Biosubstitutes for dural closure: Unveiling research, application, and future prospects of dura mater alternatives

Author:

Khurana Dolphee1,Suresh Ankitha1,Nayak Raghavendra2,Shetty Manjunath3,Sarda Rohit Kumar4,Knowles Jonathan C567ORCID,Kim Hae-Won6789ORCID,Singh Rajendra K678ORCID,Singh Bhisham Narayan1

Affiliation:

1. Department of Biotechnology, Manipal School of Life Sciences, Manipal Academy of Higher Education, Manipal, Karnataka, India

2. Department of Neurosurgery, Kasturba Medical College, Manipal Academy of Higher Education, Manipal, Karnataka, India

3. Division of Pharmacology, Department of Basic Medical Sciences, Manipal Academy of Higher Education, Manipal, Karnataka, India

4. Department of Anatomy, Sikkim Manipal Institute of Medical Sciences, Gangtok, Sikkim, India

5. Division of Biomaterials and Tissue Engineering, Eastman Dental Institute, University College London, UK

6. UCL Eastman-Korea Dental Medicine Innovation Centre, Dankook University, Cheonan, Republic of Korea

7. Department of Nanobiomedical Science and BK21 PLUS NBM Global Research Center for Regenerative Medicine, Dankook University, Cheonan, Republic of Korea

8. Institute of Tissue Regeneration Engineering, Dankook University, Cheonan, Republic of Korea

9. Mechanobiology Dental Medicine Research Center, Dankook University, Cheonan, Republic of Korea

Abstract

The dura mater, as the crucial outermost protective layer of the meninges, plays a vital role in safeguarding the underlying brain tissue. Neurosurgeons face significant challenges in dealing with trauma or large defects in the dura mater, as they must address the potential complications, such as wound infections, pseudomeningocele formation, cerebrospinal fluid leakage, and cerebral herniation. Therefore, the development of dural substitutes for repairing or reconstructing the damaged dura mater holds clinical significance. In this review we highlight the progress in the development of dural substitutes, encompassing autologous, allogeneic, and xenogeneic replacements, as well as the polymeric-based dural substitutes fabricated through various scaffolding techniques. In particular, we explore the development of composite materials that exhibit improved physical and biological properties for advanced dural substitutes. Furthermore, we address the challenges and prospects associated with developing clinically relevant alternatives to the dura mater.

Funder

SERB

manipal academy of higher education

national research foundation of korea

Publisher

SAGE Publications

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