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Microdissection of Primary Renal Tissue Segments and Incorporation with Novel Scaffold-free Construct Technology
Published on: March 27, 2018
pH-Responsive Self-Assembly of Renal-Clearable Nanoparticles in the Kidneys: One Assembly per Endosome
Yingyu Huang1, Jie Zheng1, Mengxiao Yu1
1Department of Chemistry and Biochemistry, The University of Texas at Dallas, 800 W. Campbell Rd., Richardson, Texas 75080, United States.
Abstract:
Renal clearance is traditionally viewed as a passive filtration process governed by fenestrated glomerular capillaries. However, proximal tubular epithelial cells (PTECs) can still actively internalize, transform, and re-eliminate nanoparticles following glomerular filtration. Herein, we report that pH-responsive renal-clearable gold nanoparticles (AuNPs) of ∼2 nm in size can rapidly self-assemble into a single ∼180 nm nanosphere within individual PTEC endosomes in vivo once their isoelectric points (IEPs) overlapping the endocytic pH range (4.5-6.5), which has never been observed at the animal level. This pH-triggered one assembly per endosome delays subsequent reactive oxygen species (ROS)-mediated intracellular biotransformation into larger nanostructures while preserving membrane extrusion-based re-elimination. These findings reveal that endosomal acidity, alongside ROS, is a critical determinant of nanoparticle biotransformation and suggest that tailoring isoelectric points offers a route to control the subcellular assembly and clearance of renal-clearable nanomedicines at the animal level.
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