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Catalog | name | Description | price |
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R-M-5353 | SF488-DBCO | In addition to its superior fluorescence characteristics (such as high brightness and super light stability), the design of SFTM fluorophores also simplifies the fluorescence labeling and detection process. SFTM fluorophores can be directly used in aqueous working buffer without adding any organic solvent. The elimination of organic solvents can not only simplify the labeling and detection process, but also provide additional protection for molecules from some harsh organic solvents. In addition, SFTM fluorophores provide a variety of chemical reactions and / or bioactive parts, which can be directly used to label, image and detect various molecules and particles. These fluorophores range from ultraviolet to near-infrared and can be used for in vitro and in vivo imaging. | price> |
R-C-4688 | PEI-SH(5%) | Polyethyleneimine is a kind of cationic polymer, which is effective for gene transmission. Polyethyleneimine is non-degradable, and the molecular weight of PEI affects the cytotoxicity and gene transfer activity. Polyimide is a low toxicity and high efficiency gene carrier. | price> |
R-M1-cs8806 | RVG29 modified liposomes loaded with paclitaxel | The RVG29 modification on the liposomes provides a targeted approach to deliver paclitaxel specifically to neuronal cells, potentially for the treatment of neurological disorders or brain tumors. The RVG29 peptide interacts with nAChR on neuronal cells, promoting the endocytosis of the liposomes and subsequent release of the paclitaxel within the targeted cells.RVG29 modified liposomes loaded with paclitaxel offer the benefit of targeted drug delivery to neuronal cells, improving the efficacy and selectivity of paclitaxel treatment.RVG29 is a peptide derived from the rabies virus glycoprotein, which has a high affinity for the neuronal acetylcholine receptor (nAChR), specifically present on neuronal cells. By modifying liposomes with RVG29, they can be targeted specifically to neuronal cells, allowing for enhanced drug delivery to these cells. | price> |
R-M-5354 | SF488-NHNH2 | In addition to its superior fluorescence characteristics (such as high brightness and super light stability), the design of SFTM fluorophores also simplifies the fluorescence labeling and detection process. SFTM fluorophores can be directly used in aqueous working buffer without adding any organic solvent.The elimination of organic solvents can not only simplify the labeling and detection process, but also provide additional protection for molecules from some harsh organic solvents.In addition, SFTM fluorophores provide a variety of chemical reactions and / or bioactive parts, which can be directly used to label, image and detect various molecules and particles.These fluorophores range from ultraviolet to near-infrared and can be used for in vitro and in vivo imaging. | price> |
R-M1-cs8807 | Liposome loaded tectorigenin,surface modified peptide APWHLSSQYSRT | The combination of liposome loaded tectorigenin and surface-modified peptide APWHLSSQYSRT refers to the preparation of liposomes that encapsulate tectorigenin, a natural compound, while the surface of the liposomes is modified with the peptide sequence APWHLSSQYSRT. Surface modification of liposomes with peptides, such as APWHLSSQYSRT, offers a way to enhance drug delivery and target specific cells or tissues. The sequence of the peptide may have been specifically designed to interact with a receptor or biomarker present on the surface of target cells. | price> |
R-M-5355 | SF488-Biotin | In addition to its superior fluorescence characteristics (such as high brightness and super light stability), the design of SFTM fluorophores also simplifies the fluorescence labeling and detection process. SFTM fluorophores can be directly used in aqueous working buffer without adding any organic solvent.The elimination of organic solvents can not only simplify the labeling and detection process, but also provide additional protection for molecules from some harsh organic solvents.In addition, SFTM fluorophores provide a variety of chemical reactions and / or bioactive parts, which can be directly used to label, image and detect various molecules and particles.These fluorophores range from ultraviolet to near-infrared and can be used for in vitro and in vivo imaging. | price> |
R-M1-8808 | DBCO-PEG4-CY5.5 | DBCO-PEG4-CY5.5 is one of Click Chemistry dyes with an azide reactive DBCO group. Reaction between azide and DBCO group allows conjugation of Cy5.5 dye to proteins, antibodies, peptides, nucleic acid or particles with high efficiency. PEG linker between Cy5.5 and DBCO group offers better water solubility, reduced steric hindrance and enhanced stability. | price> |
R-M-5356 | SF550-NHS | In addition to its superior fluorescence characteristics (such as high brightness and super light stability), the design of SFTM fluorophores also simplifies the fluorescence labeling and detection process. SFTM fluorophores can be directly used in aqueous working buffer without adding any organic solvent.The elimination of organic solvents can not only simplify the labeling and detection process, but also provide additional protection for molecules from some harsh organic solvents.In addition, SFTM fluorophores provide a variety of chemical reactions and / or bioactive parts, which can be directly used to label, image and detect various molecules and particles.These fluorophores range from ultraviolet to near-infrared and can be used for in vitro and in vivo imaging. | price> |
R-M1-8809 | EPLQLK(FITC)MC | EPLQLK(FITC)MC refers to a peptide sequence labeled with FITC, most likely used for fluorescence-based imaging or other applications requiring the visualization and tracking of the peptide in biological systems. The peptide sequence itself, EPLQLK, consists of the amino acid residues glutamic acid (E), proline (P), leucine (L), glutamine (Q), leucine (L), and lysine (K). Peptides like EPLQLK can have various roles, such as serving as ligands, substrates, or targeting moieties in biological applications. The addition of FITC indicates that the peptide has been labeled with a green fluorescent dye called fluorescein isothiocyanate (FITC). FITC is commonly used in biological research for labeling and visualizing biomolecules, such as peptides, proteins, or antibodies. When excited by appropriate light, FITC emits green fluorescence, enabling easy detection and visualization of the labeled peptide. | price> |
R-M-5357 | SF550-Mal | In addition to its superior fluorescence characteristics (such as high brightness and super light stability), the design of SFTM fluorophores also simplifies the fluorescence labeling and detection process. SFTM fluorophores can be directly used in aqueous working buffer without adding any organic solvent.The elimination of organic solvents can not only simplify the labeling and detection process, but also provide additional protection for molecules from some harsh organic solvents.In addition, SFTM fluorophores provide a variety of chemical reactions and / or bioactive parts, which can be directly used to label, image and detect various molecules and particles.These fluorophores range from ultraviolet to near-infrared and can be used for in vitro and in vivo imaging. | price> |
R-M1-cs8810 | SS31 peptide/simvastatin @ ROS responsive liposome | By encapsulating SS31 peptide and simvastatin within ROS-responsive liposomes, it may be possible to achieve targeted delivery of both compounds to areas of high ROS levels, such as in certain disease states. The ROS-responsive liposomes are designed to release the encapsulated SS31 peptide and simvastatin in response to the presence of ROS, allowing for localized therapeutic effects and potentially enhanced efficacy. This combination could be explored in various biomedical applications, including the treatment of oxidative stress-related disorders or conditions where ROS plays a significant role, such as cardiovascular diseases, neurodegenerative disorders, or inflammation-associated conditions. | price> |
R-M-5358 | SF550-NH2 | In addition to its superior fluorescence characteristics (such as high brightness and super light stability), the design of SFTM fluorophores also simplifies the fluorescence labeling and detection process. SFTM fluorophores can be directly used in aqueous working buffer without adding any organic solvent.The elimination of organic solvents can not only simplify the labeling and detection process, but also provide additional protection for molecules from some harsh organic solvents.In addition, SFTM fluorophores provide a variety of chemical reactions and / or bioactive parts, which can be directly used to label, image and detect various molecules and particles.These fluorophores range from ultraviolet to near-infrared and can be used for in vitro and in vivo imaging. | price> |
R-C-4693 | 5-FU stearic acid | Fluorouracil, also known as 5-fluorouracil,with the chemical formula of C4H3FN2O2, is a pyrimidine analogue, belonging to one of the antimetabolic drugs, mainly used for the treatment of tumors. The product is only used for scientific research, not for human body. | price> |
R-M1-8811 | BSA-Abscisic Acid | BSA-Abscisic Acid refers to the conjugation of BSA protein with Abscisic Acid. This conjugation is often used in research experiments to improve the stability and solubility of Abscisic Acid and facilitate its use in different assays. BSA-Abscisic Acid is commonly employed in experiments studying the cellular responses to Abscisic Acid and its signaling pathways. | price> |
R-M-5359 | SF550-SH | In addition to its superior fluorescence characteristics (such as high brightness and super light stability), the design of SFTM fluorophores also simplifies the fluorescence labeling and detection process. SFTM fluorophores can be directly used in aqueous working buffer without adding any organic solvent.The elimination of organic solvents can not only simplify the labeling and detection process, but also provide additional protection for molecules from some harsh organic solvents.In addition, SFTM fluorophores provide a variety of chemical reactions and / or bioactive parts, which can be directly used to label, image and detect various molecules and particles. These fluorophores range from ultraviolet to near-infrared and can be used for in vitro and in vivo imaging. | price> |
R-C-4694 | Silver sulfide (Ag2S) quantum dots | Silver sulfide (Ag2S) quantum dots are non-toxic semiconductors. Ag2S quantum dots have unique properties such as wide absorption spectrum, convenient preparation, good chemical stability, low toxicity, etc., especially because of its exciton Bohr radius of 2.2 nm, quantum effect dependent on size and composition, narrow emission spectrum characteristics with adjustable size, which can be used in photocatalytic degradation of organic pollutants and hydrogen production, quantum dot sensitized solar cells, fluorescence imaging in vivo and in vitro It has been widely used in sensor and other fields. | price> |
R-M1-8812 | Biotin-3,4-Dihydroxyphenylacetic acid | Biotin-labeled 3,4-Dihydroxyphenylacetic acid is a compound in which the 3,4-Dihydroxyphenylacetic acid (DOPAC) molecule is conjugated with biotin. Biotin is a vitamin that can be easily detected using various biotin-binding proteins, such as streptavidin or avidin, for labeling and detection purposes. This conjugate is commonly used in biochemical research and molecular biology applications, including protein labeling, enzyme assays, and immunoassays. | price> |
R-M-5360 | SF550-N3 | In addition to its superior fluorescence characteristics (such as high brightness and super light stability), the design of SFTM fluorophores also simplifies the fluorescence labeling and detection process. SFTM fluorophores can be directly used in aqueous working buffer without adding any organic solvent.The elimination of organic solvents can not only simplify the labeling and detection process, but also provide additional protection for molecules from some harsh organic solvents.In addition, SFTM fluorophores provide a variety of chemical reactions and / or bioactive parts, which can be directly used to label, image and detect various molecules and particles.These fluorophores range from ultraviolet to near-infrared and can be used for in vitro and in vivo imaging. | price> |
R-C-4695 | DSPE-PEG-GGGGK(TAMRA)PKTRNSQTQTDRRRRRRRR | 1,2-distearoyl-sn-glycero-3-phosphoethanolamine-polyethylene glycol is a PEG-modified lipids. It is a long circulating liposome membrane, formation of micelles in water dispersion, the critical micelle concentration (CMC) ratio of surfactant is 102 times lower, so the drug stability is better, even by hemodilution, can maintain the integrity of the micelle particle, has certain targeting, easy accumulation in solid tumors. Suitable for the development of long circulating liposomes. | price> |
R-M1-8813 | CY5-Ectoin | CY5 is a red-fluorescent dye that is commonly used in biological research for labeling and detection purposes.By conjugating CY5 with Ectoin,it is possible to track and visualize the distribution and localization of Ectoin in biological samples using fluorescence microscopy or other imaging techniques.This conjugate can be used in studies related to Ectoin protective properties,its cellular uptake and metabolism and its application in various fields such as cosmetics,medicine or biotechnology. | price> |