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Crystal Positioning Systems (CPS)品牌。
Crystal Positioning Systems (CPS)是专业蛋白结晶设备生厂商,包括:Puck 样品槽、液氮箱、运输箱、样品储存和转移用的工具。Crystal Positioning Systems (CPS) 是一家专注于为X射线晶体学和结构生物学领域提供高精度样品定位和自动化解决方案的公司,CPS 的产品旨在帮助科学家在蛋白质晶体学、材料科学和其他相关领域的研究中,实现更高效、更精确的样品定位和数据收集。公司以其创新的技术、高质量的产品和对客户需求的深刻理解而闻名。核心业务领域:
(1)高精度样品定位系统:CPS 提供用于X射线衍射仪的高精度样品定位系统,支持蛋白质晶体和小分子晶体的精确对准。这些系统能够显著提高数据收集的效率和准确性。
(2)自动化晶体成像系统:公司开发了自动化晶体成像系统,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。这些系统通常与X射线衍射仪集成,支持从晶体生长到数据收集的全流程自动化。
(3)机器人样品处理系统:CPS 提供机器人样品处理系统,用于高通量晶体筛选和数据收集。这些系统能够自动处理大量样品,显著提高实验效率。
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<艾美捷科技代理Carbon Solutions品牌全系列产品
Carbon Solutions,Inc.(CSI)是一个在碳纳米管技术领域具有显著影响力的品牌,CSI成立于1998年,位于加利福尼亚州里弗赛德。公司自成立之初就明确了其核心目标,即批量生产单壁碳纳米管(SWNT)。CSI因其生产的高质量碳纳米管材料而享有盛誉,已成为领先的纳米技术公司之一。公司能够生产几乎适用于任何应用的碳纳米管,这得益于其对单壁纳米管进行化学处理的能力,从而引入必要的化学官能团,以与常见的工业过程兼容。此外,CSI还是纯度评估技术开发领域的领导者,并制定了碳纳米管工业销售的质量控制和质量保证标准。

▍Carbon Solutions产品列表
| 品名 | Carbonaceous_Purity | METAL CONTENT | 规格 | 描述 |
| AP-SWNT | 60 - 70% | < 30 wt% from TGA in air | 1 gram | As prepared single-wall carbon nanotubes |
| P2-SWNT | > 90% | 4 - 8 wt. % from TGA in air | 0.5 grams | Purified, low functionality single-wall carbon nanotubes |
| P3-SWNT | > 90% | 5 - 7 wt. % from TGA in air | 0.5 grams | Purified, high functionality single-wall carbon nanotubes |
| P33-SWNT | > 90% | 4 - 6 wt. % from TGA in air | 0.1 grams | Ultra high purity SWNTs with 1– 3 atomic % carboxylic acid groups, which can be derivatized with a variety of functional groups. |
| P5-SWNT | > 90% (65% ± 15% SWNT loading) | 4 - 6 wt. % from TGA in air | 0.1 grams | Organic soluble, single-wall carbon nanotubes functionalized with ODA |
| P7-SWNT | > 90% (80% ± 10% SWNT loading) | 4 - 6 wt. % from TGA in air | 0.1 grams | Water soluble (single-wall carbon nanotubes functionalized with PEG) |
| P8-SWNT | > 90% (35% ± 10% SWNT loading) | 1 - 3 wt. % from TGA in air | 0.1 grams | Water soluble (functionalized with PABS) |
| P9-SWNT | > 90% | 5 - 8 wt. % from TGA in air | 0.1 grams | Amide functionalized SWNTs |
| i-SWNT | > 45% | < 30 wt. % from TGA in air | 1 gram | Industrial grade electric arc SWNTs synthesized using Ni/Y catalyst |
| ip-SWNT | > 90% | > 5 wt. % from TGA in air | 1 gram | Industrial grade SWNTs purified by air oxidation and subsequently treated to remove the catalyst. Low functionality and low chemical doping |
| ipcx-SWNT | > 90% | > 5 wt. % from TGA in air | 1 gram | Industrial grade purified SWNTs with carboxylic acid groups |
| GO | N/A | N/A | 0.5 grams | Graphene oxide |
| rGO | N/A | N/A | 0.5 grams | Synthesized by reduction of GO using sodium borohydride. |
| NrGO | - | < 1 wt. % from TGA in air | 0.5 grams | Nitrogen-doped reduced graphene oxide |

艾美捷科技代理Nordmark Biochemicals酶制剂。
SERVA Electrophoresis GmbH专业生产生化试剂,两性电解质、等电聚焦蛋白 Marker 等电泳试剂,IEF 预制胶、上样梳等电泳耗材,高性能等电聚焦电泳系统设备等产品。SERVA Electrophoresis GmbH总部位于德国海德堡。该公司在生命科学领域,特别是蛋白质研究、分子生物学和生物化学方面,提供高质量的电泳设备和试剂。
Nordmark Biochemicals 是 Nordmark Pharma GmbH 的一个业务部门,专注于生物化学领域的产品开发和生产。该部门主要提供用于制药、生物技术和研究领域的高纯度酶和生化试剂。Nordmark Biochemicals提供多种通用型胶原酶、温和型胶原酶、GMP 级胶原酶和中性蛋白酶等,适用于多种细胞,如:胰岛、脂肪细胞、肝细胞、心肌细胞、干细胞、树突细胞、肿瘤细胞等。应用领域:Nordmark Biochemicals 的生产设施符合国际质量标准,如 GMP(良好生产规范)和 ISO 认证,确保产品的高质量和一致性。
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艾美捷科技特约代理BioPorto Diagnostics A/S公司产品。
BioPorto Diagnostics A/S公司成立于2001年,是丹麦一家专门生产抗体和基于抗体的各种生物产品的公司。BioPorto拥有Bioporto Diagnostics和Antibodyshop两个品牌,分别侧重于诊断试剂盒和抗体产品。在30多个国家有代理商,产品销售网络遍布全球,99%以上为出口销售。BioPorto Diagnostics旗下产品主要为几种临床快速诊断试剂盒,包括诊断早期急性肾损伤的NGAL ELISA kit,Gc-globulin ELISA kit ,评估原发性免疫缺陷的MBL Oligomer ELISA kit,同时还有相关其他种属的科研用试剂盒和抗原抗体。其最新推出的产品有检测人体血浆中的活性蛋白C-蛋白C抑制物(APC-PCI)复合物的APC-PCI ELISA kit,高纯度人IgE单克隆抗体,以及Glucagon-like peptide-1和Exendin-4相关的单抗。
BioPorto Diagnostics A/S is an in-vitro diagnostics company that provides healthcare professionals in clinical and research settings a range of diagnostic tests and antibodies. Our pioneering product portfolio includes assays for underserved disease states such as NGAL for acute kidney injury. We sell our products in more than 80 countries through diverse sales channels and partners. BioPorto has its headquarters in Copenhagen, Denmark and is listed on the Nasdaq Copenhagen stock exchange.
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<艾美捷科技代理GenXPro品牌全系列产品
GenXPro GmbH成立于2005年,由来自法兰克福大学和巴黎大学的分子生物学家创立,是下一代测序(NGS)、qPCR和生物信息学创新解决方案的领先提供商。GenXPro公司专注于提供尖端的研究试剂盒、软件和数据分析工具,以快速、可靠地解析DNA、RNA、DNA甲基化和小RNA。作为定量基因组学的创新者,GenXPro在2008年获得了TrueQuant专利,这是一项利用唯一分子标识符(UMI)消除PCR引入偏差的突破性技术,该技术集成了几乎所有的技术和试剂盒,确保了最高准确性。其技术与应用包括多个方面:转录组学、基因组DNA分析、表观遗传学、微生物组学和宏基因组学、qPCR 和数字 qPCR 服务、生物信息学、cDNA 末端的大规模分析-MACE-SeqRNA-测序、smallRNA/miRNA-序列、16S rRNA V3-V4 微生物组测序、适配体和扩增子、健康与精准医疗、生物标志物、动植物育种、非模式生物、COVID-19/SARS-CoV-2 qPCR。

▍GenXPro公司主要服务
● 数据预处理:提供数据的解复用、清洗、过滤和质量检查服务,确保后续分析的数据质量。
● 比对和变异检出:能够将序列与所选的参考基因组进行比对,鉴定遗传变异、基因计数、转录本计数、p值和其他特征、图和质量信息,帮助用户深入了解基因层面的变化。
● 数据解释:运用复杂的算法和分析工具,方便用户获取全面的见解,使复杂的生物信息学数据更易于理解和应用。
| MACE-Seq Service | RNA-Seq Service | Exome-Seq Service | 5'-MACE-Seq Service |
| Degradome-Seq Service | Ribo-Seq Service | Methyl-Seq Service | CAGE-Seq Service |
| Whole-Genome-Seq Service | tRNA-Seq Service | ATAC-Seq Service | PanRNA-Seq Service |
| Targeted Metagenomics (16S/18S) Service | smallRNA-Seq Service | DNA-Seq Service | CoV-Seq Service |
| Targeted Metagenomics (16S) Service | Amplicon-Seq Service | Aptamer-Seq Service | QC of RNA |
▍GenXPro产品列表
| 品名 | 产品描述 |
| Control Human Reference RNA | This Control Human Reference RNA serves as a positive control for use with the TrueQuant MACE-Seq library preparation kit and other NGS protocols. It is suitable for various RNA-seq applications, including library preparation and sequencing workflows. |
| DNA Removal Kit | The DNA Removal Supplementary Kit eliminates residual genomic DNA by specifically degrading DNA while preserving the integrity of RNA. |
| FFPE Enhancer for MACE-Seq | FFPE Supplementary Kit is designed to adress Formalin-Fixed Paraffin-Embedded (FFPE) or substantial RNA degradated or fragmented samples, improving cDNA synthesis. |
| Nuclease-free Water | - |
| qPCR Supplement Kit for MACE-Seq | The qPCR Supplementary Kit is designed to determine the precise cycle number required for the subsequent PCR amplification of the library |
| qPCR Supplement Kit for small RNA-Seq | The qPCR Supplementary Kit is designed to determine the precise cycle number required for the subsequent PCR amplification of the library. |
| TE Buffer | - |
| TrueQuant MACE-Seq Kit | TrueQuant MACE-Seq Library Preparation Kit with UMI and UDI for in-house preparation of high-sensitive 3'mRNA-Seq including patented UMI-adapters (WO2009152928A2) for genome wide gene expression analyses of poly-adenylated RNA. |
| TrueQuant small RNA-Seq Kit (V2) | TrueQuant small RNA-Seq Library Preparation Kit (V2) including patented UMI-adapters (WO2009152928A2) for high-sensitive smallRNA-Sequencing of any RNA between 20 and 80 bps, suited for EV-derived and single-cell amounts of RNA, detects miRNA, piRNA, siRNA. snRNA/U-RNA, snoRNA, srRNA, tRF, ysRNA viral or bacterial RNA. |
| RSE Kit | Kit for region-specific extraction (RSE, Generation BIotech) for target enrichment prior to sequencing by NGS. |
| GXP-16s V3V4 rRNA Kit | Kit for amplfication and sequencing of 16s rRNA-coding regions (V3 and V4) for high-resolution quantification of members of bacterial communities. |
| TrueQuant DNA Library Preparation Kit | - |
| TQ-I5; Dual Index Adapter with p7+p5 UMI Index | - |
| TQ-I7I5; Dual Index Adapter with p7+p5 UMI Index | - |
| TQ-DNA-Seq-Library-Preparation Kit | - |

艾美捷科技代理Innovagen品牌。
Innovagen是一家专注于肽相关产品和服务的生物技术公司,提供从肽合成到定制服务的全方位解决方案,广泛应用于科研、药物开发和诊断等领域。
Innovagen产品及服务包括:
(1)肽合成:
定制肽合成:根据客户需求合成各种长度和修饰的肽。
高通量肽合成:适用于大规模筛选和库构建。
(2)肽库:
现货肽库:涵盖多种生物活性肽。
定制肽库:根据客户需求设计合成。
(3)修饰肽:
荧光标记肽:用于追踪和检测。
生物素化肽:用于亲和纯化和检测。
磷酸化肽:用于激酶研究和信号转导研究。
(4)抗体生产:
肽抗原设计:帮助客户设计用于抗体生产的肽抗原。
抗体生产服务:提供从免疫到纯化的全套服务。
(5)分析与纯化:
肽纯度分析:使用HPLC和质谱确保高纯度。
肽纯化服务:提供HPLC纯化服务。

艾美捷科技代理ALZET品牌渗透泵产品。
GroPep专注于生产用于细胞培养、蛋白质研究和药物开发领域的高质量生物活性肽、重组蛋白和相关试剂。GroPep公司的产品广泛应用于细胞生物学、干细胞研究、癌症研究和再生医学等领域。GroPep公司的主要产品类别是:
1. 生物活性肽
IGF-1(胰岛素样生长因子-1):促进细胞生长、分化和存活,广泛应用于细胞培养和组织工程。
IGF-2(胰岛素样生长因子-2):支持细胞增殖和组织修复。
Long™R3 IGF-1:IGF-1 的类似物,具有更长的半衰期和更高的生物活性。
Des(1-3)IGF-1:截短形式的 IGF-1,具有增强的生物活性。
2. 重组蛋白
重组人 IGF-1:高纯度重组蛋白,用于细胞培养和生物医学研究。
重组人 IGF-2:支持细胞生长和组织再生。
重组人 FGF(成纤维细胞生长因子):用于干细胞研究和组织工程。
3. 细胞培养添加剂
GROVT™ 细胞培养基添加剂:用于优化无血清细胞培养基,支持细胞生长和增殖。
Recombination™ 细胞培养因子:包括 IGF 和 FGF 等,用于干细胞和原代细胞培养。
4. 抗体和检测试剂
抗 IGF-1 抗体:用于 ELISA、Western Blot 和免疫组化实验。
抗 IGF-2 抗体:高特异性抗体,用于检测 IGF-2 表达。
IGF 结合蛋白(IGFBP)检测试剂:用于研究 IGF 信号通路。
5. 干细胞研究试剂
干细胞培养基添加剂:用于支持干细胞的自我更新和分化。
干细胞生长因子:包括 IGF、FGF 和 EGF 等,用于优化干细胞培养条件。
6. 药物开发工具
IGF 受体抑制剂:用于研究 IGF 信号通路在癌症中的作用。
肽类药物开发工具:提供高纯度肽类分子,用于药物筛选和开发。
7. 定制服务
定制肽合成:根据客户需求合成特定序列的肽。
重组蛋白表达和纯化:提供高质量的重组蛋白定制服务。

艾美捷科技代理ReVacc Scientific品牌
ReVacc Scientific为科学发现、临床诊断和疾病治疗提供可靠的病毒学和免疫学产品和服务。
▍ReVacc Scientific公司产品
● 假病毒:带有报告基因(如荧光素酶)的假病毒,为样本高通量筛选提供了高效的解决方案。基于多种技术平台,ReVacc Scientific生产针对冠状病毒、丝状病毒或高致病性禽流感病毒的假病毒。
● 重组蛋白:公司专注于生产带有关键中和表位的蛋白质,这些蛋白质应用在疫苗、诊断和治疗三大重要领域。核心优势有:使用真核表达系统(哺乳/昆虫细胞)确保获得正确的翻译后修饰;生产的蛋白质能正确组装成其天然的多聚体状态(如二聚体、三聚体)。
● 单克隆抗体:大多数抗体具有中和活性,具有阻断病原体感染细胞的能力。
● 检测试剂盒:用于检测人、小鼠或兽医动物样本中的 IgG 或抗原水平,操作简便。
● 克隆工具:一步法高效组装;一分钟高效转化。

▍ReVacc Scientific公司服务
● 样本中和抗体效价评估:在符合生物安全要求的前提下,为您测定样本的中和活性;
● 定制化蛋白生产:根据需求生产携带特定突变的定制化蛋白;
● 定制化假病毒构建:根据需求生产携带特定突变的定制化假型病毒。
● 诊断试剂盒定制开发:根据需求开发定制试剂盒
● 定制化抗体发现:开发了多色表位特异性单细胞分选技术 (MESCS®),并结合重组单克隆抗体技术,从不同物种样本中发掘有价值的抗体。
● 抗体工程化改造:抗体人源化、抗体标记、抗体核苷酸序列测定、抗体同种型转换抗体格式转换以及抗体种属转换。
● 流式细胞分选服务:用于分选具有特定光散射和荧光特性的细胞群。
▍ReVacc Scientific部分产品列表
| 分类 | 品名 | 货号 | 规格 |
| Pseudovirus Reporter | VSV-Pseudovirus_SARS-CoV-2 WT (Wuhan Strain) Spike with luciferase reporter | P14N41 | 200 μl;1000 μl |
| Pseudovirus Reporter | Pseudovirus_RSV Fusion with Luciferase Reporter (A2 strain) | P11A48 | 200 μl;1000 μl |
| Pseudovirus Reporter | Lenti-Pseudovirus_SARS-CoV-2 (Wuhan Strain) Spike with luciferase reporter | O21F29 | 1.1ml;5.5ml |
| Pseudovirus Reporter | VSV-Pseudovirus_MERS-CoV Spike with luciferase reporter | T53L53 | 200 μl;1000 μl |
| Pseudovirus Reporter | VSV-Pseudovirus_SARS-CoV (2003 strain) Spike with luciferase reporter | V44X39 | 200 μl;1000 μl |
| Monoclonal Antibody | Anti-Dengue E Domain III Monoclonal Neutralizing Antibody | K34Q76 | 100 μg;500 μg |
| Monoclonal Antibody | Anti-Ebola Broad Neutralizing Antibody | P5N48 | 100 μg;500 μg |
| Monoclonal Antibody | Anti-HCV E2 Neutralizing Monoclonal Antibody | X81H49 | 100 μg;500 μg |
| Monoclonal Antibody | Anti-Herpes Simplex Virus gD Antibody | Y48B93 | 100 μg;500 μg |
| Monoclonal Antibody | Recombinant Human Anti-hMPV Fusion IgM Antibody | R7V27 | 20 μg;100 μg |
| Monoclonal Antibody | Recombinant Human Anti-hMPV Fusion IgA Antibody | A89X2 | 20 μg;100 μg |
| Recombinant Protein | Dengue virus 1 E protein | R22F8 | 100 μg;500 μg |
| Recombinant Protein | Ebola Sudan GP protein | B78A28 | 100 μg;500 μg |
| Recombinant Protein | Ebola Zaire Makona GP protein | P54P89 | 100 μg;500 μg |
| Recombinant Protein | Herpes simplex virus (HSV) gD protein (Type 1) | L61Q82 | 100 μg;500 μg |
| Recombinant Protein | HIV-1 Trimeric GP140 protein-clade B, YU2 strain | W44H24 | 100 μg;500 μg |
| Test kit | Human Kallikrein 3/PSA Quantitative ELISA (Ultra-sensitive) | S64N86 | 96-well |
| Test kit | Human Anti-Cytomegalovirus gB Protein Antibody IgG Titer Serologic Assay Kit | W19V42 | 96-well |
| Test kit | Human Anti-Dengue Antibody IgG Titer Serologic Assay Kit (E) | P76A64 | 96-well |
| Test kit | Human Anti-Ebola Antibody IgG Titer Serologic Assay Kit (Trimeric GP) | P78G86 | 96-well |
| Test kit | Human Anti-HIV-1 Antibody IgG Titer Serologic Assay Kit (Trimeric GP140) | R29T18 | 96-well |
| Cloning | Seamless Assembly Master Mix (2X) | Q72R56 | 50μl; 250μl;1ml |
| Cloning | One-Minute Competent Cells (Stbl2 similar) | L86Z19 | 8 x 50 μl; 96 x 50 ul |
| Cloning | One-Minute Competent Cells (DH5 Alpha) | L2A1 | 8 x 50 μl; 96 x 50 ul |

艾美捷科技代理Smartox Biotechnology品牌。
Smartox Biotechnology主要提供肽类药物开发、神经科学、离子通道研究领域相关研究工具。
Smartox Biotechnology技术优势包括:
(1)高纯度肽合成: 采用先进的合成技术,确保肽类药物的高纯度和高活性。
(2)离子通道研究: 在离子通道调节剂开发方面具有深厚的技术积累。
(3)定制化服务: 提供灵活的定制肽合成和药物开发服务,满足客户需求。应用于神经科学研究: 研究神经系统疾病和开发新疗法;药物开发: 用于开发针对离子通道和神经受体的新药;生物医学研究: 用于研究肽类药物在生物医学中的应用。
Smartox Biotechnology公司主要业务包括:
(1)肽类药物:提供多种高纯度的肽类药物,用于神经科学和药物开发。
(2)离子通道调节剂:开发针对离子通道的调节剂,用于研究和治疗神经系统疾病。
(3)定制肽合成:根据客户需求,提供定制化的肽合成服务。
(4)药物开发服务:提供从肽设计到临床前开发的全流程服务。
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