| Catalog | name | Description | price |
|---|---|---|---|
| R-M1-8702 | BOC-TK-NH2 | BOC-TK-NH2 is a chemical compound that consists of the BOC (tert-butyloxycarbonyl) protective group attached to the amino acid lysine. The abbreviation NH2 represents the amine functional group at the end of the compound. BOC-TK-NH2 is commonly used in peptide synthesis as a protecting group to prevent unwanted reactions during the synthesis process. It can be selectively removed using specific conditions to expose the amine group for further modification or coupling reactions. | price> |
| R-M1-8703 | Fmoc-TK-NH2 | Fmoc-TK-NH2/Fmoc-thioketal-amine is also commonly used in peptide synthesis as a protecting group to prevent unwanted reactions during the synthesis process. Similar to BOC-TK-NH2, Fmoc-TK-NH2 can be selectively removed using specific conditions to expose the amine group for further modification or coupling reactions. The Fmoc protecting group is often removed using bases such as piperidine, which cleaves the Fmoc group and allows for subsequent reactions with the exposed amino group. | price> |
| R-M1-8704 | FITC-TK-NH2 | In FITC-TK-NH2/FITC-thioketal-amine/Fluorescein isothiocyanate-thioketal-NH2/Fluorescein isothiocyanate-thioketal-amine, FITC is typically attached to the ε-amine group of the lysine residue through a stable bond formation. This labeling allows for visualization or quantification of the target molecule in fluorescence-based applications such as fluorescence microscopy,flow cytometry and fluorescence-based assays.FITC-TK-NH2/FITC-thioketal-amine can be used for applications ranging from cellular imaging to protein labeling,where the fluorescence emitted by FITC allows for localization and detection of the labeled molecule. | price> |
| R-M2-10461 | FMOC-NH2-TK-COOH | FMOC-NH2-TK-COOH is a multifunctional small molecule compound widely used in peptide synthesis and smart material construction. | price> |
| R-M2-10501 | CDCA-TK-CDCA | CDCA-TK-CDCA/Chenodeoxycholic acid-Thioketal-Chenodeoxycholic acid is a multifunctional research reagent mainly used for the delivery of bile acid related drugs, the construction of diagnostic and therapeutic probes for liver and gallbladder diseases, and other research. | price> |
| R-M2-10506 | Ferulic acid-TK-Ferulic acid | Ferulic acid-TK-Ferulic acid /Ferulic acid-Thioketal-Ferulic acid is a multifunctional scientific research reagent that integrates dynamic response and antioxidant function. It is a core tool for constructing intelligent drug delivery systems, antioxidant biomaterials, and functionalizing biomolecules. | price> |
| R-M2-10595 | Lys-(Zn)2+ | Lysine-(Zn)2+ is a lysine zinc (II) coordination complex. This complex belongs to the second-generation organic zinc nutritional supplement, which can simultaneously supplement lysine and zinc elements to the body, and is used to improve problems such as growth and development delay, lack of appetite, etc. It can also be electrostatically self-assembled with hyaluronic acid to form spherical colloidal particles of about 300 nm, which has emulsifying activity, and can prepare functional lotion that can slow release zinc ions. It has potential applications in food and medicine fields. This product is only for scientific research and cannot be used on the human body. | price> |
| R-M2-10672 | Propene-TK-Propene | Propene-Thioketal-Propene is a ROS responsive functional monomer. It can be used to prepare ROS sensitive intelligent hydrogels, degradable medical polymers, tumor responsive drug carriers, and to build an integrated imaging treatment platform for diagnosis and treatment. | price> |
| R-M2-10712 | Tyrosine-HA100-300K-TK-butyric acid | Tyrosine-Hyaluronic Acid100-300K-TK-butyric acid is a biomedical macromolecule material obtained by covalently coupling tyrosine and butyric acid through TK cleavable connecting arms on a hyaluronic acid backbone with a molecular weight of 100-300K. It can be used as a biodegradable biological carrier for the construction of targeted drug delivery systems, and the TK linker arm can respond to specific microenvironments by breaking and releasing active components. Relying on the biocompatibility of hyaluronic acid, it can be used for the preparation of tissue engineering hydrogels, while playing the biological activity of tyrosine and the anti-inflammatory and metabolic regulation of butyric acid. | price> |
| R-M2-10841 | TPAT-QN·Ph4B⁻ | TPAT-QN·Ph4B⁻is a type of quaternary ammonium salt ion pair compound of tetraphenylborate, belonging to the forefront research molecules in the fields of organic chemistry and materials chemistry.This type of molecule is often designed as a functional organic salt with special optoelectronic properties, and has potential applications in organic optoelectronic materials, phase transfer catalysis, and other fields. | price> |

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