Matches in SemOpenAlex for { <https://semopenalex.org/work/W4384661304> ?p ?o ?g. }
- W4384661304 abstract "Abstract Temperature plays a critical role in regulating body mechanisms and indicating inflammatory processes. Local temperature increments above 42 °C are shown to kill cancer cells in tumorous tissue, leading to the development of nanoparticle‐mediated thermo‐therapeutic strategies for fighting oncological diseases. Remarkably, these therapeutic effects can occur without macroscopic temperature rise, suggesting localized nanoparticle heating, and minimizing side effects on healthy tissues. Nanothermometry has received considerable attention as a means of developing nanothermosensing approaches to monitor the temperature at the core of nanoparticle atoms inside cells. In this study, a label‐free, direct, and universal nanoscale thermometry is proposed to monitor the thermal processes of nanoparticles under photoexcitation in the tumor environment. Gold‐iron oxide nanohybrids are utilized as multifunctional photothermal agents internalized in a 3D tumor model of glioblastoma that mimics the in vivo scenario. The local temperature under near‐infrared photo‐excitation is monitored by X‐ray absorption spectroscopy (XAS) at the Au L 3 ‐edge (11 919 eV) to obtain their temperature in cells, deepening the knowledge of nanothermal tumor treatments. This nanothermometric approach demonstrates its potential in detecting high nanothermal changes in tumor‐mimicking tissues. It offers a notable advantage by enabling thermal sensing of any element, effectively transforming any material into a nanothermometer within biological environments." @default.
- W4384661304 created "2023-07-20" @default.
- W4384661304 creator A5011003753 @default.
- W4384661304 creator A5011380769 @default.
- W4384661304 creator A5027570672 @default.
- W4384661304 creator A5034456156 @default.
- W4384661304 creator A5035981252 @default.
- W4384661304 creator A5039545519 @default.
- W4384661304 creator A5042158664 @default.
- W4384661304 creator A5047415282 @default.
- W4384661304 creator A5050681968 @default.
- W4384661304 creator A5055012904 @default.
- W4384661304 creator A5061128399 @default.
- W4384661304 creator A5066600157 @default.
- W4384661304 creator A5071684691 @default.
- W4384661304 creator A5033964427 @default.
- W4384661304 date "2023-08-10" @default.
- W4384661304 modified "2023-10-15" @default.
- W4384661304 title "X‐Ray Nanothermometry of Nanoparticles in Tumor‐Mimicking Tissues under Photothermia" @default.
- W4384661304 cites W1511198581 @default.
- W4384661304 cites W1666787282 @default.
- W4384661304 cites W1983383923 @default.
- W4384661304 cites W2002144894 @default.
- W4384661304 cites W2026012753 @default.
- W4384661304 cites W2036328014 @default.
- W4384661304 cites W2036632895 @default.
- W4384661304 cites W2038486367 @default.
- W4384661304 cites W2044490397 @default.
- W4384661304 cites W2052749465 @default.
- W4384661304 cites W2055721190 @default.
- W4384661304 cites W2056142956 @default.
- W4384661304 cites W2060676738 @default.
- W4384661304 cites W2061464027 @default.
- W4384661304 cites W2065656177 @default.
- W4384661304 cites W2070227796 @default.
- W4384661304 cites W2070892998 @default.
- W4384661304 cites W2107318129 @default.
- W4384661304 cites W2136602244 @default.
- W4384661304 cites W2153420770 @default.
- W4384661304 cites W2159974629 @default.
- W4384661304 cites W2160174308 @default.
- W4384661304 cites W2168758761 @default.
- W4384661304 cites W2171864173 @default.
- W4384661304 cites W2188379506 @default.
- W4384661304 cites W2291888828 @default.
- W4384661304 cites W2297600515 @default.
- W4384661304 cites W2316334919 @default.
- W4384661304 cites W2322795480 @default.
- W4384661304 cites W2325692281 @default.
- W4384661304 cites W2336730386 @default.
- W4384661304 cites W2398473358 @default.
- W4384661304 cites W2462723342 @default.
- W4384661304 cites W2559132911 @default.
- W4384661304 cites W2564930142 @default.
- W4384661304 cites W2627388912 @default.
- W4384661304 cites W2737876270 @default.
- W4384661304 cites W2789542379 @default.
- W4384661304 cites W2793148326 @default.
- W4384661304 cites W2794660891 @default.
- W4384661304 cites W2795180732 @default.
- W4384661304 cites W2898725844 @default.
- W4384661304 cites W2902977270 @default.
- W4384661304 cites W2915767374 @default.
- W4384661304 cites W3006082717 @default.
- W4384661304 cites W3007180727 @default.
- W4384661304 cites W3019682290 @default.
- W4384661304 cites W3039238001 @default.
- W4384661304 cites W3043060115 @default.
- W4384661304 cites W3046633362 @default.
- W4384661304 cites W3047682514 @default.
- W4384661304 cites W3082617244 @default.
- W4384661304 cites W3085277259 @default.
- W4384661304 cites W3087609754 @default.
- W4384661304 cites W3097865616 @default.
- W4384661304 cites W3104737107 @default.
- W4384661304 cites W3115249263 @default.
- W4384661304 cites W3127753953 @default.
- W4384661304 cites W3157510582 @default.
- W4384661304 cites W3167196260 @default.
- W4384661304 cites W3195980739 @default.
- W4384661304 cites W4200155198 @default.
- W4384661304 cites W4206318450 @default.
- W4384661304 cites W4211104411 @default.
- W4384661304 cites W4220778864 @default.
- W4384661304 cites W4238045400 @default.
- W4384661304 cites W4238129914 @default.
- W4384661304 cites W4281263884 @default.
- W4384661304 cites W4283792237 @default.
- W4384661304 cites W4293017594 @default.
- W4384661304 cites W4307140822 @default.
- W4384661304 cites W4327914333 @default.
- W4384661304 cites W2127493635 @default.
- W4384661304 doi "https://doi.org/10.1002/adhm.202301863" @default.
- W4384661304 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/37463675" @default.
- W4384661304 hasPublicationYear "2023" @default.
- W4384661304 type Work @default.
- W4384661304 citedByCount "2" @default.
- W4384661304 countsByYear W43846613042023 @default.
- W4384661304 crossrefType "journal-article" @default.
- W4384661304 hasAuthorship W4384661304A5011003753 @default.