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antifebrin    
退热冰; 乙酰苯胺

退热冰; 乙□苯胺


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  • Preparation and Characterization of Orlistat . . .
    Definitions of orlistat, natural carriers, and prepared BNCs were developed and studied comparatively The fourier transform infrared spectroscopy (FTIR), differential scanning calorimetry (DSC) study revealed that there was no communication between drug associations and environmental carriers
  • Discovery and development of gastrointestinal lipase inhibitors
    The structure of Lipstatin is shown in the table below [28] Orlistat is a semi-synthetic compound, which has a similar structure to lipstatin They differ only in the saturation of the β-alkyl chain, where orlistat is saturated while lipstatin has two double bonds in the side chain [29]
  • Nanosized particles of orlistat with enhanced in vitro . . .
    The results of the in vitro experiments with the orlistat nanoformulation strongly suggest the superiority of such a formulation in in vivo conditions (fed-state conditions) because of the rapid dispersal and increased surface area of nanosized orlistat
  • Chemical Modification and Organelle-Specific Localization of . . .
    In this article, we report the chemical synthesis and biological evaluation of an expanded set of Orlistat-like compounds, with the intention to further dissect and manipulate potential cellular targets of Orlistat
  • chemical structure of orlistat. | Download Scientific Diagram
    Orlistat is a carboxylic ester resulting from the formal condensation of the carboxy group of N-formyl-leucine, which is practically insoluble in water and slightly soluble in methanol 3 It
  • Pharmaceutical Characterization and In Vivo Evaluation of . . .
    In this study, orlistat was loaded onto five types of mesoporous silica with various surface areas, pore volumes, and diameters by the SCMA method using SC-CO 2 The results showed that orlistat was successfully loaded onto mesoporous silica in an amorphous state in all types of mesoporous silica at a drug loading ratio of 20%





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