Literature DB >> 27856795

An injectable shear-thinning biomaterial for endovascular embolization.

Reginald K Avery1,2,3, Hassan Albadawi4, Mohsen Akbari1,3,5, Yu Shrike Zhang1,3,5, Michael J Duggan6, Dushyant V Sahani7, Bradley D Olsen8, Ali Khademhosseini9,3,5,10, Rahmi Oklu9,11.   

Abstract

Improved endovascular embolization of vascular conditions can generate better patient outcomes and minimize the need for repeat procedures. However, many embolic materials, such as metallic coils or liquid embolic agents, are associated with limitations and complications such as breakthrough bleeding, coil migration, coil compaction, recanalization, adhesion of the catheter to the embolic agent, or toxicity. Here, we engineered a shear-thinning biomaterial (STB), a nanocomposite hydrogel containing gelatin and silicate nanoplatelets, to function as an embolic agent for endovascular embolization procedures. STBs are injectable through clinical catheters and needles and have hemostatic activity comparable to metallic coils, the current gold standard. In addition, STBs withstand physiological pressures without fragmentation or displacement in elastomeric channels in vitro and in explant vessels ex vivo. In vitro experiments also indicated that STB embolization did not rely on intrinsic thrombosis as coils did for occlusion, suggesting that the biomaterial may be suitable for use in patients on anticoagulation therapy or those with coagulopathy. Using computed tomography imaging, the biomaterial was shown to fully occlude murine and porcine vasculature in vivo and remain at the site of injection without fragmentation or nontarget embolization. Given the advantages of rapid delivery, in vivo stability, and independent occlusion that does not rely on intrinsic thrombosis, STBs offer an alternative gel-based embolic agent with translational potential for endovascular embolization.
Copyright © 2016, American Association for the Advancement of Science.

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Year:  2016        PMID: 27856795     DOI: 10.1126/scitranslmed.aah5533

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


  39 in total

1.  Injectable shear-thinning hydrogels for delivering osteogenic and angiogenic cells and growth factors.

Authors:  Emine Alarçin; Tae Yong Lee; Sobha Karuthedom; Marzieh Mohammadi; Meadhbh A Brennan; Dong Hoon Lee; Alessandra Marrella; Jin Zhang; Denata Syla; Yu Shrike Zhang; Ali Khademhosseini; Hae Lin Jang
Journal:  Biomater Sci       Date:  2018-05-29       Impact factor: 6.843

Review 2.  Advances in Biomaterials and Technologies for Vascular Embolization.

Authors:  Jingjie Hu; Hassan Albadawi; Brian W Chong; Amy R Deipolyi; Rahul A Sheth; Ali Khademhosseini; Rahmi Oklu
Journal:  Adv Mater       Date:  2019-06-06       Impact factor: 30.849

3.  X-ray-Based Techniques to Study the Nano-Bio Interface.

Authors:  Carlos Sanchez-Cano; Ramon A Alvarez-Puebla; John M Abendroth; Tobias Beck; Robert Blick; Yuan Cao; Frank Caruso; Indranath Chakraborty; Henry N Chapman; Chunying Chen; Bruce E Cohen; Andre L C Conceição; David P Cormode; Daxiang Cui; Kenneth A Dawson; Gerald Falkenberg; Chunhai Fan; Neus Feliu; Mingyuan Gao; Elisabetta Gargioni; Claus-C Glüer; Florian Grüner; Moustapha Hassan; Yong Hu; Yalan Huang; Samuel Huber; Nils Huse; Yanan Kang; Ali Khademhosseini; Thomas F Keller; Christian Körnig; Nicholas A Kotov; Dorota Koziej; Xing-Jie Liang; Beibei Liu; Sijin Liu; Yang Liu; Ziyao Liu; Luis M Liz-Marzán; Xiaowei Ma; Andres Machicote; Wolfgang Maison; Adrian P Mancuso; Saad Megahed; Bert Nickel; Ferdinand Otto; Cristina Palencia; Sakura Pascarelli; Arwen Pearson; Oula Peñate-Medina; Bing Qi; Joachim Rädler; Joseph J Richardson; Axel Rosenhahn; Kai Rothkamm; Michael Rübhausen; Milan K Sanyal; Raymond E Schaak; Heinz-Peter Schlemmer; Marius Schmidt; Oliver Schmutzler; Theo Schotten; Florian Schulz; A K Sood; Kathryn M Spiers; Theresa Staufer; Dominik M Stemer; Andreas Stierle; Xing Sun; Gohar Tsakanova; Paul S Weiss; Horst Weller; Fabian Westermeier; Ming Xu; Huijie Yan; Yuan Zeng; Ying Zhao; Yuliang Zhao; Dingcheng Zhu; Ying Zhu; Wolfgang J Parak
Journal:  ACS Nano       Date:  2021-03-02       Impact factor: 15.881

4.  Vascular diseases: Shear-thinning biomaterial for endovascular embolization.

Authors:  Karina Huynh
Journal:  Nat Rev Cardiol       Date:  2016-12-08       Impact factor: 32.419

Review 5.  Advances in engineering hydrogels.

Authors:  Yu Shrike Zhang; Ali Khademhosseini
Journal:  Science       Date:  2017-05-05       Impact factor: 47.728

Review 6.  2D Nanoclay for Biomedical Applications: Regenerative Medicine, Therapeutic Delivery, and Additive Manufacturing.

Authors:  Akhilesh K Gaharwar; Lauren M Cross; Charles W Peak; Karli Gold; James K Carrow; Anna Brokesh; Kanwar Abhay Singh
Journal:  Adv Mater       Date:  2019-04-03       Impact factor: 30.849

7.  Effect of ionic strength on shear-thinning nanoclay-polymer composite hydrogels.

Authors:  Amir Sheikhi; Samson Afewerki; Rahmi Oklu; Akhilesh K Gaharwar; Ali Khademhosseini
Journal:  Biomater Sci       Date:  2018-07-24       Impact factor: 6.843

8.  Synthesis of Injectable Shear-Thinning Biomaterials of Various Compositions of Gelatin and Synthetic Silicate Nanoplatelet.

Authors:  Chengbin Xue; Huifang Xie; James Eichenbaum; Yi Chen; Yonggang Wang; Floor W van den Dolder; Junmin Lee; KangJu Lee; Shiming Zhang; Wujin Sun; Amir Sheikhi; Samad Ahadian; Nureddin Ashammakhi; Mehmet R Dokmeci; Han-Jun Kim; Ali Khademhosseini
Journal:  Biotechnol J       Date:  2020-03-16       Impact factor: 4.677

9.  Development of biomimetic antimicrobial platelet-like particles comprised of microgel nanogold composites.

Authors:  Erin P Sproul; Seema Nandi; Eunice Chee; Supriya Sivadanam; Benjamin J Igo; Luisa Schreck; Ashley C Brown
Journal:  Regen Eng Transl Med       Date:  2019-08-06

Review 10.  Biomaterials and Advanced Technologies for Hemostatic Management of Bleeding.

Authors:  DaShawn A Hickman; Christa L Pawlowski; Ujjal D S Sekhon; Joyann Marks; Anirban Sen Gupta
Journal:  Adv Mater       Date:  2017-11-22       Impact factor: 30.849

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