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10.3390/pharmaceutics12111095

http://scihub22266oqcxt.onion/10.3390/pharmaceutics12111095
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33203082!7697682!33203082
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suck abstract from ncbi


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pmid33203082      Pharmaceutics 2020 ; 12 (11): ä
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  • Manufacturing Considerations for the Development of Lipid Nanoparticles Using Microfluidics #MMPMID33203082
  • Roces CB; Lou G; Jain N; Abraham S; Thomas A; Halbert GW; Perrie Y
  • Pharmaceutics 2020[Nov]; 12 (11): ä PMID33203082show ga
  • In the recent of years, the use of lipid nanoparticles (LNPs) for RNA delivery has gained considerable attention, with a large number in the clinical pipeline as vaccine candidates or to treat a wide range of diseases. Microfluidics offers considerable advantages for their manufacture due to its scalability, reproducibility and fast preparation. Thus, in this study, we have evaluated operating and formulation parameters to be considered when developing LNPs. Among them, the flow rate ratio (FRR) and the total flow rate (TFR) have been shown to significantly influence the physicochemical characteristics of the produced particles. In particular, increasing the TFR or increasing the FRR decreased the particle size. The amino lipid choice (cationic-DOTAP and DDAB; ionisable-MC3), buffer choice (citrate buffer pH 6 or TRIS pH 7.4) and type of nucleic acid payload (PolyA, ssDNA or mRNA) have also been shown to have an impact on the characteristics of these LNPs. LNPs were shown to have a high (>90%) loading in all cases and were below 100 nm with a low polydispersity index (
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