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Robotic intracellular electrochemical sensing for adherent cells

A research team from Southern University of Science and Technology developed an automated intracellular sensing system, which provides a high-efficiency approach to reveal cellular intrinsic characteristics and heterogeneity for better investigation.....»»

Category: topSource:  physorgOct 17th, 2022

Algae-jellyfish relationship provides insight on immune health

Marine animals like jellyfish, corals and sea anemones often live with algae inside their cells in a symbiotic relationship. The animals give the algae nutrients and a place to live; in return, algae give the animals some of the food they make from s.....»»

Category: topSource:  physorgRelated NewsOct 30th, 2024

Solar-powered animal cells: Combining chloroplasts from algae with hamster cells

Energy-making chloroplasts from algae have been inserted into hamster cells, enabling the cells to photosynthesize light, according to new research in Japan. It was previously thought that combining chloroplasts (chlorophyll containing structures in.....»»

Category: topSource:  physorgRelated NewsOct 30th, 2024

Compact in-incubator imaging device allows real-time remote monitoring of cell growth

Unlike most cells in the human body, stem cells have the unique ability to divide indefinitely. This property makes them especially appealing to scientists exploring ways to extend human lifespans or develop new methods for repairing damaged tissues......»»

Category: topSource:  physorgRelated NewsOct 30th, 2024

Study finds key protein aids nutrient transport within plant cells

Botanists have come to understand the channels and transporters involved in the uptake and transport of nutrients, yet how are they positioned where they need to be?.....»»

Category: topSource:  physorgRelated NewsOct 30th, 2024

Glycans can regulate their own biosynthesis by modifying enzyme activity

Glycans are chains of sugars that attach to cells through proteins or lipids, changing their chemical characteristics. Glycans can be incredibly complex and branched in structure, contributing to the stability of the extracellular domain of cells and.....»»

Category: topSource:  physorgRelated NewsOct 29th, 2024

Cracking the code: Researchers unlock a "new synthetic frontier" for quantum dots

The type of semiconductive nanocrystals known as quantum dots are both expanding the forefront of pure science and also hard at work in practical applications including lasers, quantum QLED televisions and displays, solar cells, medical devices, and.....»»

Category: topSource:  physorgRelated NewsOct 26th, 2024

New method achieves functional protein delivery into living cells

In cooperation with researchers from the China University of Petroleum, the working group of Dr. Werner Nau, Professor of Chemistry at Constructor University, has demonstrated the effectiveness of a new method of intracellular protein transport......»»

Category: topSource:  physorgRelated NewsOct 25th, 2024

On the way to light-controlled medicine: Researchers elucidate the structure of specific photoreceptors

Researchers in biology and medicine have long dreamed of controlling the activities of cells without, for example, having to use chemicals. After all, in a structure as complex as an entire organism, unwanted side-effects can often arise......»»

Category: topSource:  physorgRelated NewsOct 24th, 2024

Live-cell imaging under centrifugation: New method measures the forces that keep the nuclei of living cells centered

Using two specialized microscopes invented at the Marine Biological Laboratory (MBL), a team of researchers from Japan and the MBL have developed a new method to measure the forces that keep the nucleus centered within a living cell. The experiments.....»»

Category: topSource:  physorgRelated NewsOct 24th, 2024

Live-cell imaging under centrifugation: New method measure the forces that keep the nuclei of living cells centered

Using two specialized microscopes invented at the Marine Biological Laboratory (MBL), a team of researchers from Japan and the MBL have developed a new method to measure the forces that keep the nucleus centered within a living cell. The experiments.....»»

Category: topSource:  pcmagRelated NewsOct 23rd, 2024

New technology illustrates bacterial "hibernation states"

Like hibernating bears, certain bacterial cells have the ability to shift into a "low-power" metabolic state in which they can stably survive without growing. This state is often seen in the context of antibiotic-resistant infections as bacteria form.....»»

Category: topSource:  pcmagRelated NewsOct 23rd, 2024

An elegant switch regulates production of protein variants during cell division

Our cells contain thousands of proteins that have gone largely undetected and unstudied until recent years: these are variants of known proteins, which cells can make when their protein-building machinery interacts differently with the same stretch o.....»»

Category: topSource:  pcmagRelated NewsOct 23rd, 2024

Meet the winners of Nikon’s 2024 photomicrography contest

Nikon Small World photomicrography contest is an annual reminder that science can be beautiful as well as informative. A stunning image of differentiated mouse brain tumor cells h.....»»

Category: topSource:  arstechnicaRelated NewsOct 22nd, 2024

Nanoparticle technology demonstrates selective destruction of leukemia cancer cells

A research team, affiliated with UNIST has developed nanoparticles that effectively treat acute myeloid leukemia (AML), offering the potential to reduce side effects while enhancing therapeutic efficacy by selectively targeting and eliminating leukem.....»»

Category: topSource:  physorgRelated NewsOct 22nd, 2024

Discovery of new bacterial toxins could be key to fighting infections

Researchers have discovered a new group of bacterial toxins that can kill harmful bacteria and fungi, opening the door to potential new treatments for infections. These toxins, found in over 100,000 microbial genomes, can destroy the cells of bacteri.....»»

Category: topSource:  informationweekRelated NewsOct 22nd, 2024

New electrochemical water splitting method offers fast, sustainable method for hydrogen production

Under the leadership of Prof. Dr. Francesco Ciucci from the University of Bayreuth, a German–Chinese research team has developed a new method for the electrochemical splitting of water. This not only accelerates the production of hydrogen for techn.....»»

Category: topSource:  physorgRelated NewsOct 21st, 2024

Novel quantum lidar achieves high-sensitivity wind detection

A research team has proposed a wind sensing lidar theory based on up-conversion quantum interference and successfully developed a prototype. Their work is published in ACS Photonics......»»

Category: topSource:  physorgRelated NewsOct 21st, 2024

How Cells Resist the Pressure of the Deep Sea

Cell membranes from comb jellies reveal a new kind of adaptation to the deep sea: curvy lipids that conform to an ideal shape under pressure......»»

Category: gadgetSource:  wiredRelated NewsOct 21st, 2024

Deciphering the language of cells: How they sense and respond to mechanical forces

Cells, the fundamental building blocks of life, are constantly subjected to a variety of mechanical forces within our bodies. These forces, which can arise from both internal and external sources, play crucial roles in regulating cellular processes s.....»»

Category: topSource:  physorgRelated NewsOct 21st, 2024

Team achieves successful reproduction of hematopoietic stem cell developmental process in an in vitro culture system

Researchers at Kumamoto University have achieved a notable advancement in stem cell biology by reproducing the developmental process of hematopoietic stem cells (HSCs) in vitro. This culture system not only enhances our understanding of how HSCs deve.....»»

Category: topSource:  physorgRelated NewsOct 18th, 2024