Photoacoustic Imaging-Guided Photothermal Therapy with Tumor-Targeting HA-FeOOH@PPy Nanorods

Cancer theragnosis agents with both cancer diagnosis and therapy abilities would be the next generation of cancer treatment. Recently, nanomaterials with strong absorption in near-infrared (NIR) region have been explored as promising cancer theragnosis agents for bio-imaging and photothermal therapy...

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Published in:Scientific reports Vol. 8; no. 1; pp. 8809 - 13
Main Authors: Phan, Thi Tuong Vy, Bui, Nhat Quang, Cho, Soon-Woo, Bharathiraja, Subramaniyan, Manivasagan, Panchanathan, Moorthy, Madhappan Santha, Mondal, Sudip, Kim, Chang-Seok, Oh, Junghwan
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Language:English
Published: London Nature Publishing Group UK 11-06-2018
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Abstract Cancer theragnosis agents with both cancer diagnosis and therapy abilities would be the next generation of cancer treatment. Recently, nanomaterials with strong absorption in near-infrared (NIR) region have been explored as promising cancer theragnosis agents for bio-imaging and photothermal therapy (PTT). Herein, we reported the synthesis and application of a novel multifunctional theranostic nanoagent based on hyaluronan (HA)-coated FeOOH@polypyrrole (FeOOH@PPy) nanorods (HA-FeOOH@PPy NRs) for photoacoustic imaging (PAI)-guided PTT. The nanoparticles were intentionally designed with rod-like shape and conjugated with tumor-targeting ligands to enhance the accumulation and achieve the entire tumor distribution of nanoparticles. The prepared HA-FeOOH@PPy NRs showed excellent biocompatible and physiological stabilities in different media. Importantly, HA-FeOOH@PPy NRs exhibited strong NIR absorbance, remarkable photothermal conversion capability, and conversion stability. Furthermore, HA-FeOOH@PPy NRs could act as strong contrast agents to enhance PAI, conducting accurate locating of cancerous tissue, as well as precise guidance for PTT. The in vitro and in vivo photothermal anticancer activity results of the designed nanoparticles evidenced their promising potential in cancer treatment. The tumor-bearing mice completely recovered after 17 days of PTT treatment without obvious side effects. Thus, our work highlights the great potential of using HA-FeOOH@PPy NRs as a theranostic nanoplatform for cancer imaging-guided therapy.
AbstractList Cancer theragnosis agents with both cancer diagnosis and therapy abilities would be the next generation of cancer treatment. Recently, nanomaterials with strong absorption in near-infrared (NIR) region have been explored as promising cancer theragnosis agents for bio-imaging and photothermal therapy (PTT). Herein, we reported the synthesis and application of a novel multifunctional theranostic nanoagent based on hyaluronan (HA)-coated FeOOH@polypyrrole (FeOOH@PPy) nanorods (HA-FeOOH@PPy NRs) for photoacoustic imaging (PAI)-guided PTT. The nanoparticles were intentionally designed with rod-like shape and conjugated with tumor-targeting ligands to enhance the accumulation and achieve the entire tumor distribution of nanoparticles. The prepared HA-FeOOH@PPy NRs showed excellent biocompatible and physiological stabilities in different media. Importantly, HA-FeOOH@PPy NRs exhibited strong NIR absorbance, remarkable photothermal conversion capability, and conversion stability. Furthermore, HA-FeOOH@PPy NRs could act as strong contrast agents to enhance PAI, conducting accurate locating of cancerous tissue, as well as precise guidance for PTT. The in vitro and in vivo photothermal anticancer activity results of the designed nanoparticles evidenced their promising potential in cancer treatment. The tumor-bearing mice completely recovered after 17 days of PTT treatment without obvious side effects. Thus, our work highlights the great potential of using HA-FeOOH@PPy NRs as a theranostic nanoplatform for cancer imaging-guided therapy.
Cancer theragnosis agents with both cancer diagnosis and therapy abilities would be the next generation of cancer treatment. Recently, nanomaterials with strong absorption in near-infrared (NIR) region have been explored as promising cancer theragnosis agents for bio-imaging and photothermal therapy (PTT). Herein, we reported the synthesis and application of a novel multifunctional theranostic nanoagent based on hyaluronan (HA)-coated FeOOH@polypyrrole (FeOOH@PPy) nanorods (HA-FeOOH@PPy NRs) for photoacoustic imaging (PAI)-guided PTT. The nanoparticles were intentionally designed with rod-like shape and conjugated with tumor-targeting ligands to enhance the accumulation and achieve the entire tumor distribution of nanoparticles. The prepared HA-FeOOH@PPy NRs showed excellent biocompatible and physiological stabilities in different media. Importantly, HA-FeOOH@PPy NRs exhibited strong NIR absorbance, remarkable photothermal conversion capability, and conversion stability. Furthermore, HA-FeOOH@PPy NRs could act as strong contrast agents to enhance PAI, conducting accurate locating of cancerous tissue, as well as precise guidance for PTT. The in vitro and in vivo photothermal anticancer activity results of the designed nanoparticles evidenced their promising potential in cancer treatment. The tumor-bearing mice completely recovered after 17 days of PTT treatment without obvious side effects. Thus, our work highlights the great potential of using HA-FeOOH@PPy NRs as a theranostic nanoplatform for cancer imaging-guided therapy.
ArticleNumber 8809
Author Moorthy, Madhappan Santha
Oh, Junghwan
Mondal, Sudip
Phan, Thi Tuong Vy
Bui, Nhat Quang
Manivasagan, Panchanathan
Kim, Chang-Seok
Cho, Soon-Woo
Bharathiraja, Subramaniyan
Author_xml – sequence: 1
  givenname: Thi Tuong Vy
  surname: Phan
  fullname: Phan, Thi Tuong Vy
  organization: Interdisciplinary Program of Biomedical Mechanical & Electrical Engineering, Pukyong National University, Center for Marine-Integrated Biomedical Technology, Pukyong National University
– sequence: 2
  givenname: Nhat Quang
  orcidid: 0000-0001-7466-1416
  surname: Bui
  fullname: Bui, Nhat Quang
  organization: Interdisciplinary Program of Biomedical Mechanical & Electrical Engineering, Pukyong National University
– sequence: 3
  givenname: Soon-Woo
  surname: Cho
  fullname: Cho, Soon-Woo
  organization: Department of Cogno-Mechatronics Engineering, Pusan National University
– sequence: 4
  givenname: Subramaniyan
  surname: Bharathiraja
  fullname: Bharathiraja, Subramaniyan
  organization: Center for Marine-Integrated Biomedical Technology, Pukyong National University
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  givenname: Panchanathan
  surname: Manivasagan
  fullname: Manivasagan, Panchanathan
  organization: Center for Marine-Integrated Biomedical Technology, Pukyong National University
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  givenname: Madhappan Santha
  surname: Moorthy
  fullname: Moorthy, Madhappan Santha
  organization: Center for Marine-Integrated Biomedical Technology, Pukyong National University
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  givenname: Sudip
  surname: Mondal
  fullname: Mondal, Sudip
  organization: Center for Marine-Integrated Biomedical Technology, Pukyong National University
– sequence: 8
  givenname: Chang-Seok
  surname: Kim
  fullname: Kim, Chang-Seok
  organization: Department of Cogno-Mechatronics Engineering, Pusan National University
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  givenname: Junghwan
  orcidid: 0000-0002-5837-0958
  surname: Oh
  fullname: Oh, Junghwan
  email: jungoh@pknu.ac.kr
  organization: Interdisciplinary Program of Biomedical Mechanical & Electrical Engineering, Pukyong National University, Center for Marine-Integrated Biomedical Technology, Pukyong National University, Department of Biomedical Engineering, Pukyong National University
BackLink https://www.ncbi.nlm.nih.gov/pubmed/29891947$$D View this record in MEDLINE/PubMed
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Snippet Cancer theragnosis agents with both cancer diagnosis and therapy abilities would be the next generation of cancer treatment. Recently, nanomaterials with...
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Antitumor activity
Cancer
Cancer therapies
Humanities and Social Sciences
Hyaluronic acid
I.R. radiation
multidisciplinary
Nanoparticles
Nanotechnology
Polypyrroles
Science
Science (multidisciplinary)
Tumors
Title Photoacoustic Imaging-Guided Photothermal Therapy with Tumor-Targeting HA-FeOOH@PPy Nanorods
URI https://link.springer.com/article/10.1038/s41598-018-27204-8
https://www.ncbi.nlm.nih.gov/pubmed/29891947
https://www.proquest.com/docview/2053308126
https://pubmed.ncbi.nlm.nih.gov/PMC5995888
Volume 8
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