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Evgenii Tikhomirov

Explore the profile of Evgenii Tikhomirov including associated specialties, affiliations and a list of published articles. Areas
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Citations 11
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Recent Articles
1.
Tikhomirov E, Franconetti A, Johansson M, Sandstrom C, Carlsson E, Andersson B, et al.
ACS Appl Mater Interfaces . 2024 May; 16(23):30385-30395. PMID: 38816917
In the present work, we explored Lewis acid catalysis, via FeCl, for the heterogeneous surface functionalization of cellulose nanofibrils (CNFs). This approach, characterized by its simplicity and efficiency, facilitates the...
2.
Katsiotis C, Tikhomirov E, Leliopoulos C, Stromme M, Welch K
Eur J Pharm Biopharm . 2024 Mar; 198:114270. PMID: 38537908
Poorly soluble drugs represent a substantial portion of emerging drug candidates, posing significant challenges for pharmaceutical formulators. One promising method to enhance the drug's dissolution rate and, consequently, bioavailability involves...
3.
Katsiotis C, Tikhomirov E, Stromme M, Lindh J, Welch K
Eur J Pharm Sci . 2023 Jun; 187:106486. PMID: 37277047
Fused deposition modeling (FDM) and selective laser sintering (SLS) are two of the most employed additive manufacturing (AM) techniques within the pharmaceutical research field. Despite the numerous advantages of different...
4.
Tikhomirov E, Ahlen M, Stromme M, Lindh J
J Pharm Biomed Anal . 2023 Apr; 231:115396. PMID: 37086588
Additive Manufacturing (AM) is a fast-growing approach to produce personalized oral dosage forms. Even though some AM technologies are promising as alternative to conventional compounding with resulting dosage manipulation, they...
5.
Tikhomirov E, Ahlen M, Di Gallo N, Stromme M, Kipping T, Quodbach J, et al.
Int J Pharm . 2023 Feb; 635:122780. PMID: 36849041
Large batches of placebo and drug-loaded solid dosage forms were successfully fabricated using selective laser sintering (SLS) 3D printing in this study. The tablet batches were prepared using either copovidone...
6.
Han Y, King M, Tikhomirov E, Barasa P, Souza C, Lindh J, et al.
Int J Mol Sci . 2022 May; 23(10). PMID: 35628601
Three-dimensional (3D) cultures, so-called organoids, have emerged as an attractive tool for disease modeling and therapeutic innovations. Here, we aim to determine if boundary cap neural crest stem cells (BC)...