Ping Pei
Biochemistry, Genetics and Molecular Biology · The Ohio State University
Publications
93
Citations
991
Est. group size
~3
Recurring co-author estimate
Active years
27
Publishing since 1999
Ping Pei's work centers on developing local drug-delivery systems, such as mucoadhesive gels and nanoparticles, for preventing and treating oral cancers and premalignant oral lesions. Much of this research involves testing natural compounds like black raspberry anthocyanins and retinoid-based drugs (e.g., fenretinide) for their effects on oral tissue, gene expression, and cancer-related biomarkers. The publication record also includes some unrelated items on drug delivery methods and other biomedical topics, suggesting either interdisciplinary work or shared authorship with other research groups.
Publication output was low and sporadic from 2017-2022, then spiked dramatically in 2023 (53 outputs, largely supplementary data files tied to a few core studies) before dropping back to low levels in 2024-2025.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Esketamine Regulates Mitophagy through ULK1/FUNDC1 Signaling Pathway to Improve LPS-induced Acute Respiratory Distress Syndrome
Current Pharmaceutical Design · 2025
- Electrohydrodynamic Jetting of Mucoadhesive Protein Nanoparticles as a Chemopreventive Strategy for Oral Squamous Cell Carcinoma
Macromolecular Bioscience · 2025
- Mucopenetrating Janus Nanoparticles For Field-Coverage Oral Cancer Chemoprevention
Pharmaceutical Research · 2023
- Supplementary Figure 1 from Topical Application of a Mucoadhesive Freeze-Dried Black Raspberry Gel Induces Clinical and Histologic Regression and Reduces Loss of Heterozygosity Events in Premalignant Oral Intraepithelial Lesions: Results from a Multicentered, Placebo-Controlled Clinical Trial
2023
- Supplementary Table 2 from Topical Application of a Mucoadhesive Freeze-Dried Black Raspberry Gel Induces Clinical and Histologic Regression and Reduces Loss of Heterozygosity Events in Premalignant Oral Intraepithelial Lesions: Results from a Multicentered, Placebo-Controlled Clinical Trial
2023
- Supplementary Table 1 from Topical Application of a Mucoadhesive Freeze-Dried Black Raspberry Gel Induces Clinical and Histologic Regression and Reduces Loss of Heterozygosity Events in Premalignant Oral Intraepithelial Lesions: Results from a Multicentered, Placebo-Controlled Clinical Trial
2023
- Data from Topical Application of a Mucoadhesive Freeze-Dried Black Raspberry Gel Induces Clinical and Histologic Regression and Reduces Loss of Heterozygosity Events in Premalignant Oral Intraepithelial Lesions: Results from a Multicentered, Placebo-Controlled Clinical Trial
2023
- Data from Topical Application of a Mucoadhesive Freeze-Dried Black Raspberry Gel Induces Clinical and Histologic Regression and Reduces Loss of Heterozygosity Events in Premalignant Oral Intraepithelial Lesions: Results from a Multicentered, Placebo-Controlled Clinical Trial
2023
- Supplementary Figure 1 from Topical Application of a Mucoadhesive Freeze-Dried Black Raspberry Gel Induces Clinical and Histologic Regression and Reduces Loss of Heterozygosity Events in Premalignant Oral Intraepithelial Lesions: Results from a Multicentered, Placebo-Controlled Clinical Trial
2023
- Supplementary Table 1 from Topical Application of a Mucoadhesive Freeze-Dried Black Raspberry Gel Induces Clinical and Histologic Regression and Reduces Loss of Heterozygosity Events in Premalignant Oral Intraepithelial Lesions: Results from a Multicentered, Placebo-Controlled Clinical Trial
2023
- Supplementary Table 2 from Topical Application of a Mucoadhesive Freeze-Dried Black Raspberry Gel Induces Clinical and Histologic Regression and Reduces Loss of Heterozygosity Events in Premalignant Oral Intraepithelial Lesions: Results from a Multicentered, Placebo-Controlled Clinical Trial
2023
- Data from Effects of Human Oral Mucosal Tissue, Saliva, and Oral Microflora on Intraoral Metabolism and Bioactivation of Black Raspberry Anthocyanins
2023
- Data from Effects of Human Oral Mucosal Tissue, Saliva, and Oral Microflora on Intraoral Metabolism and Bioactivation of Black Raspberry Anthocyanins
2023
- Supplementary Table 1 from Effects of Human Oral Mucosal Tissue, Saliva, and Oral Microflora on Intraoral Metabolism and Bioactivation of Black Raspberry Anthocyanins
2023
- Supplementary Table 1 from Effects of Human Oral Mucosal Tissue, Saliva, and Oral Microflora on Intraoral Metabolism and Bioactivation of Black Raspberry Anthocyanins
2023
- Carcinogenesis×2
- UNC Libraries×2
- Pharmaceutical Research×1
- Current Pharmaceutical Design×1
- International Journal of Pharmaceutics×1
- Daren Wang
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Susan R. Mallery
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Richard Spinney
Environmental Science · The Ohio State University
- Congcong Xu
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Ashweta Sahni
Biochemistry, Genetics and Molecular Biology · The Ohio State 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.
Claim or correct this profile