PUBLICATIONS

Research

Calcium polyphosphate publications on materials development, bone repair, and tissue engineering.

Calcium polyphosphate publications

  1. 2026

    Electrodeposition of Calcium Polyphosphate on Ti-6Al-4V Substrates for Rapid Osseointegration in Orthopedic Applications

    Li ZL, Shafiee B, Qu N, Chen R, Xie M, Wei J, Grynpas M, Zou Y.

    ACS Applied Bio Materials · 9(13): 5823–5836.

  2. 2020

    Differential response of human blood leukocytes to brushite, monetite, and calcium polyphosphate biomaterials

    Fine N, Sheikh Z, Al-Jaf F, Oveisi M, Borenstein A, Hu Y, Pilliar R, Grynpas M, Glogauer M.

    Journal of Biomedical Materials Research Part B: Applied Biomaterials · 108(1): 253–262.

  3. 2019

    Processing and properties of Na-doped porous calcium polyphosphates - Mechanical properties and in vitro degradation characteristics

    Pilliar RM, Hu X, Grynpas MD, Kandel RA.

    Journal Of The Mechanical Behavior Of Biomedical Materials · 91: 355–365.

  4. 2017

    Calcium polyphosphate particulates for bone void filler applications

    Pilliar RM, Kandel RA, Grynpas MD, Theodoropoulos J, Hu Y, Allo B, Changoor A.

    Journal of Biomedical Materials Research Part B: Applied Biomaterials · 105(4): 874–884.

  5. 2016

    Phase transformations during processing and in vitro degradation of porous calcium polyphosphates

    Hu Y, Pilliar R, Grynpas M, Kandel R, Werner-Zwanziger U, Filiaggi M.

    Journal of Materials Science: Materials in Medicine · 27(7): 117.

Earlier CPP publications · 2001–2014 (19)
  1. 2014

    Porous calcium polyphosphate bone substitutes: additive manufacturing versus conventional gravity sinter processing-effect on structure and mechanical properties

    Hu Y, Shanjani Y, Toyserkani E, Grynpas M, Wang R, Pilliar R.

    Journal of Biomedical Materials Research Part B: Applied Biomaterials · 102(2): 274–283.

  2. 2013

    Effect of potassium and magnesium doping on mechanical properties and in vitro degradation behavior of calcium polyphosphate

    N. Abbarin; T. W. Coyle; M. D. Grynpas.

    Journal of Materials Science · 48(4): 1604–1613.

  3. 2013

    Porous calcium polyphosphate as load-bearing bone substitutes: in vivo study

    Pilliar RM, Kandel RA, Grynpas MD, Hu Y.

    Journal of Biomedical Materials Research Part B: Applied Biomaterials · 101(1): 1–8.

  4. 2013

    Solid freeform fabrication of porous calcium polyphosphate structures for bone substitute applications: in vivo studies

    Shanjani Y, Hu Y, Toyserkani E, Grynpas M, Kandel RA, Pilliar RM.

    Journal of Biomedical Materials Research Part B: Applied Biomaterials · 101(6): 972–980.

  5. 2012

    The incorporation of a zone of calcified cartilage improves the interfacial shear strength between in vitro-formed cartilage and the underlying substrate

    St-Pierre JP, Gan L, Wang J, Pilliar RM, Grynpas MD, Kandel RA.

    Acta Biomaterialia · 8(4): 1603–1615.

  6. 2010

    Calcification of cartilage formed in vitro on calcium polyphosphate bone substitutes is regulated by inorganic polyphosphate

    St-Pierre JP, Pilliar RM, Grynpas MD, Kandel RA.

    Acta Biomaterialia · 6(8): 3302–3309.

  7. 2008

    Polymeric crystallization and condensation of calcium polyphosphate glass

    Sidney Omelon; Andrew Baer; Tom Coyle; Robert M. Pilliar; Rita Kandel; Marc Grynpas.

    Materials Research Bulletin · 43(1): 68–80.

  8. 2007

    Formation of biphasic constructs containing cartilage with a calcified zone interface

    Allan KS, Pilliar RM, Wang J, Grynpas MD, Kandel RA.

    Tissue Engineering · 13(1): 167–177.

  9. 2007

    Osteochondral defect repair using a novel tissue engineering approach: sheep model study

    Pilliar RM, Kandel RA, Grynpas MD, Zalzal P, Hurtig M.

    Technology and Health Care · 15(1): 47–56.

  10. 2007

    The Effect of Sodium Dopants on Calcium Polyphosphate Biomaterials

    Judy Ue; R.M. Pilliar; R.A. Kandel; Tom W. Coyle; M.D. Grynpas.

    Key Engineering Materials · 361-363: 281–284.

  11. 2006

    Repair of osteochondral defects with biphasic cartilage-calcium polyphosphate constructs in a sheep model

    Kandel RA, Grynpas M, Pilliar R, Lee J, Wang J, Waldman S, Zalzal P, Hurtig M, CIHR-Bioengineering of Skeletal Tissues Team.

    Biomaterials · 27(22): 4120–4131.

  12. 2004

    Long-term intermittent compressive stimulation improves the composition and mechanical properties of tissue-engineered cartilage

    Waldman SD, Spiteri CG, Grynpas MD, Pilliar RM, Kandel RA.

    Tissue Engineering · 10(9-10): 1323–1331.

  13. 2004

    Tissue engineered nucleus pulposus tissue formed on a porous calcium polyphosphate substrate

    Séguin CA, Grynpas MD, Pilliar RM, Waldman SD, Kandel RA.

    Spine · 29(12): 1299–306; discussion 1306–7.

  14. 2003

    Chondrocyte interactions with porous titanium alloy and calcium polyphosphate substrates

    Ciolfi VJ, Pilliar R, McCulloch C, Wang SX, Grynpas MD, Kandel RA.

    Biomaterials · 24(26): 4761–4770.

  15. 2003

    Long-term intermittent shear deformation improves the quality of cartilaginous tissue formed in vitro

    Waldman SD, Spiteri CG, Grynpas MD, Pilliar RM, Kandel RA.

    Journal of Orthopaedic Research · 21(4): 590–596.

  16. 2002

    Characterization of cartilagenous tissue formed on calcium polyphosphate substrates in vitro

    Waldman SD, Grynpas MD, Pilliar RM, Kandel RA.

    Journal Of Biomedical Materials Research · 62(3): 323–330.

  17. 2002

    Porous calcium polyphosphate scaffolds for bone substitute applications in vivo studies

    Grynpas MD, Pilliar RM, Kandel RA, Renlund R, Filiaggi M, Dumitriu M.

    Biomaterials · 23(9): 2063–2070.

  18. 2001

    Fabrication of porous calcium polyphosphate implants by solid freeform fabrication: a study of processing parameters and in vitro degradation characteristics

    Porter NL, Pilliar RM, Grynpas MD.

    Journal Of Biomedical Materials Research · 56(4): 504–515.

  19. 2001

    Porous calcium polyphosphate scaffolds for bone substitute applications -- in vitro characterization

    Pilliar RM, Filiaggi MJ, Wells JD, Grynpas MD, Kandel RA.

    Biomaterials · 22(9): 963–972.

Related polyphosphate chemistry and biomineralization (6)
  1. 2016
    Book chapter

    Inorganic Polyphosphate in Tissue Engineering

    Rahul Gawri; Jean-Philippe St-Pierre; Robert Pilliar; Marc Grynpas; Rita A. Kandel.

    Inorganic Polyphosphates in Eukaryotic Cells: 217–239.

  2. 2013

    A review of phosphate mineral nucleation in biology and geobiology

    Omelon S, Ariganello M, Bonucci E, Grynpas M, Nanci A.

    Calcified Tissue International · 93(4): 382–396.

  3. 2011

    Polyphosphates affect biological apatite nucleation

    Omelon S, Grynpas M.

    Cells, Tissues, Organs · 194(2-4): 171–175.

  4. 2009

    Control of vertebrate skeletal mineralization by polyphosphates

    Omelon S, Georgiou J, Henneman ZJ, Wise LM, Sukhu B, Hunt T, Wynnyckyj C, Holmyard D, Bielecki R, Grynpas MD.

    PLOS ONE · 4(5): e5634.

  5. 2008

    Relationships between polyphosphate chemistry, biochemistry and apatite biomineralization

    Omelon SJ, Grynpas MD.

    Chemical Reviews · 108(11): 4694–4715.

  6. 2007

    A nonradioactive method for detecting phosphates and polyphosphates separated by PAGE

    Omelon S, Grynpas M.

    Electrophoresis · 28(16): 2808–2811.

Published conference abstract
  1. 2016
    Conference abstract

    Sodium-doped porous calcium polyphosphate – strength and in vitro degradation characteristics

    Youxin Hu; Corey Sermer; Rita Kandel; Marc Grynpas; Robert Pilliar.

    Frontiers in Bioengineering and Biotechnology · 4.