Cargando…

Endobronchial ultrasound-guided injection of NBTXR3 radio-enhancing nanoparticles into mediastinal and hilar lymph nodes: a swine model to evaluate feasibility, injection technique, safety, nanoparticle retention and dispersion

BACKGROUND: Loco-regionally advanced lung cancer is typically treated with a combination of chemotherapy and radiation therapy, but overall survival and local control remain poor. Radio-enhancing nanoparticles such as NBTXR3 activated by radiotherapy results in increased cell death and potentially a...

Descripción completa

Detalles Bibliográficos
Autores principales: Casal, Roberto F., Schwalk, Audra J., Fowlkes, Natalie, Aburto, Rebeca Romero, Norton, William, Dixon, Katherine A., Lin, Steven, Shaitelman, Simona F., Chintalapani, Gouthami, Hill, Lori
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AME Publishing Company 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7330297/
https://www.ncbi.nlm.nih.gov/pubmed/32642136
http://dx.doi.org/10.21037/jtd.2020.03.100
_version_ 1783553087601901568
author Casal, Roberto F.
Schwalk, Audra J.
Fowlkes, Natalie
Aburto, Rebeca Romero
Norton, William
Dixon, Katherine A.
Lin, Steven
Shaitelman, Simona F.
Chintalapani, Gouthami
Hill, Lori
author_facet Casal, Roberto F.
Schwalk, Audra J.
Fowlkes, Natalie
Aburto, Rebeca Romero
Norton, William
Dixon, Katherine A.
Lin, Steven
Shaitelman, Simona F.
Chintalapani, Gouthami
Hill, Lori
author_sort Casal, Roberto F.
collection PubMed
description BACKGROUND: Loco-regionally advanced lung cancer is typically treated with a combination of chemotherapy and radiation therapy, but overall survival and local control remain poor. Radio-enhancing nanoparticles such as NBTXR3 activated by radiotherapy results in increased cell death and potentially an anti-tumor immune response. The goal of this study was to assess the feasibility and safety of endobronchial ultrasound (EBUS)-guided injection of NBTXR3 into mediastinal and hilar lymph nodes (LN), as well as assess nanoparticle retention in the LN post-injection. METHODS: Animals underwent bronchoscopy under general anesthesia with EBUS-guided injection of NBTXR3 into hilar and mediastinal LN. LN and injection volumes were calculated based on pre-injection computed tomography (CT) scans. CT scans were repeated at 5 min, 30 min, and 8 days post-injection. Blood-draws were also obtained at baseline and post-injection. Animals were then housed, monitored, and sacrificed 8 days post-injection. Necropsy was then performed with gross and histologic analysis of LN. RESULTS: A total of 20 LN were injected in 5 pigs (4 LN per animal). Nanoparticles were retained in 100% of LN at 30 min, and 90% of LN at 8 days. Extravasation of nanoparticles was seen in 4 out of the 20 LN. There were no cases of nanoparticle embolization visible by CT in distant organs. Small air-bubbles were introduced in the targets and surrounding tissue in 3 out of 20 LN. Of note, at 8 days, none of these air-bubbles were present on CT scan. There were no intra-procedural or post-procedural complications in either CT scans or necropsy findings. Pigs remained clinically stable and neither laboratory values nor necropsy showed evidence of inflammation. CONCLUSIONS: EBUS-guided injection of NBTXR3 radio-enhancing nanoparticles can be safely performed achieving a high rate of nanoparticle retention, low extravasation, and no visible nanoparticle embolization.
format Online
Article
Text
id pubmed-7330297
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher AME Publishing Company
record_format MEDLINE/PubMed
spelling pubmed-73302972020-07-07 Endobronchial ultrasound-guided injection of NBTXR3 radio-enhancing nanoparticles into mediastinal and hilar lymph nodes: a swine model to evaluate feasibility, injection technique, safety, nanoparticle retention and dispersion Casal, Roberto F. Schwalk, Audra J. Fowlkes, Natalie Aburto, Rebeca Romero Norton, William Dixon, Katherine A. Lin, Steven Shaitelman, Simona F. Chintalapani, Gouthami Hill, Lori J Thorac Dis Original Article BACKGROUND: Loco-regionally advanced lung cancer is typically treated with a combination of chemotherapy and radiation therapy, but overall survival and local control remain poor. Radio-enhancing nanoparticles such as NBTXR3 activated by radiotherapy results in increased cell death and potentially an anti-tumor immune response. The goal of this study was to assess the feasibility and safety of endobronchial ultrasound (EBUS)-guided injection of NBTXR3 into mediastinal and hilar lymph nodes (LN), as well as assess nanoparticle retention in the LN post-injection. METHODS: Animals underwent bronchoscopy under general anesthesia with EBUS-guided injection of NBTXR3 into hilar and mediastinal LN. LN and injection volumes were calculated based on pre-injection computed tomography (CT) scans. CT scans were repeated at 5 min, 30 min, and 8 days post-injection. Blood-draws were also obtained at baseline and post-injection. Animals were then housed, monitored, and sacrificed 8 days post-injection. Necropsy was then performed with gross and histologic analysis of LN. RESULTS: A total of 20 LN were injected in 5 pigs (4 LN per animal). Nanoparticles were retained in 100% of LN at 30 min, and 90% of LN at 8 days. Extravasation of nanoparticles was seen in 4 out of the 20 LN. There were no cases of nanoparticle embolization visible by CT in distant organs. Small air-bubbles were introduced in the targets and surrounding tissue in 3 out of 20 LN. Of note, at 8 days, none of these air-bubbles were present on CT scan. There were no intra-procedural or post-procedural complications in either CT scans or necropsy findings. Pigs remained clinically stable and neither laboratory values nor necropsy showed evidence of inflammation. CONCLUSIONS: EBUS-guided injection of NBTXR3 radio-enhancing nanoparticles can be safely performed achieving a high rate of nanoparticle retention, low extravasation, and no visible nanoparticle embolization. AME Publishing Company 2020-05 /pmc/articles/PMC7330297/ /pubmed/32642136 http://dx.doi.org/10.21037/jtd.2020.03.100 Text en 2020 Journal of Thoracic Disease. All rights reserved. https://creativecommons.org/licenses/by-nc-nd/4.0/Open Access Statement: This is an Open Access article distributed in accordance with the Creative Commons Attribution-NonCommercial-NoDerivs 4.0 International License (CC BY-NC-ND 4.0), which permits the non-commercial replication and distribution of the article with the strict proviso that no changes or edits are made and the original work is properly cited (including links to both the formal publication through the relevant DOI and the license). See: https://creativecommons.org/licenses/by-nc-nd/4.0 (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Original Article
Casal, Roberto F.
Schwalk, Audra J.
Fowlkes, Natalie
Aburto, Rebeca Romero
Norton, William
Dixon, Katherine A.
Lin, Steven
Shaitelman, Simona F.
Chintalapani, Gouthami
Hill, Lori
Endobronchial ultrasound-guided injection of NBTXR3 radio-enhancing nanoparticles into mediastinal and hilar lymph nodes: a swine model to evaluate feasibility, injection technique, safety, nanoparticle retention and dispersion
title Endobronchial ultrasound-guided injection of NBTXR3 radio-enhancing nanoparticles into mediastinal and hilar lymph nodes: a swine model to evaluate feasibility, injection technique, safety, nanoparticle retention and dispersion
title_full Endobronchial ultrasound-guided injection of NBTXR3 radio-enhancing nanoparticles into mediastinal and hilar lymph nodes: a swine model to evaluate feasibility, injection technique, safety, nanoparticle retention and dispersion
title_fullStr Endobronchial ultrasound-guided injection of NBTXR3 radio-enhancing nanoparticles into mediastinal and hilar lymph nodes: a swine model to evaluate feasibility, injection technique, safety, nanoparticle retention and dispersion
title_full_unstemmed Endobronchial ultrasound-guided injection of NBTXR3 radio-enhancing nanoparticles into mediastinal and hilar lymph nodes: a swine model to evaluate feasibility, injection technique, safety, nanoparticle retention and dispersion
title_short Endobronchial ultrasound-guided injection of NBTXR3 radio-enhancing nanoparticles into mediastinal and hilar lymph nodes: a swine model to evaluate feasibility, injection technique, safety, nanoparticle retention and dispersion
title_sort endobronchial ultrasound-guided injection of nbtxr3 radio-enhancing nanoparticles into mediastinal and hilar lymph nodes: a swine model to evaluate feasibility, injection technique, safety, nanoparticle retention and dispersion
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7330297/
https://www.ncbi.nlm.nih.gov/pubmed/32642136
http://dx.doi.org/10.21037/jtd.2020.03.100
work_keys_str_mv AT casalrobertof endobronchialultrasoundguidedinjectionofnbtxr3radioenhancingnanoparticlesintomediastinalandhilarlymphnodesaswinemodeltoevaluatefeasibilityinjectiontechniquesafetynanoparticleretentionanddispersion
AT schwalkaudraj endobronchialultrasoundguidedinjectionofnbtxr3radioenhancingnanoparticlesintomediastinalandhilarlymphnodesaswinemodeltoevaluatefeasibilityinjectiontechniquesafetynanoparticleretentionanddispersion
AT fowlkesnatalie endobronchialultrasoundguidedinjectionofnbtxr3radioenhancingnanoparticlesintomediastinalandhilarlymphnodesaswinemodeltoevaluatefeasibilityinjectiontechniquesafetynanoparticleretentionanddispersion
AT aburtorebecaromero endobronchialultrasoundguidedinjectionofnbtxr3radioenhancingnanoparticlesintomediastinalandhilarlymphnodesaswinemodeltoevaluatefeasibilityinjectiontechniquesafetynanoparticleretentionanddispersion
AT nortonwilliam endobronchialultrasoundguidedinjectionofnbtxr3radioenhancingnanoparticlesintomediastinalandhilarlymphnodesaswinemodeltoevaluatefeasibilityinjectiontechniquesafetynanoparticleretentionanddispersion
AT dixonkatherinea endobronchialultrasoundguidedinjectionofnbtxr3radioenhancingnanoparticlesintomediastinalandhilarlymphnodesaswinemodeltoevaluatefeasibilityinjectiontechniquesafetynanoparticleretentionanddispersion
AT linsteven endobronchialultrasoundguidedinjectionofnbtxr3radioenhancingnanoparticlesintomediastinalandhilarlymphnodesaswinemodeltoevaluatefeasibilityinjectiontechniquesafetynanoparticleretentionanddispersion
AT shaitelmansimonaf endobronchialultrasoundguidedinjectionofnbtxr3radioenhancingnanoparticlesintomediastinalandhilarlymphnodesaswinemodeltoevaluatefeasibilityinjectiontechniquesafetynanoparticleretentionanddispersion
AT chintalapanigouthami endobronchialultrasoundguidedinjectionofnbtxr3radioenhancingnanoparticlesintomediastinalandhilarlymphnodesaswinemodeltoevaluatefeasibilityinjectiontechniquesafetynanoparticleretentionanddispersion
AT hilllori endobronchialultrasoundguidedinjectionofnbtxr3radioenhancingnanoparticlesintomediastinalandhilarlymphnodesaswinemodeltoevaluatefeasibilityinjectiontechniquesafetynanoparticleretentionanddispersion