Saving bugs to find new drugs

Zoologist Ross Piper looks at the potential of insects in pharmaceutical research

A More drugs than you might think are derived from, or inspired by, compounds found in living things. Looking to nature for the soothing and curing of our ailments is nothing new – we have been doing it for tens of thousands of years. You only have to look at other primates – such as the capuchin monkeys who rub themselves with toxin-oozing millipedes to deter mosquitoes, or the chimpanzees who use noxious forest plants to rid themselves of intestinal parasites – to realise that our ancient ancestors too probably had a basic grasp of medicine.

B Pharmaceutical science and chemistry built on these ancient foundations and perfected the extraction, characterization, modification and testing of these natural products. Then, for a while, modern pharmaceutical science moved its focus away from nature and into the laboratory, designing chemical compounds from scratch. The main cause of this shift is that although there are plenty of promising chemical compounds in nature, finding them is far from easy. Securing sufficient numbers of the organism in question, isolating and characterizing the compounds of interest, and producing large quantities of these compounds are all significant hurdles.

C Laboratory-based drug discovery has achieved varying levels of success, something which has now prompted the development of new approaches focusing once again on natural products. With the ability to mine genomes for useful compounds, it is now evident that we have barely scratched the surface of nature’s molecular persity. This realization, together with several looming health crises, such as antibiotic resistance, has put bioprospecting – the search for useful compounds in nature – firmly back on the map.

D Insects are the undisputed masters of the terrestrial domain, where the occupy every possible niche. Consequently, they have a bewildering array of interactions with other organisms, something which has driven the evolution of an enormous range of very interesting compounds for defensive and offensive purposes. Their remarkable persity exceeds that of every other group of animals on the planet combined. Yet even though insects are far and away the most perse animals in existence, their potential as sources of therapeutic compounds is yet to be realised.

E From the tiny proportion of insects that have been investigated, several promising compounds have been identified. For example, alloferon, an antimicrobial compound produced by blow fly larvae, is used as an antiviral and antitumor agent in South Korea and Russia. The larvae of a few other insect species are being investigated for the potent antimicrobial compounds they produce. Meanwhile, a compound from the venom of the wasp Polybia paulista has potential in cancer treatment.

F Why is it that insects have received relatively little attention in bioprospecting? Firstly, there are so many insects that, without some manner of targeted approach, investigating this huge variety of species is a daunting task. Secondly, insects are generally very small, and the glands inside them that secrete potentially useful compounds are smaller still. This can make it difficult to obtain sufficient quantities of the compound for subsequent testing. Thirdly, although we consider insects to be everywhere, the reality of this ubiquity is vast numbers of a few extremely common species. Many insect species are infrequently encountered and very difficult to rear in captivity, which, again, can leave us with insufficient material to work with.

G My colleagues and I at Aberystwyth University in the UK have developed an approach in which we use our knowledge of ecology as a guide to target our efforts. The creatures that particularly interest us are the many insects that secrete powerful poison for subduing prey and keeping it fresh for future consumption. There are even more insects that are masters of exploiting filthy habitats, such as faeces and carcasses, where they are regularly challenged by thousands of micro-organisms. These insects have many antimicrobial compounds for dealing with pathogenic bacteria and fungi, suggesting that there is certainly potential to find many compounds that can serve as or inspire new antibiotics.

H Although natural history knowledge points us in the right direction, it doesn’t solve the problems associated with obtaining useful compounds from insects. Fortunately, it is now possible to snip out the stretches of the insect’s DNA that carry the codes for the interesting compounds and insert them into cell lines that allow larger quantities to be produced. And although the road from isolating and characterizing compounds with desirable qualities to developing a commercial product is very long and full of pitfalls, the variety of successful animal-derived pharmaceuticals on the market demonstrates there is a precedent here that is worth exploring.

I With every bit of wilderness that disappears, we deprive ourselves of potential medicines. As much as I’d love to help develop a groundbreaking insect-derived medicine, my main motivation for looking at insects in this way is conservation. I sincerely believe that all species, however small and seemingly insignificant, have a right to exist for their own sake. If we can shine a light on the darker recesses of nature’s medicine cabinet, exploring the useful chemistry of the most perse animals on the planet, I believe we can make people think differently about the value of nature.

Questions 14-20

Reading Passage 2 has nine paragraphs, A-I

Which paragraph contains the following information?

Write the correct letter, A-I, in boxes 14-20 on your answer sheet.


<p>14. mention of factors driving a renewed interest in natural medicinal compounds. <question>【14】</question></p><p>15. how recent technological advances have made insect research easier <question>【15】</question></p><p>16. examples of animals which use medicinal substances from nature <question>【16】</question></p><p>17. reasons why it is challenging to use insects in drug research <question>【17】</question></p><p>18. reference to how interest in drug research may benefit wildlife <question>【18】</question></p><p>19. a reason why nature-based medicines fell out of favour for a period <question>【19】</question></p><p>20. an example of an insect-derived medicine in use at the moment <question>【20】</question></p>
ABCDEFGHI
14. mention of factors driving a renewed interest in natural medicinal compounds.
15. how recent technological advances have made insect research easier
16. examples of animals which use medicinal substances from nature
17. reasons why it is challenging to use insects in drug research
18. reference to how interest in drug research may benefit wildlife
19. a reason why nature-based medicines fell out of favour for a period
20. an example of an insect-derived medicine in use at the moment
Questions 21-22

Choose TWO letters, A-E

Write the correct letters in boxes 21 and 22 on your answer sheet.

Which TWO of the following make insects interesting for drug research?
Questions 23-26

Complete the summary below.

Choose ONE WORD ONLY from the passage for each answer.

Write your answers in boxes 23-26 on your answer sheet. 

我的答案
14.
未作答
15.
未作答
16.
未作答
17.
未作答
18.
未作答
19.
未作答
20.
未作答
正确答案
14.
C
15.
H
16.
A
17.
F
18.
I
19.
B
20.
E
题目解析

题目定位词:a renewed interest, natural medicinal compounds
答案位置:C 段第 1 句
题解:题目:提及一些促使对自然界药用化合物重燃兴趣的因素
扫读至 C 段时发现:该段开头便提到实验室药物研究获得了不同程度的成功,进而促进了新方法的开发,而这些新方法再次将重点转向天然物质; 其中 focusing once again 对应题目中的 a renewed interest,natural products 指的就是 natural medicinal compounds。因此答案为 C。

题目定位词:recent technological advances, easier
答案位置:H 段第 3— 5 行
题解:题目:近来的科技进步如何使昆虫研究变得更加容易
扫读至 H 段时发现:该段开头提到通过昆虫获取有用化合物依然存在困难,但紧接着通过 Fortunately 转折,说“现在有可能剪掉昆虫 DNA 中携带有用化合物的编码部分,并将其植入可大量培植的细胞系中”,这一表述符合题目中的 recent technological advances;此外,该段的最后 1 句提到“这里已有一个值得开发的先例”,侧面反映出也许困难并没有那么大,符合题目中的 easier。因此答案为 H。

题目定位词:examples, animals, use medicinal substances from nature
答案位置:A 段
题解:题目:一些动物使用自然界药用化合物的例子 
本题题目中的 examples 提示考生该信息所在段落肯定不止一个例子,应该会出现多个动物使用自然界药用化合物的例子。扫读 A 段时发现:该段首先说明在自然界中寻找有药用价值的物质不是什么新鲜事,随后 such as 引出了例子,通过 the capuchin monkeys 和 the chimpanzees 进行具体说明,对应题目中的 examples。 因此答案为 A。

题目定位词:reasons, challenging, use insects in drug research
答案位置:F 段
题解:题目:使用昆虫做药物研究有挑战性的原因 
本题题目中的 reasons 提示考生该信息所在段落肯定不止一个原因,且该段很可能出现诸如 why、explain、 explanation、because 等这些表示原因的词汇。扫读至 F 段时发现:该段开头便是以 Why 引出一个问题,即为什么昆虫在生物勘探中几乎没有受到关注?紧接着以 Firstly、Secondly、Thirdly 清晰地列出了三点原因,对应题目中的 reasons;其中第一个原因提到昆虫种类太多,如果没有针对性办法,研究这一物种的任务将会很艰巨,investigating this huge variety of species 对应题目中的 use insects in drug research,daunting 对应 challenging。因此答案为 F。

题目定位词:interest, benefit wildlife
答案位置:I 段
题解:题目:提及对药物研究的兴趣如何对野生动物有利
扫读至 I 段时发现:该段第 2 句提到作者研究昆虫的主要动机是为了保护,此为“利处”之一;最后 1 句提到这么做能转变人们对大自然价值的看法, 此为“利处”之二;其中 looking at insects、exploring the useful chemistry of the most perse animals 对应题目中的 interest in drug research。因此答案为 I。

题目定位词:a reason, nature-based medicines, fell out of favour for a period
答案位置:B 段第 3— 5 行
题解:题目:基于自然界的药物在一段时间内失宠的原因
扫读至 B 段时发现:该段第 2 句提到有一段时间,药物科学的重点从大自然转向了实验室,从零开始研制化合物,其中 for a while 对应题目中的 for a period,moved its focus away from 对应 fell out of favour;接下来这句话点明了视线转向实验室的原因,其中 The main cause 对应题目中的 a reason why。 因此答案为 B。

题目定位词:an example, an insect-derived medicine, in use at the moment
答案位置:E 段第 2 句
题解:题目:一个取之于昆虫的药物目前正在使用的例子
扫读至 E 段时发现:该段出现了几个与昆虫有关的例子,但要注意的是题目中限定“in use at the moment”,所以指的就是在韩国和俄罗斯由丽蝇幼虫产生的抗菌化合物 alloferon 被用作(is used as)抗病毒和抗肿瘤药物的例子。 因此答案为 E。

正确
错误
14
15
16
17
18
19
20
21
22
23
24
25
26
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