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Catalog | name | Description | price |
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R-M-5364 | SF650-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-C-4699 | PEI25000-Adamantane(Ada) | Polyethylene imine (PEI),also known as polyazacyclopropane,is a water-soluble polymer. Colorless or yellowish viscous liquid. Adamantane is an alicyclic hydrocarbon with the smell similar to camphor.It is colorless crystal and easy to crystallize.Its derivatives can be used as drugs. | price> |
R-M1-8817 | NaYF4@NaErYF4@NaYbF4@NaYF4:Tm UCNPs | NaYF4@NaErYF4@NaYbF4@NaYF4:Tm UCNPs are a type of nanomaterial that are capable of converting lower energy photons into higher energy photons through a process known as upconversion.UCNP has low toxicity, photostability, and the ability to emit light in the near-infrared (NIR) region.This unique property makes UCNPs suitable for various applications, including bioimaging, drug delivery, and sensing. | price> |
R-M-5365 | SF650-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-C-4700 | PLA-PEG-PNIPAm | Poly(L-lactide) is a biodegradable functionalamphiphilic block copolymer, the PEG hydrophilic is capped a amine group,it canconjugate with peptides,antibodies,proteins and others which contain NHSgroups on the surface.Poly(N-isopropylacrylamide) (PNIPAM) hydrogel,as an intelligent material,has temperature sensitivity. Because of the special swelling property of PNIPAM hydrogel,it shows potential applications in many aspects,such as controlled release of drugs,biosensors,separation of substances and biocatalysts. | price> |
R-M1-8818 | NaYF4:Er@NaYbF4@NaYF4:Tm UCNPs | NaYF4:Er@NaYbF4@NaYF4:Tm UCNPs are a type of nanomaterial that are capable of converting lower energy photons into higher energy photons through a process known as upconversion.UCNP has low toxicity, photostability, and the ability to emit light in the near-infrared (NIR) region.This unique property makes UCNPs suitable for various applications, including bioimaging, drug delivery, and sensing. | price> |
R-M-5366 | SF650-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-4701 | G0-C8 | G0-Cn compounds was synthesized through ring opening of epoxides by generation 0 of poly(amidoamine) (PAMAM) dendrimers and screened for using a model luciferase-mRNA. Analysis of luciferase-mRNA NPs transfection results showed that G0-C8 had the most effective mRNA transfection ability and was thus chosen as the ionizable lipid-like material for formulating targeted mRNA NPs for in vivo treatments. | price> |
R-M1-8819 | NaYF4:Er,Yb,Nd UCNPs | NaYF4:Er,Yb,Nd UCNPs are a type of nanomaterial that are capable of converting lower energy photons into higher energy photons through a process known as upconversion.UCNP has low toxicity, photostability, and the ability to emit light in the near-infrared (NIR) region.This unique property makes UCNPs suitable for various applications, including bioimaging, drug delivery, and sensing. | price> |
R-M-5367 | SF650-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-4702 | G0-C12 | Synthesis of ionizable lipid-like compounds (G0-Cn). A series of ionizable lipid like compounds termed G0-Cn were synthesized through ring opening of epoxides bearing different alkyl chain lengths by generation 0 of poly (amidoamine) (PAMAM) dendrimers (M1). | price> |
R-M1-8820 | FITC-Gly-CBT | The CBT-Cys click condensation reaction has found wide applicability in recent years. The reaction is highly biocompatible and controllable and runs under physiological conditions. It is based on the condensation between an N-terminal L- or D-Cysteine with the cyano group of CBT. | price> |
R-M-5368 | SF650-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-4703 | G0-C18 | Synthesis of ionizable lipid-like compounds(G0-Cn).A series of ionizable lipid like compounds termed G0-Cn were synthesized through ring opening of epoxides bearing different alkyl chain lengths by generation 0 of poly(amidoamine)(PAMAM)dendrimers (M1). | price> |
R-M1-8821 | Collagen binding peptide(LHERHLNNN) | Collagen binding peptide (LHERHLNNN) is a short peptide sequence that has been identified to have a high affinity for collagen, which is the main structural protein found in connective tissues.The LHERHLNNpeptide sequence contains specific amino acids that interact with collagen, allowing for the specific recognition and binding to collagen fibers. The peptide binding affinity and specificity for collagen make it a valuable tool in various biomedical and biotechnological applications, particularly those involving the interaction with and modification of collagen-rich tissues or materials. | price> |
R-M-5369 | SF650-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-4704 | DSPE-PEG-AE105(D-Cha-F-s-r-Y-L-W-S) | 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.It can couple various polypeptide groups.The AE105 peptide (D-Cha-F-s-r-Y-L-W-s) bound to the uPAR domain III ring 3 was coupled with DOTA. After labeling with 64Cu, the tracer was evaluated for microscopic PET imaging of uPAR expression in nurine xenotransplantation model (uPAR positive and uPAR negative). | price> |
R-M1-8806 | NaYF4:Yb,Tm@NaYF4(water-soluble core shell upconversion nanoparticle,980 excitation,blue light) | NaYF4:Yb,Tm@NaYF4 is a Water soluble core-shell upconversion nanoparticles (980 excitation, blue light),material composition: NaYF4:Yb,Tm@NaYF4 .The particle size is 30-40, the concentration is 10mg/ml,the excitation wavelength is 980 nm, the emission wavelength is 365/450/470 nm±15 nm (blue light), and the surface ligand is PAA.Due to the coating of PAA, these nanoparticles are water-soluble.Therefore, high fluorescence efficiency, nano size and hydrophilicity make it a potential application in the field of biological probes. | price> |
R-M-5370 | SF650-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-C-4705 | DSPE-polyethylene glycol350-AE105(D-Cha-F-s-r-Y-L-W-S) | 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.It can couple various polypeptide groups.The AE105 peptide (D-Cha-F-s-r-Y-L-W-s) bound to the uPAR domain III ring 3 was coupled with DOTA. After labeling with 64Cu, the tracer was evaluated for microscopic PET imaging of uPAR expression in nurine xenotransplantation model (uPAR positive and uPAR negative). | price> |