DESIGN, FABRICATION AND PERFORMANCE ANALYSIS OF A 3D BIOPRINTER IN FABRICATION OF CARTILAGE SCAFFOLD

Design, Fabrication and Performance Analysis of a 3D Bioprinter in Fabrication of Cartilage Scaffold

Guardat en:
Dades bibliogràfiques
Autors principals: MD. NAKIB UDDIN, ABU SALEH, AZRIN, FAHIMA AKTER, KAOSAR SAAD, KHONDOKER SAFIN
Format: Thesis
Idioma:anglès
Publicat: 2025
Accés en línia:http://dspace.mist.ac.bd:8080/xmlui/handle/123456789/912
Etiquetes: Afegir etiqueta
Sense etiquetes, Sigues el primer a etiquetar aquest registre!
_version_ 1868227076210819072
author MD. NAKIB UDDIN, ABU SALEH
AZRIN, FAHIMA AKTER
KAOSAR SAAD, KHONDOKER SAFIN
author_browse AZRIN, FAHIMA AKTER
KAOSAR SAAD, KHONDOKER SAFIN
MD. NAKIB UDDIN, ABU SALEH
author_facet MD. NAKIB UDDIN, ABU SALEH
AZRIN, FAHIMA AKTER
KAOSAR SAAD, KHONDOKER SAFIN
author_sort MD. NAKIB UDDIN, ABU SALEH
collection DSpace
description Design, Fabrication and Performance Analysis of a 3D Bioprinter in Fabrication of Cartilage Scaffold
format Thesis
id oai:localhost:123456789-912
institution My University
language English
publishDate 2025
publishDateRange 2025
publishDateSort 2025
record_format dspace
spelling oai:localhost:123456789-9122025-05-12T12:44:32Z DESIGN, FABRICATION AND PERFORMANCE ANALYSIS OF A 3D BIOPRINTER IN FABRICATION OF CARTILAGE SCAFFOLD MD. NAKIB UDDIN, ABU SALEH AZRIN, FAHIMA AKTER KAOSAR SAAD, KHONDOKER SAFIN Design, Fabrication and Performance Analysis of a 3D Bioprinter in Fabrication of Cartilage Scaffold The fourth industrial revolution has new tools, such as 3D printing, digital tools, and digital manufacturing that are having a positive impact on human evolution and benefiting in ways that have never been seen before. Technological and biological inventions are converging in the fourth industrial revolution. 3D bioprinting is one of the new inventions of the fourth industrial revolution, which is an advanced printing technology in the biological field. Different structures or prototypes are printed through a sequence of cross-sectional slices layer by layer. Recently, this technology has been frequently used in the fabrication of several tissues or organs, like the heart, skin, vessels, and so on, which can serve as in vitro models for drug screening, pharmaceutics, and so on, in addition to laying the groundwork for the very essential objective of organ transplantation. Moreover, 3D bioprinting plays an important role in providing useful methods to speed up the drug research process and introducing advanced vitro models. In this work, we fabricate a 3D bioprinter to print scaffolds of cartilage tissue. To evaluate its performance, hydrogels of SA-PVA in five different ratios (5:5, 6:4, 7:3, 8:2, 9:1) are prepared and three different dimensional pattern has been printed. For testing the quality of hydrogel, morphological test with SEM, chemical structure testing with FTIR and mechanical properties with UTM has been done. The result of all the tests shows that 8:2 composition of hydrogel is the most desirable hydrogel that discharge from syringe of the fabricated 3D bioprinter very smooth and continuously. 2025-05-12T12:44:32Z 2025-05-12T12:44:32Z 2023-02 Thesis http://dspace.mist.ac.bd:8080/xmlui/handle/123456789/912 en application/pdf
spellingShingle MD. NAKIB UDDIN, ABU SALEH
AZRIN, FAHIMA AKTER
KAOSAR SAAD, KHONDOKER SAFIN
DESIGN, FABRICATION AND PERFORMANCE ANALYSIS OF A 3D BIOPRINTER IN FABRICATION OF CARTILAGE SCAFFOLD
title DESIGN, FABRICATION AND PERFORMANCE ANALYSIS OF A 3D BIOPRINTER IN FABRICATION OF CARTILAGE SCAFFOLD
title_full DESIGN, FABRICATION AND PERFORMANCE ANALYSIS OF A 3D BIOPRINTER IN FABRICATION OF CARTILAGE SCAFFOLD
title_fullStr DESIGN, FABRICATION AND PERFORMANCE ANALYSIS OF A 3D BIOPRINTER IN FABRICATION OF CARTILAGE SCAFFOLD
title_full_unstemmed DESIGN, FABRICATION AND PERFORMANCE ANALYSIS OF A 3D BIOPRINTER IN FABRICATION OF CARTILAGE SCAFFOLD
title_short DESIGN, FABRICATION AND PERFORMANCE ANALYSIS OF A 3D BIOPRINTER IN FABRICATION OF CARTILAGE SCAFFOLD
title_sort design fabrication and performance analysis of a 3d bioprinter in fabrication of cartilage scaffold
url http://dspace.mist.ac.bd:8080/xmlui/handle/123456789/912
work_keys_str_mv AT mdnakibuddinabusaleh designfabricationandperformanceanalysisofa3dbioprinterinfabricationofcartilagescaffold
AT azrinfahimaakter designfabricationandperformanceanalysisofa3dbioprinterinfabricationofcartilagescaffold
AT kaosarsaadkhondokersafin designfabricationandperformanceanalysisofa3dbioprinterinfabricationofcartilagescaffold