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ILC2s amplify PD-1 blockade by activating tissue-specific cancer immunity 期刊论文
NATURE, 2020
作者:  Papai, Gabor;  Frechard, Alexandre;  Kolesnikova, Olga;  Crucifix, Corinne;  Schultz, Patrick;  Ben-Shem, Adam
收藏  |  浏览/下载:9/0  |  提交时间:2020/07/03

Tumour-infiltrating group 2 innate lymphoid cells prime CD8(+) T cells and amplify the anti-tumour effects of PD-1 blockade in pancreatic ductal adenocarcinoma.


Group 2 innate lymphoid cells (ILC2s) regulate inflammation and immunity in mammalian tissues(1,2). Although ILC2s are found in cancers of these tissues(3), their roles in cancer immunity and immunotherapy are unclear. Here we show that ILC2s infiltrate pancreatic ductal adenocarcinomas (PDACs) to activate tissue-specific tumour immunity. Interleukin-33 (IL33) activates tumour ILC2s (TILC2s) and CD8(+) T cells in orthotopic pancreatic tumours but not heterotopic skin tumours in mice to restrict pancreas-specific tumour growth. Resting and activated TILC2s express the inhibitory checkpoint receptor PD-1. Antibody-mediated PD-1 blockade relieves ILC2 cell-intrinsic PD-1 inhibition to expand TILC2s, augment anti-tumour immunity, and enhance tumour control, identifying activated TILC2s as targets of anti-PD-1 immunotherapy. Finally, both PD-1(+) TILC2s and PD-1(+) T cells are present in most human PDACs. Our results identify ILC2s as anti-cancer immune cells for PDAC immunotherapy. More broadly, ILC2s emerge as tissue-specific enhancers of cancer immunity that amplify the efficacy of anti-PD-1 immunotherapy. As ILC2s and T cells co-exist in human cancers and share stimulatory and inhibitory pathways, immunotherapeutic strategies to collectively target anti-cancer ILC2s and T cells may be broadly applicable.


  
Strain-hardening and suppression of shear-banding in rejuvenated bulk metallic glass 期刊论文
NATURE, 2020, 578 (7796) : 559-+
作者:  Papai, Gabor;  Frechard, Alexandre;  Kolesnikova, Olga;  Crucifix, Corinne;  Schultz, Patrick;  Ben-Shem, Adam
收藏  |  浏览/下载:12/0  |  提交时间:2020/07/03

Strain-hardening (the increase of flow stress with plastic strain) is the most important phenomenon in the mechanical behaviour of engineering alloys because it ensures that flow is delocalized, enhances tensile ductility and inhibits catastrophic mechanical failure(1,2). Metallic glasses (MGs) lack the crystallinity of conventional engineering alloys, and some of their properties-such as higher yield stress and elastic strain limit(3)-are greatly improved relative to their crystalline counterparts. MGs can have high fracture toughness and have the highest known '  damage tolerance'  (defined as the product of yield stress and fracture toughness)(4) among all structural materials. However, the use of MGs in structural applications is largely limited by the fact that they show strain-softening instead of strain-hardening  this leads to extreme localization of plastic flow in shear bands, and is associated with early catastrophic failure in tension. Although rejuvenation of an MG (raising its energy to values that are typical of glass formation at a higher cooling rate) lowers its yield stress, which might enable strain-hardening(5), it is unclear whether sufficient rejuvenation can be achieved in bulk samples while retaining their glassy structure. Here we show that plastic deformation under triaxial compression at room temperature can rejuvenate bulk MG samples sufficiently to enable strain-hardening through a mechanism that has not been previously observed in the metallic state. This transformed behaviour suppresses shear-banding in bulk samples in normal uniaxial (tensile or compressive) tests, prevents catastrophic failure and leads to higher ultimate flow stress. The rejuvenated MGs are stable at room temperature and show exceptionally efficient strain-hardening, greatly increasing their potential use in structural applications.


Bulk metallic glasses can acquire the ability to strain-harden through a mechanical rejuvenation treatment at room temperature that retains their non-crystalline structure.


  
Crustal inheritance and a top-down control on arc magmatism at Mount St Helens 期刊论文
NATURE GEOSCIENCE, 2018, 11 (11) : 865-+
作者:  Bedrosian, Paul A.;  Peacock, Jared R.;  Bowles-Martinez, Esteban;  Schultz, Adam;  Hill, Graham J.
收藏  |  浏览/下载:6/0  |  提交时间:2019/04/09
Late-surviving stem mammal links the lowermost Cretaceous of North America and Gondwana (vol 558, pg 108, 2018) 期刊论文
NATURE, 2018, 562 (7728) : E27-E27
作者:  Huttenlocker, Adam K.;  Grossnickle, David M.;  Kirkland, James I.;  Schultz, Julia A.;  Luo, Zhe-Xi
收藏  |  浏览/下载:7/0  |  提交时间:2019/11/27
Transport of Canadian forest fire smoke over the UK as observed by lidar 期刊论文
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2018, 18 (15) : 11375-11388
作者:  Vaughan, Geraint;  Draude, Adam P.;  Ricketts, Hugo M. A.;  Schultz, David M.;  Adam, Mariana;  Sugier, Jacqueline;  Wareing, David P.
收藏  |  浏览/下载:4/0  |  提交时间:2019/04/09
Collaborative Research: Magnetotelluric and Seismic Investigations of the Distribution of Magmatic and Hydrous Fluids Beneath Yellowstone 项目
项目编号:1460294; 经费:272189(USD); 起止日期:2016 / dc_date_end
项目负责人:  Adam Schultz
收藏  |  浏览/下载:5/0  |  提交时间:2019/04/11