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Coordination and cooperation of immunosuppressive mechanisms in pancreatic ductal adenocarcinoma
Umeå universitet, Medicinska fakulteten, Institutionen för strålningsvetenskaper, Onkologi. (Daniel Öhlund)ORCID-id: 0000-0002-1353-316X
Umeå universitet, Medicinska fakulteten, Institutionen för strålningsvetenskaper, Onkologi. (Daniel Öhlund)
Umeå universitet, Medicinska fakulteten, Institutionen för strålningsvetenskaper, Onkologi. (Daniel Öhlund)ORCID-id: 0000-0002-5847-2778
(Engelska)Manuskript (preprint) (Övrigt vetenskapligt)
Abstract [en]

The ability to evade the immune system is crucial for cancer cells to survive. In pancreatic ductal adenocarcinoma (PDAC), various mechanisms contributing to immunosuppression have been described, including the recruitment of suppressive immune cells like M2 macrophages, the expression of cell membrane attached proteins like PDL-1, or secretion of extracellular proteins inducing immune cell apoptosis. PDAC is characterized by a rich stroma, consisting of large quantities of extracellular matrix (ECM) proteins, immune cells, fibroblasts and blood vessels. Cancer cell-derived proteins deposited in the stroma can inhibit immune cell function and thereby contribute to the progression of the disease. Galectin 4 (gal 4) is highly expressed by PDAC cancer cells and is secreted into the stroma and has recently been shown to have the capacity to induce T-cell apoptosis in PDAC tumor. High levels of gal 4 is also associated to poor prognosis and reduced immune activity in PDAC patients. Here we show that sets of immunosuppressive genes form groups based on correlation of expression levels. Gal 4 gene expression correlates with other galectin family proteins, collectively clustering into a distinct immune evasion group. This cluster has negative correlation to other more classical immunosuppressive factors, such as PDL-1, CXCL12, and TGFBI, indicating that a subset of tumors mainly relies on galectins to achieve immune evasion. Conversely, tumors with low expression of gal 4 have high expression of one or more of the classical immunosuppressive factors. These results indicate that different tumors rely on different mechanisms to achieve immune evasion and emphasize the need for personalized treatment strategies when targeting immunosuppression in PDAC.  

Nyckelord [en]
pancreatic adenocarcinoma, Galectin 4, immunotherapy, pancreatic cancer, immunosuppression, co-expression, combination therapy, galectin 3, galectin 9
Nationell ämneskategori
Cancer och onkologi
Forskningsämne
medicinsk cellbiologi; onkologi; immunologi
Identifikatorer
URN: urn:nbn:se:umu:diva-201041OAI: oai:DiVA.org:umu-201041DiVA, id: diva2:1711197
Ingår i projekt
Tumörstromat som läkemedelsmål vid pankreascancer, VetenskapsrådetTillgänglig från: 2022-11-16 Skapad: 2022-11-16 Senast uppdaterad: 2022-11-16
Ingår i avhandling
1. Immunosuppressive and metastasis-promoting matrisome proteins in pancreatic cancer: the role of galectin 4 and SERPINB5
Öppna denna publikation i ny flik eller fönster >>Immunosuppressive and metastasis-promoting matrisome proteins in pancreatic cancer: the role of galectin 4 and SERPINB5
2022 (Engelska)Doktorsavhandling, sammanläggning (Övrigt vetenskapligt)
Alternativ titel[sv]
Immunosuppresiva och metastasfrämjande matrsomproteiner i pankreascancer : effekten av galectin-4 och SERPINB5
Abstract [en]

In Sweden 1200-1300 people are diagnosed with pancreatic ductal adenocarcinoma (PDAC) every year. Late diagnosis, together with poor treatment response and resistance to checkpoint inhibitor immunotherapy, contributes to the poor prognosis of the disease. 

PDAC is characterized by abundant deposits of extracellular matrix, which mainly includes structural proteins including collagens, proteoglycans, cell-binding glycoproteins, carbohydrates, and secreted proteins, all constituting the matrisome of the tumor. The matrisome protects cancer cells and affects the outcome. Several highly expressed matrisome proteins are involved in oncogenesis, including the processes of immunosuppression and metastasis formation, therefore contributing to the poor prognosis. In this thesis the pathophysiological role of several matrisome proteins in PDAC tumor progression was studied. Unbiased analysis of matrisome proteins in PDAC tumors revealed increased levels of cancer cell-derived secreted proteins compared to normal healthy control tissue. Subsequently, differentially expressed candidate proteins, with known cellular functions in other disease but hitherto uncharacterized role in PDAC progression, were selected.

Serine protease inhibitor clade B member 5 (SERPINB5), agrin, and cystatin B (CSTB), were selected for the study described in paper I based on their known roles in the metastasis formation process in other types of cancers. SERPINB5, agrin and CSTB were found to increase metastasis in models of PDAC by affecting epithelial to mesenchymal transition, ECM degradation and extravasation. In PDAC tumors, high levels of extracellular SERPINB5 correlated to reduced overall survival.  

Galectin 4 (Gal 4) was selected for the study described in paper II based on its known immunosuppressive effects. Gal 4 is highly expressed in PDAC and was found to inhibit T cell infiltration and induce apoptosis in CD8+ T cells by binding to CD3 on the surface of T cells. Gal 4 was associated with better survival in PDAC patients and correlated to higher activation and cytolytic effect of CD8+ T cells.

The relation between gal 4 and other immunosuppressive proteins was studied in paper III. Analysis of available datasets revealed that gal 4 expression correlates with other cancer cell-derived immunosuppressive proteins of the galectin family, galectin 3 and galectin 9, while negatively correlating with the stroma-derived factors galectin-1 and TGFBI.

Findings in this thesis show that targeting of matrisome proteins in PDAC can be a promising therapy strategy. Blocking extracellular SERPINB5 could result in reduced metastasis and increased survival. Blocking intracellular gal 4 could increase anti-tumor immunity and synergize with checkpoint inhibition therapy.

The identified co-expression and coregulation of different immunosuppressive proteins indicate that different tumors can be classified based on their predominant immunosuppressive mechanisms. Following this classification in individual patients, combinations of therapies against different immunosuppressive mechanisms could represent a promising strategy to introduce effective immunotherapies for PDAC patients.  

Ort, förlag, år, upplaga, sidor
Umeå: Umeå University, 2022. s. 87
Serie
Umeå University medical dissertations, ISSN 0346-6612 ; 2207
Nyckelord
pancreatic cancer, galectin 4, immunotherapy, SERPINB5, metastasis, extracellular matrix, drug target
Nationell ämneskategori
Cancer och onkologi
Forskningsämne
onkologi; immunologi; medicin
Identifikatorer
urn:nbn:se:umu:diva-201043 (URN)978-91-7855-941-1 (ISBN)978-91-7855-942-8 (ISBN)
Disputation
2022-12-09, Hörsal B, 9 trappor, byggnad 1D, Umeå, 13:00 (Engelska)
Opponent
Handledare
Tillgänglig från: 2022-11-18 Skapad: 2022-11-16 Senast uppdaterad: 2022-11-17Bibliografiskt granskad

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Lidström, TommyPatthey, CedricÖhlund, Daniel

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