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May 7, 2026Cells1 citationsOpen Access

Distinct Extracellular Matrix Protein Signatures of Cortical and Cancellous Bone Allografts Following Processing for Clinical Use

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ALAdrian LendvaiUniversität für Weiterbildung KremsHWHans Peter WeitzenböckIMC University of Applied Sciences KremsCKChristian KleinHeidelberg University

Key Points

  • This study aims to analyze the distinct extracellular matrix (ECM) protein signatures of cortical and cancellous bone allografts after processing.
  • Extracted ECM proteins from processed cancellous and cortical allografts at multiple processing steps.
  • Analyzed the proteins using quantitative mass spectrometry.
  • Evaluated the differences in extractable proteome signatures corresponding to bone metabolic functions.
  • Cancellous grafts showed enrichment in proteins related to inflammatory and immune processes.
  • Cortical grafts had higher abundance in structural and matrix-organization proteins.
  • More processed product formats displayed fewer significant protein differences between cortical and cancellous types.

Abstract

Demineralized bone matrices (DBMs) are widely used in bone replacement therapy. Bone tissue of either cancellous or cortical origin is decellularized, demineralized, and sterilized during processing, while retaining portions of native organic extracellular matrix (ECM) proteins that regulate cell–matrix interactions during bone repair. The ECM largely accounts for the distinct functions of cortical and cancellous bone. Differences in three-dimensional architecture and matrix density between cancellous and cortical bone may therefore affect ECM proteome signatures and the resulting cellular microenvironment. In this study, ECM proteins were extracted from processed cancellous and cortical allografts at multiple processing steps and analyzed by quantitative mass spectrometry. We identified distinct extractable proteome signatures associated with bone metabolic functions. Cancellous grafts were relatively enriched in proteins associated with inflammatory, coagulative, and immune-related processes, whereas cortical grafts showed higher abundance of structural and matrix-organization-associated proteins. More extensively processed product formats showed fewer significant protein differences between the cortical and cancellous bone type. Within the limitations of pooled donor material and absent functional validation, these findings provide a proteomic framework for future characterization and evaluation of DBM-based allograft products.

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Cite This Study

Lendvai et al. (2026) studied this question.

synapsesocial.com/papers/69fc2c4b8b49bacb8b347d7ehttps://doi.org/10.3390/cells15090842
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