Low-intensity pulsed ultrasound (LIPUS) and pulsed electromagnetic field (PEMF) treatments affect degeneration of cultured articular cartilage explants

Lijun Tan, Yijin Ren, Theo G. van Kooten, Dirk W. Grijpma, Roelof Kuijer

Research output: Contribution to journalArticleAcademicpeer-review

14 Citations (Scopus)

Abstract

PURPOSE: Articular cartilage has some capacity for self-repair. Clinically used low-intensity pulsed ultrasound (LIPUS) and pulsed electromagnetic field (PEMF) treatments were compared in their potency to prevent degeneration using an explant model of porcine cartilage.

METHODS: Explants of porcine cartilage and human osteoarthritic cartilage were cultured for four weeks and subjected to daily LIPUS or PEMF treatments. At one, two, three and four weeks follow-up explants were prepared for histological assessment or gene expression (porcine only).

RESULTS: Non-treated porcine explants showed signs of atrophy of the superficial zone starting at one week. Treated explants did not. In LIPUS-treated explants cell clusters were observed. In PEMF-treated explants more hypertrophic-like changes were observed at later follow up. Newly synthesized tissue was present in treated explants. Gene expression profiles did indicate differences between the two methods. Both methods reduced expression of the aggrecan and collagen type II gene compared to the control. LIPUS treatment of human cartilage samples resulted in a reduction of degeneration according to Mankin scoring. PEMF treatment did not.

CONCLUSIONS: LIPUS or PEMF prevented degenerative changes in pig knee cartilage explants. LIPUS reduced degeneration in human cartilage samples. LIPUS treatment seems to have more potency in the treatment of osteoarthritis than PEMF treatment.

Original languageEnglish
Pages (from-to)549-557
Number of pages9
JournalInternational Orthopaedics
Volume39
Issue number3
Early online date30-Sept-2014
DOIs
Publication statusPublished - Mar-2015

Keywords

  • Articular cartilage
  • Osteoarthritis
  • PEMF
  • LIPUS
  • Regeneration
  • In vitro
  • GENE-EXPRESSION
  • JOINT DISTRACTION
  • MATRIX PRODUCTION
  • IN-VITRO
  • CHONDROCYTES
  • IMMOBILIZATION
  • OSTEOARTHRITIS
  • STIMULATION
  • DIFFERENTIATION
  • REMOBILIZATION

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