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Magnetic Nanoscalpel for the Effective Treatment of Ascites Tumors.

Journal of functional biomaterials 2023 Vol.14(4) 🌐 cited 4 🔓 OA Microfluidic and Bio-sensing Technol
TL;DR Characterization and application of magnetic nanodisks (MNDs) as a surgical instrument (“smart nanoscalpel”) at a single-cell level is presented and applied for the microsurgery of malignant neoplasms.
📈 연도별 인용 (2023–2025) · 합계 4
OpenAlex 토픽 · Microfluidic and Bio-sensing Technologies Nanoparticle-Based Drug Delivery Characterization and Applications of Magnetic Nanoparticles

Zamay T, Zamay S, Luzan N, Fedotovskaya V, Masyugin A, Zelenov F, Koshmanova A, Nikolaeva E, Kirichenko D, Veprintsev D, Kolovskaya O, Shchugoreva I, Zamay G, Lapin I, Lukyanenko A, Borus A, Sukhachev A, Volochaev M, Lukyanenko K, Shabanov A, Zabluda V, Zhizhchenko A, Kuchmizhak A, Sokolov A, Narodov A, Prokopenko V, Galeev R, Svetlichnyi V, Kichkailo A

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Characterization and application of magnetic nanodisks (MNDs) as a surgical instrument (“smart nanoscalpel”) at a single-cell level is presented and applied for the microsurgery of malignant neoplasms

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BibTeX ↓ RIS ↓
APA Tatiana N. Zamay, Sergey S. Zamay, et al. (2023). Magnetic Nanoscalpel for the Effective Treatment of Ascites Tumors.. Journal of functional biomaterials, 14(4). https://doi.org/10.3390/jfb14040179
MLA Tatiana N. Zamay, et al.. "Magnetic Nanoscalpel for the Effective Treatment of Ascites Tumors.." Journal of functional biomaterials, vol. 14, no. 4, 2023.
PMID 37103269
DOI 10.3390/jfb14040179

Abstract

One of the promising novel methods for radical tumor resection at a single-cell level is magneto-mechanical microsurgery (MMM) with magnetic nano- or microdisks modified with cancer-recognizing molecules. A low-frequency alternating magnetic field (AMF) remotely drives and controls the procedure. Here, we present characterization and application of magnetic nanodisks (MNDs) as a surgical instrument ("smart nanoscalpel") at a single-cell level. MNDs with a quasi-dipole three-layer structure (Au/Ni/Au) and DNA aptamer AS42 (AS42-MNDs) on the surface converted magnetic moment into mechanical and destroyed tumor cells. The effectiveness of MMM was analyzed on Ehrlich ascites carcinoma (EAC) cells in vitro and in vivo using sine and square-shaped AMF with frequencies from 1 to 50 Hz with 0.1 to 1 duty-cycle parameters. MMM with the "Nanoscalpel" in a sine-shaped 20 Hz AMF, a rectangular-shaped 10 Hz AMF, and a 0.5 duty cycle was the most effective. A sine-shaped field caused apoptosis, whereas a rectangular-shaped field caused necrosis. Four sessions of MMM with AS42-MNDs significantly reduced the number of cells in the tumor. In contrast, ascites tumors continued to grow in groups of mice and mice treated with MNDs with nonspecific oligonucleotide NO-MND. Thus, applying a "smart nanoscalpel" is practical for the microsurgery of malignant neoplasms.

추출된 의학 개체 (NER)

유형영어 표현한국어 / 풀이UMLS CUI출처등장
시술 microsurgery 미세수술 dict 2
해부 single-cell scispacy 1
해부 DNA scispacy 1
해부 surface scispacy 1
해부 tumor cells scispacy 1
해부 Ehrlich ascites carcinoma scispacy 1
해부 cells scispacy 1
합병증 necrosis 괴사 dict 1
약물 MMM → magneto-mechanical microsurgery scispacy 1
약물 oligonucleotide C0028953
Oligonucleotides
scispacy 1
약물 AMF → alternating magnetic field scispacy 1
질환 Ascites Tumors C0007125
Carcinoma, Ehrlich Tumor
scispacy 1
질환 tumor C0027651
Neoplasms
scispacy 1
질환 Ehrlich ascites carcinoma scispacy 1
질환 MMM → magneto-mechanical microsurgery scispacy 1
질환 AMF → alternating magnetic field scispacy 1
질환 three-layer scispacy 1
질환 Au/Ni/Au scispacy 1
질환 malignant neoplasms scispacy 1
기타 AS42 scispacy 1
기타 sine-shaped scispacy 1
기타 mice scispacy 1

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