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U of T scientists build a bridge for new bone

A team of University of Toronto researchers has created a biodegradable scaffold that accelerates bone healing rates by providing a building structure for bone growth. The scaffold, similar in structure to a dish sponge, eventually dissolves, eliminating the need for expensive chemicals called bone growth factors.

SourceUniversity of Toronto·JournalJournal of Biomedical Materials Research·DateJun 16, 2003

Penn engineers develop fuel cell that uses liquid diesel, the first such device to run on a widely available fuel

The University of Pennsylvania team has developed a fuel cell that can run directly on liquid diesel, sidestepping the need to reform fuels into hydrogen. This breakthrough could enable wider adoption of fuel cells in transportation and other applications, offering a cleaner alternative to traditional energy sources.

SourceUniversity of Pennsylvania·JournalJournal of The Electrochemical Society·DateSep 4, 2001

Strain makes for stronger engineered tissues

A University of Michigan team found that applying repeated strain during tissue development increases the expression of key structural protein genes and improves cell organization, leading to stronger tissues. This approach could improve engineered tissues' strength and potentially be used to investigate disease mechanisms.

SourceUniversity of Michigan·JournalNature Biotechnology·DateOct 20, 1999