ナノ粒子入り生理食塩水が腎結石手術を改善する可能性(Nanoparticle-infused saline could help people facing kidney stone surgery)

ad

2026-03-06 シカゴ大学

シカゴ大学の研究チームは、腎結石手術の安全性と効果を高める可能性のあるナノ粒子を含む生理食塩水を開発した。腎結石の除去手術では、内視鏡を用いて結石を砕く際に生理食塩水を流して視野を確保するが、結石の破片が残ると再発の原因になることがある。研究では、生理食塩水に特殊なナノ粒子を加えることで、結石片をより効率的に可視化・回収できる可能性を示した。ナノ粒子は光学的特性を利用して結石の位置や破片をより明確に示すため、外科医が残留片を確認しやすくなる。これにより手術の精度向上や再手術の減少が期待される。研究者は、この技術が腎結石治療の改善につながるだけでなく、他の内視鏡手術での可視化技術にも応用できる可能性があると指摘している。

<関連情報>

導電性ポリマーナノ粒子を用いたナノ流体強化レーザー結石破砕術 Nanofluid-Enhanced Laser Lithotripsy Using Conducting Polymer Nanoparticles

Qingsong Fan, Junqin Chen, Arpit Mishra, Aaron Stewart, Faisal Anees, Ting-Hsuan Chen, Judith Dominguez, Christine Payne, Michael E. Lipkin, Pei Zhong, Po-Chun Hsu
Advanced Science  Published: 05 October 2025
DOI:https://doi.org/10.1002/advs.202507714

ナノ粒子入り生理食塩水が腎結石手術を改善する可能性(Nanoparticle-infused saline could help people facing kidney stone surgery)

Abstract

Urinary stone disease, characterized by the hard mineral deposits in the urinary tract, has seen a rising prevalence globally. This condition often leads to severe pain and requires medical intervention. Laser lithotripsy, a minimally invasive treatment, uses laser to fragment urinary stones to facilitate removal or natural passage. Among available laser technologies, Ho:YAG laser has established itself as the gold standard for three decades. Efforts to improve ablation efficiency have focused on laser parameters such as pulse energy and frequency. This study introduces an ablation enhancement strategy that incorporates nanoparticles with strong near-infrared absorption into the surrounding fluid to enhance light-matter interaction. Using 0.03 wt.% PEDOT:PSS nanofluid improves stone ablation efficiency by 38–727% in spot treatment and 26–75% in scanning treatment with a clinical Ho:YAG laser lithotripter. The highly absorbing nanofluid accelerates vapor tunnel formation, boosts laser energy transmission, and permeates stone pores to enhance damage, without increasing thermal tissue injury. Cytotoxicity tests also confirmed minimal toxicity at appropriate concentrations. This nanofluid-based approach offers a promising advancement for more efficient and safer laser lithotripsy. Further work should address the remaining challenges for clinical translation, including aggregation in saline, efficacy in real human kidney stones, and comprehensive animal studies.

医療・健康
ad
ad
Follow
ad
タイトルとURLをコピーしました