The potential of cell-assembled extracellular matrix for biological sutures: A promising innovation
- PMID: 38189326
- PMCID: PMC10775734
- DOI: 10.1177/00368504231219180
The potential of cell-assembled extracellular matrix for biological sutures: A promising innovation
Abstract
Most surgical procedures require using suture materials that are mechanically efficient and accepted by the patient's body. These sutures are essentially composed of synthetic polymers. However, once implanted in patients, they are recognized as foreign bodies and generate chronic inflammation. Thereafter, the patient's immune system will degrade, encapsulate, or even expel the materials. Our innovation, the Cell-Assembled extracellular Matrix (CAM), synthesized from mesenchymal cells, replicates native tissue environments and promotes integration, reducing complications. In a recent study, we introduced CAM-based biological sutures, demonstrating favorable mechanical properties and vascular surgery compatibility. Controlled culture duration tailors CAM for specific applications. Diverse CAM-based suture models were ex vivo tested in animal aorta anastomoses, confirming compatibility. In vivo carotid anastomoses in sheep validated the clinical significance of these innovative sutures. CAM sutures, derived from immunologically favorable allogeneic fibroblast cells, offer high biocompatibility and exhibit superior mechanical properties compared to synthetics by reducing permeability and increasing burst resistance. In vivo testing in sheep underscores clinical applicability, achieving hemostasis and immediate complication prevention. Importantly, CAM-based sutures are compatible with existing vascular surgery techniques, facilitating adoption by surgeons. In conclusion, our findings underscore the effectiveness and clinical significance of these innovative biological sutures.
Keywords: Suture materials; biocompatible material; biological suture; cell-assembled extracellular matrix.
Conflict of interest statement
Declaration of conflicting interestsThe author declared no potential conflicts of interest with respect to the research, authorship, and/or publication of this article.
Figures
Update of
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Development and characterization of biological sutures made of cell-assembled extracellular matrix.Biofabrication. 2023 Aug 31;15(4). doi: 10.1088/1758-5090/acf1cf. Biofabrication. 2023. Update in: Sci Prog. 2023 Oct-Dec;106(4):368504231219180. doi: 10.1177/00368504231219180. PMID: 37595608 Updated.
References
-
- Dennis C, Sethu S, Nayak S, et al. Suture materials – current and emerging trends. J Biomed Mater Res A 2016; 104: 1544–1559. - PubMed
-
- Strategic Market Research. Surgical sutures market by type (automated suturing devices and sutures), material (Hospitals, Ambulatory Surgical Centers (ASCs), Clinics & Physician Offices), Application (Cardiovascular Surgeries, General Surgeries, Gynecological Surgeries, Orthopedic. Published 2022. Accessed March 8, 2023. https://www.strategicmarketresearch.com/market-report/surgical-sutures-m....
-
- Hochberg J, Meyer KM, Marion MD. Suture choice and other methods of skin closure. Surg Clin North Am 2009; 89: 627–641. - PubMed
-
- Debus ES, Geiger D, Sailer M, et al. Physical, biological and handling characteristics of surgical suture material: a comparison of four different multifilament absorbable sutures. Eur Surg Res 1997; 29: 52–61. - PubMed
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