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Bioengineering and biotechnology

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Bloomberg News

In this video, Bloomberg News reporter Sam Grobart examines the new hydrogel developed by MIT researchers that can bend and twist without breaking, and could be used to deliver medicines and monitor our health. Grobart explains that the hydrogel “could be a building block of the medicine of the future.”

Boston.com

A team of MIT researchers has been selected as the winner of the Koch Institute research-grant pitch competition for their work on developing a diagnostic platform for early-stage leukemia, reports Amanda Hoover for Boston.com.  Hoover explains that the diagnostic method would “single out individual cells during blood tests, highlighting those affected by leukemia.”

HuffPost

Huffington Post reporter Carolyn Gregoire writes that MIT spinoff Synlogic is working on reprogramming gut bacteria to act as a living therapeutic. “It’s become really clear that the bacteria living in us and on us affect our bodies in a variety of different ways — in ways that we never imagined,” explains Prof. Timothy Lu. 

Reuters

MIT researchers are developing a smart bandage that could monitor and help heal wounds, according to Reuters. Prof. Xuanhe Zhao explains that if sensors in the bandage detected “an abnormal increase in temperature, for example, it will send out a command. Then the controlled drug delivery system can deliver a specific drug to that specific location.”

Slate

Prof. Ioannis Yannas was inducted into the National Inventor’s Hall of Fame for his work with Dr. John Burke on regenerating human skin as a treatment for burn victims, writes Robby Berman for Slate.  In a video accompanying the story, Yannas explains that his work was focused on “speeding up the rate of closing up these wounds.” 

HuffPost

Huffington Post reporter Lila Shapiro speaks with Robert Desimone, director of the McGovern Institute, about the use of the CRISPR gene-editing technique to treat neurological diseases. “CRISPR’s impact is potentially across the board,” says Desimone. “It went from nothing just a few years ago to being a tool that’s in everyone’s toolbox.”

Boston Magazine

Dana Guth reports for Boston Magazine on a new bandage developed by Prof. Xuanhe Zhao that can deliver medication directly to a wound. “The bandage is filled with tiny pathways, so that drugs can flow through its gel-like material, providing relief for burns and other minor skin conditions,” writes Guth.

Boston Herald

MIT researchers have developed a new bandage that can detect infection and automatically release medication, reports Jordan Graham for The Boston Herald. “We are trying to design long-term, high-efficiency interfaces between the body and electronics,” explains Prof. Xunahe Zhao.

NBC News

NBC News reporter Maggie Fox writes that MIT researchers have developed a stretchy, wet bandage that can deliver medications. The device could “carry a thermometer to continuously measure skin temperature, or tiny devices to keep an eye on blood sugar levels for someone with diabetes.”

BBC News

In this BBC News segment, Prof. Robert Langer, winner of the Queen Elizabeth Prize for Engineering, discusses his work exploring how to get the human body to respond to vital drugs. Langer explains that his approach to medicine is to “come up with engineering solutions to different medical problems.”

Fortune- CNN

In an article for Fortune, Leena Rao writes about MIT startup Ginkgo Bioworks, which has developed a technique that uses yeast to create a multitude of different substances. “The technique opens the door to using new biochemical foundations for things like perfume, cosmetics and even sweeteners,” Rao writes. 

PBS NewsHour

MIT biologists have developed a genetically modified version of a common gut bacteria that could be used to treat disease, reports Catherine Woods for the PBS NewsHour. “You could engineer a Bacteroides to live in the gut and detect when inflammation is just starting…so that you can seek treatment right away,” explains Prof. Timothy Lu.

Los Angeles Times

Researchers at MIT have developed tools that could one day allow intestinal bacteria to monitor, diagnose and treat diseases, writes Eryn Brown for The Los Angeles Times. "Just as you'd program computers, we're starting to learn how to program cells by modifying their DNA," says Prof. Timothy Lu.

CNBC

CNBC reporter Meg Tirrell reports on the biotechnology boom in Cambridge, explaining that one reason so many biotech companies want to be located in Kendall Square is the area’s proximity to MIT. “Everybody wants to be next to MIT, this hotbed of technology and life sciences work,” says Tirrell.

HuffPost

In a piece for The Huffington Post, Zeynep Ilyaz explains how Prof. Sangeeta Bhatia serves as an inspiration to her, citing her research advances in biotech and medicine, and her mentorship of women pursuing careers in STEM fields. “Dr. Bhatia is constantly looking for the next groundbreaking discovery in health, which makes her an excellent role model for girls and women,” Ilyaz writes.