Titanium is a potent inducer of contact activation: implications for intravascular devices

Maxim Litvak, Aleksandr Shamanaev, Sandip Zalawadiya, Anton Matafonov, Anton Kobrin, Edward P. Feener, Michael Wallisch, Erik I. Tucker, Owen J.T. McCarty, David Gailani

Research output: Contribution to journalArticlepeer-review

7 Scopus citations

Abstract

Background: Titanium (Ti) and its alloys are widely used in manufacturing medical devices because of their strength and resistance to corrosion. Although Ti compounds are considered compatible with blood, they appear to support plasma contact activation and may be thrombogenic. Objectives: The objective of this study was to compare Ti and titanium nitride (TiN) with known activators of contact activation (kaolin and silica) in plasma-clotting assays and to assess binding and activation of factor XII, (FXII), factor XI (FXI), prekallikrein, and high-molecular-weight kininogen (HK) with Ti/TiN. Methods: Ti-based nanospheres and foils were compared with kaolin, silica, and aluminum in plasma-clotting assays. Binding and activation of FXII, prekallikrein, HK, and FXI to surfaces was assessed with western blots and chromogenic assays. Results: Using equivalent surface amounts, Ti and TiN were comparable with kaolin and superior to silica, for inducing coagulation and FXII autoactivation. Similar to many inducers of contact activation, Ti and TiN are negatively charged; however, their effects on FXII are not neutralized by the polycation polybrene. Antibodies to FXII, prekallikrein, or FXI or coating Ti with poly-L-arginine blocked Ti-induced coagulation. An antibody to FXII reduced FXII and PK binding to Ti, kallikrein generation, and HK cleavage. Conclusion: Titanium compounds induce contact activation with a potency comparable with that of kaolin. Binding of FXII with Ti shares some features with FXII binding to soluble polyanions but may have unique features. Inhibitors targeting FXII or FXI may be useful in mitigating Ti-induced contact activation in patients with titanium-based implants that are exposed to blood.

Original languageEnglish (US)
Pages (from-to)1200-1213
Number of pages14
JournalJournal of Thrombosis and Haemostasis
Volume21
Issue number5
DOIs
StatePublished - May 2023

Keywords

  • contact activation
  • factor XI
  • factor XII
  • prekallikrein
  • titanium

ASJC Scopus subject areas

  • Hematology

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