Please use this identifier to cite or link to this item: http://hdl.handle.net/2080/5926
Title: Optimization of a Decellularized Testicular Tissue Matrix-based Bioink for Testicular Tissue Engineering
Authors: Kalita, Nimbal
Verma, Devendra
Gupta, Mukesh Kumar
Keywords: Testicular tissue engineering
3D bioprinting
decellularized tissue matrix.
Issue Date: Aug-2026
Citation: International Conference on BioMaterials, BioEngineering, and BioTheranostics(BioMET),Vellore Institute of Technology, Vellore, 5-7 August 2026
Abstract: Testicular tissue engineering holds significant promise for restoring male infertility. 3D bioprinting offers a novel approach for fabricating tissue constructs for testicular tissue engineering applications1. However, developing suitable bioinks that recapitulate the native testicular microenvironment while maintaining printability and biocompatibility remains challenging. Here, we report a hybrid bioink composed of decellularized testicular tissue matrix (DTTM) and sodium alginate. Goat testicular tissues were decellularized while retaining key extracellular matrix proteins. The resulting DTTM was mixed with sodium alginate to formulate the bioink, which was characterized for its physicochemical and biological properties. The results demonstrated effective decellularization, along with good uniformity and printability of the prepared bioink. Post-printing cell viability studies showed that the bioink supports high cell viability and provides a favorable microenvironment mimicking native testicular architecture. This work highlights the potential of tissue-specific decellularized matrix-based bioinks for 3D bioprinting in testicular tissue engineering.
Description: Copyright belongs to the proceeding publisher
URI: http://hdl.handle.net/2080/5926
Appears in Collections:Conference Papers

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