With the increasing knowledge of cancer pathophysiology, new therapeutics based on the modulation of the immune system have been developed, overcoming many of the disadvantages of traditional pharmaceuticals. Several immunotherapy systems have in fact become the preferred treatments to tackle particular types of cancer. Despite these impressive clinical results, issues, such as biomolecule susceptibility to proteolytic degradation and tumor microenvironment immunosuppression need to be overcome to further increase efficacy and safety upon use in patients. Natural-based polymers have shown the potential to address some of these limitations. Widely used in the field of tissue engineering and regenerative medicine, these polymers have been increasingly incorporated in the development of improved immunotherapeutics due to intrinsic properties, such as biocompatibility and bio-similarity. In this review, the novelties these polymers have brought to immunotherapy and their implementation to create new and more complex therapeutics are outlined, and emerging trends are identified. We argue that to fully exploit the potential of natural-based polymers, improved interaction between clinicians and material scientists must come to the fore. Concurrently, material scientists must intensify efforts to overcome the problem of batch-to-batch variability in natural-based polymers to streamline clinical application. All-in-all, we envision a bright future for natural-based polymers in immunotherapy.
Bernard A. Fox, Dolores J. Schendel, Lisa H. Butterfield, Steinar Aamdal, James P. Allison, Paolo A. Ascierto, Michael B. Atkins, Jiřina Bartůňková, Lothar Bergmann, Neil L. Berinstein, Cristina C Bonorino, Ernest C. Borden, Jonathan L. Bramson, Cedrik M. Britten, Xuetao Cao, William E. Carson, Alfred E. Chang, Dainius Characiejus, Aniruddha Choudhury, George Coukos, Tanja D. de Gruijl, Robert O. Dillman, Harry Dolstra, Glenn Dranoff, Lindy G. Durrant, James H. Finke, Jérôme Galon, Jared Gollob, Cécile Gouttefangeas, Fabio Grizzi, Michele Guida, Leif Håkansson, Kristen Hege, Ronald B. Herberman, F. Stephen Hodi, Axel Hoos, Christoph Huber, Patrick Hwu, Kohzoh Imai, Elizabeth M. Jaffee, Sylvia Janetzki, Carl H. June, Paweł Kaliński, Howard L. Kaufman, Koji Kawakami, Yutaka Kawakami, Ulrich Keilholtz, Samir N. Khleif, Rolf Kiessling, Beatrix Kotlán, Guido Guido Kroemer, Réjean Lapointe, Hyam I. Levitsky, Michael T. Lotze, Cristina Maccalli, Michele Maio, Jens‐Peter Marschner, Michael J. Mastrangelo, Giuseppe Masucci, Ignacio Melero, C.J.M. Melief, William J. Murphy, Brad H. Nelson, Andrea Nicolini, Michael I. Nishimura, Kunle Odunsi, Pamela S. Ohashi, Jill O’Donnell-Tormey, Lloyd J. Old, Christian H. Ottensmeier, Michael Papamichail, Giorgio Parmiani, Graham Pawelec, Enrico Proietti, Shukui Qin, Robert C. Rees, Antoni Ribas, Ruggero Ridolfi, Gerd Ritter, Licia Rivoltini, Pedro Romero, Mohamed L. Salem, Rik J. Scheper, Barbara Seliger, Padmanee Sharma, Hiroshi Shiku, Harpreet Singh‐Jasuja, Wenru Song, Per thor Straten, Hideaki Tahara, Zhigang Tian, Sjoerd H. van der Burg, Paul von Hoegen, Ena Wang, Marij J.P. Welters, H. Winter, Tara Withington, Jedd D. Wolchok, Weihua Xiao, Laurence Zitvogel
Holbrook E. Kohrt, Paul C. Tumeh, Don Benson, Nina Bhardwaj, Joshua Brody, Silvia C. Formenti, Bernard A. Fox, Jérôme Galon, Carl H. June, Michael Kalos, Ilan R. Kirsch, Thomas O. Kleen, Guido Guido Kroemer, Lewis L. Lanier, Ronald Levy, H. Kim Lyerly, Holden T. Maecker, Aurélien Marabelle, Jos Melenhorst, Jeffrey D. Miller, Ignacio Melero, Kunle Odunsi, Karolina Palucka,
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