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Author Correction: Bio-inspired nitric-oxide-driven nanomotor.

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Summary

This study details a correction to the molecular weight of chitosan used in the formation of HLA nanomotors. The corrected molecular weight ensures accurate investigation of nanoparticle formation and behavior.

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Area of Science:

  • Biomaterials Science
  • Nanotechnology
  • Biochemistry

Context:

  • The study investigates the formation mechanism of HLA nanomotors.
  • Understanding nanoparticle self-assembly is crucial for developing novel drug delivery systems.

Purpose:

  • To correct an error in the reported molecular weight of chitosan used in HLA nanomotor synthesis.
  • To ensure the accurate representation of experimental conditions for nanoparticle formation.

Summary:

  • A correction was made to the molecular weight of chitosan (from 5-100 million Da to 3000-6000 Da) used in the synthesis of HLA nanomotors.
  • This adjustment impacts the investigation of nanoparticle formation via electrostatic interactions between amino-enriched substances and L-arginine.
  • The corrected data pertains to the characterization of chitosan-L-arginine (CLA10), polylysine-L-arginine (PLA10), and heparin/folic acid-L-arginine (HFLA10) nanomotors.

Impact:

  • Ensures the reproducibility and accuracy of research on HLA nanomotors.
  • Facilitates correct interpretation of nanoparticle morphology and movement behavior studies.
  • Maintains the integrity of scientific findings related to self-assembled nanostructures.