Category Biology/Biotechnology

Light helps Develop Programmable Materials

Time-averaged local volume fraction ϕ(r) of interacting and noninteracting particles in a system with spatially patterned one-particle swim speed v(r), where v = vi = v0(1 – i/16) in the ith well and v = v0 between the wells. The solid lines show our predictions with a prefactor determined by least-squares fits, where we neglected the three highest density (ϕ > 0.5) data points for the interacting particles. Inset: Spatially resolved plot of ϕ(r) for the interacting particles; note the logarithmic scale on the color bar.

Time-averaged local volume fraction ϕ(r) of interacting and noninteracting particles in a system with spatially patterned one-particle swim speed v(r), where v = vi = v0(1 – i/16) in the ith well and v = v0 between the wells. The solid lines show our predictions with a prefactor determined by least-squares fits, where we neglected the three highest density (ϕ > 0.5) data points for the interacting particles. Inset: Spatially resolved plot of ϕ(r) for the interacting particles; note the logarithmic scale on the color bar.

Light of a certain wavelength can be used to put so-called active materials into motion and control their movement...

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Intelligent Scalpel Locates Cancerous tumors in the brain

Measurement in pig's brain tissue. Credit: Image courtesy of Investigación y Desarrollo

Measurement in pig’s brain tissue. Credit: Image courtesy of Investigación y Desarrollo

Removing a brain tumor is a delicate task, if not done properly it can have catastrophic consequences, such as brain damage, motor impairment or failure in controlling a vital organ function. In order to make this work more precise, the Mexican David Oliva Uribe designed, at Brussels, Belgium, a “smart scalpel” that determines whether an area is healthy or tumorous. The device is designed to be used in the operating room when a brain tumor is already diagnosed and the only solution is to remove it. The tool has the size of a scalpel, but the tip is spherical and of a diameter <1 millimeter.

The prototype was tested in artificial tumors and brain tissue from pigs, where excellent results were obtained a...

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Heart Rate Variability Predicts Epileptic Seizures

Representation of the wearable epileptic seizure prediction device that is under development. Credit: Dr. Toshitaka Yamakawa

Representation of the wearable epileptic seizure prediction device that is under development. Credit: Dr. Toshitaka Yamakawa

Recent research from Japan has found that epileptic seizures can be more easily predicted by using an electrocardiogram to measure fluctuations in the heart rate than by measuring brain activity, because the monitoring device is easier to wear. By making more accurate predictions, it is possible to prevent injury or accident that may result from an epileptic seizure. This is a significant contribution toward the realization of a society where epileptic patients can live without worrying about sustaining injury from an unexpected seizure.

Epilepsy is a disease that affects 1% of the global population...

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Researcher Synthesizes Hybrid Molecule that delivers a Blow to Malignant Cells

Gold nano particle molecule delivers curcumin to cancer cells

Gold nano particle molecule delivers curcumin to cancer cells

Shows promise for breast cancer Rx, the protein/polymer-gold nanoparticle composite, besides being easy to synthesize, can load up with cytoxotic drugs, carry them to malignant cells, and unload them where they can do the most damage with the least amount of harm to the patient.

The hybrid molecule enhances small-molecule loading, sustained release, and increased uptake in breast cancer cells. A/Prof Montclare explained that these abilities make the P-GNP vehicle unique among hybrids. “The protein component has been exclusively developed in our lab; no one else has made such constructs,” she said...

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