ASCEND BY NTHRYS
Research Abroad Products

Nano Biotechnology Internship Topics

Browse all focused areas across all internship categories under this field.

Nano Biotechnology Internships with Accommodation

Choose an internship topic, then explore accommodation-enabled internship options at active NTHRYS branch locations in India.

Showing 1–12 of 35 internship topics
CRISPR-Nanoparticle Complex Design and Characterization
Interns will design and synthesize nanoparticle delivery systems (lipid nanoparticles, gold nanoparticles, or polymeric nanoparticles) conjugated with CRISPR components. They will characterize these complexes using techniques such as transmission electron microscopy (TEM), dynamic light scattering (DLS), and zeta potential analysis to optimize size, charge, and stability for cellular delivery.
AI CRISPR Nano-Delivery ResearchView internship →
Machine Learning Models for CRISPR Off-Target Prediction
Interns will develop and train AI algorithms to predict off-target effects of CRISPR-Cas9 systems using genomic datasets and sequence analysis. This includes feature engineering, model validation, and integration of deep learning approaches to improve specificity predictions for clinical applications.
AI CRISPR Nano-Delivery ResearchView internship →
In Vitro Transfection Efficiency Optimization
Interns will conduct cell culture experiments to evaluate CRISPR-nanoparticle delivery efficiency across different cell lines and tissues. They will analyze gene editing outcomes using flow cytometry, qPCR, and next-generation sequencing while systematically varying nanoparticle parameters and transfection conditions.
AI CRISPR Nano-Delivery ResearchView internship →
Computational Modeling of Nano-Delivery Kinetics
Interns will use molecular dynamics simulations and computational modeling to study the interaction between CRISPR components and nanoparticle carriers, including cellular uptake mechanisms and intracellular release dynamics. This involves working with software such as GROMACS or NAMD to predict delivery efficiency.
AI CRISPR Nano-Delivery ResearchView internship →
Biocompatibility and Toxicity Assessment of CRISPR Nanocarriers
Interns will evaluate the safety profile of engineered nanoparticles through in vitro cytotoxicity assays, inflammatory response measurements, and immunogenicity testing. They will analyze cell viability, apoptosis markers, and cytokine production to establish safe dose ranges and optimize biocompatibility for therapeutic applications.
AI CRISPR Nano-Delivery ResearchView internship →
Thiol-Based Surface Chemistry and Ligand Exchange
Interns will explore the synthesis and characterization of thiol-functionalized ligands for gold nanoparticle surface modification. They will perform ligand exchange reactions, optimize binding kinetics, and analyze the resulting nanoparticle stability and optical properties using UV-Vis spectroscopy and dynamic light scattering.
Gold Nanoparticle Surface FunctionalizationView internship →
Peptide and Protein Conjugation to Gold Nanoparticles
This area focuses on the design and immobilization of biomolecules (peptides, antibodies, enzymes) onto gold nanoparticle surfaces. Interns will work on developing bioconjugation protocols, characterizing protein-nanoparticle interactions, and evaluating their applications in biosensing and targeted drug delivery.
Gold Nanoparticle Surface FunctionalizationView internship →
Polyethylene Glycol (PEG) Coating and Biocompatibility Enhancement
Interns will investigate PEGylation strategies to improve gold nanoparticle biocompatibility, circulation time, and reduce immunogenicity. They will synthesize PEG-functionalized nanoparticles, test cellular uptake patterns, and evaluate in vitro biocompatibility using cell culture models.
Gold Nanoparticle Surface FunctionalizationView internship →
Multifunctional Nanoparticle Design for Theranostic Applications
This focused area involves creating gold nanoparticles with multiple functional ligands for simultaneous diagnostic and therapeutic purposes. Interns will design smart nanoparticles with targeting moieties, imaging agents, and drug payloads, then characterize their dual functionality using spectroscopic and cellular assays.
Gold Nanoparticle Surface FunctionalizationView internship →
Surface Plasmon Resonance Engineering and Optical Property Tuning
Interns will study how surface functionalization affects the plasmonic properties of gold nanoparticles and exploit these changes for sensing applications. They will modify nanoparticle surfaces with various ligands, measure shifts in surface plasmon resonance, and develop colorimetric or fluorescence-based biosensors.
Gold Nanoparticle Surface FunctionalizationView internship →
Chitosan Nanoparticle Synthesis and Characterization
Interns will learn to synthesize chitosan nanoparticles using ionic gelation and other methods, followed by comprehensive characterization using techniques such as dynamic light scattering (DLS), transmission electron microscopy (TEM), and zeta potential analysis. This foundational work focuses on optimizing particle size, polydispersity, and surface properties for gene delivery applications.
Chitosan Nanoparticle Gene Delivery ResearchView internship →
Gene Loading and Encapsulation Efficiency Studies
Interns will investigate optimal conditions for loading plasmid DNA and RNA into chitosan nanoparticles, measuring encapsulation efficiency through UV-Vis spectrophotometry and gel electrophoresis. They will explore variables including pH, polymer-to-gene ratios, and incubation times to maximize loading while maintaining genetic material integrity.
Chitosan Nanoparticle Gene Delivery ResearchView internship →
Want to browse internship categories in Nano Biotechnology? Explore all Nano Biotechnology internship categories.