Cargando…

Opto-acoustic synergistic irradiation for vaporization of natural melanin-cored nanodroplets at safe energy levels and efficient sono-chemo-photothermal cancer therapy

Rationale: Insufficient penetration and accumulation of theranostic payloads in solid tumors greatly challenge the clinical translation of cancer nanomedicines. To address this challenge, we synthesized natural melanin-cored and doxorubicin-loaded perfluoropentane nanodroplets with good biocompatibi...

Descripción completa

Detalles Bibliográficos
Autores principales: Hu, Yaxin, Xue, Shan, Long, Ting, Lyu, Peizhao, Zhang, Xinyu, Chen, Jingqin, Chen, Siping, Liu, Chengbo, Chen, Xin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7482808/
https://www.ncbi.nlm.nih.gov/pubmed/32929359
http://dx.doi.org/10.7150/thno.44879
_version_ 1783580850627018752
author Hu, Yaxin
Xue, Shan
Long, Ting
Lyu, Peizhao
Zhang, Xinyu
Chen, Jingqin
Chen, Siping
Liu, Chengbo
Chen, Xin
author_facet Hu, Yaxin
Xue, Shan
Long, Ting
Lyu, Peizhao
Zhang, Xinyu
Chen, Jingqin
Chen, Siping
Liu, Chengbo
Chen, Xin
author_sort Hu, Yaxin
collection PubMed
description Rationale: Insufficient penetration and accumulation of theranostic payloads in solid tumors greatly challenge the clinical translation of cancer nanomedicines. To address this challenge, we synthesized natural melanin-cored and doxorubicin-loaded perfluoropentane nanodroplets with good biocompatibility and self-assembling ability. Methods: We used an opto-acoustic synergistic irradiation (OASI) method that was effective at lower energy levels than ultrasound- or laser-only irradiation to safely vaporize the nanodroplets and to cavitate the generated microbubbles for mechanically enhancing intratumoral delivery. The delivered melanin and doxorubicin inside the tumors mediated secondary chemo-photothermal therapy under laser irradiation to fully kill cancer cells. Results: In vivo animal experiments demonstrated direct mechanical disruption of tumor structures (H&E staining), enhanced intratumoral penetration of melanin (photoacoustic imaging), and efficient intratumoral accumulation of doxorubicin (fluorescent imaging). Anti-tumor experiments demonstrated that the nanodroplets combined with OASI treatment and subsequent laser irradiation could efficiently eliminate melanoma tumors. Conclusion: Melanin-cored and doxorubicin-loaded perfluoropentane nanodroplets hold great promise for translational sono-chemo-photothermal cancer therapy.
format Online
Article
Text
id pubmed-7482808
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-74828082020-09-13 Opto-acoustic synergistic irradiation for vaporization of natural melanin-cored nanodroplets at safe energy levels and efficient sono-chemo-photothermal cancer therapy Hu, Yaxin Xue, Shan Long, Ting Lyu, Peizhao Zhang, Xinyu Chen, Jingqin Chen, Siping Liu, Chengbo Chen, Xin Theranostics Research Paper Rationale: Insufficient penetration and accumulation of theranostic payloads in solid tumors greatly challenge the clinical translation of cancer nanomedicines. To address this challenge, we synthesized natural melanin-cored and doxorubicin-loaded perfluoropentane nanodroplets with good biocompatibility and self-assembling ability. Methods: We used an opto-acoustic synergistic irradiation (OASI) method that was effective at lower energy levels than ultrasound- or laser-only irradiation to safely vaporize the nanodroplets and to cavitate the generated microbubbles for mechanically enhancing intratumoral delivery. The delivered melanin and doxorubicin inside the tumors mediated secondary chemo-photothermal therapy under laser irradiation to fully kill cancer cells. Results: In vivo animal experiments demonstrated direct mechanical disruption of tumor structures (H&E staining), enhanced intratumoral penetration of melanin (photoacoustic imaging), and efficient intratumoral accumulation of doxorubicin (fluorescent imaging). Anti-tumor experiments demonstrated that the nanodroplets combined with OASI treatment and subsequent laser irradiation could efficiently eliminate melanoma tumors. Conclusion: Melanin-cored and doxorubicin-loaded perfluoropentane nanodroplets hold great promise for translational sono-chemo-photothermal cancer therapy. Ivyspring International Publisher 2020-08-20 /pmc/articles/PMC7482808/ /pubmed/32929359 http://dx.doi.org/10.7150/thno.44879 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Hu, Yaxin
Xue, Shan
Long, Ting
Lyu, Peizhao
Zhang, Xinyu
Chen, Jingqin
Chen, Siping
Liu, Chengbo
Chen, Xin
Opto-acoustic synergistic irradiation for vaporization of natural melanin-cored nanodroplets at safe energy levels and efficient sono-chemo-photothermal cancer therapy
title Opto-acoustic synergistic irradiation for vaporization of natural melanin-cored nanodroplets at safe energy levels and efficient sono-chemo-photothermal cancer therapy
title_full Opto-acoustic synergistic irradiation for vaporization of natural melanin-cored nanodroplets at safe energy levels and efficient sono-chemo-photothermal cancer therapy
title_fullStr Opto-acoustic synergistic irradiation for vaporization of natural melanin-cored nanodroplets at safe energy levels and efficient sono-chemo-photothermal cancer therapy
title_full_unstemmed Opto-acoustic synergistic irradiation for vaporization of natural melanin-cored nanodroplets at safe energy levels and efficient sono-chemo-photothermal cancer therapy
title_short Opto-acoustic synergistic irradiation for vaporization of natural melanin-cored nanodroplets at safe energy levels and efficient sono-chemo-photothermal cancer therapy
title_sort opto-acoustic synergistic irradiation for vaporization of natural melanin-cored nanodroplets at safe energy levels and efficient sono-chemo-photothermal cancer therapy
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7482808/
https://www.ncbi.nlm.nih.gov/pubmed/32929359
http://dx.doi.org/10.7150/thno.44879
work_keys_str_mv AT huyaxin optoacousticsynergisticirradiationforvaporizationofnaturalmelanincorednanodropletsatsafeenergylevelsandefficientsonochemophotothermalcancertherapy
AT xueshan optoacousticsynergisticirradiationforvaporizationofnaturalmelanincorednanodropletsatsafeenergylevelsandefficientsonochemophotothermalcancertherapy
AT longting optoacousticsynergisticirradiationforvaporizationofnaturalmelanincorednanodropletsatsafeenergylevelsandefficientsonochemophotothermalcancertherapy
AT lyupeizhao optoacousticsynergisticirradiationforvaporizationofnaturalmelanincorednanodropletsatsafeenergylevelsandefficientsonochemophotothermalcancertherapy
AT zhangxinyu optoacousticsynergisticirradiationforvaporizationofnaturalmelanincorednanodropletsatsafeenergylevelsandefficientsonochemophotothermalcancertherapy
AT chenjingqin optoacousticsynergisticirradiationforvaporizationofnaturalmelanincorednanodropletsatsafeenergylevelsandefficientsonochemophotothermalcancertherapy
AT chensiping optoacousticsynergisticirradiationforvaporizationofnaturalmelanincorednanodropletsatsafeenergylevelsandefficientsonochemophotothermalcancertherapy
AT liuchengbo optoacousticsynergisticirradiationforvaporizationofnaturalmelanincorednanodropletsatsafeenergylevelsandefficientsonochemophotothermalcancertherapy
AT chenxin optoacousticsynergisticirradiationforvaporizationofnaturalmelanincorednanodropletsatsafeenergylevelsandefficientsonochemophotothermalcancertherapy