Tesla Yudhistira
Biochemistry, Genetics and Molecular Biology · The Ohio State University
Publications
19
Citations
393
Est. group size
—
Recurring co-author estimate
Active years
11
Publishing since 2016
Tesla Yudhistira's research focuses on designing fluorescent chemical probes and sensors that can detect specific reactive molecules (like peroxynitrite, superoxide, and hypochlorous acid) inside living cells, often using sulfur- and selenium-containing chemistry. More recent work extends into nanoparticle-based drug delivery systems, including RNA nanotechnology approaches for targeting cancer cells and reducing drug resistance. This research combines organic chemistry, biosensor design, and applications in cell imaging and potential cancer therapeutics.
Publication output was relatively steady from 2017-2021 (about 2-4 papers per year) but has slowed to roughly one publication per year since 2022.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Conjugation of hydrophobic drugs to motile pRNA 4WJ nanoparticles for spontaneous tumor targeting and undetectable toxicity
Nature Protocols · 2026
- Developing Potent Therapeutics for Liver Cancer Chemoresistance via an RNA Nanotech and Series-Circuit-Christmas-Bulb Mechanism Targeting ABC Transporters
Molecular Pharmaceutics · 2025
- Biotinylated Fluorescent Polymeric Nanoparticles for Enhanced Immunostaining
Small Methods · 2023
- Carbon-coated nickel foam for hypochlorous acid sensor
Environmental and Materials · 2023
- A water-soluble boronate masked benzoindocyanin fluorescent probe for the detection of endogenous mitochondrial peroxynitrite in live cells and zebrafish as inflammation models
Dyes and Pigments · 2021
- Inexpensive water soluble methyl methacrylate-functionalized hydroxyphthalimide: variations of the mycophenolic acid core for selective live cell imaging of free cysteine
The Analyst · 2021
- Biosensor and Chemosensor Fluorophores that contain Chalcogenide Centers
Makara Journal of Science · 2020
- Didactic approach recounting advances and limitations in novel glutathione and cysteine detection (reduced GSH probe) with mixed coumarin, aldehyde, and phenyl–selenium chemistry
Methods in enzymology on CD-ROM/Methods in enzymology · 2020
- Imaging of Hypochlorous Acid by Fluorescence and Applications in Biological Systems
Chemistry - An Asian Journal · 2019
- Mycophenolic Acid: Biogenesis, Compound Isolation, Biological Activity, and Historical Advances in Total Synthesis
European Journal of Organic Chemistry · 2019
- Diels–Alder and Stille Coupling Approach for the Short Protecting-Group-Free Synthesis of Mycophenolic Acid, Its Phenylsulfenyl and Phenylselenyl Analogues, and Reactive Oxygen Species (ROS) Probing Capacity in Water
Organic Letters · 2018
- Overriding Phthalate Decomposition When Exploring Mycophenolic Acid Intermediates as Selenium-Based ROS Biological Probes
ACS Omega · 2018
- A Hemicyanine‐Embedded Diphenylselenide‐Containing Probe “HemiSe” in which SePh<sub>2</sub> Stays Reduced for Selective Detection of Superoxide in Living Cells
Chemistry - An Asian Journal · 2018
- Metabolic Responses and Profiling of Bioorganic Phosphates and Phosphate Metabolites in Traumatic Brain Injury
InTech eBooks · 2018
- Thiomaleimide Functionalization for Selective Biological Fluorescence Detection of Peroxynitrite as Tested in HeLa and RAW 264.7 Cells
Chemistry - An Asian Journal · 2017
- Chemistry - An Asian Journal×4
- New Journal of Chemistry×1
- Dyes and Pigments×1
- Organic Letters×1
- Small Methods×1
- Brenna J. C. Walsh
Biochemistry, Genetics and Molecular Biology · Indiana University
- Xiaojun Hu
Chemistry · The Ohio State University
- Seul Ah Lee
Chemistry · Purdue University West Lafayette
- Yaogang Zhong
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Edward G. Sheetz
Chemistry · Indiana University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
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