Mechanobiologically-optimized non-resorbable artificial bone for patient-matched scaffold-guided bone regeneration

J Jonathan R. Clark D D. S. Abdullah Al Maruf E Eva Tomaskovic-Crook K Kai Cheng (State Key Laboratory of Magnetic Resonance Spectroscopy and Imaging, National Center for Magnetic Resonance in Wuhan, Wuhan National Laboratory for Optoelectronics, Wuhan Institute of Physics and Mathematics) W William T. Lewin H Hai Xin B Boyang Wan J Jiongyu Ren C Chi Wu H Hedi V. Kruse D Daniel K. Lawrence I Innes Wise A Aditi Gupta M Maria A. Woodruff M Maryam Alsadat Rad D David Leinkram T Timothy Manzie K Krishnan Parthasarthi J James Wykes T Tsu-Hui Hubert Low D Dale Howes C Catriona Froggatt R Ruta Gupta G Gordon Wallace Q Qing Li D David R. McKenzie J Jeremy M. Crook

Abstract

Abstract Scaffold-guided bone regeneration is poised to revolutionize the management of critical-sized bone defects. However, translation into clinical practice has been hampered by the focus on bioresorbable scaffolds where the rate of degradation needs to match the rate of bone formation and metal plates are required to overcome their mechanical limitations. Metal plates are problematic because they cause stress shielding and X-ray perturbation, increasing the likelihood of hardware failure and interfering with post-operative radiotherapy and imaging. Segmental defects of the mandible are challenging due to high tensile and shear stresses encountered during mastication, with the ovine mandible especially vexing because of the high repetitive loads. Here we show long-term reconstruction of ovine segmental mandibulectomy defects using a permanent, patient-matched, numerically optimized, 3D-printed, thermally toughened, plasma-treated, and laser-sintered polyetherketone gyroid scaffold housing a resorbable ceramic lattice infused with a stem cell laden hydrogel serving as an osteoinductive reservoir of calcium. The durable clinical performance observed indicates a translatable alternative to traditional reconstruction using bone grafts with metal plate fixation.

Article Details

Volume / Issue Vol. 16, Issue 1
Published October 24, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (27)

J

Jonathan R. Clark

D

D. S. Abdullah Al Maruf

E

Eva Tomaskovic-Crook

K

Kai Cheng

State Key Laboratory of Magnetic Resonance Spectroscopy and Imaging, National Center for Magnetic Resonance in Wuhan, Wuhan National Laboratory for Optoelectronics, Wuhan Institute of Physics and Mathematics

W

William T. Lewin

H

Hai Xin

B

Boyang Wan

J

Jiongyu Ren

C

Chi Wu

H

Hedi V. Kruse

D

Daniel K. Lawrence

I

Innes Wise

A

Aditi Gupta

M

Maria A. Woodruff

M

Maryam Alsadat Rad

D

David Leinkram

T

Timothy Manzie

K

Krishnan Parthasarthi

J

James Wykes

T

Tsu-Hui Hubert Low

D

Dale Howes

C

Catriona Froggatt

R

Ruta Gupta

G

Gordon Wallace

Q

Qing Li

D

David R. McKenzie

J

Jeremy M. Crook