Plasmonic Photothermal Therapy

Plasmonic photothermal therapy is a cancer treatment approach that uses light-responsive metallic nanostructures to convert optical energy into localized heat, offering a way to damage tumors with spatial precision. When nanoparticles such as gold structures absorb near-infrared light, localized surface plasmon resonance drives rapid energy dissipation as heat, which can disrupt cancer-cell membranes, denature proteins, and promote cell death. Researchers investigate this strategy for targeted tumor ablation, often by functionalizing nanoparticles to accumulate in malignant tissue and combining treatment with imaging or drug delivery. Its effectiveness depends on nanoparticle properties, light exposure, tissue penetration, and selective heating while limiting damage to surrounding healthy cells.

Plasmonic Photothermal Therapy - Related Videos

Research

JoVE Journal - Cancer Research

Plasmonic Photothermal Cancer Therapy: Nanoparticle-embedded Tumor-tissue-mimicking Phantoms for Visualizing Photothermal Temperature Distribution

0 Views •

2025

This article presents the protocol for preparing tumor-tissue phantoms that replicate optical properties for plasmonic photothermal therapy. It details phantom preparation, photothermal evaluations, and validation of the developed numerical model based on photothermal temperature measurements for assessing therapeutic parameters, offering an ethical, cost-effective alternative to in vivo studies for preliminary testing.

Electroactive Polymer Nanoparticles Exhibiting Photothermal Properties

0 Views •

Cited by 5 •

2016

A protocol is presented for the synthesis and preparation of nanoparticles consisting of electroactive polymers.

Research

JoVE Journal - Engineering
Free Sample

Colloidal Synthesis of Nanopatch Antennas for Applications in Plasmonics and Nanophotonics

0 Views •

Cited by 14 •

2016

A protocol for the colloidal synthesis of silver nanocubes and fabrication of plasmonic nanoscale patch antennas with sub-10 nm gaps is presented.

Submillisecond Conformational Changes in Proteins Resolved by Photothermal Beam Deflection

0 Views •

Cited by 1 •

2014

Here we report an application of the photothermal beam deflection technique in combination with a caged calcium compound, DM-nitrophen, to monitor microsecond and millisecond dynamics and energetics of structural changes associated with the calcium association to a neuronal calcium sensor, Downstream Regulatory Element Antagonist Modulator.

One Minute, Sub-One-Watt Photothermal Tumor Ablation Using Porphysomes, Intrinsic Multifunctional Nanovesicles

0 Views •

Cited by 14 •

2013

We developed novel intrinsic multifunctional nanovesicles called porphysomes, which have structure-dependent fluorescence self-quenching and unique photothermal properties, thus functioning as potent photothermal therapy agents. We formulated porphysomes using high pressure extrusion and investigated their photothermal therapy efficacy in a xenograft tumor model.

View All Results

FAQs

Related Topics