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Striking Gold: Synthesizing Green Gold Nanoparticles for Cancer Therapy with Biomolecules


Published: June 28, 2021
Scientists at Tokyo Institute of Technology (Tokyo Tech) have designed an eco-friendly protocol for synthesizing gold nanoparticles with optimized morphology for near-infrared light absorption using a biomolecule called B3 peptide. In their paper, they report the synthesis of triangular and circular gold nanoplates and their effectiveness in killing cancer cells by converting the absorbed light into heat, providing useful insights for the development of non-invasive cancer therapy.
In cancer therapy, the effectiveness of an approach is determined by its ability to preserve the non-cancerous cells. Simply put, the higher the collateral damage, the greater are the side-effects of a therapy. An ideal situation is where only the cancer cells can be targeted and destroyed. In this regard, photothermal therapy an approach in which cancer cells infused with gold nanoparticles can be heated up and destroyed using near-infrared (NIR) light that is strongly ....

South Korea , United Kingdom , Masayoshi Tanaka , United Kingdom University Of Leeds , Tokyo Institute Of Technology Tech , Korea Chung Ang University , Tokyo Institute , Tokyo Tech , Chung Ang University , தெற்கு கொரியா , ஒன்றுபட்டது கிஂக்டம் , ஒன்றுபட்டது கிஂக்டம் பல்கலைக்கழகம் ஆஃப் லீட்ஸ் , டோக்கியோ நிறுவனம் ஆஃப் தொழில்நுட்பம் தொழில்நுட்பம் , கொரியா சுங் அங் பல்கலைக்கழகம் , டோக்கியோ நிறுவனம் , டோக்கியோ தொழில்நுட்பம் , சுங் அங் பல்கலைக்கழகம் ,

In a Supramolecular Realm: Advances in Intracellular Spaces with De Novo Designed Peptide


Date Time
In a Supramolecular Realm: Advances in Intracellular Spaces with De Novo Designed Peptide
Scientists at Tokyo Institute of Technology (Tokyo Tech) have set out to harness the potential of self-assembling peptides (SAPs) in intracellular spaces. They present a de novo designed peptide, Y15, which displays a strong tendency to assemble in cellular environments. The addition of Y15-tagged bioactive proteins can functionalize these assemblies, enhancing their utility and relevance by leaps and bounds.
Over the last two decades, biomaterials research has made significant progress, transitioning from traditional biomaterials to biomaterials with controlled structure and dynamic functionality. A number of building blocks have been explored for developing biomaterials by self-assembly, but SAPs have garnered special attention due to their tunability and potential use in various applications such as tissue engineering, wound healing, and vaccinations. Despite these be ....

Taichi Nakai , Masahiro Hashimoto , Keigo Kajiwara , Hiroshi Tsutsumi , Takayuki Miki , Hisakazu Mihara , Nature Communications , Tokyo Institute Of Technology Tech , School Of Life Science , Tokyo Institute Of Technology , Tokyo Institute , Tokyo Tech , Supramolecular Realm , Intracellular Spaces , Life Science , மசாஹிரோ ஹாஷிமோடோ , இயற்கை தகவல்தொடர்புகள் , டோக்கியோ நிறுவனம் ஆஃப் தொழில்நுட்பம் தொழில்நுட்பம் , பள்ளி ஆஃப் வாழ்க்கை அறிவியல் , டோக்கியோ நிறுவனம் ஆஃப் தொழில்நுட்பம் , டோக்கியோ நிறுவனம் , டோக்கியோ தொழில்நுட்பம் , வாழ்க்கை அறிவியல் ,

Tokyo Institute of Technology: One "Ring" to Rule Them All: Curious Interlocked Molecules Show Dual Response – India Education | Latest Education News | Global Educational News