Literature DB >> 29563317

Extended release of perioperative immunotherapy prevents tumor recurrence and eliminates metastases.

Chun Gwon Park1,2,3, Christina A Hartl1, Daniela Schmid1,2, Ellese M Carmona1,2, Hye-Jung Kim1,2, Michael S Goldberg4,2.   

Abstract

Cancer immunotherapy can confer durable benefit, but the percentage of patients who respond to this approach remains modest. The ability to concentrate immunostimulatory compounds at the site of disease can overcome local immune tolerance and reduce systemic toxicity. Surgical resection of tumors may improve the efficacy of immunotherapy by removing the concentrated immunosuppressive microenvironment; however, it also removes tumor-specific leukocytes as well as tumor antigens that may be important to establishing antitumor immunity. Moreover, surgery produces a transient immunosuppressive state associated with wound healing that has been correlated with increased metastasis. Using multiple models of spontaneous metastasis, we show that extended release of agonists of innate immunity-including agonists of Toll-like receptor 7/8 (TLR7/8) or stimulator of interferon genes (STING)-from a biodegradable hydrogel placed in the tumor resection site cured a much higher percentage of animals than systemic or local administration of the same therapy in solution. Depletion and neutralization experiments confirmed that the observed prevention of local tumor recurrence and eradication of existing metastases require both the innate and adaptive arms of the immune system. The localized therapy increased the numbers of activated natural killer (NK) cells, dendritic cells, and T cells and induced production of large amounts of type I interferons, thereby converting an immunosuppressive post-resection microenvironment into an immunostimulatory one. The results suggest that the perioperative setting may prove to be a useful context for immunotherapy, particularly when the release of the therapy is extended locally.
Copyright © 2018 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works.

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Year:  2018        PMID: 29563317     DOI: 10.1126/scitranslmed.aar1916

Source DB:  PubMed          Journal:  Sci Transl Med        ISSN: 1946-6234            Impact factor:   17.956


  72 in total

1.  Intratumoral activation of the necroptotic pathway components RIPK1 and RIPK3 potentiates antitumor immunity.

Authors:  Annelise G Snyder; Nicholas W Hubbard; Michelle N Messmer; Sigal B Kofman; Cassidy E Hagan; Susana L Orozco; Kristy Chiang; Brian P Daniels; David Baker; Andrew Oberst
Journal:  Sci Immunol       Date:  2019-06-21

Review 2.  Advances in engineering local drug delivery systems for cancer immunotherapy.

Authors:  Peter Abdou; Zejun Wang; Qian Chen; Amanda Chan; Daojia R Zhou; Vivienne Gunadhi; Zhen Gu
Journal:  Wiley Interdiscip Rev Nanomed Nanobiotechnol       Date:  2020-04-07

3.  Preoperative stimulation of resolution and inflammation blockade eradicates micrometastases.

Authors:  Dipak Panigrahy; Allison Gartung; Jun Yang; Haixia Yang; Molly M Gilligan; Megan L Sulciner; Swati S Bhasin; Diane R Bielenberg; Jaimie Chang; Birgitta A Schmidt; Julia Piwowarski; Anna Fishbein; Dulce Soler-Ferran; Matthew A Sparks; Steven J Staffa; Vidula Sukhatme; Bruce D Hammock; Mark W Kieran; Sui Huang; Manoj Bhasin; Charles N Serhan; Vikas P Sukhatme
Journal:  J Clin Invest       Date:  2019-06-17       Impact factor: 14.808

Review 4.  Advances in immunotherapy delivery from implantable and injectable biomaterials.

Authors:  David G Leach; Simon Young; Jeffrey D Hartgerink
Journal:  Acta Biomater       Date:  2019-02-13       Impact factor: 8.947

Review 5.  T cell immunotherapy enhanced by designer biomaterials.

Authors:  Zachary S Dunn; John Mac; Pin Wang
Journal:  Biomaterials       Date:  2019-06-14       Impact factor: 12.479

6.  Anchoring of intratumorally administered cytokines to collagen safely potentiates systemic cancer immunotherapy.

Authors:  Noor Momin; Naveen K Mehta; Nitasha R Bennett; Leyuan Ma; Joseph R Palmeri; Magnolia M Chinn; Emi A Lutz; Byong Kang; Darrell J Irvine; Stefani Spranger; K Dane Wittrup
Journal:  Sci Transl Med       Date:  2019-06-26       Impact factor: 17.956

Review 7.  Harnessing cancer immunotherapy during the unexploited immediate perioperative period.

Authors:  Pini Matzner; Elad Sandbank; Elad Neeman; Oded Zmora; Vijaya Gottumukkala; Shamgar Ben-Eliyahu
Journal:  Nat Rev Clin Oncol       Date:  2020-02-17       Impact factor: 66.675

Review 8.  Immunostimulatory biomaterials to boost tumor immunogenicity.

Authors:  Oluwaseyi T Shofolawe-Bakare; Larry D Stokes; Mehjabeen Hossain; Adam E Smith; Thomas A Werfel
Journal:  Biomater Sci       Date:  2020-09-02       Impact factor: 6.843

Review 9.  Combined with interventional therapy, immunotherapy can create a new outlook for tumor treatment.

Authors:  Tonglei Fang; Junyuan Xiao; Yiran Zhang; Haiyan Hu; Yueqi Zhu; Yingsheng Cheng
Journal:  Quant Imaging Med Surg       Date:  2021-06

10.  Phosphorylation of RAB7 by TBK1/IKKε Regulates Innate Immune Signaling in Triple-Negative Breast Cancer.

Authors:  Jessica L Ritter; Zehua Zhu; Tran C Thai; Navin R Mahadevan; Philipp Mertins; Erik H Knelson; Brandon P Piel; Saemi Han; Jacob D Jaffe; Steven A Carr; David A Barbie; Thanh U Barbie
Journal:  Cancer Res       Date:  2019-10-29       Impact factor: 12.701

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