<link rel="stylesheet" href="styles.f3b1fba60ec7970c.css">

Publication:
High plus low dose radiation strategy in combination with TIGIT and PD1 blockade to promote systemic antitumor responses

Loading...
Thumbnail Image

Departments

Item type:Organizational Unit,

School / College / Institute

Item type:Organizational Unit,
SCHOOL OF MEDICINE
Upper Org Unit

Program

KU-Authors

Organization Authors

Co-Authors

Barsoumian, Hampartsoum B.

Menon, Hari

Younes, Ahmed I.

Hu, Yun

He, Kewen

Puebla-Osorio, Nahum

Wasley, Mark

Hsu, Ethan

Patel, Roshal R.

Yang, Liangpeng

Date

Language

Embargo Status

NO

Journal Title

Journal ISSN

Volume Title

Alternative Title

Abstract

This study combines a novel strategy of radiotherapy that utilizes high- and low- dose radiation with immune oncology agents (anti-TIGIT and anti-PD1 monoclonal antibodies) in order to overcome the inhibitory tumor stroma and battle tumors systemically. The findings from this work will impact how checkpoint inhibitors are delivered to maximize their efficacy. Tumors deploy various immune-evasion mechanisms that create a suppressive environment and render effector T-cells exhausted and inactive. Therefore, a rational utilization of checkpoint inhibitors may alleviate exhaustion and may partially restore antitumor functions. However, in high-tumor-burden models, the checkpoint blockade fails to maintain optimal efficacy, and other interventions are necessary to overcome the inhibitory tumor stroma. One such strategy is the use of radiotherapy to reset the tumor microenvironment and maximize systemic antitumor outcomes. In this study, we propose the use of anti-PD1 and anti-TIGIT checkpoint inhibitors in conjunction with our novel RadScopal technique to battle highly metastatic lung adenocarcinoma tumors, bilaterally established in 129Sv/Ev mice, to mimic high-tumor-burden settings. The RadScopal approach is comprised of high-dose radiation directed at primary tumors with low-dose radiation delivered to secondary tumors to improve the outcomes of systemic immunotherapy. Indeed, the triple therapy with RadScopal + anti-TIGIT + anti-PD1 was able to prolong the survival of treated mice and halted the growth of both primary and secondary tumors. Lung metastasis counts were also significantly reduced. In addition, the low-dose radiation component reduced TIGIT receptor (PVR) expression by tumor-associated macrophages and dendritic cells in secondary tumors. Finally, low-dose radiation within triple therapy decreased the percentages of TIGIT(+) exhausted T-cells and TIGIT(+) regulatory T-cells. Together, our translational approach provides a new treatment alternative for cases refractory to other checkpoints and may bring immunotherapy into a new realm of systemic disease control.

Source

Publisher

Multidisciplinary Digital Publishing Institute (MDPI)

Subject

Citation

item.page.haspartof

Source

Cancers

item.page.ispartofseries

item.page.edition

DOI

10.3390/cancers14010221

item.page.datauri

item.page.link

Rights

Copyrights Note

Endorsement

Review

Supplemented By

Referenced By

Related Patent

Related Goal

Item type:Goal, Access status: Open Access ,
03 - Good Health and Well-being
Over the last 15 years, the number of childhood deaths has been cut in half. This proves that it is possible to win the fight against almost every disease. Still, we are spending an astonishing amount of money and resources on treating illnesses that are surprisingly easy to prevent. The new goal for worldwide Good Health promotes healthy lifestyles, preventive measures and modern, efficient healthcare for everyone.
Google Scholar
Scholar'da Ara ↗
2
Görüntülenme
21
İndirme
Altmetric
Dimensions
PlumX Metrikleri
BIP! Indicators