The Search for the Anti-aging Pill

In government laboratories and elsewhere, scientists are seeking a drug able to prolong life and youthful vigor. Studies of caloric restriction are showing the way

As researchers on aging noted recently, no treatment on the market today has been proved to slow human aging - the build-up of molecular and cellular damage that increases vulnerability to infirmity as we grow older. But one intervention, consumption of a low-calorie* yet nutritionally balanced diet, works incredibly well in a broad range of animals, increasing longevity and prolonging good health. Those findings suggest that caloric restriction could delay aging and increase longevity in humans, too.

Unfortunately, for maximum benefit, people would probably have to reduce their caloric intake by roughly thirty per cent, equivalent to dropping from 2,500 calories a day to 1,750. Few mortals could stick to that harsh a regimen, especially for years on end. But what if someone could create a pill that mimicked the physiological effects of eating less without actually forcing people to eat less? Could such a ‘caloric-restriction mimetic', as we call it, enable people to stay healthy longer, postponing age-related disorders (such as diabetes, arteriosclerosis, heart disease and cancer) until very late in life? Scientists first posed this question in the mid-1990s, after researchers came upon a chemical agent that in rodents seemed to reproduce many of caloric restriction's benefits. No compound that would safely achieve the same feat in people has been found yet, but the search has been informative and has fanned hope that caloric-restriction (CR) mimetics can indeed be developed eventually.

The benefits of caloric restriction The hunt for CR mimetics grew out of a desire to better understand caloric restriction's many effects on the body. Scientists first recognized the value of the practice more than 60 years ago, when they found that rats fed a low-calorie diet lived longer on average than free-feeding rats and also had a reduced incidence of conditions that become increasingly common in old age. What is more, some of the treated animals survived longer than the oldest-living animals in the control group, which means that the maximum lifespan (the oldest attainable age), not merely the normal lifespan, increased. Various interventions, such as infection-fighting drugs, can increase a population's average survival time, but only approaches that slow the body's rate of aging will increase the maximum lifespan.

The rat findings have been replicated many times and extended to creatures ranging from yeast to fruit flies, worms, fish, spiders, mice and hamsters. Until fairly recently, the studies were limited to short-lived creatures genetically distant from humans. But caloric-restriction projects underway in two species more closely related to humans - rhesus and squirrel monkeys - have made scientists optimistic that CR mimetics could help people.

The monkey projects demonstrate that, compared with control animals that eat normally, caloric-restricted monkeys have lower body temperatures and levels of the pancreatic hormone insulin, and they retain more youthful levels of certain hormones that tend to fall with age.

The caloric-restricted animals also look better on indicators of risk for age-related diseases. For example, they have lower blood pressure and triglyceride levels (signifying a decreased likelihood of heart disease), and they have more normal blood glucose levels (pointing to a reduced risk for diabetes, which is marked by unusually high blood glucose levels). Further, it has recently been shown that rhesus monkeys kept on caloric-restricted diets for an extended time (nearly 15 years) have less chronic disease. They and the other monkeys must be followed still longer, however, to know whether low-calorie intake can increase both average and maximum lifespans in monkeys. Unlike the multitude of elixirs being touted as the latest anti-aging cure, CR mimetics would alter fundamental processes that underlie aging. We aim to develop compounds that fool cells into activating maintenance and repair.

How a prototype caloric-restriction mimetic works The best-studied candidate for a caloric-restriction mimetic, 2DG (2-deoxy-D-glucose), works by interfering with the way cells process glucose. It has proved toxic at some doses in animals and so cannot be used in humans. But it has demonstrated that chemicals can replicate the effects of caloric restriction; the trick is finding the right one.

Cells use the glucose from food to generate ATP (adenosine triphosphate), the molecule that powers many activities in the body. By limiting food intake, caloric restriction minimizes the amount of glucose entering cells and decreases ATP generation. When 2DG is administered to animals that eat normally, glucose reaches cells in abundance but the drug prevents most of it from being processed and thus reduces ATP synthesis. Researchers have proposed several explanations for why interruption of glucose processing and ATP production might retard aging. One possibility relates to the ATP-making machinery's emission of free radicals, which are thought to contribute to aging and to such age-related diseases as cancer by damaging cells. Reduced operation of the machinery should limit their production and thereby constrain the damage. Another hypothesis suggests that decreased processing of glucose could indicate to cells that food is scarce (even if it isn't) and induce them to shift into an anti-aging mode that emphasizes preservation of the organism over such ‘luxuries' as growth and reproduction.

* calorie: a measure of the energy value of food

Questions 28-32

Do the following statements agree with the claims of the writer in Reading Passage 3?
In boxes 28-32 on your answer sheet, write
TRUE          if the statement agrees with the information
FALSE         if the statement contradicts the information
NOT GIVEN if there is no information on this in the passage

28. Studies show drugs available today can delay the process of growing old.
29. There is scientific evidence that eating fewer calories may extend human life. 
30. Not many people are likely to find a caloric-restricted diet attractive.
31. Diet-related diseases are common in older people.
32. In experiments, rats who ate what they wanted led shorter lives than rats on a low-calorie diet.
Questions 33-37

Classify the following descriptions as relating to

A caloric-restricted monkeys

B control monkeys

C neither caloric-restricted monkeys nor control monkeys

Write the correct letter, A, B or C, in boxes 33-37 on your answer sheet.

A. caloric-restricted monkeys
B. control monkeys
C. neither caloric-restricted monkeys nor control monkeys
33. Monkeys were less likely to become diabetic.
33
34. Monkeys experienced more chronic disease.
34
35. Monkeys have been shown to experience a longer than average life span.
35
36. Monkeys enjoyed a reduced chance of heart disease.
36
37. Monkeys produced greater quantities of insulin.
37
Questions 38-40

Complete the flow-chart below.

Choose NO MORE THAN TWO WORDS from the passage for each answer

Write your answers in boxes 38-40 on your answer sheet.

答案与解析
练习推荐
我的答案
28.
未作答
29.
未作答
30.
未作答
31.
未作答
32.
未作答
正确答案
28.
FALSE
29.
TRUE
30.
TRUE
31.
NOT GIVEN
32.
TRUE
题目解析

题目定位词:drug available today, delay the process of growing old
答案位置:首段第 1 句
题解:题目:研究表明今天可以买到的药物能够减缓变老的过程。 该题比较简单,因为答案位置醒目。但是出题者又使用“同义替换”这个方法:题目中的“drug available today”等于原文中的“treatment on the market today”,原文中说的很明白市面上没有药物能延缓衰老,所以答案为 NO。但请考生注意 slow 的用法,此处它是形容词活用为动词。

题目定位词:eating fewer calories, extend human life
答案位置:首段 最后一句
题解:题目:有科学证据显示,少摄取卡路里会延长人类寿命。 
这道题的出处与上题同在一段,这有利于考生迅速定位题目。 原文中的“caloric restriction”就等于题目中的“eating fewer calories”,而“increase longevity in humans”等于题目中的“extend human life”。在这道题中,作者同样使用了“同义替换”。因此答案确定为 YES。

题目定位词:a caloric-restricted diet, attractive
答案位置:开头部分第二段第 2 句
题解:题目:没有很多人会觉得限制卡路里食谱很诱人。 
该题稍有难度,因为 1. 会有很多考生不知道原文中 mortals 的意思;2. 有些考生没有领会题目的意思是:很多人不喜欢这种食谱。原文说,很少有人能够坚持这一苛刻的养生之道, 尤其是在一年内坚持不断。这也证实控制卡路里这种方法是没有多少人喜欢的。故选 YES。

题目定位词:diet-related diseases, common in older people
答案位置:开头部分第二段第 4 句
题解:题目:与食物有关的疾病在老年人中间很普遍。 
在解题时,考生会觉得拿不准。在 YES/NO/NOT GIVEN 这类题型中,凡是考生第一感觉拿不准的题目,一般都是 NG。这也是一个做题技巧。 文章中没有提到摄取某些食物会诱发什么疾病,倒是说与衰老有关的疾病在老年人中很常见。故答案为 NOT GIVEN。

题目定位词:rats, a lower calorie diet
答案位置:中间部分第一段第 2 句
题解:题目:实验中,想吃什么就吃什么的老鼠比那些控制卡路里摄入的老鼠活得短。 
提到老鼠实验细节的只有中间部分的第一段,研究人员为了弄清控制卡路里是否有用,把老鼠分为两类,一类是 rats fed on a low-calorie diet,一类是 free-feeding rats,题目中的 ate what they wanted,就是指文章中的后一类老鼠。对照原文, 我们知道答案为 YES。

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