Yiran Tian, Nicole Carrillo-Malani, Kailin Feng, Joann Miller, Theresa M Busch, Karthik M Sundaram, Zhiliang Cheng, Ahmad Amirshaghaghi, Andrew Tsourkas
{"title":"用于肿瘤的光声成像和光热治疗的酞菁和萘菁纳米粒子。","authors":"Yiran Tian, Nicole Carrillo-Malani, Kailin Feng, Joann Miller, Theresa M Busch, Karthik M Sundaram, Zhiliang Cheng, Ahmad Amirshaghaghi, Andrew Tsourkas","doi":"10.7150/ntno.88892","DOIUrl":null,"url":null,"abstract":"<p><p><b>Background:</b> Phthalocyanine (PC) and naphthalocyanine (NC) dyes have long garnered interest as theranostic agents for optical imaging and phototherapy due to their near-infrared absorbance, photostability, imaging contrast, and proven safety in clinical trials. Yet, only a small fraction of these dyes has been evaluated as photothermal therapy (PTT) agents for cancer treatment. <b>Methods:</b> Nearly 40 distinct NC and PC dyes were encapsulated within polymeric PEG-PCL micelles via oil-in-water emulsions. The optimal NC/PC-loaded micelle formulations for PTT and photoacoustic (PA) imaging were identified through <i>in vivo</i> and <i>in vitro</i> studies. <b>Results:</b> The most promising candidate, CuNC(Octa)-loaded micelles, demonstrated a strong PA signal with a peak absorbance at ~870 nm, high photothermal efficiency, and photostability. The CuNC(Octa)-loaded micelles exhibited heat generation as good or better than gold nanorods/nanoshells and >10-fold higher photoacoustic signals. Micelle preparation was reproducible/scalable, and the CuNC(Octa)-loaded micelles are highly stable under physiological conditions. The CuNC(Octa)-loaded micelles localize within tumors via enhanced permeability and retention and are readily detectable by PA imaging. In a syngeneic murine tumor model of triple-negative breast cancer, CuNC(Octa)-loaded micelles demonstrate efficient heat generation with PTT, leading to the complete eradication of tumors. <b>Conclusions:</b> CuNC(Octa)-loaded micelles represent a promising theranostic agent for PA imaging and PTT. The ability to utilize conventional ultrasound in combination with PA imaging enables the simultaneous acquisition of information about tumor morphology and micelle accumulation. PTT with CuNC(Octa)-loaded micelles can lead to the complete eradication of highly invasive tumors.</p>","PeriodicalId":36934,"journal":{"name":"Nanotheranostics","volume":"8 1","pages":"100-111"},"PeriodicalIF":0.0000,"publicationDate":"2024-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10750118/pdf/","citationCount":"0","resultStr":"{\"title\":\"Theranostic Phthalocyanine and Naphthalocyanine Nanoparticles for Photoacoustic Imaging and Photothermal Therapy of Tumors.\",\"authors\":\"Yiran Tian, Nicole Carrillo-Malani, Kailin Feng, Joann Miller, Theresa M Busch, Karthik M Sundaram, Zhiliang Cheng, Ahmad Amirshaghaghi, Andrew Tsourkas\",\"doi\":\"10.7150/ntno.88892\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p><b>Background:</b> Phthalocyanine (PC) and naphthalocyanine (NC) dyes have long garnered interest as theranostic agents for optical imaging and phototherapy due to their near-infrared absorbance, photostability, imaging contrast, and proven safety in clinical trials. Yet, only a small fraction of these dyes has been evaluated as photothermal therapy (PTT) agents for cancer treatment. <b>Methods:</b> Nearly 40 distinct NC and PC dyes were encapsulated within polymeric PEG-PCL micelles via oil-in-water emulsions. The optimal NC/PC-loaded micelle formulations for PTT and photoacoustic (PA) imaging were identified through <i>in vivo</i> and <i>in vitro</i> studies. <b>Results:</b> The most promising candidate, CuNC(Octa)-loaded micelles, demonstrated a strong PA signal with a peak absorbance at ~870 nm, high photothermal efficiency, and photostability. The CuNC(Octa)-loaded micelles exhibited heat generation as good or better than gold nanorods/nanoshells and >10-fold higher photoacoustic signals. Micelle preparation was reproducible/scalable, and the CuNC(Octa)-loaded micelles are highly stable under physiological conditions. 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引用次数: 0
摘要
背景:酞菁(PC)和萘酞菁(NC)染料具有近红外吸收性、光稳定性、成像对比度以及临床试验证明的安全性,因此作为光学成像和光疗的治疗剂长期以来一直备受关注。然而,这些染料中只有一小部分被评估为用于癌症治疗的光热疗法(PTT)药物。方法通过水包油型乳液将近 40 种不同的 NC 和 PC 染料封装在聚合物 PEG-PCL 胶束中。通过体内和体外研究,确定了用于 PTT 和光声(PA)成像的最佳 NC/PC 胶束配方。结果:最有希望的候选物质是 CuNC(Octa)负载胶束,它具有很强的 PA 信号(吸光度峰值约为 870 纳米)、很高的光热效率和光稳定性。CuNC(Octa)负载胶束的发热性能与金纳米棒/纳米壳不相上下,甚至更好,光声信号也高出 10 倍以上。胶束的制备具有可重复性/可扩展性,且负载 CuNC(Octa)的胶束在生理条件下高度稳定。负载 CuNC(Octa)的胶束通过增强的渗透性和滞留性在肿瘤内定位,并很容易通过 PA 成像检测到。在三阴性乳腺癌的合成小鼠肿瘤模型中,CuNC(Octa)负载胶束与 PTT 一起显示出高效的发热性,从而导致肿瘤的完全根除。结论装载 CuNC(Octa)的胶束是一种很有前景的治疗剂,可用于 PA 成像和 PTT。利用传统超声与 PA 成像相结合的能力,可同时获取有关肿瘤形态和胶束积累的信息。使用含 CuNC(Octa)胶束的 PTT 可以彻底消除高侵袭性肿瘤。
Theranostic Phthalocyanine and Naphthalocyanine Nanoparticles for Photoacoustic Imaging and Photothermal Therapy of Tumors.
Background: Phthalocyanine (PC) and naphthalocyanine (NC) dyes have long garnered interest as theranostic agents for optical imaging and phototherapy due to their near-infrared absorbance, photostability, imaging contrast, and proven safety in clinical trials. Yet, only a small fraction of these dyes has been evaluated as photothermal therapy (PTT) agents for cancer treatment. Methods: Nearly 40 distinct NC and PC dyes were encapsulated within polymeric PEG-PCL micelles via oil-in-water emulsions. The optimal NC/PC-loaded micelle formulations for PTT and photoacoustic (PA) imaging were identified through in vivo and in vitro studies. Results: The most promising candidate, CuNC(Octa)-loaded micelles, demonstrated a strong PA signal with a peak absorbance at ~870 nm, high photothermal efficiency, and photostability. The CuNC(Octa)-loaded micelles exhibited heat generation as good or better than gold nanorods/nanoshells and >10-fold higher photoacoustic signals. Micelle preparation was reproducible/scalable, and the CuNC(Octa)-loaded micelles are highly stable under physiological conditions. The CuNC(Octa)-loaded micelles localize within tumors via enhanced permeability and retention and are readily detectable by PA imaging. In a syngeneic murine tumor model of triple-negative breast cancer, CuNC(Octa)-loaded micelles demonstrate efficient heat generation with PTT, leading to the complete eradication of tumors. Conclusions: CuNC(Octa)-loaded micelles represent a promising theranostic agent for PA imaging and PTT. The ability to utilize conventional ultrasound in combination with PA imaging enables the simultaneous acquisition of information about tumor morphology and micelle accumulation. PTT with CuNC(Octa)-loaded micelles can lead to the complete eradication of highly invasive tumors.