bioRxiv Science⌕ Search

Biology subjects

Shalin, K.

Publications and source records attributed to Shalin, K..

2 recordsLinked to original sources

High-density Lipoprotein Inspired Lipid Nanoparticles for Systemic RNA delivery to the Brain

Systemic delivery of nucleic acids to the central nervous system (CNS) remains fundamentally limited by the blood-brain barrier (BBB) and the lack of cell-type specificity. Inspired by endogenous high-density lipoproteins (HDLs) that naturally traverse the BBB, we engineered a library of 112 HDL-inspired lipid nanoparticles (HLNPs) to deliberately program protein corona composition and direct nanoparticle trafficking across the BBB. High-throughput in vivo screening identified HLNPs with robust brain accumulation and preferential enrichment within distinct neural cell populations. Quantitative proteomic analysis revealed that elevated apolipoprotein A-I/apolipoprotein E and vitronectin/apolipoprotein E ratios correlate with enhanced BBB transport. We further demonstrated that neuron-targeted HLNPs delivering PTEN siRNA produced functional recovery and lesion reduction in a murine traumatic brain injury model, while microglia-targeted HLNPs carrying interleukin-10 mRNA potently suppressed neuroinflammation. Together, these findings establish HLNPs as a versatile RNA delivery platform that leverages protein corona programming for enhanced brain delivery and cell-type-selective targeting.

bioengineering↗

Lamin B loss in nuclear blebs is rupture dependent while increased DNA damage is rupture independent

The nucleus houses genetic information and functions separate from the rest of the cell. Loss of nuclear shape results in nuclear ruptures. Nuclear blebs are deformations identified by decreased DNA density, while lamin B levels vary drastically. To determine if decreased lamin B levels are due to nuclear rupture, we used immunofluorescence to measure levels of lamin B and emerin, a nuclear envelope protein that enriches to sites of nuclear rupture. We observed that cell types that exhibit decreased levels of lamin B also show an enrichment of emerin in nuclear blebs. Oppositely, in other cell types, nuclear blebs display maintained levels of lamin B1 and showed no emerin enrichment. To determine how nuclear rupture affects DNA damage, we time lapse imaged nuclear rupture dynamics then fixed the same cells to conduct immunofluorescence of {gamma}H2AX and emerin. We find that DNA damage levels are higher in blebbed nuclei independent of nuclear rupture. Thus, we confirm that lamin B1 loss in nuclear blebs is due to nuclear rupture and blebbed nuclei have increased DNA damage that is independent of rupture. Summary statement (180-200 characters): We measured lamin B and DNA damage in blebbed nuclei to determine the effect of nuclear rupture. We find that nuclear rupture causes loss of lamin B in nuclear blebs but that increased DNA damage in blebbed nuclei is independent of rupture.

cell biology↗