For many individuals, the mere sight of a needle can create intense fear and anxiety. This fear, known as trypanophobia, has been a significant barrier for patients who need regular injections, especially those suffering from diabetes and dependent on daily insulin shots. Because of the pain and discomfort associated with traditional injections, some patients delay or even avoid taking essential medicines, putting their health at serious risk. To address this challenge, researchers at the Massachusetts Institute of Technology (MIT) have been exploring advanced technologies that can replace conventional injections with an easier, less frightening method: ingestible capsules that can deliver medicine internally.
The innovative idea behind these capsules is simple yet groundbreaking. Each capsule contains a miniature needle designed to inject the medicine directly into the stomach lining after being swallowed. This way, the medicine, such as insulin, can enter the bloodstream without the need for a traditional syringe. However, early trials revealed a crucial problem. For the injection to be effective, the tiny needle must penetrate the stomach wall at a precise angle. The stomach’s constant movement and the varying position of the capsule made it extremely difficult to maintain this level of accuracy. As a result, the first version of the capsule struggled to deliver consistent results.
To overcome this obstacle, scientists designed two new types of capsules inspired by unique natural and technological models. The first design was modeled after a space lander. This capsule was built to orient itself steadily once inside the stomach and then spray the medicine downward. To test its effectiveness, researchers used a green dye on pig tissues to simulate how the medicine would be delivered. The experiment showed encouraging results, as the medicine reached the targeted tissues efficiently. The second design took inspiration from squids, which can release ink forcefully using a special muscle. In this model, the capsule was cylindrical and capable of spraying the medicine sideways by using a similar muscular mechanism. This method also proved successful in laboratory tests.
Both experimental approaches demonstrated that delivering insulin or other injectable drugs through swallowable capsules is not only possible but also highly promising. Although further research and clinical trials are necessary before this technology becomes widely available, these results bring hope to diabetic patients who fear needles. By removing the pain and psychological discomfort of injections, MIT’s capsule technology could revolutionize diabetes care and eventually change the way many other injectable medicines are administered.
Which of the following best characterizes the research approach adopted by MIT scientists?
Correct Answer :
Nature- and technology-inspired problem-solving based on observed delivery issues
Solution :
Correct Answer: Nature- and technology-inspired problem-solving based on observed delivery issues
Step-by-Step Explanation:
1. Understanding the Question:
The question asks us to identify the statement that best characterizes the research approach adopted by MIT scientists based on the provided text.
2. Analyzing the Passage Details:
- Observed Delivery Issues: The second paragraph explains that initial trials revealed a crucial problem—the capsule's tiny needle needed to penetrate the stomach wall at a precise angle, but stomach movement made accurate positioning difficult, leading to inconsistent results.
- Technology-Inspired Design: To overcome this obstacle, the third paragraph states that the first new capsule design was "modeled after a space lander."
- Nature-Inspired Design: The third paragraph also mentions that the second capsule design "took inspiration from squids, which can release ink forcefully using a special muscle."
3. Evaluating the Given Options:
- "Nature- and technology-inspired problem-solving based on observed delivery issues": This perfectly summarizes the scientists' strategy of addressing the initial positioning/delivery issue by using designs inspired by technology (a space lander) and nature (squids).
- Other options contradict the text, which explicitly highlights successful interdisciplinary inspiration, positive experimental results, and a move away from traditional injection methods.
Conclusion:
The research approach is accurately characterized as Nature- and technology-inspired problem-solving based on observed delivery issues.
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