Mitu C. Acharjee
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Researcher
Faculty Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Mitu C. Acharjee's research program investigates the aggregation and oligomerization of proteins using solid-state nanopore sensors. Recent work has focused on characterizing tau and tubulin protein aggregation, as well as the aggregation and oligomerization of ß-lactoglobulin protein. These studies utilize nanopore technology in conjunction with atomic force microscopy to analyze protein structures and behaviors. Acharjee has published 10 papers, accumulating 204 citations, and holds an h-index of 4. Collaborations include Jiali Li, Bradley Ledden, Brian Thomas, and Bo Ma, all from the University of Arkansas at Fayetteville, with whom Acharjee has co-authored multiple publications.
Metrics
- h-index: 4
- Publications: 10
- Citations: 204
Selected Publications
-
Aggregation and Oligomerization Characterization of ß-Lactoglobulin Protein Using a Solid-State Nanopore Sensor (2023)
-
Tau and tubulin protein aggregation characterization by solid-state nanopore method and atomic force microscopy (2023)
-
Detection of Tubulin and TAU Proteins Aggregations using Solid-State Nanopore and Atomic Force Microscopy (AFM) (2020)
-
Protein Trapping in a Nanopore Well (2020)
-
Nanopores to Interrogate the Conformational Ensembles of Intrinsically Disordered Proteins on a Single-Molecule Level (2020)
-
Estimation of Shape, Volume, and Dipole Moment of Individual Proteins Freely Transiting a Synthetic Nanopore (2019)
-
Electric Field and Ionic Strength Dependent Translocation of Tau Protein Through Solid-State Nanopore (2019)
-
Estimating RNA Polymerase Protein Binding Sites on λ DNA Using Solid-State Nanopores (2018)
-
Characterization of Protein Aggregation by Solid-State Nanopore (2017)
Collaboration Network
Top Collaborators
- Tau and tubulin protein aggregation characterization by solid-state nanopore method and atomic force microscopy
- Aggregation and Oligomerization Characterization of ß-Lactoglobulin Protein Using a Solid-State Nanopore Sensor
- Tau and tubulin protein aggregation characterization by solid-state nanopore method and atomic force microscopy
- Tau and tubulin protein aggregation characterization by solid-state nanopore method and atomic force microscopy
- Tau and tubulin protein aggregation characterization by solid-state nanopore method and atomic force microscopy
- Tau and tubulin protein aggregation characterization by solid-state nanopore method and atomic force microscopy
- Aggregation and Oligomerization Characterization of ß-Lactoglobulin Protein Using a Solid-State Nanopore Sensor
- Aggregation and Oligomerization Characterization of ß-Lactoglobulin Protein Using a Solid-State Nanopore Sensor
- Aggregation and Oligomerization Characterization of ß-Lactoglobulin Protein Using a Solid-State Nanopore Sensor
- Aggregation and Oligomerization Characterization of ß-Lactoglobulin Protein Using a Solid-State Nanopore Sensor
- Aggregation and Oligomerization Characterization of ß-Lactoglobulin Protein Using a Solid-State Nanopore Sensor
- Aggregation and Oligomerization Characterization of ß-Lactoglobulin Protein Using a Solid-State Nanopore Sensor
Similar Researchers
Based on overlapping research topics