Pinunta Nittayacharn
Overview
Explore the profile of Pinunta Nittayacharn including associated specialties, affiliations and a list of published articles.
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19
Citations
169
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Recent Articles
1.
Cooley M, Wegierak D, Perera R, Abenojar E, Nittayacharn P, Berg F, et al.
ACS Nano
. 2024 Nov;
18(48):33181-33196.
PMID: 39566912
This study explores the challenges associated with nanoparticle-based drug delivery to the tumor parenchyma, focusing on the widely utilized enhanced permeability and retention effect (EPR). While EPR has been a...
2.
Wegierak D, Nittayacharn P, Cooley M, Berg F, Kosmides T, Durig D, et al.
Wiley Interdiscip Rev Nanomed Nanobiotechnol
. 2024 Nov;
16(6):e2007.
PMID: 39511794
Contrast-enhanced ultrasound is currently used worldwide with clinical indications in cardiology and radiology, and it continues to evolve and develop through innovative technological advancements. Clinically utilized contrast agents for ultrasound...
3.
Perera R, Berg F, Abenojar E, Nittayacharn P, Kim Y, Wang X, et al.
Bioact Mater
. 2024 Feb;
35:45-55.
PMID: 38304914
Lipid-shelled nanobubbles (NBs) can be visualized and activated using noninvasive ultrasound (US) stimulation, leading to significant bioeffects. Prior work demonstrates that active targeting of NBs to prostate-specific membrane antigen (PSMA)...
4.
Nittayacharn P, Abenojar E, Cooley M, Berg F, Counil C, Sojahrood A, et al.
J Control Release
. 2024 Jan;
367:135-147.
PMID: 38237687
Liver metastasis is a major obstacle in treating aggressive cancers, and current therapeutic options often prove insufficient. To overcome these challenges, there has been growing interest in ultrasound-mediated drug delivery...
5.
Perera R, Berg F, Abenojar E, Nittayacharn P, Kim Y, Wang X, et al.
bioRxiv
. 2023 Sep;
PMID: 37745586
Rationale: Lipid-shelled nanobubbles (NBs) can be visualized and activated using noninvasive ultrasound (US) stimulation, leading to significant bioeffects. We have previously shown that active targeting of NBs to prostate-specific membrane...
6.
Nittayacharn P, Abenojar E, Cooley M, Berg F, Counil C, Sojahrood A, et al.
bioRxiv
. 2023 Sep;
PMID: 37732235
Liver metastasis is a major obstacle in treating aggressive cancers, and current therapeutic options often prove insufficient. To overcome these challenges, there has been growing interest in ultrasound-mediated drug delivery...
7.
Perera R, Abenojar E, Nittayacharn P, Wang X, Ramamurthy G, Peiris P, et al.
Nanotheranostics
. 2022 Feb;
6(3):270-285.
PMID: 35223380
Gas-core nanoscale bubbles (or nanobubbles) have gained significant recent attention as promising contrast agents for cancer molecular imaging using medical ultrasound. Previous work has shown that active targeting of nanobubbles...
8.
Nittayacharn P, Abenojar E, La Deda M, Ricciardi L, Strangi G, Exner A
Bioconjug Chem
. 2021 Mar;
33(6):1057-1068.
PMID: 33677967
Sonodynamic therapy (SDT) is a novel promising approach for the minimally invasive treatment of cancer derived from photodynamic therapy (PDT). In this study, we have explored an effective sonosensitizer for...
9.
Nittayacharn P, Abenojar E, de Leon A, Wegierak D, Exner A
Front Pharmacol
. 2020 Jun;
11:644.
PMID: 32477125
Drug delivery to solid tumors using echogenic nanobubbles (NBs) and ultrasound (US) has recently gained significant interest. The approach combines attributes of nanomedicine and the enhanced permeation and retention (EPR)...
10.
Nittayacharn P, Yuan H, Hernandez C, Bielecki P, Zhou H, Exner A
J Pharm Sci
. 2019 May;
108(9):3091-3098.
PMID: 31095958
Issues with limited intratumoral drug penetration and heterogeneous drug distribution continue to impede the therapeutic efficacy of nanomedicine-based delivery systems. Ultrasound (US)-enhanced drug delivery has emerged as one effective means...