Researchers are using nanocarriers like liposomes and nanoparticles to enhance quercetin's absorption and bioavailability. This review consolidates recent formulation research, highlighting current strengths and future directions.
Researchers have demonstrated that nano-antennas can enhance the fluorescence of proteins in living human and other mammalian cells, allowing for faster and more precise monitoring of electrical signals in the brain. This discovery adds a new tool for revealing electrical signals in the brain, using nanotechnology and genetic engineering.
A team of scientists at NIST identified a pervasive error in data analysis that can give misleading insights into how nanomaterials' properties depend on their size. They developed a mathematical correction to reveal the true relationship, which will help nanoscience and nanotechnology fulfill its potential.
Researchers at Seoul National University developed an automated design platform using generative AI to create complex DNA origami structures with curved and irregular geometries. The technology, Generative SNUPI, enables users to fabricate DNA nanostructures that can undergo shape transformations and be assembled modularly.
Researchers at the University of São Paulo have developed nanoparticles that deliver therapeutic RNA molecules directly to skin cells, silencing genes responsible for chronic inflammation. This precision nanomedicine approach holds promise for treating complex diseases like psoriasis and vitiligo.
The special issue highlights how nanotechnology is being used to improve drug targeting, immunotherapy synergy, and tumor microenvironment reprogramming. It showcases cutting-edge research on postbiotics, click chemistry-driven theranostics, and tumor biomineralization as emerging bioactive agents.
Breast cancer diagnosis and treatment have been enhanced by nanotechnology, improving outcomes for patients. Various formulations such as lipid nanoparticles, nanoemulsions, polymeric nanoparticles, and metal-based nanoparticles offer improved bioavailability and overcome limitations of conventional therapies.
Researchers have developed a platform that integrates physics, chemistry, and medicine to revolutionize the delivery of light-based cancer therapies using liposomes. The new technology improves treatment effectiveness while reducing side effects, offering hope for patients with cancer.
The study highlights the importance of absorptive capacity and collaboration practices in nanotechnology commercialisation. Companies can improve their chances of successfully commercialising breakthrough technologies by refining their governance and management structures.
Recent scientific progress in nanotechnology has led to the development of engineered nanomaterials that can remove, transform, or immobilize heavy metals in contaminated environments. These nanomaterials possess unique properties that make them highly reactive and efficient at interacting with contaminants.
Researchers from Tokyo Metropolitan University have discovered a hydrogen-absorbing material with negative thermal expansion properties, which can be tuned by adjusting the amount of hydrogen. This finding promises custom high-precision ingredients for precision nanotechnology, addressing volume changes in materials under heating.
Researchers at NYU Abu Dhabi developed a new light-based nanotechnology that uses near-infrared light to generate heat in tumors, destroying cancer cells while minimizing harm to healthy tissue. The nanoparticles are highly stable, biocompatible and biodegradable, and efficiently deliver therapeutic material to tumors.
Researchers have developed a new class of engineered nanoparticles that can bind to and degrade specific disease-related proteins. This technology has the potential to treat diseases such as dementia and brain cancer by eliminating harmful proteins.
Scientists at Fralin Biomedical Research Institute are developing nanotechnology-based approaches to reprogram the immune system and overcome tumor defenses. Integrating nanomedicine with immunology promises more precise and effective therapies.
This book presents innovative nanomaterials for efficient pollutant removal from wastewater, reducing energy consumption and promoting eco-friendly treatment outcomes. It explores emerging trends and future directions in nanotechnology-based purification, providing practical insights for researchers and professionals.
The new book provides a comprehensive overview of engineered nanomaterials' interactions with biological systems, driving breakthroughs in biomedical applications and environmental sustainability. It explores critical applications in sustainable technologies, including bioremediation and heavy metal adsorption.
Scientists develop a new approach to construct moiré superlattices using DNA nanotechnology, enabling precise control over twist angles and lattice symmetries. The resulting structures have potential applications in nanophotonics, spintronics, and materials science.
Breast cancer remains a significant health challenge worldwide, with nanotechnology offering a ray of hope. Nanoparticles improve diagnostic imaging, biomarker detection, and therapy by enhancing drug solubility, stability, and targeted delivery.
The journal Nano Research Energy has been accepted for inclusion in the Web of Science (Emerging Sources Citation Index). This recognition acknowledges the publication's high-quality research papers and review articles on nanomaterials and nanotechnology for energy.
Researchers have developed scalable nanotechnology-based lightsails that can be fabricated in a single day, reducing the traditional 15-year process. These lightsails use laser-driven radiation pressure to propel spacecraft at high speeds, enabling rapid interplanetary travel and opening new possibilities for experimental physics.
Researchers at Chalmers University of Technology have made a significant step in understanding the fundamental constraints on noise, paving the way for future nanoelectronics. The study investigated thermoelectric heat engines at the nanoscale and found a critical trade-off between noise and power.
Heidelberg researchers describe a new bottom-up approach to engineer precise immune responses using nanotechnology and synthetic biology. This innovative field holds promise for groundbreaking approaches in disease treatment and prevention.
Researchers highlight strategies for improving agriculture with nanotechnology, including targeted delivery of pesticides and herbicides, and digital twin simulations. These approaches aim to reduce environmental pollution and increase crop resilience.
The review discusses the mechanism of CRISPR/Cas9 and its challenges in delivering genome editing to cancer cells. Nanotechnology-based delivery systems, such as nanoparticles and exosomes, have shown promise in improving the efficiency and specificity of CRISPR/Cas9 gene editing.
Researchers developed a promising strategy to reduce adverse reactions to nanoparticles by using complement inhibitors. The study showed that regulators being studied effectively inhibited complement activation by nanoparticles in human serum in vitro and animal models.
Researchers at RMIT University have developed a nano-thin superbug-slaying material effective against drug-resistant bacterial cells. The black phosphorus-based nanotechnology achieved comparable results to antibiotics in eliminating infection and accelerating healing.
A KAIST research team created a water-resistant, transparent, and flexible OLED using MXene nanotechnology. The material can emit and transmit light even when exposed to water. The study focused on producing an adequate encapsulation structure and suitable process design to improve the reliability of MXene OLED.
Researchers from the University of Warsaw explore how kitchen phenomena lead to breakthroughs in biomedicine and nanotechnology. They describe bubbles in champagne, Leidenfrost effect, and surface tension, revealing surprising connections between food science and scientific discoveries.
Scientists have discovered a new topological phase in twisted 2D materials, which could lead to breakthroughs in nanotechnology. The discovery reveals the formation of polar domains that are inherently topological and form objects known as merons and antimerons.
Researchers developed a new way to increase vaccine potency by changing the structural location of antigens and adjuvants. This approach, called 'rational vaccinology,' allows for precise dosing and tailored presentation of vaccine components, leading to improved immune response and cancer cell targeting.
The São Paulo School of Advanced Science on Nanotechnology, Agriculture and Environment will cover topics such as nanotechnology innovation, sustainability, and biological applications. The event will feature renowned scientists as speakers and provide hands-on experiments, technical visits, and didactic activities.
A new nanotechnology platform has successfully converted solid tumor cells into immune-activating targets, making them more receptive to immunotherapy. The approach uses a bispecific nanoconjugate to attach an immune-activating molecule to the surface of cancer cells, triggering an immune response.
Researchers at Ludwig Chicago develop a novel nanotechnology that induces therapeutic anti-tumor immune responses and demonstrates efficacy in mouse models of multiple cancers. The nanoparticle-loaded drug activates the STING protein, promoting inflammation and driving immune cells to attack tumors.
Recent studies in Journal of Pharmaceutical Analysis highlight innovative nanosensors for efficient biomolecular detection, including rutin, paracetamol, and hypochlorite. These advancements enable high sensitivity and reliability in clinical samples, paving the way for improved patient care.
Researchers at NUS Medicine have successfully used a plant-derived nutrient supplement to shrink breast cancer tumors in preclinical models. The treatment, which uses nanotechnology to convert the natural component into chemotherapy only at the tumor site, shows promise for reducing side effects and increasing patient lifespan.
A new study explores the characteristics of 36 basic variants of the Holliday junction, a fundamental building block used in DNA nanoforms. The results show that sequences forming the four protruding arms of the junction can enhance or hinder crystallization processes.
A Quebec research team has successfully synthesized carbon quantum dots from brewery waste, offering a biocompatible alternative to traditional materials. The eco-responsible approach uses microbrewery waste as a source material, reducing the need for pure chemicals and toxins.
Rice University and MD Anderson Cancer Center will train future medical professionals to translate nanotechnology advances to the clinic, focusing on cancer diagnosis and treatment. The five-year program aims to recruit 16 fellows from underrepresented groups.
Recent studies published in the Journal of Pharmaceutical Analysis have found applications of nanotechnology in medicine, drug research, and environmental protection. Researchers developed nanodots made of carbon using natural polysaccharides from mushrooms to detect chromium, and created nanozymes that could be used to detect drug con...
Researchers have discovered a practical and inexpensive way to produce non-toxic, recyclable, and sustainable colors using nanotechnology and nature's approach. The method mimics normal color mechanisms in nature, creating physical colors from almost transparent materials like clay suspended in water.
Researchers have created a powerful DNA-peptide hybrid that could lead to advancements in nanotechnology and the study of Alzheimer's disease. The new structure combines three-stranded DNA and peptide structures, overcoming the challenge of chirality between these biomolecules.
A new nanotechnology developed by Penn State researchers selectively recovers neodymium and other rare earth elements from electronic waste using plant cellulose. The process is environmentally friendly and can separate neodymium in seconds, making it a sustainable solution for recycling.
Researchers at Brigham and Women's Hospital discovered that cancer cells can disarmed the immune system by forming nanotubes that pull out mitochondria from immune cells. This new mechanism gives a target to go after, leading to potential new combinations of therapies for improving cancer immunotherapy outcomes.
Recent advances in nano- and micro-based delivery systems show promising strategies for achieving controlled drug release in the lungs. These systems minimize drug toxicity and improve treatment outcomes for chronic diseases such as lung cancer, asthma, and chronic obstructive pulmonary disease.
A new UK-wide facility will analyze innovative nanotechnologies for healthcare applications, enabling improved understanding of their performance and safety. The Multiscale Metrology Suite will provide access to world-leading technology for scientists across the UK.
The Welch Institute has appointed Matthew Tirrell, a renowned material scientist, to chair its Scientific Advisory Board. His expertise in nanotechnology and biomolecular engineering will help the institute accelerate discovery and innovation in advanced materials.
Researchers developed a nanotherapeutic platform that combines camptothecin with immune checkpoint inhibitors to increase effectiveness against aggressive tumors. The approach showed promising results in eliminating difficult-to-treat late-stage metastatic colorectal cancer and melanoma tumors.
The Wake Forest Institute for Regenerative Medicine and local partners receive an NSF grant to develop a regional regenerative medicine educational network. The project aims to address the workforce needs of the rapidly evolving field, focusing on skilled technician development in biomanufacturing.
Researchers at Tel-Aviv University developed a new biological material that generates electric currents and voltage through mechanical force, enabling the creation of implantable devices without batteries. The material, similar to collagen, is non-toxic and piezoelectric, with potential applications in medicine and energy harvesting.
Scientists at Osaka University successfully mapped the three-dimensional forces acting on quantum dots with unprecedented subnanometer resolution, opening up new avenues for nanotechnology and optical manipulation. This breakthrough could lead to advances in photocatalysts and optical tweezers.
Researchers at Tel-Aviv University have developed a targeted delivery system for RNA-based drugs that selectively targets diseased cells without harming healthy ones. The breakthrough has potential implications for various diseases, including blood cancers and inflammatory conditions.
The LIGHT-CAP project aims to develop new nanotechnology-enabled architectures for solar energy conversion and storage. Researchers will apply cutting-edge materials to build systems capable of absorbing sunlight, converting it into electric charges and storing the associated energy in a sustainable way.
Researchers at Texas A&M University used machine learning to evaluate metallic nanoparticles' susceptibility for plant uptake. The algorithm indicates how much plants accumulate nanoparticles in their roots and shoots, providing a safer approach to nanotechnology in agriculture.
Researchers summarize the mechanism of ultrasound neuromodulation, which uses focused ultrasound to regulate neural circuits. The treatment shows promise for treating various neurological disorders, including epilepsy and depression, with potential for future developments in genetic engineering or nanotechnology.
Scientists at Tel Aviv University developed a nanotechnology that transforms transparent calcite into a sparkling gold-like particle. The new material can serve as a platform for innovative cancer treatments and offers a biofriendly delivery of optical resonances, enabling multifunctionality in biomedical systems.
Researchers have developed a novel nanotechnology that can improve the effectiveness of the CF antibiotic Tobramycin, increasing its efficacy against Pseudomonas aeruginosa lung infections. The technology has shown to eradicate infections in as little as two doses, providing new hope for people living with cystic fibrosis.
New Army-funded synthetic biology research has enabled the manipulation of micro-compartments in cells, potentially leading to breakthroughs in bio-manufacturing. The study could inform new ways to design medicine, synthetic cells and nano-reactors for nanotechnology applications.
A new biomedical implant, microMESH, has been developed to treat glioblastoma multiforme. The device wraps around tumor masses, delivering drugs in a controlled, prolonged manner, increasing therapeutic efficacy.
A single qubit on a standard silicon transistor chip has been successfully demonstrated as 'quantum capable' in a new study. The researchers were able to isolate and measure the quantum state of a single electron in a silicon transistor manufactured using existing manufacturing processes.
Emerging technologies can screen for cervical cancer better than Pap smears, especially in places with limited access to healthcare. Advanced nanotechnology and computer learning are helping develop HPV screening that takes the guesswork out of precancer tests.