Science Advances

Supplementary Materials

The PDF file includes:

  • Table S1. Angles between the magnetic field line and the growth direction of supramolecular nanofibers and the growth rate of the MitP-MNP⊂HACD assembly under different magnetic fields.
  • Fig. S1. Synthetic route of MitP-MNP.
  • Fig. S2. Characterization of the synthesized MNP, MitP, and MitP-MNP.
  • Fig. S3. Effect of HA, 1-adamantanecarboxylic acid, and arylazopyrazole on assembly of the nanofibers.
  • Fig. S4. Effect of ADA and artificial magnetic field on aggregation of mitochondria along with the direction of external magnetic field.
  • Fig. S5. Amplified confocal microscopy images of the A549 cells treated by MitP-MNP or MitP-MNP⊂HACD.
  • Fig. S6. Localization of ABP-MNP as negative control.
  • Fig. S7. Effect of MitP-MNP, MitP-MNP⊂HACD, and HACD on cell viability and cell death.
  • Fig. S8. Confocal microscopy images of MitP-MNP⊂HACD in the Matrigel invasion model.
  • Fig. S9. Binding activity of MitP-MNP⊂HACD with the tumor cells (A549-RFP) and the normal cells (293T) and the impact of the nanofibers on the RES organs.

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Other Supplementary Material for this manuscript includes the following:

  • Movie S1 (.mp4 format). Confocal microscopic observation of MitP-MNP and HACD aggregate in the geomagnetism field.
  • Movie S2 (.mp4 format). Confocal microscopic observation of MitP-MNP and HACD aggregate in the geomagnetism field with different sample locations.
  • Movie S3 (.mp4 format). Microscopic observation of MitP-MNP and HACD aggregate upon deviation from Earth’s magnetic field line.
  • Movie S4 (.mp4 format). Microscopic observation of MitP-MNP and HACD aggregate with a canceling system for artificial magnetism fields.
  • Movie S5 (.mp4 format). Microscopic observation of MitP-MNP and HACD aggregate in a metal-caged room.
  • Movie S6 (.mp4 format). Microscopic observation of MitP-MNP and HACD aggregate in an artificial magnetic field (0.308 mT).
  • Movie S7 (.mp4 format). Microscopic observation of MitP-MNP and HACD aggregate in an artificial magnetic field (2.968 mT).

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