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Meet the under-35s shaping the future of biotech

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Why This Matters

This roundup profiles young researchers whose work spans low-cost maternal health devices, less invasive brain electrodes, and bespoke gene-editing therapies, showing where biotech innovation is heading. It matters because each project targets a concrete unmet need dash from a $70 device for postpartum hemorrhage in Tanzania to a personalized CRISPR treatment for a single infant, signaling that biotech breakthroughs are becoming both cheaper and more individualized.

Key Takeaways
Worth a Look

Kirigami Pop-Up Paper Cutting Book — The article's most charming detail is that Xiao Yang's flexible brain-electrode sheets were inspired by kirigami, the Japanese art of cutting and folding paper into 3D forms. A kirigami book walks you through the same fold-and-cut geometry that engineers now borrow for bendable, stretchable devices. It's a hands-on way to see why this centuries-old craft keeps showing up in cutting-edge labs.

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1. Preventing maternal deaths

Let’s start with Paschal Kija, a 28-year-old who has developed a device to treat postpartum hemorrhage—a dangerous birth complication that contributes to around 29% of maternal deaths in his home country, Tanzania. The Mkanda Salama (“Safe Wrap” in Swahili) is easy to use and costs just $70. A study found that it stopped postpartum bleeding in 73% of women within 20 minutes.

2. Making brain electrodes inspired by Japanese art

For decades, scientists have been developing, testing, and implanting brain electrodes. These devices are literally inserted into people’s brains, so while they can help us understand brain activity and treat various neurological disorders, it’s not totally surprising that they can also cause a bit of damage. Xiao Yang, 34, is working on ultra-small electrodes, which she hopes will have less of an impact on surrounding brain tissue. Her electrodes are flexible, too—in fact, they look a lot like actual neurons.

Yang is also creating sheets of electrodes to study brain cells in the lab. Inspired by kirigami—the traditional Japanese art of cutting paper to form three-dimensional shapes—she’s created a sheet of electrodes with a honeycombed structure shaped like a spiral basket. And she’s already using it to study brain cells.

3. Developing an all-new treatment for baby KJ

In 2024, Kyle “KJ” Muldoon Jr. was born with a rare and potentially fatal genetic disorder. Sarah Grandinette was a member of a team that developed an entirely new, personalized treatment for him—a gene-editing therapy essentially designed to correct a genetic misspelling.

Grandinette, who is now 26, created cells with KJ’s genetic variant and used them to screen gene-editing approaches; then she tested potential medicines in mice and monkeys. KJ ultimately got his first dose of the resulting treatment when he was about seven months old. He responded well and was eventually discharged from hospital. He’s “doing pretty great,” she says.