| Catalog | name | Description | price |
|---|---|---|---|
| R-M2-9987 | SeMC NPs | L-Se-methylselenocysteine nanoparticles(SeMC NPs)/L-Se-methylselenocysteine (SeMC)NPs are nanostructured formulations of the natural organoselenium amino acid L-Se-methylselenocysteine (SeMC).These nanoparticles are developed to improve stability and bioavailability of SeMC and controlled delivery, enhancing its antioxidant, anticancer, and chemopreventive activities. | price> |
| R-M2-9988 | GA‐SeMC NPs | Glycyrrhetinic acid-SeMC nanoparticles (GA-SeMC NPs) are targeted selenium-based nanomedicines designed to combine the hepatocyte-targeting ability of glycyrrhetinic acid (GA) with the antioxidant and anticancer properties of L-Se-methylselenocysteine (SeMC). These nanoparticles enhance stability, bioavailability,and liver-specific delivery of SeMC, making them especially promising for liver cancer therapy, hepatoprotection, and oxidative stress modulation. | price> |
| R-M2-9991 | PHT‐PPY‐PDA‐ANG NPs | The surface of PHT‐PPY‐PDA was further chemically conjugated with thiol‐PEGylated brain‐targeting peptide ANG,which enhances BBB penetration through interacting with the LDLR1. Moreover, PHT‐PPY‐PDA exhibited a 125‐fold escalation in conductivity compared to pure PPY, enabling rapid release of PHT upon the onset of epileptic discharges. In an acute seizure model induced by pentylenetetrazole, treatment with PHT‐PPY‐PDA‐ANG/Phenytoin-Polypyrrole-polydopamine‐brain‐targeting peptide ANG nanoparticles(10 mg PHT kg−1) and NIR irradiation significantly reduced seizure severity, increased latency to GS and improved survival rates. In a pilocarpine‐induced epilepsy model mimicking clinical SE, sustained release of PHT‐PPY‐PDA‐ANG‐10 + NIR remarkably mitigated SE severity with a low incidence of GS and no SE behavior. | price> |
| R-M1-8369 | SalB-NP | SalB-NP,Salvianolic acid B Phospholipid nanoparticles from ruixibio.Salvianolic acid B is used for anti ROS (reactive oxygen species)/liver fibrosis. | price> |
| R-M1-8388 | Gold nanoparticles (15nm)-DTT | DTT is superior to the commonly used surface diluent mercaptohexanol because of its low volatility, allowing for rapid and repeatable control of surface coverage of AuNPs using only micro molar concentrations of DTT. After adsorption, DTT forms a dense monolayer on the gold surface, providing anti fouling ability. Surface covered DTT regulation can be widely used to optimize the performance of DNA modified AuNP, for biosensors, drug delivery, and therapeutic applications. | price> |
| R-M1-8390 | Gold nanoparticles (15nm)-SDS | Gold nanoparticles (15nm)-Sodium Dodecyl Sulfonate,Gold nanoparticles (15nm)-SDS from ruixibio.Gold nanoparticles (GNPs) have been extensively used in various applications ranging from environmental detection to biomedical applications.GNPs have been profoundly used in cancer treatment as well as, antiviral, and antibacterial agents. In addition, owing to possessing unique optical properties, GNPs have been utilized as molecular imaging and contrast agent. | price> |
| R-M2-10025 | BNNT-PSMA-617 | BNNT-PSMA-617 is commonly used for targeted drug delivery or biomedical research. Functionalizing PSMA-617 onto BNNT may lead to the construction of a novel nanomedicine platform, with potential applications including: Targeted drug delivery: Using BNNT as a carrier to load chemotherapy drugs or therapeutic molecules, and through the targeting of PSMA-617, the drugs are accurately delivered to prostate cancer cells, improving efficacy and reducing side effects. Enhanced imaging guided therapy: BNNT itself may have imaging properties (such as photoacoustic imaging), combined with the targeting of PSMA-617, which can more accurately locate tumors and potentially achieve treatment guided by multimodal imaging. Combination therapy strategy: Combining the physical therapy potential of BNNT (such as photothermal therapy) with the radionuclide therapy of PSMA-617 may produce a synergistic effect and more effectively kill tumor cells. | price> |
| R-M1-8418 | Zno-Manganese Acetate | Zno-Manganese Acetate,Porous Zinc Oxide Manganese Acetate Doping from ruixibio.Porous zinc oxide doped with manganese acetate is a material with improved performance and multifunctional properties, which can be used in multiple fields including catalysis, energy, and optoelectronics. | price> |
| R-M1-8420 | Zno-Copper acetate | ZnO-Copper acetate refers to a composite material that combines the properties of zinc oxide and copper acetate. This composite may exhibit enhanced functionality in terms of catalytic, optical, or electrical properties, depending on the specific application and synthesis methods used. | price> |
| R-M1-8421 | Zno-Cobalt acetate | Zno-Cobalt acetate,Porous Zinc Oxide Cobalt acetate Doping from ruixibio.By doping ZnO with cobalt acetate, it is possible to tailor and enhance the properties of the material, allowing for a wide range of applications in various fields such as electronics, optics, catalysis, and energy conversion. | price> |

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