Injectable Thermochemical Micro-Explosion for Prompt Thrombolysis via Liquid Alkali Metal

Fuente: arXiv
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Main Authors: Liao, Xin, Hou, Yi, Zhang, Jie, Wang, Bo, Guo, Minghui, Qu, Hua, Rao, Wei, Liu, Jing
Format: Preprint
Published: 2026
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author Liao, Xin
Hou, Yi
Zhang, Jie
Wang, Bo
Guo, Minghui
Qu, Hua
Rao, Wei
Liu, Jing
author_facet Liao, Xin
Hou, Yi
Zhang, Jie
Wang, Bo
Guo, Minghui
Qu, Hua
Rao, Wei
Liu, Jing
contents Thrombotic vascular diseases contribute to significant global mortality, yet current therapeutic strategies face persistent challenges including bleeding risks, suboptimal efficiency, and procedural complexity. Here, we report a micro-explosive thermochemical thrombolysis (METCT) therapy via injectable liquid alkali metal (LAM) encapsulated in dimethyl silicone (LAM@oil), which enables prompt, efficient and safe vascular recanalization within an ultrafast timeframe (< 90 seconds). This LAM@oil system effectively disrupts thrombus tissue through a synergistic triple-action mechanism: Mechanical micro-explosions forces, alkaline ablation due to highly localized exothermic chemical reactions, and thermal thrombolysis mediated by elevated temperature. Upon thrombolysis completion, the non-toxic reaction byproducts (sodium and potassium ions) exhibit physiologically biocompatible and metabolizable effects. Critically, the LAM@oil demonstrates significantly higher thrombolytic efficacy compared to clinically available thrombolytic drugs (residual thrombus area percent 10.87%+-7.16% for LAM@oil vs. 80.86%+-13.32% for urokinase), with no associated bleeding risks. This strategy opens a byproduct-free, cost-effective, and high-efficiency alternative to conventional thrombolytics, holding big potential for clinical translation in acute thrombosis management.
format Preprint
id arxiv_https___arxiv_org_abs_2605_05924
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Injectable Thermochemical Micro-Explosion for Prompt Thrombolysis via Liquid Alkali Metal
Liao, Xin
Hou, Yi
Zhang, Jie
Wang, Bo
Guo, Minghui
Qu, Hua
Rao, Wei
Liu, Jing
Medical Physics
Thrombotic vascular diseases contribute to significant global mortality, yet current therapeutic strategies face persistent challenges including bleeding risks, suboptimal efficiency, and procedural complexity. Here, we report a micro-explosive thermochemical thrombolysis (METCT) therapy via injectable liquid alkali metal (LAM) encapsulated in dimethyl silicone (LAM@oil), which enables prompt, efficient and safe vascular recanalization within an ultrafast timeframe (< 90 seconds). This LAM@oil system effectively disrupts thrombus tissue through a synergistic triple-action mechanism: Mechanical micro-explosions forces, alkaline ablation due to highly localized exothermic chemical reactions, and thermal thrombolysis mediated by elevated temperature. Upon thrombolysis completion, the non-toxic reaction byproducts (sodium and potassium ions) exhibit physiologically biocompatible and metabolizable effects. Critically, the LAM@oil demonstrates significantly higher thrombolytic efficacy compared to clinically available thrombolytic drugs (residual thrombus area percent 10.87%+-7.16% for LAM@oil vs. 80.86%+-13.32% for urokinase), with no associated bleeding risks. This strategy opens a byproduct-free, cost-effective, and high-efficiency alternative to conventional thrombolytics, holding big potential for clinical translation in acute thrombosis management.
title Injectable Thermochemical Micro-Explosion for Prompt Thrombolysis via Liquid Alkali Metal
topic Medical Physics
url https://arxiv.org/abs/2605.05924