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April 12, 2026Stem Cell Research & Therapy4 citationsOpen Access

Clarifying the critical differences between the enzymatic stromal vascular fraction and the mechanically derived stromal vascular tissue or nanofat for spinal cord injury applications

CNCaroline NonnarathNSNicolas Serratrice

Key Points

  • This work aims to clarify differences between enzymatically derived and mechanically processed stromal vascular products for spinal cord injury applications.
  • Review differences in processing methods of stromal vascular fraction and stromal vascular tissue.
  • Discuss biological composition and regulatory classifications of each product.
  • Analyze implications for delivery in spinal cord injuries.
  • Enzymatic processing results in a uniform, adipocyte-free suspension.
  • Mechanical processing retains adipocytes and extracellular components.
  • Clarifying these differences is essential for safe clinical applications.

Abstract

This letter aims to address the increasing confusion surrounding the concepts and terminology of enzymatically derived stromal vascular fraction (eSVF) and mechanically processed adipose tissue, which is often referred to as stromal vascular tissue (mSVT) or nanofat. Although these products are often presented as equivalent, they differ fundamentally in their biological composition, processing methods and regulatory classification. Enzymatic digestion yields a homogeneous, adipocyte-free cellular suspension, whereas mechanical processing preserves adipocytes, extracellular matrix fragments and tissue architecture. In the context of spinal cord injury, these differences give rise to biologically plausible concerns and procedural constraints, particularly with regard to intramedullary delivery. This work highlights the importance of precise terminology, transparent reporting of methods, and careful regulatory alignment to ensure the safe and scientifically sound translation of clinical applications.

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Cite This Study

Nonnarath et al. (2026) studied this question.

synapsesocial.com/papers/69db37254fe01fead37c5140https://doi.org/10.1186/s13287-026-04956-z
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