Biodegradable macromers for implant bulk and surface engineering

Author:

Krieghoff Jan12ORCID,Gronbach Mathis12,Schulz-Siegmund Michaela12ORCID,Hacker Michael C.123ORCID

Affiliation:

1. Medical Faculty, Pharmaceutical Technology , Leipzig University , Eilenburger Str. 15A , D-04317 Leipzig , Germany

2. Collaborative Research Center (SFB-TRR67) “Functional Biomaterials for Controlling Healing Processes in Bone and Skin - From Material Science to Clinical Application” , Leipzig and Dresden , Germany

3. Institute of Pharmaceutics and Biopharmaceutics, Heinrich Heine University , Universitätsstrasse 1 , D-40225 Düsseldorf , Germany

Abstract

Abstract Macromers, polymeric molecules with at least two functional groups for cross-polymerization, are interesting materials to tailor mechanical, biochemical and degradative bulk and surface properties of implants for tissue regeneration. In this review we focus on macromers with at least one biodegradable building block. Manifold design options, such as choice of polymeric block(s), optional core molecule and reactive groups, as well as cross-co-polymerization with suitable anchor or linker molecules, allow the adaptation of macromer-based biomaterials towards specific application requirements in both hard and soft tissue regeneration. Implants can be manufactured from macromers using additive manufacturing as well as molding and templating approaches. This review summarizes and discusses the overall concept of biodegradable macromers and recent approaches for macromer processing into implants as well as techniques for surface modification directed towards bone regeneration. These aspects are reviewed including a focus on the authors’ contributions to the field through research within the collaborative research project Transregio 67.

Publisher

Walter de Gruyter GmbH

Subject

Clinical Biochemistry,Molecular Biology,Biochemistry

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