Page 258 - IJB-9-2
P. 258

International Journal of Bioprinting                      Coronary and peripheral artery disease. State of the art.



            18.  Ooi OC,  Mullany CJ, Rihal CS, 2007, Revascularization   29.  Abhyankar AD, Thakkar AS, 2012, In  vivo assessment
               options for ischemic heart disease: Coronary artery bypass   of stent recoil of biodegradable polymer-coated cobalt–
               grafting and percutaneous coronary intervention, in   chromium sirolimus-eluting coronary stent system. Indian
               Cardiovascular Therapeutics: A Companion to Braunwald’s   Heart J, 64(6):546.
               Heart Disease, 3rd ed., E. M. Antman and M. S. Sabatine,   https://doi.org/10.1016/J.IHJ.2012.07.005
               Eds. W.B. Saunders, 157–177.
                                                               30.  Lee MS, Banka G, 2016, In-stent restenosis. Interv Cardiol
            19.  Scoutaris N, Chai F, Maurel B,  et  al., 2015, Development   Clin, 5(2):211–220.
               and biological evaluation of inkjet printed drug coatings on
               intravascular stent. Mol Pharm, 13(1):125–133.     https://doi.org/10.1016/J.ICCL.2015.12.006
               https://doi.org/10.1021/ACS.MOLPHARMACEUT.5B00570  31.  Modi K, Soos MP, Mahajan K, 2021, Stent thrombosis.
            20.  Krankenberg H, et al., 2017, Self-expanding versus balloon-  StatPearls  1–15.  Accessed: February  03,  2022  [Online].
               expandable stents for iliac artery occlusive disease: The   Available.
               randomized ICE trial. JACC Cardiovasc Interv, 10(16):1694–  https://www.ncbi.nlm.nih.gov/books/NBK441908/
               1704.
                                                               32.  Reejhsinghani  R,  Lotfi  AS,  2015,  Prevention  of  stent
               https://doi.org/10.1016/J.JCIN.2017.05.015         thrombosis:  Challenges  and solutions.  Vasc Health Risk
            21.  Fornell D, 2019, Trends in coronary, carotid and peripheral   Manag, 2015(11):93–106.
               stents | DAIC. Diagn Interv Cardiol.               https://doi.org/10.2147/VHRM.S43357
               https://www.dicardiology.com/article/trends-coronary-  33.  Kolandaivelu K, Swaminathan R, Gibson WJ, et al., 2011,
               carotid-and-peripheral-stents (Accessed April 02, 2022)
                                                                  Stent thrombogenicity early in high-risk interventional
            22.  van Haelst STW, Peeters Weem SMO, Moll FL, et al., 2016,   settings  is  driven  by  stent  design  and  deployment
               Current status and future perspectives of bioresorbable stents   and protected by polymer-drug coatings.  Circulation,
               in peripheral arterial disease. J Vasc Surg, 64(4): 1151–1159.e1.  123(13):1400–1409.
               https://doi.org/10.1016/J.JVS.2016.05.044          https://doi.org/10.1161/CIRCULATIONAHA.110.003210
            23.  Medical Advisory Secretariat, 2010, Stenting for peripheral   34.  Hotta E, Hara H, Kamiya T,  et  al., 2018, Non-thermal
               artery disease of the lower extremities: An evidence-based   atmospheric pressure plasma-induced IL-8 expression is
               analysis.  Ont  Health Technol.  Assess Ser, 10(18):1–88.   regulated via intracellular K + loss and subsequent ERK
               Accessed: April 02, 2022 [Online]. Available.      activation in human keratinocyte HaCaT cells. Arch Biochem
               https://pubmed.ncbi.nlm.nih.gov/23074395/          Biophys, 644:64–71.
            24.  Klabunde RE, 2017, Coronary anatomy and blood flow.   https://doi.org/10.1016/j.abb.2018.03.005
               Cardiovasc Physiol Concepts.                    35.  Cvrček L, Horáková M, 2019, Plasma modified polymeric
               https://www.cvphysiology.com/Blood Flow/BF001 (Accessed   materials for implant applications, in  Non-Thermal Plasma
               April 02, 2022).                                   Technology for Polymeric Materials. Applications in Composites,
            25.  Klabunde  RE,  2010,  Autoregulation  of  organ  blood  flow.   Nanostructured Materials and Biomedical Fields., S. Thomas,
               Cardiovas Physiol Concepts.                        M. Mozetič, U. Cvelbar, et al., Eds. Elsevier, 367–407.
               https://www.cvphysiology.com/Blood Flow/BF004 (Accessed   36.  Guo R, He Y, Li H, et al., 2020, Development of 3D-printed
               April 02, 2022).                                   sulfated chitosan modified bioresorbable stents for coronary
                                                                  artery disease. Front Bioeng Biotechnol, 8(462):1–12.
            26.  Mani G, Feldman MD, Patel D, et al., 2007, Coronary stents:
               A materials perspective. Biomaterials, 28(9):1689–1710.  https://doi.org/10.3389/fbioe.2020.00462
               https://doi.org/10.1016/J.BIOMATERIALS.2006.11.042  37.  Demir  AG, Previtali  B, 2017, Additive manufacturing of
                                                                  cardiovascular CoCr stents by selective laser melting. Mater
            27.  Lachowitzer M, 2008, Assessing radial tests for endovascular
               implants. Med Device Diagn Ind.                    Des, 119:338–350.
                                                                  https://doi.org/10.1016/J.MATDES.2017.01.091
               https://www.mddionline.com/news/assessing-radial-tests-
               endovascular-implants (Accessed February 02, 2022).  38.  Zou Q, Xue W, Lin J, et al., 2016, Mechanical characteristics
            28.  Stoeckel D, Bonsignore C, Duda S, 2002, A survey of stent   of novel polyester/NiTi wires braided composite stent for
               designs. Minim Invasive Ther Allied Technol, 11(4):137–147.   the medical application. Results Phys, 6:440–446.
               Accessed: February 02, 2022 [Online]. Available.   https://doi.org/10.1016/J.RINP.2016.07.007
               https://sci-hub.ru/https://www.tandfonline.com/doi/  39.  Ahlhelm F, Kaufmann R, Ahlhelm D, et al., 2009, Carotid
               abs/10.1080/136457002760273340                     artery stenting using a novel self-expanding braided nickel-




            Volume 9 Issue 2 (2023)                        250                     https://doi.org/10.18063/ijb.v9i2.664
   253   254   255   256   257   258   259   260   261   262   263