by | Feb 18, 2022 | Elbert, Donald, Roam, Jacob
— Technology Description
Engineers led by Dr. Donald L. Elbert have developed a patented, self-assembling hydrogel microsphere scaffold system designed to improve tissue regeneration by creating cell migration pathways to repair large nerve gaps. This technology generates the migration pathways by c…
by | Feb 16, 2022 | Azab, Abdel Kareem, Federico, Cinzia
— Technology Description
Researchers in Prof. Kareem Azab’s laboratory have developed a liposome drug delivery vehicle to improve efficacy and reduce side effects of multiple myeloma treatment. This system is designed to target compounds to the bone marrow microenvironment (BMME) and simultane…
by | Feb 16, 2022 | Azab, Abdel Kareem, Muz, Barbara
— Researchers in Prof. Abdel Kareem Azab’s laboratory have developed a biologically-targeted cellular drug delivery system to precisely target therapeutic or diagnostic agents to a wide range of cancers. Delivering drugs directly to cancer cells and not to healthy cells could improve outcomes by…
by | Feb 8, 2022 | Garcia Hernandez, Nimrod Missael, Gruev, Viktor
— Technology Description
Engineers in Prof. Viktor Gruev’s laboratory have developed a compact 27-band hyperspectral imaging system for high resolution, label-free, real-time imaging. This system can distinguish spectral signatures in image guided surgery (IGS) and other applications. The tech…
by | Feb 7, 2022 | Balgley, Jesse, Henriksen, Erik
— Technology Description
Researchers at Washington University in St. Louis have developed a method to control charge doping in 2D materials like graphene. This method uses α-RuCl3 to create pn junctions at a smaller scale than silicon transistors.
While α-RuCl3 efficiently removes el…