The Big Question: Has A Key Breakthrough Been Made In The Search For A Cure For Cancer? - IELTS Reading Answers & Explanations
From Expert on Cambridge IELTS 10 Academic Reading Test 4 · Part 3 · Questions 28–40
Reading Passage
You should spend about 20 minutes on Questions 28-40 which are based on READING PASSAGE 3 below.
The Big Question: Has a key breakthrough been made in the search for a cure for cancer?
A British scientists announced that they have sequenced a "cancer genome" for the first time. It means they have identified all of the many thousands of genetic mistakes that make a tumour cell different from a healthy cell taken from the same cancer patient. Not all of these mistakes, or DNA mutations, were involved in triggering the cancer, but some of them - the “drivers” – clearly were. Scientists believe it will be possible eventually to identify these driver mutations and find the genetic faults that led to the changes in a healthy human cell that caused it to divide uncontrollably to form a cancerous tumour.
B There is unlikely ever to be a single "cure" for cancer, which after all affects so many different tissues and organs of the body. In fact, there may be as many as 200 different types of cancer, and many more subtypes. But each and every cancer involves damage to the DNA template that rules the cell and governs the way it divides. In this respect, cancer is a genetic disease, indeed it is said to be the most common genetic disease since, in the developed world, it strikes one in three people over a lifetime, killing as many as one in five. By understanding the nature of these genetic mutations in a cancer cell, it should be possible to design tailor-made drugs that specifically target the faults, or the outcome of the faults. It could also lead to new methods of diagnosing cancer in the earliest stages of the disease before it becomes apparent to the patient or doctor, or new ways of finding secondary cancers lurking in the body that have evaded earlier anti-cancer treatment.
C It was a team of human genome scientists led by Peter Campbell and Professor Mike Stratton at the Sanger Institute near Cambridge, which is funded by the Welcome Trust, the world's biggest medical research charity. They are part of the Cancer Genome Consortium, a collaboration of research institutes from countries such as Britain and France in Europe, the United States, Canada, Japan and Australia. They will be taking samples from about 500 patients around the world in the hope of analysing the genomes of the 50 most common cancers.
D The Sanger Institute scientists analysed cells stored from two patients who had died of cancer. One was a 55-year-old man with small-cell lung cancer and the other was a 45-year-old man with malignant melanoma, the most lethal form of skin cancer. The researchers took a cancerous cell and a healthy cell from each patient and sequenced the full genetic code, or genome, of all four cells. They did this dozens of times over to make sure they had a correct final sequence, consisting of some 3 billion letters of the full human genome.
E The scientists found that the lung cancer cell had 22,910 DNA mutations that the healthy cell from the same patient did not possess. These mutations in the lung must have accumulated during the lifetime of the patient, many as a result of exposure to cigarette smoke. The same goes for the 33,345 mutations identified in the cancerous skin cells of 45-year-old man with malignant melanoma, although most of the mutations here are presumed to have been caused by exposure to sunlight. Both of these "cancer genomes show where the mutations occurred and in which of the chromosomes of the cell. They were published in the journal Nature. It was the scientific first step towards the "personalised medicine" of sequencing the DNA of cancer patients on a routine basis.
F Some of them involve quite big changes to the DNA molecule, such as rearrangements of hundreds of thousands of letters in the four-letter code of DNA. But some of them are the smallest change possible, a shift for instance in one letter (known as a base) to another, such as C to T and vice versa, or an A to G and vice versa. These "base pairs" are at the heart of the DNA sequencing exercise. Some of these mutations are already known from previous studies to be linked with certain environmental mutagens, the mutation-causing agents. Tobacco smoke, for instance, often results in the mutation of G to T, whereas ultraviolet light tends to mutate C to T. By looking at the mutations in the lung-cancer cell and the skin-cancer cell, scientists were able to see the influence that smoking and exposure to the sun had on the DNA of these two patients. "In the melanoma sample, we can see sunlight's signature writ large in the genome," said Andy Futreal at the Sanger Institute. But not all the mutations would have been involved in triggering the cancer. Most of them would have been harmless "passenger" mutations, but some of them would have been "drivers" within the genes that are in some way involved in cancer development.
G For this, it would be necessary to extend the sequencing effort into other patients suffering from the same cancer, perhaps as many as 500 people to achieve statistical significance. By comparing all mutations in all patients with the same cancer, scientists will be able to identify those that appear to be common to them all, and hence likely to be involved in triggering that particular disease. Scientists have already identified more than 30 genes that play some kind of role in cancer development. This gives them a lead in terms of knowing where to search for the likely driver mutations that are probably involved in causing the cancer.
H In the past, cancer drugs were discovered largely by trial and error. Now it is possible to find the precise genetic fault that causes a cell to divide uncontrollably and so hopefully be able to design a drug that can fix that specific fault. For instance, scientists found that faults in a gene called BRAF were involved in triggering a high proportion of skin cancers. The mutations meant that the BRAF gene was permanently switched in the "on" position, causing the cells to divide continually in malignant melanoma. Scientists are now developing drugs that turn this gene "off", and some of these substances are near to clinical trials.
I They are very excited by it-they have branded it "remarkable", "ground-breaking" and "fascinating". But it will still be many years before we can expect full genome sequencing of a patient's cells to be used routinely in hospitals and clinics - that is if the NHS can ever afford it given the parlous state of public finances.
Questions
Questions 28–35 Matching Headings
READING PASSAGE 3 has six paragraphs A -I.
Choose the correct heading for paragraphs B-I from the list of headings below.
i. Who calmed out this work?
ii. How might this lead to the development of new anti-cancer drugs?
iii. What do these mutations look like?
iv. How could this lead to a possible cure for cancer?
v. How can this be used to identify the "driver" mutations that cause cancer?
vi. And what was the result?
vii. Why are we asking this now?
viii. What do the experts say about this work?
ix. What was actually done in the latest study?
Questions 36–40 Short Answers
Answer the questions below.
Choose NO MORE THAN THREE WORDS OR A NUMBER from the passage for each answer.
Answers & Explanations Summary
| # | Answer | Evidence | Explanation |
|---|---|---|---|
| Q28 | iv | There is unlikely ever to be a single "cure" for cancer, which after all affects so many different tissues and organs of the body | Excerpt/Passage Explanation: The passage explains that there probably will not be just one cure for all cancers, because cancer affects many different parts of the human body. Answer Explanation: The answer iv means that the paragraph explains how this genetic research might help people find treatments or a cure for cancer. Reason For Correctness: The correct answer is iv because Paragraph B directly discusses the idea of a 'cure' for cancer. It explains that although one single cure is unlikely because there are hundreds of cancer types, understanding genetic mutations can lead to special drugs, earlier diagnosis, and better ways to find and treat tumours. |
| Q29 | i | It was a team of human genome scientists led by Peter Campbell and Professor Mike Stratton at the Sanger Institute near Cambridge, which is funded by the Welcome Trust, the world's biggest medical research charity. They are part of the Cancer Genome Consortium, a collaboration of research institutes from countries such as Britain and France in Europe, the United States, Canada, Japan and Australia | Excerpt/Passage Explanation: The passage states the names of the scientists, their research center, and the international group of institutes that worked together on this project. Answer Explanation: The answer 'i' means that Paragraph C tells the reader which people and organizations did the research. Reason For Correctness: The correct answer is heading i because Paragraph C specifically introduces the researchers and groups responsible for the study. It names the team leaders ('Peter Campbell and Professor Mike Stratton'), the institution ('the Sanger Institute'), the funding charity ('Welcome Trust'), and the global network ('Cancer Genome Consortium') involved. The question in heading i asks 'Who calmed out this work?' (a typo for 'carried out this work?'), which directly matches the information about who conducted the research. |
| Q30 | ix | The researchers took a cancerous cell and a healthy cell from each patient and sequenced the full genetic code, or genome, of all four cells | Excerpt/Passage Explanation: The passage explains the exact procedure carried out in the study: the scientists collected both cancer cells and normal cells from two patients and mapped their entire genetic information. Answer Explanation: The answer "ix" means that the best title for Paragraph D is "What was actually done in the latest study?". Reason For Correctness: The correct answer is ix because Paragraph D describes the exact process and steps researchers took in their experiment. Key actions mentioned include: scientists "analysed cells stored from two patients", "took a cancerous cell and a healthy cell from each patient", and "sequenced the full genetic code". These details specifically answer what researchers did during this recent research project. |
| Q31 | vi | The scientists found that the lung cancer cell had 22,910 DNA mutations that the healthy cell from the same patient did not possess | Excerpt/Passage Explanation: The passage states what researchers discovered from their test, which was finding thousands of genetic errors in the cancer cell that were not in the healthy cell. Answer Explanation: The answer means that Paragraph E describes the findings or outcomes of the research. Reason For Correctness: The correct answer is heading vi because Paragraph E presents the findings discovered after the scientists examined the cells described in Paragraph D. Paragraph D explains what the scientists did (sequencing the cells), and Paragraph E directly presents the outcomes using phrases like "The scientists found that" and "Both of these 'cancer genomes show where the mutations occurred". The word "result" in the heading directly matches these findings (such as finding 22,910 mutations in the lung cancer cell and 33,345 in the skin cancer cell). |
| Q32 | iii | Some of them involve quite big changes to the DNA molecule, such as rearrangements of hundreds of thousands of letters in the four-letter code of DNA. But some of them are the smallest change possible, a shift for instance in one letter (known as a base) to another, such as C to T and vice versa, or an A to G and vice versa | Excerpt/Passage Explanation: The passage explains the form and size of the mutations. It shows that some genetic mistakes are very large changes involving many letters of DNA, while others are tiny single-letter changes. Answer Explanation: The answer means that heading iii, "What do these mutations look like?", is the best title for Paragraph F. Reason For Correctness: The correct answer is heading iii because Paragraph F explains the physical forms and sizes of DNA mutations. The paragraph details that some mutations appear as "quite big changes" (such as large rearrangements of letters in the genetic code), while others appear as "the smallest change possible" (such as swapping a single letter or base, like C to T). Therefore, the paragraph directly answers what these genetic changes look like. |
| Q33 | v | By comparing all mutations in all patients with the same cancer, scientists will be able to identify those that appear to be common to them all, and hence likely to be involved in triggering that particular disease. Scientists have already identified more than 30 genes that play some kind of role in cancer development. This gives them a lead in terms of knowing where to search for the likely driver mutations that are probably involved in causing the cancer | Excerpt/Passage Explanation: The passage explains that researchers will compare the DNA changes of many people with the same cancer to find shared faults. This method helps them know exactly where to find the key "driver mutations" that cause the cancer. Answer Explanation: The answer "v" means that heading v ("How can this be used to identify the "driver" mutations that cause cancer?") is the correct title for Paragraph G. Reason For Correctness: The correct answer is heading "v" because Paragraph G describes the process researchers will follow to find the specific mutations that trigger cancer. The text explains that by comparing mutations across hundreds of cancer patients, researchers can spot shared changes, which gives them a way to search for the "driver mutations" responsible for the disease. |
| Q34 | ii | In the past, cancer drugs were discovered largely by trial and error. Now it is possible to find the precise genetic fault that causes a cell to divide uncontrollably and so hopefully be able to design a drug that can fix that specific fault | Excerpt/Passage Explanation: The passage explains that earlier medicines were found by guessing and testing, but today scientists can identify the exact genetic problem and make special medicines designed to repair that problem. Answer Explanation: The answer choice "ii" refers to the heading that asks how this research can help scientists create new medicines to fight cancer. Reason For Correctness: The correct answer is ii because Paragraph H focuses entirely on how finding exact genetic mistakes allows scientists to create targeted medicines. The text contrasts old methods with the new ability to "design a drug that can fix that specific fault." It also provides an example where researchers are "developing drugs" to turn off a broken gene (BRAF), showing the process of developing new anti-cancer treatments. |
| Q35 | viii | They are very excited by it-they have branded it "remarkable", "ground-breaking" and "fascinating" | Excerpt/Passage Explanation: The passage explains that the scientists are very pleased with the study and describe it using very positive words like "remarkable", "ground-breaking", and "fascinating". Answer Explanation: The answer 'viii' means that the best heading for Paragraph I is "What do the experts say about this work?". Reason For Correctness: The correct answer is viii because Paragraph I focuses on the opinions and reactions of the researchers regarding the breakthrough. The passage states that they call the discovery "remarkable", "ground-breaking", and "fascinating", which directly answers what the experts say about the work. |
| Q36 | the Sanger Institute | It was a team of human genome scientists led by Peter Campbell and Professor Mike Stratton at the Sanger Institute near Cambridge | Excerpt/Passage Explanation: The passage explains that the group of scientists studying human genes belongs to an organization called the Sanger Institute near Cambridge. Answer Explanation: The answer refers to the Sanger Institute, which is the research place where the group of genome scientists works. Reason For Correctness: The correct answer is confirmed by Paragraph C. The text clearly states that the group of human genome scientists, headed by Peter Campbell and Professor Mike Stratton, is based at "the Sanger Institute" near Cambridge. |
| Q37 | the Welcome Trust | It was a team of human genome scientists led by Peter Campbell and Professor Mike Stratton at the Sanger Institute near Cambridge, which is funded by the Welcome Trust, the world's biggest medical research charity | Excerpt/Passage Explanation: The passage explains that the group of human genome scientists works at an institute that receives financial support from a charity called the Welcome Trust. Answer Explanation: The answer refers to the Welcome Trust, an organization that gives money to support this medical research team. Reason For Correctness: The correct answer is confirmed in Paragraph C. The text discusses a "team of human genome scientists" working at the Sanger Institute and explicitly states that this institute "is funded by the Welcome Trust". Therefore, the organization paying for or supporting their work is the Welcome Trust. |
| Q38 | Cancer Genome Consortium | They are part of the Cancer Genome Consortium, a collaboration of research institutes from countries such as Britain and France in Europe, the United States, Canada, Japan and Australia | Excerpt/Passage Explanation: The passage explains that the scientists belong to a group called the Cancer Genome Consortium, which joins together research centers from many countries around the world. Answer Explanation: The answer refers to the Cancer Genome Consortium, which is the name of the global group where research institutes from different countries work together. Reason For Correctness: The correct answer is supported by paragraph C, which explains that the researchers belong to the "Cancer Genome Consortium". The text defines this group as a "collaboration of research institutes from countries such as Britain and France in Europe, the United States, Canada, Japan and Australia". Here, the phrase "collaboration of research institutes from countries" matches the idea of an organization coordinating "international collaborations". |
| Q39 | small-cell lung cancer | The Sanger Institute scientists analysed cells stored from two patients who had died of cancer. One was a 55-year-old man with small-cell lung cancer and the other was a 45-year-old man with malignant melanoma, the most lethal form of skin cancer | Excerpt/Passage Explanation: The passage explains that researchers looked at cells from two people who died of cancer. One of them was 55 years old and had small-cell lung cancer. Answer Explanation: The answer means a specific type of lung illness called "small-cell lung cancer". Reason For Correctness: The correct answer is confirmed in Paragraph D. The passage mentions two patients who passed away from cancer. It explicitly describes the 55-year-old patient as having "small-cell lung cancer". Therefore, this is the exact disease he had when he died. |
| Q40 | malignant melanoma | The Sanger Institute scientists analysed cells stored from two patients who had died of cancer. One was a 55-year-old man with small-cell lung cancer and the other was a 45-year-old man with malignant melanoma, the most lethal form of skin cancer | Excerpt/Passage Explanation: The passage explains that scientists looked at cells from two men who died from cancer. The 45-year-old man had a deadly type of skin cancer named malignant melanoma. Answer Explanation: The answer is a very dangerous type of skin cancer known as "malignant melanoma". Reason For Correctness: The correct answer is confirmed in paragraph D. The text mentions that researchers studied cells from two patients who had died of cancer. It clearly identifies one patient as a 55-year-old man and the other as a "45-year-old man with malignant melanoma". Therefore, the exact name of the cancer the 45-year-old man had is "malignant melanoma". |
