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For: Dufrane D, Gianello P. Macro- or microencapsulation of pig islets to cure type 1 diabetes. World J Gastroenterol 2012; 18(47): 6885-6893 [PMID: 23322985 DOI: 10.3748/wjg.v18.i47.6885]
URL: https://www.wjgnet.com/1007-9327/full/v18/i47/6885.htm
Number Citing Articles
1
Hai-tao Zhu, Lu Lu, Xing-yu Liu, Liang Yu, Yi Lyu, Bo Wang. Treatment of diabetes with encapsulated pig islets: an update on current developmentsJournal of Zhejiang University-SCIENCE B 2015; 16(5): 329 doi: 10.1631/jzus.B1400310
2
Albert Espona-Noguera, Jesús Ciriza, Alberto Cañibano-Hernández, Gorka Orive, Rosa María Hernández, Laura Saenz del Burgo, Jose Pedraz. Review of Advanced Hydrogel-Based Cell Encapsulation Systems for Insulin Delivery in Type 1 Diabetes MellitusPharmaceutics 2019; 11(11): 597 doi: 10.3390/pharmaceutics11110597
3
Isgard S. Hueck, Jane Frimodig, Pamela Itkin-Ansari, David A. Gough. Biological, Physical and Technical Basics of Cell Engineering2018; : 29 doi: 10.1007/978-981-10-7904-7_2
4
Klearchos K. Papas, Hector De Leon, Thomas M. Suszynski, Robert C. Johnson. Oxygenation strategies for encapsulated islet and beta cell transplantsAdvanced Drug Delivery Reviews 2019; 139: 139 doi: 10.1016/j.addr.2019.05.002
5
Genaro A. Paredes-Juarez, Paul de Vos, Jeff W.M. Bulte. Recent progress in the use and tracking of transplanted islets as a personalized treatment for type 1 diabetesExpert Review of Precision Medicine and Drug Development 2017; 2(1): 57 doi: 10.1080/23808993.2017.1302305
6
Sarah Duin, Kathleen Schütz, Tilman Ahlfeld, Susann Lehmann, Anja Lode, Barbara Ludwig, Michael Gelinsky. 3D Bioprinting of Functional Islets of Langerhans in an Alginate/Methylcellulose Hydrogel BlendAdvanced Healthcare Materials 2019; 8(7) doi: 10.1002/adhm.201801631
7
Katie Baker. Comparison of bioartificial and artificial pancreatic transplantation as promising therapies for Type I Diabetes MellitusBioscience Horizons 2016; 9: hzw002 doi: 10.1093/biohorizons/hzw002
8
Alice Anna Tomei, Chiara Villa, Camillo Ricordi. Development of an encapsulated stem cell-based therapy for diabetesExpert Opinion on Biological Therapy 2015; 15(9): 1321 doi: 10.1517/14712598.2015.1055242
9
M.-C. Vantyghem, F. Defrance, D. Quintin, C. Leroy, V. Raverdi, G. Prévost, R. Caiazzo, J. Kerr-Conte, F. Glowacki, M. Hazzan, C. Noel, F. Pattou, A.S. Balavoine, R. Bresson, M.F. Bourdelle-Hego, M. Cazaubiel, M. Cordonnier, D. Delefosse, F. Dorey, A. Fayard, C. Fermon, P. Fontaine, C. Gillot, S. Haye, A.C. Le Guillou, W. Karrouz, C. Lemaire, M. Lepeut, R. Leroy, B. Mycinski, E. Parent, C. Siame, A. Sterkers, F. Torres, O. Verier-Mine, E. Verlet, R. Desailloud, A. Dürrbach, M. Godin, J.D. Lalau, C. Lukas-Croisier, E. Thervet, O. Toupance, Y. Reznik, P.F. Westeel. Treating diabetes with islet transplantation: Lessons from the past decade in LilleDiabetes & Metabolism 2014; 40(2): 108 doi: 10.1016/j.diabet.2013.10.003
10
Ying Li, Anthony W. Frei, Ethan Y. Yang, Irayme Labrada-Miravet, Chuqiao Sun, Yanan Rong, Magdalena M. Samojlik, Allison L. Bayer, Cherie L. Stabler. In vitro platform establishes antigen-specific CD8+ T cell cytotoxicity to encapsulated cells via indirect antigen recognitionBiomaterials 2020; 256: 120182 doi: 10.1016/j.biomaterials.2020.120182
11
Genaro Alberto Paredes Juárez, Milica Spasojevic, Marijke M. Faas, Paul de Vos. Immunological and Technical Considerations in Application of Alginate-Based Microencapsulation SystemsFrontiers in Bioengineering and Biotechnology 2014; 2 doi: 10.3389/fbioe.2014.00026
12
Kumiko Ajima, Naoto Tsuda, Tadashi Takaki, Shoji Furusako, Shigeki Matsumoto, Koya Shinohara, Yzumi Yamashita, Sayaka Amano, Chinatsu Oyama, Masayuki Shimoda. A porcine islet-encapsulation device that enables long-term discordant xenotransplantation in immunocompetent diabetic miceCell Reports Methods 2023; 3(1): 100370 doi: 10.1016/j.crmeth.2022.100370
13
B. Ludwig. Bioartifizielles Pankreas durch InselzellverkapselungDer Diabetologe 2015; 11(7): 558 doi: 10.1007/s11428-015-0020-2
14
A. Rodriguez-Brotons, W. Bietiger, C. Peronet, J. Magisson, C. Sookhareea, A. Langlois, C. Mura, N. Jeandidier, M. Pinget, S. Sigrist, E. Maillard. Impact of Pancreatic Rat Islet Density on Cell Survival during HypoxiaJournal of Diabetes Research 2016; 2016: 1 doi: 10.1155/2016/3615286
15
Magdy Elnashar, Mauro Vaccarezza, Hani Al-Salami. Cutting-edge biotechnological advancement in islet delivery using pancreatic and cellular approachesFuture Science OA 2021; 7(3) doi: 10.2144/fsoa-2020-0105
16
Susan A. Safley, Norma S. Kenyon, Dora M. Berman, Graham F. Barber, Melissa Willman, Stephanie Duncanson, Neal Iwakoshi, Robert Holdcraft, Lawrence Gazda, Peter Thompson, I. Raul Badell, Athanassios Sambanis, Camillo Ricordi, Collin J. Weber. Microencapsulated adult porcine islets transplanted intraperitoneally in streptozotocin‐diabetic non‐human primatesXenotransplantation 2018; 25(6) doi: 10.1111/xen.12450
17
Barbara Ludwig. Transplantation, Bioengineering, and Regeneration of the Endocrine Pancreas2020; : 751 doi: 10.1016/B978-0-12-814833-4.00060-5
18
Ainhoa Gonzalez-Pujana, Gorka Orive, Jose Luis Pedraz, Edorta Santos-Vizcaino, Rosa Maria Hernandez. Alginates and Their Biomedical ApplicationsSpringer Series in Biomaterials Science and Engineering 2018; 11: 67 doi: 10.1007/978-981-10-6910-9_3
19
Paul de Vos, Hamideh Aghajani Lazarjani, Denis Poncelet, Marijke M. Faas. Polymers in cell encapsulation from an enveloped cell perspectiveAdvanced Drug Delivery Reviews 2014; : 15 doi: 10.1016/j.addr.2013.11.005
20
Clark K. Colton. Oxygen supply to encapsulated therapeutic cellsAdvanced Drug Delivery Reviews 2014; : 93 doi: 10.1016/j.addr.2014.02.007
21
Chun Loong Ho, In Young Hwang, Kathy Loh, Matthew Wook Chang. Matrix-immobilized yeast for large-scale production of recombinant human lactoferrinMedChemComm 2015; 6(3): 486 doi: 10.1039/C4MD00537F
22
Elisabeth Kemter, Alexander Kind, Bruno Reichart, Eckhard Wolf. Cell Engineering and Regeneration2020; : 367 doi: 10.1007/978-3-319-08831-0_23
23
Nikolai Klymiuk, Barbara Ludwig, Jochen Seissler, Bruno Reichart, Eckhard Wolf. Current Concepts of Using Pigs as a Source for Beta-Cell Replacement Therapy of Type 1 DiabetesCurrent Molecular Biology Reports 2016; 2(2): 73 doi: 10.1007/s40610-016-0039-1
24
Ryo Kogawa, Kentaro Nakamura, Yusuke Mochizuki. A New Islet Transplantation Method Combining Mesenchymal Stem Cells with Recombinant Peptide Pieces, Microencapsulated Islets, and Mesh BagsBiomedicines 2020; 8(9): 299 doi: 10.3390/biomedicines8090299
25
David K.C. Cooper, Shinichi Matsumoto, Adrian Abalovich, Takeshi Itoh, Nizar I. Mourad, Pierre R. Gianello, Eckhard Wolf, Emanuele Cozzi. Progress in Clinical Encapsulated Islet XenotransplantationTransplantation 2016; 100(11): 2301 doi: 10.1097/TP.0000000000001371
26
Hae Kyung Yang, Dong-Sik Ham, Heon-Seok Park, Marie Rhee, Young Hye You, Min Jung Kim, Juyoung Shin, On-You Kim, Gilson Khang, Tae Ho Hong, Ji-Won Kim, Seung-Hwan Lee, Jae-Hyoung Cho, Kun-Ho Yoon. Long-term Efficacy and Biocompatibility of Encapsulated Islet Transplantation With Chitosan-Coated Alginate Capsules in Mice and Canine Models of DiabetesTransplantation 2016; 100(2): 334 doi: 10.1097/TP.0000000000000927
27
Masayuki Shimoda. Tissue Engineering for Artificial Organs2017; : 553 doi: 10.1002/9783527689934.ch17
28
Assem Ashimova, Sergey Yegorov, Baurzhan Negmetzhanov, Gonzalo Hortelano. Cell Encapsulation Within Alginate Microcapsules: Immunological Challenges and OutlookFrontiers in Bioengineering and Biotechnology 2019; 7 doi: 10.3389/fbioe.2019.00380
29
Rachid Jellali, Amal Essaouiba, Eric Leclerc, Cécile Legallais. Current Trends and Future Developments on (Bio-) Membranes2020; : 77 doi: 10.1016/B978-0-12-814225-7.00004-8
30
Pankaj V. Dixit, Dinesh K. Mishra, Sanjay Sharma, Rupesh K. Gautam. Nanocarriers and Diabetes: New Vistas and the Way AheadCurrent Pharmaceutical Biotechnology 2023; 24(11): 1420 doi: 10.2174/1389201024666221227140728
31
Barbara Ludwig, Stefan Ludwig. Transplantable bioartificial pancreas devices: current status and future prospectsLangenbeck's Archives of Surgery 2015; 400(5): 531 doi: 10.1007/s00423-015-1314-y
32
Takeshi Itoh, Yuko Hata, Hitomi Nishinakamura, Kenjiro Kumano, Hiroyuki Takahashi, Shohta Kodama. Islet‐derived damage‐associated molecular pattern molecule contributes to immune responses following microencapsulated neonatal porcine islet xenotransplantation in miceXenotransplantation 2016; 23(5): 393 doi: 10.1111/xen.12253
33
Thierry Berney, Ekaterine Berishvili. Toward Clinical Application of the Bioartificial PancreasTransplantation 2015; 99(11): 2241 doi: 10.1097/TP.0000000000000865
34
Elisabeth Kemter, Alexander Kind, Bruno Reichart, Eckhard Wolf. Cell Engineering and Regeneration2018; : 1 doi: 10.1007/978-3-319-37076-7_23-1
35
Redouan Mahou, Solène Passemard, Michele Carvello, Alessandra Petrelli, François Noverraz, Sandrine Gerber‐Lemaire, Christine Wandrey. Contribution of polymeric materials to progress in xenotransplantation of microencapsulated cells: a reviewXenotransplantation 2016; 23(3): 179 doi: 10.1111/xen.12240
36
Sivanandane Sittadjody, Emmanuel C. Opara. Encapsulation Strategies for Pancreatic Islet Transplantation without Immune SuppressionCurrent Stem Cell Reports 2021; 7(2): 49 doi: 10.1007/s40778-021-00190-w
37
Hae Kyung Yang, Kun-Ho Yoon. Current status of encapsulated islet transplantationJournal of Diabetes and its Complications 2015; 29(5): 737 doi: 10.1016/j.jdiacomp.2015.03.017
38
Marco Farina, Jenolyn F. Alexander, Usha Thekkedath, Mauro Ferrari, Alessandro Grattoni. Cell encapsulation: Overcoming barriers in cell transplantation in diabetes and beyondAdvanced Drug Delivery Reviews 2019; 139: 92 doi: 10.1016/j.addr.2018.04.018
39
Genaro Paredes-Juarez, Bart de Haan, Marijke Faas, Paul de Vos. A Technology Platform to Test the Efficacy of Purification of AlginateMaterials 2014; 7(3): 2087 doi: 10.3390/ma7032087
40
Hui-Yu Liu, Chih-Chien Chen, Yuan-Yu Lin, Yu-Jen Chen, Bing-Hsien Liu, Shiu-Chung Wong, Cheng-Yu Wu, Yun-Tsui Chang, Han-Yi E. Chou, Shih-Torng Ding, Irina Kerkis. Chitosan-assisted differentiation of porcine adipose tissue-derived stem cells into glucose-responsive insulin-secreting clustersPLOS ONE 2017; 12(3): e0172922 doi: 10.1371/journal.pone.0172922
41
Pan Yongming, Cai Zhaowei, Ma Yichao, Zhu Keyan, Chen Liang, Chen Fangming, Xu Xiaoping, Ma Quanxin, Chen Minli. Involvement of peroxisome proliferator-activated receptors in cardiac and vascular remodeling in a novel minipig model of insulin resistance and atherosclerosis induced by consumption of a high-fat/cholesterol dietCardiovascular Diabetology 2015; 14(1) doi: 10.1186/s12933-014-0165-0
42
Min Jung Kim, Heon-Seok Park, Ji-Won Kim, Eun-Young Lee, Marie Rhee, Young-Hye You, Gilson Khang, Chung-Gyu Park, Kun-Ho Yoon. Suppression of Fibrotic Reactions of Chitosan-Alginate Microcapsules Containing Porcine Islets by Dexamethasone Surface CoatingEndocrinology and Metabolism 2021; 36(1): 146 doi: 10.3803/EnM.2021.879
43
Daniela Vrabelova, Christopher Adin, Chen Gilor, Amer Rajab. Pancreatic Islet Transplantation: From Dogs to Humans and Back AgainVeterinary Surgery 2014; 43(6): 631 doi: 10.1111/j.1532-950X.2014.12224.x
44
Huynh Quoc Nguyen, Tae Seok Seo. A 3D printed size-tunable flow-focusing droplet microdevice to produce cell-laden hydrogel microspheresAnalytica Chimica Acta 2022; 1192: 339344 doi: 10.1016/j.aca.2021.339344
45
Kumiko Ajima, Naoto Tsuda, Tadashi Takaki, Shoji Furusako, Shigeki Matsumoto, Koya Shinohara, Yzumi Yamashita, Sayaka Amano, Chinatsu Oyama, Masayuki Shimoda. Novel Replaceable Device Encapsulating Porcine Islets Enable Long-Term Discordant Xenotransplantation in Immunocompetent Diabetic MiceSSRN Electronic Journal 2022;  doi: 10.2139/ssrn.4095380
46
Stephen Harrington, Janette Williams, Sonia Rawal, Karthik Ramachandran, Lisa Stehno-Bittel. Hyaluronic Acid/Collagen Hydrogel as an Alternative to Alginate for Long-Term Immunoprotected Islet TransplantationTissue Engineering Part A 2017; 23(19-20): 1088 doi: 10.1089/ten.tea.2016.0477
47
Shuang Chen, Jing Luo, Lanlin Shen, Xuan Liu, Wenshuang Wang, Jia Xu, Yushuang Ren, Yixin Ye, Gang Shi, Fuyi Cheng, Lin Cheng, Xiaolan Su, Lei Dai, Maling Gou, Hongxin Deng. 3D Printing Mini-Capsule Device for Islet Delivery to Treat Type 1 DiabetesACS Applied Materials & Interfaces 2022; 14(20): 23139 doi: 10.1021/acsami.2c02487
48
Shinichi Matsumoto, Masayuki Tomiya, Osamu Sawamoto. Current status and future of clinical islet xenotransplantationJournal of Diabetes 2016; 8(4): 483 doi: 10.1111/1753-0407.12395
49
Luke D. Amer, Melissa J. Mahoney, Stephanie J. Bryant. Tissue Engineering Approaches to Cell-Based Type 1 Diabetes TherapyTissue Engineering Part B: Reviews 2014; 20(5): 455 doi: 10.1089/ten.teb.2013.0462
50
Kannan P. Samy, Benjamin M. Martin, Nicole A. Turgeon, Allan D. Kirk. Islet cell xenotransplantation: a serious look toward the clinicXenotransplantation 2014; 21(3): 221 doi: 10.1111/xen.12095
51
Barbara Kupikowska-Stobba, Dorota Lewińska. Polymer microcapsules and microbeads as cell carriers forin vivobiomedical applicationsBiomaterials Science 2020; 8(6): 1536 doi: 10.1039/C9BM01337G
52
Gemma Tan, Andrew G Elefanty, Edouard G Stanley. β-cell regeneration and differentiation: how close are we to the ‘holy grail’?Journal of Molecular Endocrinology 2014; 53(3): R119 doi: 10.1530/JME-14-0188
53
Ronke M. Olabisi. Cell microencapsulation with synthetic polymersJournal of Biomedical Materials Research Part A 2015; 103(2): 846 doi: 10.1002/jbm.a.35205
54
Chunxiao Qi, Xiaojun Yan, Chenyu Huang, Alexander Melerzanov, Yanan Du. Biomaterials as carrier, barrier and reactor for cell-based regenerative medicineProtein & Cell 2015; 6(9): 638 doi: 10.1007/s13238-015-0179-8
55
David W. Scharp, Piero Marchetti. Encapsulated islets for diabetes therapy: History, current progress, and critical issues requiring solutionAdvanced Drug Delivery Reviews 2014; : 35 doi: 10.1016/j.addr.2013.07.018
56
Jun-Seop Shin, Jung-Sik Kim, Jong-Min Kim, Jae-Yool Jang, Yong-Hee Kim, Hyun-Je Kim, Chung-Gyu Park. Minimizing immunosuppression in islet xenotransplantationImmunotherapy 2014; 6(4): 419 doi: 10.2217/imt.14.14