.
Lutein and zeaxanthin belong to the xanthophyll family of carotenoids and are the two major components of the macular pigment of the retina. The macula lutea or “yellow spot” in the retina is responsible for central vision and visual acuity.
Of the more than 600 plant pigments called carotenoids found in nature, lutein and zeaxanthin are the only carotenoids found in the macula, retina and lens of the human eye, and have dual functions in these tissues – to act as powerful antioxidants and to filter high-energy blue light.
Lutein and zeaxanthin offer protection against the two most common causes of vision loss: cataracts and age-related macular degeneration (AMD). In addition to its role in preventing cataracts, lutein and zeaxanthin may improve vision in people who already have cataracts.
Lutein is found in high amounts in human serum. In the diet, it is found in highest concentrations in dark green, leafy vegetables (spinach, kale, collard greens, and others), corn, and egg yolks. Zeaxanthin is the major carotenoid found in corn, orange peppers, oranges, and tangerines.
Zeaxanthin is the dominant component in the centre of the macula, while lutein dominates at the outer edges. The eye is selective and preferentially places dietary zeaxanthin in the very centre of the macula, the most critical area for central vision with the greatest need for protection.
Concentrated in the lenses and retina, these two carotenoids fulfil two essential functions:
·Protect the eyes from damaging UV light by acting as a filter to shield against harmful blue light.
·Act as antioxidants to protect the lenses, retina and macula against free radical damage due to exposure to sunrays, computer screens and other harmful form of lights.
Both lutein and zeaxanthin absorb the very high-energy and most damaging portions of the light spectrum (ultraviolet blue). The absorption of the high-energy light spectrum is critical for the protection of the lens, retina and macula portions of the eye. High-energy blue light also generates “free radicals” that cause damage to the tissues of the eye.
> This article is courtesy of Live-well Nutraceuticals, for more information, please consult your pharmacist or call Live-wellINFOline: 03-6140 7605 or e-mail info@live-well.com.my.

Saturday, July 2, 2011

Age related macular degeneration (ARMD)

Published in the October 2001 issue of "Archives of Ophthalmology", this study was a randomized clinical trial sponsored by the National Eye Institute, one of the National Institutes of Health.  In this study, the researchers found that antioxidants and zinc significantly reduce the risk of advanced age-related macular degeneration by about 25%.  The risk of vision loss due to advanced AMD was reduced by about 19%. This research suggests that antioxidants and zinc may help people at high risk for developing advanced AMD keep their vision. 

What you need to know:
  • Age-related macular degeneration (AMD), a disease that dramatically increases in frequency after age 60, is the leading cause of visual impairment and blindness in the United States.  Most people with AMD have a dry form of the disease, for which there is no standard treatment.
  • This is not the first study to suggest that antioxidants and zinc may be effective in the prevention and treatment of AMD.
  • Nutritional supplements address the underlying pathology of AMD, i.e. free radical damage and poor oxygen flow to the macula in the eye.
  • Although this study found the most benefit in people with advanced AMD, in practice, people with early AMD have benefited from the use of antioxidants and zinc.
  • The combination used in this study contained vitamin C (500mg), vitamin E (400IU), beta-carotene (15mg, or 25,000 IU), zinc (80mg zinc oxide), and copper (2mg cupric oxide).
  • Total vitamin and mineral intake from food, daily multivitamins and supplements should be reviewed with a health care practitioner to determine an individual's requirement for antioxidants and zinc.
  • Mixed carotenoids may have a greater antioxidant effect than beta-carotene alone. Beta-carotene is only one type of carotenoid.  While beta-carotene generates vitamin A efficiently, other carotenes such as alpha-carotene and lycopene are more effective antioxidants.
  • Zinc should not be given in high doses without copper.  High levels of zinc alone can cause a copper deficiency.  Copper deficiency is associated with poor collagen integrity and increased LDL and total cholesterol. 
  • People taking blood-thinning prescription medications, ginkgo (Ginkgo biloba), or garlic should consult a health care practitioner before taking vitamin E.
  • A diet rich in fruits and vegetables is associated with a lower risk for AMD, particularly green leafy vegetables, yellow-orange vegetables, and blueberries.  Fried and grilled foods should be avoided.  
  • Bilberry (Vaccinium myrtillus), ginkgo (Ginkgo biloba), and grape seed (Vitis vinifera) have excellent antioxidant ability.  Bilberry has a strong affinity for the retinal pigmented epithelium of the eye, the area that is affected by AMD.  Many natural health practitioners include these bilberry in the treatment of AMD.

我相信

我相信
哈尔滨理工大学
想飞上天和太阳肩并肩
世界等着我去改变
想做的梦从不怕别人看见
在这里我都能实现
大声欢笑让你我肩并肩
何处不能欢乐无限
抛开烦恼勇敢的大步向前
我就站在舞台中间
我相信我就是我
我相信明天
我相信青春没有地平线
在日落的海边
在热闹的大街
都是我心中最美的乐园
我相信自由自在
我相信希望
我相信伸手就能碰到天
有你在我身边
让生活更新鲜
每一刻都精彩万分
I do believe
想飞上天和太阳肩并肩
世界等着我去改变
抛开烦恼勇敢的大步向前
我就站在舞台中间
我相信我就是我
我相信明天
我相信青春没有地平线
在日落的海边
在热闹的大街
都是我心中最美的乐园
我相信自由自在
我相信希望
我相信伸手就能碰到天
有你在我身边 让生活更新鲜
每一刻都精彩万分
I do believe
我相信我就是我
我相信明天
我相信青春没有地平线
在日落的海边
在热闹的大街
都是我心