Fabricating Magnetoelectric (ME) Nanorobots and performing extensive microstructure analysis, spectroscopic characterization and biocompatibility tests.
2. Surface functionalization of Nanorobots with biomolecules, chemotherapy drugs as shown in Figure 2 and develop a remotely controlled selectively targeted drug release mechanism.
3. Encapsulating Nanorobots in aligned nanofibres and resin capsulation for controlled exposure capability and Lab-on-A-Chip design for in-vitro targeted single cell (electroporation & transport).
4. Monitoring the neuronal path regeneration in vitro experiments on developed Lab-on-A-chip and neuronal flow monitoring experiments using electroencephalogram (EEG) and bio-impedance analysis.
5. Nanoscale Multiphysics simulation & modelling of magnetoelectric Nanorobot–cell interactions to accurately understand the electrical properties, membrane activities & selective permeation of a single targeted biological cell (both healthy and cancerous