地址:武汉市洪山区光谷大道35号光谷总部国际时代 二期1栋1301
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艾美捷科技有限公司代理SIRIUS FINE CHEMICALS SICHEM GMBH公司产品。
SIRIUS FINE CHEMICALS SICHEM GMBH公司,主要提供:
点击化学工具(Si-CLICK (Click Chemistry))
PEG试剂(Si-PEGs)
脂质及其衍生物(Si-LIPs (Lipids & Derivatives))
磷酸肌醇试剂(Inositol Phosphates & Phosphoinositides)
核酸及其衍生物(Nucleotides & Derivatives)
API标准品及代谢底物(API Standards & Metabolites)
稳定的同位素(Stable Isotopes)
磷酸化及亚磷酸化试剂(Phosphorylation / Phosphitylation)
精细化学试剂(Fine Chemicals)
更多详情请联系
艾美捷科技有限公司
全国服务热线:400-6800-868
邮箱:sales@amyjet.com
网站:www.amyjet.com
产品列表
| 产品名称 | 产品编号 | 分子式 |
| Click Amino Acid / trans-Cyclooct-4-en – L - Lysine (TCO4/EQ) / EQUATORIAL isomer | SC-8060 | C15H26N2O4 |
| bifunctional Cross-Linking-Amino-Acid / PrDiAzK | SC-8028 | C13H20N4O5 |
| Click Amino Acid / exo-BCN – Fmoc – L - Lysine (BCN) | SC-8038 | C32H36N2O6 |
| Cross-Linking-Amino-Acid / DiAzK | SC-8034 | C11H20N4O4 |
| Click-Amino-Acid / N3-Lys | SC-8027 | C9H17N5O4 |
| Click Amino Acid / cyclopropene – L - Lysine (CP) | SC-8017 | C12H20N2O4 |
| Click Amino Acid / endo-BCN – Fmoc – L - Lysine (BCN) | SC-8015 | C32H36N2O6 |
| Click Amino Acid / trans-Cyclooct-2-en – L - Lysine (TCO*A) | SC-8008 | C15H26N2O4 |
| Click Amino Acid / exo BCN - L - Lysine | SC-8016 | C17H26N2O4 |
| Click Amino Acid / Norbonene-CH2 – L - Lysine (NBO) | SC-8006 | C15 H24 N2 O4 * HCl |
| Click Amino Acid / rac BCN - L - Lysine | SC-8003 | C17H26N2O4 |
| Click Amino Acid / trans-Cyclooct-4-en – L - Lysine (TCO4) / AXIAL isomer | SC-8004 | C15H26N2O4 |
| Click Amino Acid / endo BCN - L - Lysine | SC-8014 | C17H26N2O4 |
| Click-Amino-Acid / PrK - HCl-salt | SC-8002 | C10H16N2O4 * HCl |
| Click Amino Acid (99%) / SCO - L - Lysine - HCO2H-salt | SC-8001 | C15H24N2O4* HCO2H |
| Click Amino Acid (95%) / SCO - L - Lysine - HCO2H-salt | SC-8000 | C15H24N2O4 * HCO2H |
| SCO-NHS carbonate | SC-8076 | C13H15NO5 |
| exo-BCN-NHS carbonate | SC-8075 | C15H17NO5 |
| endo-BCN-NHS carbonate | SC-8074 | C15H17NO5 |
| SCO-PEG7-Maleimide | SC-8305 | C32H51N3O12 |
| SCO-PEG3-Maleimide | SC-8304 | C24H35N3O8 |
| SCO-PEG2-Maleimide | SC-8303 | C22H31N3O7 |
| BCN-exo-PEG7-Maleimide | SC-8205 | C34H53N3O12 |
| BCN-exo-PEG3-Maleimide | SC-8204 | C24H33N3O7 |
| BCN-exo-PEG2-Maleimide | SC-8203 | C24H33N3O7 |
| BCN-endo-PEG7-Maleimide | SC-8105 | C34H53N3O12 |
| BCN-endo-PEG3-Maleimide | SC-8104 | C24H33N3O7 |
| BCN-endo-PEG2-Maleimide | SC-8103 | C24H33N3O7 |
| BCN-exo-PEG8-COOH | SC-8211 | C30H51NO12 |
| BCN-exo-PEG4-COOH | SC-8210 | C22H35NO8 |
| BCN-exo-PEG3-COOH | SC-8209 | C20H31NO7 |
| BCN-exo-PEG8-NHS | SC-8208 | C34H54N2O14 |
| BCN-exo-PEG4-NHS | SC-8207 | C26H38N2O10 |
| BCN-exo-PEG3-NHS | SC-8206 | C24H34N2O9 |
| BCN-endo-PEG3-NHS | SC-8106 | C24H34N2O9 |
| BCN-endo-PEG4-NHS | SC-8107 | C26H38N2O10 |
| BCN-endo-PEG8-NHS | SC-8108 | C34H54N2O14 |
| BCN-endo-PEG8-COOH | SC-8111 | C30H51NO12 |
| BCN-endo-PEG4-COOH | SC-8110 | C22H35NO8 |
| BCN-endo-PEG3-COOH | SC-8109 | C20H31NO7 |
| SCO-PEG3-COOH | SC-8309 | C18H29NO7 |
| SCO-PEG4-COOH | SC-8310 | C20H33NO8 |
| SCO-PEG8-COOH | SC-8311 | C28H49NO12 |
| SCO-PEG8-NHS | SC-8308 | C32H52N2O14 |
| SCO-PEG4-NHS | SC-8307 | C24H36N2O10 |
| SCO-PEG3-NHS | SC-8306 | C22H32N2O9 |
| SCO-PEG7-NH2 | SC-8302 | C25H46N2O9 |
| SCO-PEG3-NH2 | SC-8301 | C17H30N2O5 |
| SCO-PEG2-NH2 | SC-8300 | C15H26N2O4 |
| BCN-exo-PEG2-NH2 | SC-8200 | C17H28N2O4 |
| BCN-exo-PEG3-NH2 | SC-8201 | C19H32N2O5 |
| BCN-exo-PEG7-NH2 | SC-8202 | C27H48N2O9 |
| BCN-endo-PEG7-NH2 | SC-8102 | C27H48N2O9 |
| BCN-endo-PEG3-NH2 | SC-8101 | C19H32N2O5 |
| BCN-endo-PEG2-NH2 | SC-8100 | C17H28N2O4 |
| exo BCN - OH | SC-8033 | C10 H14 O |
| SCO - active ester (p-NPE) | SC-8032 | C15H15NO5 |
| SCO - OH | SC-8030 | C8H12O |
| endo BCN - OH | SC-8029 | C10 H14 O |
| exo BCN - active ester (p-NPE) | SC-8010 | C17H17NO5 |
| TCO4 - NHS carbonate / EQUATORIAL isomer | SC-8073 | C13H17NO5 |
| TCO4 - NHS carbonate / AXIAL isomer | SC-8072 | C13H17NO5 |
| (E)-cyclooct-4-enol / axial - TCO4 / A | SC-8018 | C8H14O |
| TCO4-PEG8-COOH | SC-8411 | C28H51NO12 |
| TCO*-PEG8-COOH | SC-8511 | C28H51NO12 |
| TCO*-PEG4-COOH | SC-8510 | C20H35NO8 |
| TCO4-PEG4-COOH | SC-8410 | C20H35NO8 |
| TCO4-PEG3-COOH | SC-8409 | C18H31NO7 |
| TCO*-PEG3-COOH | SC-8509 | C20H31NO7 |
| TCO*-PEG8-NHS | SC-8508 | C32H54N2O14 |
| TCO4-PEG8-NHS | SC-8408 | C32H54N2O14 |
| TCO4-PEG4-NHS | SC-8407 | C24H38N2O10 |
| TCO*-PEG4-NHS | SC-8507 | C24H38N2O10 |
| TCO*-PEG3-NHS | SC-8506 | C22H34N2O9 |
| TCO4-PEG3-NHS | SC-8406 | C22H34N2O9 |
| TCO*-PEG7-Maleimide | SC-8505 | C32H53N3O12 |
| TCO*-PEG3-Maleimide | SC-8504 | C24H37N3O8 |
| TCO*-PEG2-Maleimide | SC-8503 | C22H33N3O7 |
| TCO4-PEG7-Maleimide | SC-8405 | C32H53N3O12 |
| TCO4-PEG3-Maleimide | SC-8404 | C24H37N3O8 |
| TCO4-PEG2-Maleimide | SC-8403 | C22H33N3O7 |
| TCO*-PEG2-NH2 | SC-8500 | C15H28N2O4 |
| TCO*-PEG3-NH2 | SC-8501 | C17H32N2O5 |
| TCO*-PEG7-NH2 | SC-8502 | C25H48N2O9 |
| TCO4-PEG7-NH2 | SC-8402 | C25H48N2O9 |
| TCO4-PEG3-NH2 | SC-8401 | C17H32N2O5 |
| TCO4-PEG2-NH2 | SC-8400 | C15H28N2O4 |
| (E)-cyclooct-4-en active ester / TCO/E- active ester (p-NPE) / equatorial | SC-8024 | C15H17NO5 |
| (E)-cyclooct-4-en active ester / TCO4 / A- active ester (p-NPE) / axial | SC-8019 | C15H17NO5 |
| TCO*A - active ester (p-NPE) | SC-8007 | C15H17NO5 |
| Fluorescent-PEG8-Me-Tet | SC-8817 | C54H68N8O13 |
| Fluorescent-PEG4-Me-Tet | SC-8816 | C46H52N8O9 |
| Fluorescent-PEG3-Me-Tet | SC-8815 | C44H48N8O8 |
| Me-Tet-PEG8-NHBoc | SC-8820 | C34H56N6O11 |
| Me-Tet-PEG4-NHBoc | SC-8819 | C26H40N6O7 |
| Me-Tet-PEG3-NHBoc | SC-8818 | C24H36N6O6 |
| Biotin-PEG8-Me-Tet | SC-8814 | C39H62N8O11S |
| Biotin-PEG4-Me-Tet | SC-8813 | C31H46N8O7S |
| Biotin-PEG3-Me-Tet | SC-8812 | C29H42N8O6S |
| Me-Tet-PEG9-COOH | SC-8811 | C32H51N5O12 |
| Me-Tet-PEG5-COOH | SC-8810 | C24H35N5O8 |
| Me-Tet-PEG4-COOH | SC-8809 | C22H31N5O7 |
| Me-Tet-PEG9-NHS | SC-8808 | C36H54N6O14 |
| Me-Tet-PEG5-NHS | SC-8807 | C28H38N6O10 |
| Me-Tet-PEG4-NHS | SC-8806 | C26H34N6O9 |
| Me-Tet-PEG8-Maleimide | SC-8805 | C36H53N7O12 |
| Me-Tet-PEG4-Maleimide | SC-8804 | C28H37N7O8 |
| Me-Tet-PEG3-Maleimide | SC-8803 | C26H33N7O7 |
| Me-Tet-PEG8-NH2 - HCl salt | SC-8802 | C29H48N6O9 + HCl |
| Me-Tet-PEG4-NH2 | SC-8801 | C21H32N6O5 |
| Me-Tet-PEG3-NH2 | SC-8800 | C19H28N6O4 |
| Aminopentyl - Tetrazine - HCl-salt | SC-1193 | C18H20N8O * HCl |
| Tetrazine active ester (Tetrazine-NHS) | SC-1194 | C17H11N7O4 |
| Aminopropyl - Tetrazine - HCl-salt | SC-1192 | C16H16N8O * HCl |
| Methyl-Tetrazine - Amine- HCO2H-salt | SC-1191 | C10H11N5* HCO2H |
| Tetrazine - Amine - HCO2H-salt | SC-1190 | C9H9N5 * HCO2H |
| N3-PEG8-t-butyl ester | SC-8923 | C23H45N3O10 |
| N3-PEG5-t-butyl ester | SC-8922 | C17H33N3O7 |
| N3-PEG4-t-butyl ester | SC-8921 | C15H29N3O6 |
| N3-PEG3-t-butyl ester | SC-8920 | C13H25N3O5 |
| Boc-N-Amido-PEG7-N3 | SC-8912 | C21H42N4O9 |
| Boc-N-Amido-PEG3-N3 | SC-8911 | C13H26N4O5 |
| Boc-N-Amido-PEG2-N3 | SC-8910 | C11H22N4O4 |
| Boc-N-Amido-PEG4-Alkyne | SC-8900 | C16H29NO6 |
| Boc-N-Amido-PEG3-Alkyne | SC-8039 | C14H25NO5 |
| TAMRA-PEG8-Alkyne | SC-8717 | C44H57N3O12 |
| TAMRA-PEG4-Alkyne | SC-8716 | C36H41N3O8 |
| TAMRA-PEG3-Alkyne | SC-8715 | C34H37N3O7 |
| TAMRA-PEG7-N3 | SC-8714 | C41H54N6O11 |
| TAMRA-PEG3-N3 | SC-8713 | C33H38N6O7 |
| TAMRA-PEG2-N3 | SC-8712 | C31H34N6O6 |
| Biotin-PEG8-Alkyne | SC-8617 | C29H51N3O10S |
| Biotin-PEG4-Alkyne | SC-8616 | C21H35N3O6S |
| Biotin-PEG3-Alkyne | SC-8615 | C19H31N3O5S |
| Biotin-PEG7-N3 | SC-8614 | C26H48N6O9S |
| Biotin-PEG3-N3 | SC-8613 | C18H32N6O5S |
| Biotin-PEG2-N3 | SC-8612 | C16H28N6O4S |
| Click-Amino-Acid / PrK - HCl-salt | SC-8002 | C10H16N2O4 * HCl |
| Alkyne - PEG2 | SC-0063 | C7H12O3 |
| Azido - PEG1 | SC-0062 | C4H9N3O2 |
| Biotin-PEG8-Alkyne | SC-8617 | C29H51N3O10S |
| Biotin-PEG4-Alkyne | SC-8616 | C21H35N3O6S |
| Biotin-PEG3-Alkyne | SC-8615 | C19H31N3O5S |
| Alkyne - PEG2 - TCA | SC-0067 | C9H12Cl3NO3 |
| Alkyne - PEG2 - CM | SC-0065 | C8H13ClO3 |
| Alkyne - PEG2 | SC-0063 | C7H12O3 |
| TAMRA-PEG7-N3 | SC-8714 | C41H54N6O11 |
| TAMRA-PEG3-N3 | SC-8713 | C33H38N6O7 |
| TAMRA-PEG2-N3 | SC-8712 | C31H34N6O6 |
| Biotin-PEG7-N3 | SC-8614 | C26H48N6O9S |
| Biotin-PEG3-N3 | SC-8613 | C18H32N6O5S |
| Biotin-PEG3-CoenzymeA | SC-8618 | C46H75N12O24P3S2+3NH3 |
| Bis-Cyano-PEG9 | SC-8932 | C22H40N2O9 |
| Bis-Cyano-PEG5 | SC-8931 | C14H24N2O5 |
| Bis-Cyano-PEG4 | SC-8930 | C12H20N2O4 |
| N3-PEG8-t-butyl ester | SC-8923 | C23H45N3O10 |
| N3-PEG5-t-butyl ester | SC-8922 | C17H33N3O7 |
| N3-PEG4-t-butyl ester | SC-8921 | C15H29N3O6 |
| N3-PEG3-t-butyl ester | SC-8920 | C13H25N3O5 |
| Boc-N-Amido-PEG7-N3 | SC-8912 | C21H42N4O9 |
| Boc-N-Amido-PEG3-N3 | SC-8911 | C13H26N4O5 |
| Boc-N-Amido-PEG2-N3 | SC-8910 | C11H22N4O4 |
| Boc-N-Amido-PEG4-Alkyne | SC-8900 | C16H29NO6 |
| Boc-N-Amido-PEG3-Alkyne | SC-8039 | C14H25NO5 |
| Fluorescent-PEG8-Me-Tet | SC-8817 | C54H68N8O13 |
| Fluorescent-PEG4-Me-Tet | SC-8816 | C46H52N8O9 |
| Fluorescent-PEG3-Me-Tet | SC-8815 | C44H48N8O8 |
| TAMRA-PEG8-Alkyne | SC-8717 | C44H57N3O12 |
| TAMRA-PEG4-Alkyne | SC-8716 | C36H41N3O8 |
| TAMRA-PEG3-Alkyne | SC-8715 | C34H37N3O7 |
| TAMRA-PEG7-N3 | SC-8714 | C41H54N6O11 |
| TAMRA-PEG3-N3 | SC-8713 | C33H38N6O7 |
| TAMRA-PEG2-N3 | SC-8712 | C31H34N6O6 |
| TAMRA-PEG8-COOH | SC-8711 | C44H59N3O14 |
| TAMRA-PEG4-COOH | SC-8710 | C36H43N3O10 |
| TAMRA-PEG3-COOH | SC-8709 | C34H39N3O9 |
| TAMRA-PEG8-NHS | SC-8708 | C48H62N4O16 |
| TAMRA-PEG4-NHS | SC-8707 | C40H46N4O12 |
| TAMRA-PEG3-NHS | SC-8706 | C38H42N4O11 |
| TAMRA-PEG7-Maleimide | SC-8705 | C48H61N5O14 |
| TAMRA-PEG3-Maleimide | SC-8704 | C40H45N5O10 |
| TAMRA-PEG2-Maleimide | SC-8703 | C38H41N5O9 |
| TAMRA-PEG7-NH2 | SC-8702 | C41H56N4O11 |
| TAMRA-PEG3-NH2 | SC-8701 | C33H40N4O7 |
| TAMRA-PEG2-NH2 | SC-8700 | C31H36N4O6 |
| Me-Tet-PEG8-NHBoc | SC-8820 | C34H56N6O11 |
| Me-Tet-PEG4-NHBoc | SC-8819 | C26H40N6O7 |
| Me-Tet-PEG3-NHBoc | SC-8818 | C24H36N6O6 |
| Biotin-PEG8-Me-Tet | SC-8814 | C39H62N8O11S |
| Biotin-PEG4-Me-Tet | SC-8813 | C31H46N8O7S |
| Biotin-PEG3-Me-Tet | SC-8812 | C29H42N8O6S |
| Me-Tet-PEG9-COOH | SC-8811 | C32H51N5O12 |
| Me-Tet-PEG5-COOH | SC-8810 | C24H35N5O8 |
| Me-Tet-PEG4-COOH | SC-8809 | C22H31N5O7 |
| Me-Tet-PEG9-NHS | SC-8808 | C36H54N6O14 |
| Me-Tet-PEG5-NHS | SC-8807 | C28H38N6O10 |
| Me-Tet-PEG4-NHS | SC-8806 | C26H34N6O9 |
| Me-Tet-PEG8-Maleimide | SC-8805 | C36H53N7O12 |
| Me-Tet-PEG4-Maleimide | SC-8804 | C28H37N7O8 |
| Me-Tet-PEG3-Maleimide | SC-8803 | C26H33N7O7 |
| Me-Tet-PEG8-NH2 - HCl salt | SC-8802 | C29H48N6O9 + HCl |
| Me-Tet-PEG4-NH2 | SC-8801 | C21H32N6O5 |
| Me-Tet-PEG3-NH2 | SC-8800 | C19H28N6O4 |
| Biotin-PEG8-Alkyne | SC-8617 | C29H51N3O10S |
| Biotin-PEG4-Alkyne | SC-8616 | C21H35N3O6S |
| Biotin-PEG3-Alkyne | SC-8615 | C19H31N3O5S |
| Biotin-PEG7-N3 | SC-8614 | C26H48N6O9S |
| Biotin-PEG3-N3 | SC-8613 | C18H32N6O5S |
| Biotin-PEG2-N3 | SC-8612 | C16H28N6O4S |
| Biotin-PEG8-COOH | SC-8611 | C29H53N3O12S |
| Biotin-PEG4-COOH | SC-8610 | C19H33N3O7S |
| Biotin-PEG3-COOH | SC-8609 | C19H33N3O7S |
| Biotin-PEG8-NHS | SC-8608 | C33H56N4O14S |
| Biotin-PEG4-NHS | SC-8607 | C25H40N4O10S |
| Biotin-PEG3-NHS | SC-8606 | C23H36N4O9S |
| Biotin-PEG7-Maleimide | SC-8605 | C33H55N5O12S |
| Biotin-PEG3-Maleimide | SC-8604 | C25H39N5O8S |
| Biotin-PEG2-Maleimide | SC-8603 | C23H35N5O7S |
| Biotin-PEG7-NH2 | SC-8602 | C26H50N4O9S |
| Biotin-PEG3-NH2 | SC-8601 | C18H34N4O5S |
| Biotin-PEG2-NH2 | SC-8600 | C16H30N4O4S |
| TCO4-PEG8-COOH | SC-8411 | C28H51NO12 |
| TCO*-PEG8-COOH | SC-8511 | C28H51NO12 |
| TCO*-PEG4-COOH | SC-8510 | C20H35NO8 |
| TCO4-PEG4-COOH | SC-8410 | C20H35NO8 |
| TCO4-PEG3-COOH | SC-8409 | C18H31NO7 |
| TCO*-PEG3-COOH | SC-8509 | C20H31NO7 |
| TCO*-PEG8-NHS | SC-8508 | C32H54N2O14 |
| TCO4-PEG8-NHS | SC-8408 | C32H54N2O14 |
| TCO4-PEG4-NHS | SC-8407 | C24H38N2O10 |
| TCO*-PEG4-NHS | SC-8507 | C24H38N2O10 |
| TCO*-PEG3-NHS | SC-8506 | C22H34N2O9 |
| TCO4-PEG3-NHS | SC-8406 | C22H34N2O9 |
| TCO*-PEG7-Maleimide | SC-8505 | C32H53N3O12 |
| TCO*-PEG3-Maleimide | SC-8504 | C24H37N3O8 |
| TCO*-PEG2-Maleimide | SC-8503 | C22H33N3O7 |
| TCO4-PEG7-Maleimide | SC-8405 | C32H53N3O12 |
| TCO4-PEG3-Maleimide | SC-8404 | C24H37N3O8 |
| TCO4-PEG2-Maleimide | SC-8403 | C22H33N3O7 |
| TCO*-PEG2-NH2 | SC-8500 | C15H28N2O4 |
| TCO*-PEG3-NH2 | SC-8501 | C17H32N2O5 |
| TCO*-PEG7-NH2 | SC-8502 | C25H48N2O9 |
| TCO4-PEG7-NH2 | SC-8402 | C25H48N2O9 |
| TCO4-PEG3-NH2 | SC-8401 | C17H32N2O5 |
| TCO4-PEG2-NH2 | SC-8400 | C15H28N2O4 |
| SCO-PEG7-Maleimide | SC-8305 | C32H51N3O12 |
| SCO-PEG3-Maleimide | SC-8304 | C24H35N3O8 |
| SCO-PEG2-Maleimide | SC-8303 | C22H31N3O7 |
| BCN-exo-PEG7-Maleimide | SC-8205 | C34H53N3O12 |
| BCN-exo-PEG3-Maleimide | SC-8204 | C24H33N3O7 |
| BCN-exo-PEG2-Maleimide | SC-8203 | C24H33N3O7 |
| BCN-endo-PEG7-Maleimide | SC-8105 | C34H53N3O12 |
| BCN-endo-PEG3-Maleimide | SC-8104 | C24H33N3O7 |
| BCN-endo-PEG2-Maleimide | SC-8103 | C24H33N3O7 |
| BCN-exo-PEG8-COOH | SC-8211 | C30H51NO12 |
| BCN-exo-PEG4-COOH | SC-8210 | C22H35NO8 |
| BCN-exo-PEG3-COOH | SC-8209 | C20H31NO7 |
| BCN-exo-PEG8-NHS | SC-8208 | C34H54N2O14 |
| BCN-exo-PEG4-NHS | SC-8207 | C26H38N2O10 |
| BCN-exo-PEG3-NHS | SC-8206 | C24H34N2O9 |
| BCN-endo-PEG3-NHS | SC-8106 | C24H34N2O9 |
| BCN-endo-PEG4-NHS | SC-8107 | C26H38N2O10 |
| BCN-endo-PEG8-NHS | SC-8108 | C34H54N2O14 |
| BCN-endo-PEG8-COOH | SC-8111 | C30H51NO12 |
| BCN-endo-PEG4-COOH | SC-8110 | C22H35NO8 |
| BCN-endo-PEG3-COOH | SC-8109 | C20H31NO7 |
| SCO-PEG3-COOH | SC-8309 | C18H29NO7 |
| SCO-PEG4-COOH | SC-8310 | C20H33NO8 |
| SCO-PEG8-COOH | SC-8311 | C28H49NO12 |
| SCO-PEG8-NHS | SC-8308 | C32H52N2O14 |
| SCO-PEG4-NHS | SC-8307 | C24H36N2O10 |
| SCO-PEG3-NHS | SC-8306 | C22H32N2O9 |
| SCO-PEG7-NH2 | SC-8302 | C25H46N2O9 |
| SCO-PEG3-NH2 | SC-8301 | C17H30N2O5 |
| SCO-PEG2-NH2 | SC-8300 | C15H26N2O4 |
| BCN-exo-PEG2-NH2 | SC-8200 | C17H28N2O4 |
| BCN-exo-PEG3-NH2 | SC-8201 | C19H32N2O5 |
| BCN-exo-PEG7-NH2 | SC-8202 | C27H48N2O9 |
| BCN-endo-PEG7-NH2 | SC-8102 | C27H48N2O9 |
| BCN-endo-PEG3-NH2 | SC-8101 | C19H32N2O5 |
| BCN-endo-PEG2-NH2 | SC-8100 | C17H28N2O4 |
| PEG-12 | SC-1512 | C24H50O13 |
| PEG-11 | SC-1511 | C22H46O12 |
| PEG-10 | SC-1510 | C20H42O11 |
| PEG-9 | SC-1509 | C18H38O10 |
| PEG-8 | SC-1508 | C16H34O9 |
| Alkyne - PEG2 - TCA | SC-0067 | C9H12Cl3NO3 |
| Azido - PEG2 - TCA | SC-0066 | C6H9Cl3N4O2 |
| Alkyne - PEG2 - CM | SC-0065 | C8H13ClO3 |
| Azido - PEG2 - CM | SC-0064 | C5H10ClN3O |
| Alkyne - PEG2 | SC-0063 | C7H12O3 |
| Azido - PEG1 | SC-0062 | C4H9N3O2 |
| 2-Methyl-Glycerol | SC-0006 | C4H10O3 |
| 2-Stearoyl glycerol | SC-1171 | C21H42O4 |
| 2-Palmitoyl glycerol | SC-1170 | C19H38O4 |
| 2-Myristoyl glycerol | SC-1169 | C17H34O4 |
| 2-Lauroyl glycerol | SC-1168 | C15H30O4 |
| 2-Linoleoyl glycerol | SC-1167 | C21H38O4 |
| 2-Oleoyl-glycerol | SC-1162 | C21H40O4 |
| SH-6 | SC-0045 | C28H57O9P |
| SH-5 | SC-0044 | C29H59O10P |
| Ins(345)P3*3Na | 3-0-345-Na | C6H12Na3O15P3 |
| Ins(1)P*2K | 1-0-1-2K | C6H11K2O9P |
| myo-Inositol – trispyrophosphate | Pyro-Ins-Na | C6H8Na4O21P6 |
| Ins(123456)P6 | 6-0-123456-Na | C6H18O24P6 * xNa*yH2O |
| Ins(23456)P5*10Na | 5-0-23456-Na | C6H7Na10O21P5 |
| Ins(13456)P5*10Na | 5-0-13456-Na | C6H7Na10O21P5 |
| Ins(12456)P5*10Na | 5-0-12456-Na | C6H7Na10O21P5 |
| Ins(12356)P5*10Na | 5-0-12356-Na | C6H7Na10O21P5 |
| Ins(12345)P5*10Na | 5-0-12345-Na | C6H7Na10O21P5 |
| Ins(1345)P4*8Na | 4-0-1345-Na | C6H8Na8O18P4 |
| Ins(136)P3*6Na | 3-0-136-Na | C6H9Na6O15P3 |
| Ins(134)P3*6K | 3-0-134-K | C6H9K6O15P3 |
| Ins(345)P3*3K | 3-0-345-K | C6H12K3O15P3 |
| Ins(145)P3*6K | 3-0-145-K | C6H9K6O15P3 |
| Ins(145)P3*3Li | 3-0-145-Li | C6H12Li3O15P3 |
| Ins(145)P3*6Na | 3-0-145-Na | C6H9Na6O15P3 |
| Ins(135)P3*6Na | 3-0-135-6Na | C6H9Na6O15P3 |
| Ins(1245)P4*8Na | 4-0-1245-Na | C6H8Na8O18P4 |
| INO-4995 | INO-4995 | C50H86O35P4 |
| Bt3-Ins(356)P3 / PM | 3-2-356 | C42H69O30P3 |
| Bt3-Ins(346)P3 / PM | 3-2-346 | C42H69O30P3 |
| Bt3-Ins(146)P3 / PM | 3-2-146 | C42H69O30P3 |
| Bt3-Ins(135)P3 / PM | 3-2-135 | C42H69O30P3 |
| caged-Ins(145)P3 / PM | cag-iso-2-145-10 | C42H64NO31P3 |
| caged-Ins(145)P3 / PM | cag-iso-2-145-100 | C42H64NO31P3 |
| Bt2-Ins(3456)P4 / PM | 4-2-3456 | C46H76O36P4 |
| Bt2-Ins(1456)P4 / PM | 4-2-1456 | C46H76O36P4 |
| Bt2-Ins(1345)P4 / PM | 4-2-1345 | C46H76O36P4 |
| Bt2-Ins(1356)P4 / AM | 4-1-1356 | C38H60O36P4 |
| Bt3-Ins(356)P3 / AM | 3-1-356 | C36H57O30P3 |
| Bt3-Ins(346)P3 / AM | 3-1-346 | C36H57O30P3 |
| Bt3-Ins(146)P3 / AM | 3-1-146 | C36H57O30P3 |
| Bt3-Ins(134)P3 / AM | 3-1-134 | C36H57O30P3 |
| Bt3-Ins(136)P3 / AM | 3-1-136 | C36H57O30P3 |
| Bt3-Ins(135)P3 / AM | 3-1-135 | C36H57O30P3 |
| Bt3-Ins(145)P3 / AM | 3-1-145 | C36H57O30P3 |
| caged-Ins(145)P3 / PM | cag-iso-2-145-10 | C42H64NO31P3 |
| caged-Ins(145)P3 / PM | cag-iso-2-145-100 | C42H64NO31P3 |
| caged-Ins(145)P3O6 | cag-6-145 | C15H18NO19P3Na6 |
| caged-Ins(145)P3 P4 | cag-0-145 | C14H19NO17P3Na3 |
| PtdIns(345)P3 | Ptd-0-345-16 | C41H82O22P4 |
| PtdIns(45)P2 | Ptd-0-45-16 | C41H81O19P3 |
| PtdIns(34)P2 | Ptd-0-34-16 | C41H81O19P3 |
| PtdIns(5)P | Ptd-0-5-16 | C41H80O16P2 |
| PtdIns(4)P | Ptd-0-4-16 | C41H80O16P2 |
| PtdIns(3)P | Ptd-0-3-16 | C41H80O16P2 |
| PtdIns(1)P | Ptd-0-1-16 | C41H79O13P |
| D-myo-Inositol-1,2-O-cyclohexylidene | SC-0088 | C12H20O6 |
| 23:45- diisopropylidene-myo-Inositol | SC-0079 | C12H20O6 |
| 12:56- diisopropylidene-myo-Inositol | SC-0078 | C12H20O6 |
| D-myo-Inositol-2,3-O-cyclohexylidene | SC-0077 | C12H20O6 |
| 1,4-Di-butyryl-23:56-diisopropylidene-myo-Inositol | SC-0076 | C20H32O8 |
| 3,6-Di-butyryl-12:45-diisopropylidene-myo-Inositol | SC-0075 | C20H32O8 |
| 2,3:4,5-Di-O-Iso-1,6-Di-O-Benzyl-Ins | IOB-Ins-2345 | C26H32O6 |
| 1,2:5,6-Di-O-Iso-3,4-Di-O-Benzyl-Ins | IOB-Ins-1256 | C26H32O6 |
| 3,4,5,6-Tetra-O-Benzyl-Ins | TOB-Ins-3456 | C34H36O6 |
| 1,4,5,6-Tetra-O-Benzyl-Ins | TOB-Ins-1456 | C34H36O6 |
| DEAC-dUTP | SC-9002 | C26H31N4O17P3 |
| 35-PAPS-TEA | SC-9000-TEA | C10H15N5O13P2S x 4 C6 H15 N |
| ACPPS-TEA | SC-0068 | C10H13N5O12P2S + C6H5N |
| 25-PAPS-Li | SC-9001-Li | C10H11Li4N5O13P2S |
| 35-PAPS-Li (CAS: 102029-54-9) | SC-9000-Li | C10H11Li4N5O13P2S |
| EdU | SC-0040 | C11H12N2O5 |
| EdUTP-TEA | SC-0039 | C11H15N2O14P3 * 4(C6H15N) |
| EdUTP | SC-0038 | C11H15N2O14P3 |
| 2'-PAP | SC-0037 | C10H17N5O10P2 |
| 2'-PAP-Na | SC-0036 | C10H15N5Na2O10P2 |
| 3'-PAP-Na | SC-0034 | C10H15N5Na2O10P2 |
| 3'-PAP | SC-0035 | C10H17N5O10P2 |
| Vancomycin hexapeptide | SC-1606 | C59H62Cl2N8O23 |
| Didechloro Vancomycin | SC-1605 | C66H77N9O24 |
| Vancomycin Impurity A | SC-1601 | C65H73Cl2N9O24 |
| Vancomycin Impurity D | SC-1604 | C59H62Cl2N8O22 |
| Vancomycin Impurity C | SC-1603 | C53H52Cl2N8O17 |
| Vancomycin Impurity B | SC-1602 | C66H74Cl2N8O25 |
| INO-4995 | INO-4995 | C50H86O35P4 |
| Fidaxomicin - d7 | SC-1157 | C52H67D7Cl2O18 |
| Podophyllotoxin Derivate | SC-0025 | C21H20O8 |
| Podophyllotoxin Derivate | SC-0026 | C21H21NO7 |
| Clopidogrel Impurity 4 | SC-0099 | C16H16ClNO2S * H2SO4 |
| Gestodene Impurity E | SC-0028 | C21H24O3 |
| Fidaxomicin Metabolite OP-1118 | SC-1158 | C48H68Cl2O17 |
| Prasugrel metabolite M6-d3 (stabilzed) | SC-0093 | C27H25D3FNO5S * HCl |
| Prasugrel metabolite M6 | SC-0092 | C19H22FNO3S |
| Clopidogrel Impurity C | SC-0087 | C16H18ClNO2S |
| Clopidogrel Impurity 3 | SC-0086 | C15H17Cl2NO2S |
| Prasugrel active metabolite M3-d3 (stabilzed) | SC-0033 | C27H25D3FNO5S * HCl |
| Prasugrel active metabolite M3 HCl (stabilized) | SC-0029 | C27H28FNO5S * HCl |
| Fidaxomicin - d7 | SC-1157 | C52H67D7Cl2O18 |
| Methyl 4-(2-hydroxyethyl)benzoate-13C6,2D (Ring-13C6,Ethyl-1,2-D2) | SC-0080 | C4 13C6 H10 D2 O3 |
| Anthracene 13C6 | SC-0074 | 13C6C8H8 |
| Phenanthrene 13C6 | SC-0073 | 13C6C8H8 |
| Naphthalene 13C10 | SC-0072 | 13C10H8 |
| Naphthalene 13C6 | SC-0071 | 13C6C4H8 |
| Prasugrel active metabolite M3-d3 (stabilzed) | SC-0033 | C27H25D3FNO5S * HCl |
| 2-Cyanoethyl N,N-diisopropylchlorophosphoramidite | SC-0091 | C9H18ClN2OP |
| Phosphoramidous acid. N.N-bis(1-methylethyl)-. bis(2-cyanoethyl) ester | SC-0061 | C12H22N3O2P |
| Phosphoramidous acid, N,N-bis(1-methylethyl)-, bis(phenylmethyl) ester | SC-1165 | C20 H28 N O2 P |
| Phosphorodiamidous acid. N.N.N'.N'-tetrakis(1-methylethyl)-. phenylmethyl ester | SC-0060 | C19 H35 N2 O P |
| Phosphoramidous acid. N.N-bis(1-methylethyl)-. 2-cyanoethyl [1-(2-nitrophenyl)ethyl] ester) | SC-0059 | C17 H26 N3 O4 P |
| Dichloro N,N-Diisopropylphosphoramidite | SC-0058 | C6 H14 Cl2 N P |
| Phosphoramidous acid. N.N-bis(1-methylethyl)-. bis(9H-fluoren-9-ylmethyl) ester | SC-0057 | C34 H36 N O2 P |
| Di-tert-butyl chloromethyl phosphate | SC-0011 | C9H20ClO4P |
| Di-benzyl chloromethyl phosphate | SC-0010 | C15H16ClO4P |
| TMe-OHB-DAZA | SC-0300 | C29H37N3O6 |
| TEt-OHB-DAZA | SC-0301 | C32H43N3O6 |
| NEmo2E | SC-0201 | C96H138KN18O30S |
| NEmo1 | SC-0200 | C96H138KN18O30S |
| D-Serine-O-phosphate | SC-1810 | C3H8NO6P |
| Ph-CCA-NH2 | SC-1400 | C16H12N2O |
| Menaquinone 8 / MK 8:8 | SC-1230 | C51H72O2 |
| Allyl-Maleimide | SC-1121 | C7H7NO2 |
| Nor-cisapride Derivative | SC-1161 | C17H25Cl2N3O3 |
| AlK - L - Lysine - HCl-salt | SC-8012 | C10H18N2O4* HCl |
| 4-methyl-2,2-bis(trifluoromethyl)oxazolidin-5-one | SC-0098 | C6H5F6NO2 |
| 3-(5-oxo-2,2-bis(trifluoromethyl)oxazolidin-4-yl)propanoic acid | SC-0097 | C8H7F6NO4 |
| 7-(diethylamino)-4-(hydroxymethyl)-coumarin / DEACM | SC-0096 | C14H17NO3 |
| 3-bromo-4-methyl-7-(diethylamino)-coumarin | SC-0095 | C14H16BrNO2 |
| Xanthohumol | SC-0094 | C21H22O5 |
| IEPOX 4 | SC-0090 | C5H10O3 |
| IEPOX 3 | SC-0089 | C5H10O3 |
| 2-C-Methyl-L-Threitol | SC-0085 | C5H12O4 |
| 2-C-Methyl-D-Threitol | SC-0084 | C5H12O4 |
| 2-C-Methyl-L-Erythritol | SC-0083 | C5H12O4 |
| 2-C-Methyl-D-Erythritol | SC-0082 | C5H12O4 |
| 3-Amino-7-(diethylamino)-coumarine | SC-0081 | C13 H16 N2 O2 |
| Chloromethylpropionate | SC-1164 | C4H7ClO2 |
| 2-(2-fluoro-2-methylpropoxy)-2-methylpropan-1-ol | SC-1163 | C8H17FO2 |
| 1,4-Di-butyryl-23:56-diisopropylidene-myo-Inositol | SC-0076 | C20H32O8 |
| 3,6-Di-butyryl-12:45-diisopropylidene-myo-Inositol | SC-0075 | C20H32O8 |
| Y-27632 | SC-0048 | C14H21N3O *2HCl |
| H-1152 | SC-0053 | C16H21N3O2S*2HCl |
| 3,4,5,6-Tetra-O-Benzyl-Ins | TOB-Ins-3456 | C34H36O6 |
| 1,4,5,6-Tetra-O-Benzyl-Ins | TOB-Ins-1456 | C34H36O6 |
| Biotin-PEG3-CoenzymeA | SC-8618 | C46H75N12O24P3S2+3NH3 |
| TMe-OHB-DAZA | SC-0300 | C29H37N3O6 |
| TEt-OHB-DAZA | SC-0301 | C32H43N3O6 |
| SCO-NHS carbonate | SC-8076 | C13H15NO5 |
| endo-BCN-NHS carbonate | SC-8074 | C15H17NO5 |
| TCO4 - NHS carbonate / EQUATORIAL isomer | SC-8073 | C13H17NO5 |
| TCO4 - NHS carbonate / AXIAL isomer | SC-8072 | C13H17NO5 |
| TCO* - NHS carbonate / EQUATORIAL isomer | SC-8071 | C13H17NO5 |
| TCO* - NHS carbonate / AXIAL isomer | SC-8070 | C13H17NO5 |
| NEmo2E | SC-0201 | C96H138KN18O30S |
| NEmo1 | SC-0200 | C96H138KN18O30S |
| bifunctional Cross-Linking-Amino-Acid / PrDiAzK | SC-8028 | C13H20N4O5 |
| Vancomycin hexapeptide | SC-1606 | C59H62Cl2N8O23 |
| Ph-CCA-NH2 | SC-1400 | C16H12N2O |
| Cross-Linking-Amino-Acid / DiAzK | SC-8034 | C11H20N4O4 |
| PEG-9 | SC-1509 | C18H38O10 |
| PEG-8 | SC-1508 | C16H34O9 |
| Click Amino Acid / cyclopropene – L - Lysine (CP) | SC-8017 | C12H20N2O4 |
<艾美捷科技代理Nanosoftpolymers品牌全系列产品
Nanosoft Polymers(NSP)是一家专注于提供用于治疗、设备和诊断的即用型功能化聚合物和共聚物的企业,旨在弥合聚合物和药物递送之间的差距。NSP生产和销售一系列独特的功能性聚合物、共聚物和聚合物偶联物,其聚合物目录丰富多样,涵盖功能性PLGA - PEG、PLA - PEG、PCL - PEG、脂质PEG、聚(L - 赖氨酸)- PEG、聚(L - 谷氨酸)- PEG和聚乙二醇化试剂等。这些产品可应用于药物/基因递送、封装、细胞粘附和表面修饰等多个研究领域。除了销售现有产品,NSP还专门从事聚合物合成和功能化、纳米颗粒制造、表面改性以及具有广泛分子量范围的反应性低聚物和聚合物的定制合成,能够满足客户多样化的需求。

▍Nanosoftpolymers产品线
● 多糖:是由长链单糖单元通过糖苷键连接而成的高分子碳水化合物,具有良好的生物相容性、无毒性和非免疫原性。
● 抗癌试剂与原料药:提供种类丰富的高品质抗癌试剂与原料药,用于药物研发。
● 脂质:NSP的功能性脂质用于制备脂质体或纳米颗粒,这些脂质体或纳米颗粒可通过脂质头部的官能团进一步进行生物偶联修饰。
● PEI-PEGs:NSP 的 PEI-PEG 聚合物包括 PEG 接枝的支链 PEI和 PEG 偶联的线性PEI,可用于体外和体内将寡核苷酸递送至细胞和组织。
● 聚氨基酸:可提高药物结合物的溶解度和稳定性、药物包封、药物靶向、绕过多药耐药因素、对免疫系统的刺激极小、低毒性以及生物可降解性。
● 脂质 - 聚乙二醇(Lipid-PEGs):提供多样化的脂质及磷脂PEG衍生物,广泛应用于药物递送、脂质体 / 胶束形成、小分子和大分子药物制剂以及表面修饰等领域。
● Poly(amino acid)-PEGs:NSP 的 PEG-PAA 包括聚(L - 赖氨酸)-PEG、聚(L - 谷氨酸)-PEG、聚(L - 天冬氨酸)-PEG 及其功能化共聚物。
● 功能性聚乙二醇:提供多种高品质 PEG 试剂,用于聚乙二醇化、药物递送、生物偶联和表面修饰。NSP 的功能性聚乙二醇包括单线性聚乙二醇、同源双功能聚乙二醇、异源双功能聚乙二醇和多臂聚乙二醇。
● 单体:是一种可通过化学方式或超分子方式与其他分子结合,从而形成(超分子)聚合物的分子。
● 聚酯 - 聚乙二醇(Polyester-PEGs):提供基于聚酯的功能性两亲性嵌段共聚物,如聚乳酸 - 聚乙二醇(PLA-PEG)、聚乳酸 - 羟基乙酸共聚物 - 聚乙二醇(PLGA-PEG)、聚己内酯 - 聚乙二醇(PCL-PEG),用于药物递送研究。
● 按官能团分类的聚合物:包括但不限于:胺基、Boc 或 Fmoc 保护的胺基、羧基、马来酰亚胺基、生物素、叠氮基、巯基、酰肼基、炔基、邻吡啶二硫基(OPSS)、活性琥珀酸酯基、乙烯基砜基(VS)、丙烯酸酯基、硝基苯基碳酸酯基(NPC)、二苯并环辛炔基(DBCO)、叶酸基等。
● 荧光聚合物:提供 “即开即用型” 荧光聚合物,研究人员可借助显微镜或 IVIS 成像技术对聚合物及纳米药物进行追踪。NSP的荧光染料包括罗丹明、荧光素、Cy3、Cy5.0、Cy5.5 及 Cy7 等。
▍Nanosoftpolymers部分产品列表
| 品名 | 货号 | 分子量 | 规格 |
| Hyaluronate Amine | 13390 | 5K, 10K, 50 K, 100 K, 1000 K, 1500 K | 100mg, 1g |
| Hyaluronate Thiol | 24656 | 5K, 10K, 50 K, 100 K, 1000 K, 1500 K | 100mg, 1g |
| Hyaluronic Acid Tetrabutylammonium | 13378 | 50 K, 100 K, 1000 K, 1500 K | 100mg, 1g |
| Methacrylated Hyaluronic Acid (HA-MA) | 13204 | 50 K, 100 K, 1000 K, 1500 K | 100mg, 1g |
| 10-Hydroxycamptothecin | 11999 | 364.35 | 100mg, 500mg, 1g, 5g, 10g |
| 7-Ethyl-10-hydroxycamptothecin | 12007 | 392.4 | 20mg, 100mg, 500mg, 1g |
| Abarelix Acetate | 12014 | 1416.08 | 1mg, 5mg, 10mg, 25mg, 50mg, 100mg |
| Camptothecin | 11992 | 348.35 | 250mg, 500mg, 1g, 5g |
| Cisplatin | 12032 | 300.05 | 100mg, 200mg, 500mg, 1g |
| Cucurbitacin B | 11964 | 558.712 | 5mg, 10mg, 20mg, 50mg, 100mg |
| Cucurbitacin E | 12024 | 556.696 | 1mg, 5mg, 10mg, 25mg |
| Cyclosporine A | 12086 | 1202.61124 | 100mg, 500mg, 1g, 5g, 10g |
| Doxorubicin hydrochloride | 11947 | 579.98 | 50mg, 100mg, 500mg, 1g |
| Irinotecan HCl | 11985 | 677.18 | 20mg, 50mg, 100mg, 500mg |
| Paclitaxel | 11955 | 853.33096 | 50mg, 100mg, 1g, 10g, bulk |
| Topotecan Hydrochloride | 11977 | 457.91 | 20mg, 50mg, 100mg, 500mg |
| β-Lapachone | 12048 | 242.09429 | 10mg, 25mg, 100mg |
| ALC-0315 | 28068 | 766.290 | 50mg, 100mg, 200mg, 1g |
| DLin-KC2-DMA | 27581 | 642.11 | 5mg, 10mg, 25mg, 50mg, 100mg, 200mg |
| DLin-MC3-DMA | 25325 | 642.11 | 50mg, 100mg, 1g, 5g |
| DODAP (18:1) | 26495 | 648.05 | 100mg, 500mg, 1g |
| DODMA | 27967 | 620.104 | 50mg, 100mg, 1g |
| DOTAP (18:1) | 25396 | 698.555 | 100mg, 500mg, 1g |
| DOTMA | 25335 | 670.575 | 50mg, 100mg, 1g |
| DSTAP (18:0) | 26129 | 702.57 | 100mg, 500mg, 1g |
| SM-102 | 27852 | 709.66 | 50mg, 100mg, 200mg, 1g |
| ALC-0315 | 28068 | 766.290 | 50mg, 100mg, 200mg, 1g |
| DLin-KC2-DMA | 27581 | 642.11 | 5mg, 10mg, 25mg, 50mg, 100mg, 200mg |
| DSPC (18:0 PC) | 26737 | 790.145 | 500mg, 1g, 5g |
| DSPE | 13903 | 748.07 | 100mg, 200mg, 500mg, 1g |
| DSPE-Maleimide/DSPE-MAL | 10791 | 898.19 | 50mg, 100mg, 500mg |
| DSTAP (18:0) | 26129 | 702.57 | 100mg, 500mg, 1g |
| SM-102 | 28527 | 709.66 | 50mg, 100mg, 200mg, 1g |

艾美捷科技代理NeXtal Biotechnologies品牌。
NeXtal Biotechnologies 是一家专注于为结构生物学和药物发现领域提供高质量试剂、耗材和工具的公司。公司致力于支持科学家在蛋白质晶体学、小分子晶体学和药物筛选等领域的研究,提供从蛋白质纯化到晶体生长的全流程解决方案。NeXtal Biotechnologies核心业务领域:
(1)蛋白质纯化工具:NeXtal Biotechnologies 提供用于蛋白质纯化的工具和试剂,如亲和层析柱、蛋白质浓缩器和透析设备。
(2)晶体生长试剂:公司提供多种用于蛋白质和小分子晶体生长的试剂,包括结晶筛选试剂盒、缓冲液、沉淀剂和添加剂。
(3)结晶筛选试剂盒:NeXtal Biotechnologies 提供多种结晶筛选试剂盒,如 JCSG+、Morpheus 和 PACT,适用于不同类型的晶体生长实验。
(4)晶体学耗材:提供用于晶体学研究的耗材,如结晶板、密封膜、样品支架和低温冷冻工具。这些耗材与主流X射线衍射仪兼容,支持从晶体生长到数据收集的全流程。
(5)自动化晶体成像系统:NeXtal Biotechnologies 提供自动化晶体成像系统(如 Rock Imager),用于实时监测晶体生长过程,帮助科学家优化晶体生长条件。
(6)药物筛选工具:公司提供用于药物筛选的工具和试剂,如蛋白质-配体结合分析试剂盒和高通量筛选板。
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艾美捷科技代理Azenta品牌。
Azenta Life Sciences致力于使世界各地的生命科学研究机构能更快地将有影响力的突破和疗法推向市场。
Azenta产品和服务包括:
(1)消耗品和仪器:Azenta Life Sciences为各种生命科学行业提供广泛的消耗品和仪器,包括生物样本库、化合物管理、基因组学、合成生物学和基础研究领域。Azenta的产品,如二维编码样品储存管、微孔板检测仪和样品管理系统,支持从基础研究到分子诊断的各种客户应用。
(2)样品储存服务:Azenta Life Sciences是样品和材料储存和管理服务的重要供应商。Azenta与各行各业合作,以满足客户的需求 - 制药、生物技术、学术和医疗保健机构。Azenta的站点遍布全球,通过提供全套可靠的冷链和超冷链样品储存解决方案,随时准备支持研究和发现、药物开发、临床研究、制药和先进的细胞疗法。
(3)样本搬迁和运输:无论是计划实验室搬迁、样本搬迁还是风险缓解以保持业务连续性,Azenta行业领先的受监管生物材料管理专家和高度专业化的冷链物流、运输和搬迁团队都会根据客户的实验室需求提供全套服务。
(4)低温冷冻机、载体和解冻:低温储存、运输和解冻需求的尖端解决方案。
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艾美捷科技特约代理Cloud-Clone公司产品。
Cloud-Clone Corp公司,现有4000种Elisa试剂盒、15000种抗体、7000种蛋白,涵盖人、小鼠、大鼠、牛、猪、兔、鸡、豚鼠、犬、猴、羊、鱼、植物等物种,涉及细胞因子、信号转导、免疫、代谢、内分泌、消化、神经、生殖、肿瘤、激酶、CD/粘附分子等19个领域。
Cloud-Clone Corp. (CCC, Wuhan) is located in Export Processing Zone. Its quality management system is certified with ISO 9001:2008 and ISO 13485:2003. The featured products are reagents for life science research. 75% of the customers come from USA and Europe. Based on profound accumulation of technology and huge resource of primers, cDNAs, plasmids, hybridoma cells, as well as semi-products of detection reagent, CCC can provide 11,000 proteins, 19,000 antibodies and 7,000 immunoassay kits with short lead time. The Protein Center has four production platforms, including polypeptide synthesis platform, small-molecule modification platform, natural protein extraction platform, recombinant protein expression and purification platform using prokaryotic (E.coli) and eukaryotic (yeast, baculovirus or mammalian cells) expression systems. The Antibody Center has established a high-throughput technology platform for monoclonal, polyclonal and cloudclonal antibody production. The Preparation Center focuses on assay kit development and production. At present, its main products include ELISA kits and CLIA kits. The Detection Center is responsible for quality control of all the products, including proteins, antibodies and assay kits. All Cloud-Clone products are inspected by a three-level quality control system, including raw-material QC, semi-finished product QC, and end-product QC.
Cloud-Clone公司的主要产品包括:
AssayKits
Monoclonal antibodies
Polyclonal antibodies
proteins
Cells/CS Extracts/ES Mediums/MS Disease models/DS
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<艾美捷科技代理Box scientific品牌全系列产品
BOX Scientific是一家专注于生命科学领域基于对流的解冻平台的生产商。自2010年在加利福尼亚圣何塞成立以来,BOX Scientific始终致力于程序化样品解冻技术,旨在保持样品完整性、控制过程变异性,并提高临床应用中的数据质量。公司由资深人士Derek Donohue领导,他在制药和基因组诊断领域拥有丰富经验。BOX Scientific的产品以其多功能性、大容量和高速解冻能力,树立了快速、安全和可重复的样品解冻新标准。公司产品包括工位一架解冻站(Station One)、直升机场机架解冻站(Heliport)。

▍BOX Scientific公司产品线
●工位一架解冻站(Station One)
仅使用环境空气即可在极短的时间内解冻冷冻试剂和样品。固定平台设计,实现高通量样品解冻,满足精细样品和试剂的解冻需求。样品和试剂的解冻过程可重复、可程序化,且安全可靠。应用场景:
※适用于需要快速解冻且保持样品完整性的实验室环境。
※特别适用于临床研究和生物样本库管理,确保样品在解冻过程中的稳定性和一致性。
● 直升机场机架解冻站(Heliport)
采用与Station One相同的对流原理,是市场上最大的样品解冻系统。具备自动化集成功能,是首款实现自动化集成的解冻系统。强大的对流系统能将解冻时间缩短多达75%,同时允许解冻后的样品直接无缝过渡到后续自动化流程中。应用场景:
※适用于大规模样品解冻需求,如生物样本库、临床研究机构等。
※特别适用于需要高度自动化和高效解冻的实验室环境,提升整体工作流程的效率和准确性。
▍Box scientific产品列表
<| 货号 | 品名 |
| 1-300-0725 | Station One Rack Thawing Station |
| 1-300-70000 | The Heliport Thawing Station |

艾美捷科技代理Phenomenex品牌。
Phenomenex致力于开发新型分析化学解决方案,以解决工业、临床研究、政府和学术实验室中研究人员的分离和纯化挑战。
一些特色产品包括:
(1)稳健的生物制剂分析:采用新型钛 BioTi™ 生物相容性硬件,可最大限度地减少引发,四个颗粒平台可实现最佳多功能性,九个颗粒化学成分可最大限度地提高选择性和灵敏度。
(2)低流失气相色谱分离:Phenomenex Zebron 气相色谱柱产品组合涵盖广泛的应用。从最简单到最具挑战性的方法,Phenomenex的气相色谱柱技术使Phenomenex能够提供高性能和更快的分析,并实现最复杂基质的最佳分离度和分离。
(3)将样品净化时间缩短 40%:Strata-X PRO 是一种新型创新的固相萃取 (SPE) 吸附剂,可提供更快、更清洁的样品萃取方法,彻底改变传统的 SPE 方法。Strata-X PRO 提供改进且耐用的聚合物吸附剂性能,并结合基质去除技术,提供革命性的解决方案。使用更快的 SPE 方法,可将 SPE 方案的时间至少缩短 40%。无需活化或平衡的更少步骤可创建快速的 SPE 方法,而不会失去 SPE 净化样品的重要性。
(4)在任何系统上均具有超高性能:与传统的全多孔介质相比,Kinetex Core-Shell 技术在效率上有了显着的提高,可用于提高分辨率、显著提高生产率、减少溶剂消耗并降低成本。无论运行的是高效液相色谱 (HPLC) 还是超高效液相色谱 (UHPLC) 方法,Kinetex 核壳系列都能提供出色的性能。Phenomenex设计、制造和销售自己的二氧化硅和有机二氧化硅核壳颗粒。
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艾美捷科技代理Rel Assay Diagnostics品牌全系列产品
Rel Assay Diagnostics(MEGA TIP 集团旗下公司)是一家总部位于加济安泰普(土耳其)的公司,成立于1993年。该公司提供用于氧化应激检测的诊断试剂盒。例如:对氧磷酶检测试剂盒、芳基酯酶检测试剂盒、PON1 192Q/R 表型分型试剂盒、第三代总抗氧化状态 (TAS) 检测试剂盒、总氧化状态 (TOS) 检测试剂盒、氧化应激指数检测试剂盒以及总硫醇检测试剂盒,这些试剂盒可用于检测血清、血浆、细胞裂解液和组织匀浆等样本。

▍Rel Assay Diagnostics产品列表
| 品名 | Volumes | 货号 |
| Total Antioxidant Status Assay Kit | R1:30ml R2:8ml Std:4ml QC L1: 4ml QC L2: 4ml | RL0017 |
| Total Oxidant Status Assay Kit | R1:30ml R2:8ml Std:4ml QC L1: 4ml QC L2: 4ml | RL0024 |
| Paraoxonase assay Kit | R1:30ml R2:6ml | RL0031 |
| Arylesterase Assay Kit | Buffered Diluent:30ml R2:8ml R3:15ml | RL0055 |
| Total Thiol Assay Kit | R1A:0.2ml R1B:15ml R2:30ml R3:6ml | RL0178 |
| Native Thiol Assay Kit | R1:30ml R2:6ml | RL0185 |
| Zinc assay Kit | R1:50ml R2:10ml Std:4ml QC L1: 4ml QC L2: 4ml | RL1116 |
| Zinc assay Kit | 2xR1:50ml 2xR2:10ml Std:4ml QC L1: 4ml QC L2: 4ml | RL2116 |
| Zinc assay Kit | 3xR1:50ml 3xR2:10ml Std:4ml QC L1: 4ml QC L2: 4ml | RL3116 |
| Copper assay Kit | R1:50ml R2:10ml Std:4ml QC L1: 4ml QC L2: 4ml | RL0123 |
| Nadp-IDH Isocitrate Dehydrogenase Assay Kit | R1:30ml QC L1: 3ml QC L2: 3ml | RL0315 |
| Phosphorus (Inorganic) | R1:30ml R2:30ml Std:4ml QC L1: 4ml QC L2: 4ml | RL0247 |
| Glutamate Dehydrogenase | R1:30ml QC L1: 3ml QC L2: 3ml | RL0401 |
| Malate Dehydrogenase | R1:30ml R2:6ml | RL0405 |
| G6PD Glucose 6 Phpsphate Dehydrogenase | R1:30ml R2:8ml QC L1: 4ml QC L2: 4ml | RL0745 |
| G6PD Glucose 6 Phpsphate Dehydrogenase | R1:30 ml R2:8 ml | RL0745 |
| G6PD Glucose 6 Phpsphate Dehydrogenase | QC L1:1ml, QC L2:1ml | RL0745 |

艾美捷科技代理Ducom Instruments品牌全系列产品
Ducom Instruments成立于1978年,以”重新定义测量精度”为使命,专注于设计和制造先进材料测试仪器,分析工具及配套软件,尤其专注于摩擦学。Ducom的仪器所使用的部件均在通过AS9100:2009认证的“航空级”制造工厂生产。Ducom盘式针/球式摩擦测试仪是一种专门用于对块状材料、涂层和润滑剂进行精确且可重复的摩擦学特性测试的仪器。可轻松更换的夹具使用户能够迅速改变摩擦接触的性质,使其与应用需求相匹配。该系统提供了广泛的出厂预设和现场升级选项,使其具有很高的可扩展性,确保可用于各种应用的多年无阻碍研究。

▎Ducom Instruments产品
| 产品名称 | 功能说明 |
| UNITEST - 通用测试平台 | 一款紧凑型通用测试平台,用于机械和摩擦学测试以及 2D 和 3D 表面观察。 |
| 多功能摩擦磨损试验机 (销/球-盘式) | 一款多功能摩擦磨损试验机,标准配置为销/球-盘测试能力,但可通过升级实现更多功能。 |
| 四球试验机 (标准型) - TR 30 系列 | 坚固耐用的落地式 TR-30 系列是四球测试领域超过 35 年的行业标准。提供手动加载和自动加载版本。最新一代 TR 30 系列机器在电子、软件和传感能力方面均有改进。 |
| 四球试验机 (台式) - FBT3 | 新一代紧凑型自动四球试验机,可测试润滑油、润滑脂和添加剂的抗磨损 (WP) 和极压 (EP) 性能。符合多项 ASTM、DIN 和 ISO 标准。 |
| 高频往复摩擦磨损试验机 (HFRR) | 用于柴油、汽油及添加剂润滑性能测试的仪器,但功能远不止于此。也可进行微动磨损测试。完全符合 ASTM D6079、ASTM D7688 及其他全球标准。 |
| 气喷式冲蚀磨损试验机 | 一种固体颗粒冲蚀 (SPE) 测试仪,气体(通常为空气)携带固体颗粒在严格控制条件下冲击试样造成磨损。用于评估材料在室温和高温下的抗冲蚀性能。符合 ASTM G76 和 ASTM G211。 |
| 浆料喷射冲蚀磨损试验机 | 一种固体颗粒冲蚀 (SPE) 测试仪,水携带固体颗粒在严格控制条件下冲击试样造成磨损。可改变颗粒类型、冲击角度和冲击速度。 |
| 水滴(雨滴)冲蚀磨损试验机 | 前缘冲蚀是飞机旋翼、风力涡轮机可靠性等领域的主要关注点。该设备评估材料和涂层在遭受液滴冲蚀 (LDE) 时的行为,以便对其进行工程优化以获得最佳性能和可靠性。 |
| 砂尘及浆料磨料磨损试验机 | 可进行干砂磨料磨损和浆料磨料磨损测试的试验机,符合 ASTM G65、ASTM G105 和 ASTM B611 标准。常用于评估采矿、农业、建筑等存在三体磨料磨损工况中使用的硬面涂层。 |
| 浊点与倾点测试仪 | 一种自动化测试系统,用于评估燃料等流体的低温特性。流体的浊点是蜡开始析出导致流体呈现浑浊状态的温度;倾点是液体因蜡晶形成改变其粘度而停止流动的温度。 |
| 生物摩擦计 | 生物摩擦计是一款设计用于经济有效地筛选用于髋关节、膝关节等假体植入物的生物材料的工具。凭借其执行复杂、生物相关的磨损轨迹和载荷分布的能力,该设备提供了一种在昂贵耗时的关节模拟器测试前筛选出摩擦学性能优异的生物材料的有效方法。 |
| 宾斯基-马丁闭口闪点测试仪 (FPM) | 用于自动测定能形成表面膜液体的闪点的工具。该测试仪常用于测试燃料、生物柴油、润滑油等。 |
| 诺亚克蒸发损失测试仪 | 需要在高温下运行的润滑油可能蒸发。这种蒸发会改变其粘度等性能。这对发动机油尤为重要,因为性能的不利变化会阻碍发动机的性能、效率和保护。 |
| 滚动接触摩擦磨损试验机 | 滑动、滚动及其组合是工程应用中常见的形式。研究块体材料、涂层和润滑剂在此类条件下的性能非常重要,尤其适用于铁路、齿轮等应用。 |
| KRL 剪切稳定性测试仪 | 当油品承受机械剪切时,其粘度会发生变化。KRL 剪切稳定性测试仪是一款独立的剪切稳定性测试仪,专为需要对其高性能油品进行数百小时测试的用户设计。该系统设计用于出色的长期稳定性和控制。 |
| 旋转梁疲劳试验机 (RBFT) | 一种高周疲劳试验机,对旋转的测试试样施加弯曲力矩。 |
| 低温扭矩测试仪 | 当机械在极冷条件下运行时,润滑接触点的油脂可能冻结,从而阻止设备启动或严重限制性能。低温扭矩测试仪可测量启动力矩和运行力矩。在天气极其寒冷时,使用未经适当测试和认证油脂的机械可能无法运行,在某些情况下会造成严重危险。 |
| 滚筒稳定性测试仪 | 可使用滚筒稳定性测试仪评估润滑脂的剪切稳定性。该测试仪精确控制测试腔室内的温度,腔室内装有包含被测润滑脂的钢筒和一个用于机械剪切被测润滑脂的砝码。滚筒稳定性测试后,使用锥入度测试仪测试润滑脂样品。 |
| 冰点测试仪 | 航空燃料的冰点是一个必须测定的非常重要的特性。当飞机爬升或在低温下运行时,燃料可能形成固态烃类晶体。这些晶体会堵塞过滤器并限制流向发动机的燃料,从而可能导致灾难性后果。该冰点测试仪是一种自动系统,可精确检测这些燃料的冰点。 |
| 阿贝尔闭口闪点测试仪 | 这是一款自动闭杯闪点测试仪,用于测定闪点在 -30°C 至 70°C 之间的液体的闪点。该测试仪的自动化使闪点测定安全且准确。 |
| 克利夫兰开口闪点和燃点测试仪 | 克利夫兰闪点测试仪是一款自动开杯闪点和燃点测试仪,常用于润滑油和沥青材料。该测试仪可用于测试暴露在空气中时容易形成易燃混合物的样品。它还可以帮助确定样品是否具有持续燃烧的倾向,即燃点。 |
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艾美捷科技代理EastCoast Bio品牌诊断原料。
EastCoast Bio公司,主要生产诊断试剂行业抗原和抗体,在药物滥用、传染病、动物诊断领域独具特色。EastCoast Bio公司成立于1995年,总部位于美国。该公司致力于提供高质量的抗原、抗体和用于诊断试剂生产的免疫分析试剂。其产品在胶体金和ELISA等免疫测定法中得到了广泛应用,为全球大小型制造商开发自己的免疫测定法提供了有力支持。EastCoast Bio公司提供多种心肌类、肿瘤类、激素类、传染病类等抗原抗体产品。这些产品具有高灵敏度、高特异性和高稳定性等特点,能够满足不同领域的检测需求。例如,心肌类抗原抗体可用于心脏疾病的诊断;肿瘤类抗原抗体可用于肿瘤的早期筛查和疗效监测;传染病类抗原抗体则可用于传染病的诊断和防控。除了抗原和抗体产品外,EastCoast Bio公司还提供一系列用于免疫分析的试剂,如海洋阻断剂、药物滥用抗原抗体(DOA)、血浆蛋白等。这些试剂在免疫测定法中发挥着重要作用,有助于提高检测的准确性和可靠性。EastCoast Bio公司的产品线还包括mRNA疫苗相关产品、化合物、修饰酶以及其他PCR相关试剂等。这些产品为生命科学研究和临床诊断提供了更多的选择和可能性。
" data-original="http://icl.51antibodies.com/template/company/xys_lvse/skin/image/lazyLoad.jpg" alt="艾美捷科技代理EastCoast Bio品牌诊断原料"> 艾美捷科技代理EastCoast Bio品牌诊断原料
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