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Bandara, S. R.

Publications and source records attributed to Bandara, S. R..

2 recordsLinked to original sources

Lipid nanoparticle topology regulates endosomal escape and delivery of RNA to the cytoplasm

RNA therapeutics have the potential to resolve a myriad of diseases caused by gene deficiency. Lipid nanoparticles (LNPs) are one of the most successful RNA delivery systems. However, expanding their application hinges on the discovery of next generation LNPs with high potency, cyto-specific targeting, and low side effects. Overcoming the difficulty of releasing cargo from endocytosed LNPs remains a significant hurdle. The endosomal escape of viral and non-viral nanoparticles relies on the topological transformation of membrane fusion pore formation followed by RNA translocation into the cytosol. In this study we show that LNP-RNA nanostructure modulates the energetic cost of LNP fusion with a target membrane. The inclusion of a new class of structurally-active lipids leads to superior LNP endosomal fusion, fast evasion of endosomal entrapment, and efficacious RNA delivery. Specifically, bicontinuous cubic RNA-LNPs, cuboplexes, have significantly higher endosomal escape rates and deliver more RNA compared to regular lamellar LNPs.

bioengineering↗

Lipid droplet structural remodeling in adipose tissue upon caloric excess

Excess calories are stored as triacylglycerols (TAG) and cholesteryl esters (CE) in lipid droplets (LD), and during obesity, LD expansion occurs. X-ray scattering of adipose tissue uncovered that LDs comprise two TAG packing domains: a disordered core and a multilamellar shell. The number of TAG layers increases upon diet-induced obesity and is adipose depot-specific. Further, collagen was highly oriented in brown but randomly dispersed in white fat. We discovered that the bodys surfactant, bile acids (BAs) stimulate remodeling of LD size. Deleting the BA receptor, Farnesoid X receptor (FXR) reduced a hydrophilic BA, {beta} muricholic acid ({beta}-MCA), and enlarged the adipocytes. BA composition is a critical determinant of overall hydrophobicity index and solubilization ability. Accordingly, we found that the obesogenic diet reduced a hydrophobic BA, chenodeoxycholic acid (CDCA). Taken together, these findings implicate that BAs, tissue niches, and diet influence LD structural remodeling. SummaryLipid droplets (LDs) pack triacylglycerols (TAGs) with altered dimensions and exhibit distinct collagen orientation between the white and brown fat depots and are remodeled by bile acids (BAs) such that deletion of BA-receptor, Farnesoid X receptor (FXR) results in adipocyte hypertrophy.

biophysics↗