In-situ vaccination using focused ultrasound heating and anti-CD-40 agonistic antibody enhances T-cell mediated local and abscopal effects in murine melanoma

The success of melanoma immunotherapy is dependent on the presence of activated and functional T-cells in tumors. The objective of this study was to investigate the impact of local-focused ultrasound (FUS) heating (∼42–45 °C) and in-situ anti-CD-40 agonistic antibody in enhancing T-cell function for...

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Main Authors: Mohit Pratap Singh, Sri Nandhini Sethuraman, Jerry Ritchey, Steven Fiering, Chandan Guha, Jerry Malayer, Ashish Ranjan
Format: Article
Language:English
Published: Taylor & Francis Group 2019-11-01
Series:International Journal of Hyperthermia
Subjects:
Online Access:http://dx.doi.org/10.1080/02656736.2019.1663280
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spelling doaj-909d1f37a8124fa8979f2ad773e604eb2020-11-25T01:17:58ZengTaylor & Francis GroupInternational Journal of Hyperthermia0265-67361464-51572019-11-01360647310.1080/02656736.2019.16632801663280In-situ vaccination using focused ultrasound heating and anti-CD-40 agonistic antibody enhances T-cell mediated local and abscopal effects in murine melanomaMohit Pratap Singh0Sri Nandhini Sethuraman1Jerry Ritchey2Steven Fiering3Chandan Guha4Jerry Malayer5Ashish Ranjan6Oklahoma State UniversityOklahoma State UniversityOklahoma State UniversityDartmouth CollegeAlbert Einstein College of MedicineOklahoma State UniversityOklahoma State UniversityThe success of melanoma immunotherapy is dependent on the presence of activated and functional T-cells in tumors. The objective of this study was to investigate the impact of local-focused ultrasound (FUS) heating (∼42–45 °C) and in-situ anti-CD-40 agonistic antibody in enhancing T-cell function for melanoma immunotherapy. We compared the following groups of mice with bilateral flank B16 F10 melanoma: (1) Control, (2) FUS, (3) CD-40, and (4) CD-40 + FUS (FUS40). FUS heating was applied for ∼15 min in right flank tumor, and intratumoral injections of CD-40 were performed sequentially within 4 h. A total of 3 FUS and 4 anti-CD-40 treatments were administered unilaterally 3 days apart. Mice were sacrificed 30 days post-inoculation, and the treated tumor and spleen tissues were profiled for T-cell function and macrophage polarization. Compared to all other groups, histology and flow cytometry showed that FUS40 increased the population of tumor-specific CD-4+ and CD-8+ T cells rich in Granzyme B+, interleukin-2 (IL-2) and IFN-γ production and poor in PD-1 expression. In addition, FUS40 promoted the infiltration of tumor-suppressing M1 phenotype macrophages in the treated mice. The resultant immune-enhancing effects of FUS40 suppressed B16 melanoma growth at the treated site by 2–3-folds compared to control, FUS, and CD-40, and also achieved significant abscopal effects in untreated tumors relative to CD40 alone. Additionally, the local FUS40 prevented adverse liver toxicities in the treated mice. Our study suggests that combined FUS and CD-40 can enhance T-cell and macrophage functions to aid effective melanoma immunotherapy.http://dx.doi.org/10.1080/02656736.2019.1663280t-cell exhaustionfocused ultrasoundcd-40melanomam1 macrophages
collection DOAJ
language English
format Article
sources DOAJ
author Mohit Pratap Singh
Sri Nandhini Sethuraman
Jerry Ritchey
Steven Fiering
Chandan Guha
Jerry Malayer
Ashish Ranjan
spellingShingle Mohit Pratap Singh
Sri Nandhini Sethuraman
Jerry Ritchey
Steven Fiering
Chandan Guha
Jerry Malayer
Ashish Ranjan
In-situ vaccination using focused ultrasound heating and anti-CD-40 agonistic antibody enhances T-cell mediated local and abscopal effects in murine melanoma
International Journal of Hyperthermia
t-cell exhaustion
focused ultrasound
cd-40
melanoma
m1 macrophages
author_facet Mohit Pratap Singh
Sri Nandhini Sethuraman
Jerry Ritchey
Steven Fiering
Chandan Guha
Jerry Malayer
Ashish Ranjan
author_sort Mohit Pratap Singh
title In-situ vaccination using focused ultrasound heating and anti-CD-40 agonistic antibody enhances T-cell mediated local and abscopal effects in murine melanoma
title_short In-situ vaccination using focused ultrasound heating and anti-CD-40 agonistic antibody enhances T-cell mediated local and abscopal effects in murine melanoma
title_full In-situ vaccination using focused ultrasound heating and anti-CD-40 agonistic antibody enhances T-cell mediated local and abscopal effects in murine melanoma
title_fullStr In-situ vaccination using focused ultrasound heating and anti-CD-40 agonistic antibody enhances T-cell mediated local and abscopal effects in murine melanoma
title_full_unstemmed In-situ vaccination using focused ultrasound heating and anti-CD-40 agonistic antibody enhances T-cell mediated local and abscopal effects in murine melanoma
title_sort in-situ vaccination using focused ultrasound heating and anti-cd-40 agonistic antibody enhances t-cell mediated local and abscopal effects in murine melanoma
publisher Taylor & Francis Group
series International Journal of Hyperthermia
issn 0265-6736
1464-5157
publishDate 2019-11-01
description The success of melanoma immunotherapy is dependent on the presence of activated and functional T-cells in tumors. The objective of this study was to investigate the impact of local-focused ultrasound (FUS) heating (∼42–45 °C) and in-situ anti-CD-40 agonistic antibody in enhancing T-cell function for melanoma immunotherapy. We compared the following groups of mice with bilateral flank B16 F10 melanoma: (1) Control, (2) FUS, (3) CD-40, and (4) CD-40 + FUS (FUS40). FUS heating was applied for ∼15 min in right flank tumor, and intratumoral injections of CD-40 were performed sequentially within 4 h. A total of 3 FUS and 4 anti-CD-40 treatments were administered unilaterally 3 days apart. Mice were sacrificed 30 days post-inoculation, and the treated tumor and spleen tissues were profiled for T-cell function and macrophage polarization. Compared to all other groups, histology and flow cytometry showed that FUS40 increased the population of tumor-specific CD-4+ and CD-8+ T cells rich in Granzyme B+, interleukin-2 (IL-2) and IFN-γ production and poor in PD-1 expression. In addition, FUS40 promoted the infiltration of tumor-suppressing M1 phenotype macrophages in the treated mice. The resultant immune-enhancing effects of FUS40 suppressed B16 melanoma growth at the treated site by 2–3-folds compared to control, FUS, and CD-40, and also achieved significant abscopal effects in untreated tumors relative to CD40 alone. Additionally, the local FUS40 prevented adverse liver toxicities in the treated mice. Our study suggests that combined FUS and CD-40 can enhance T-cell and macrophage functions to aid effective melanoma immunotherapy.
topic t-cell exhaustion
focused ultrasound
cd-40
melanoma
m1 macrophages
url http://dx.doi.org/10.1080/02656736.2019.1663280
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