Design and Development of a Novel Frozen-Form Additive Manufacturing System for Tissue Engineering Applications

被引:10
|
作者
Liao, Chao-Yaug [1 ]
Wu, Wei-Jen [1 ]
Hsieh, Cheng-Tien [2 ]
Tseng, Ching-Shiow [1 ]
Dai, Niann-Tzyy [3 ]
Hsu, Shan-hui [2 ]
机构
[1] Natl Cent Univ, Dept Mech Engn, 300 Zhongda Rd, Taoyuan 32001, Taiwan
[2] Natl Taiwan Univ, Inst Polymer Sci & Engn, 1 Roosevelt Rd Sec 4, Taipei 10617, Taiwan
[3] Tri Serv Gen Hosp, Natl Def Med Ctr, Dept Surg, Div Plast & Reconstruct Surg, Taipei, Taiwan
关键词
additive manufacturing; tissue engineering; scaffold; low-temperature deposition; LOW-TEMPERATURE DEPOSITION; POROUS SCAFFOLDS; ORGANOID MODELS; FABRICATION; STEREOLITHOGRAPHY; EXTRUSION; DISEASE; GROWTH;
D O I
10.1089/3dp.2015.0042
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
High-quality scaffolds play a vital role in tissue engineering. The frozen-form method (FFM) (also known as low-temperature deposition manufacturing) can be used to fabricate scaffolds from biomedical polymers. These scaffolds may have both macroporous and microporous characteristics and may incorporate bioactive compounds or biomolecules during the process. In addition, scaffolds produced at low temperatures can prevent the occurrence of thermal hydrolysis, thereby improving the mechanical properties of scaffolds. In fabricating high-quality (without deformation and collapse) bioscaffolds through the FFM, the most crucial requirement is the creation of a uniform low-temperature environment. This study developed a frozen-form additive manufacturing system that includes a uniform cryogenic device to generate the uniform distribution of a low-temperature environment over a local region to produce large scaffolds that will not deform and collapse. A large square scaffold block and a high aspect ratio tubular scaffold were fabricated to verify the efficiency of this system. Furthermore, this study employed a selective compliance assembly robot arm to traverse two-dimensional deposition paths, unlike the conventional Cartesian gantry system. This study investigated the challenges stemming from the use of such a device for scaffold production and suggests methods for resolving such issues.
引用
收藏
页码:216 / 225
页数:10
相关论文
共 50 条
  • [21] On the development of a novel benchmark design for crack quantification in additive manufacturing
    Wall, Andrew
    Dong, Tony
    Benoit, Michael J.
    PROGRESS IN ADDITIVE MANUFACTURING, 2024, 9 (06) : 2465 - 2482
  • [22] Additive manufacturing of PLA-Mg composite scaffolds for hard tissue engineering applications
    Bakhshi, Rasoul
    Mohammadi-Zerankeshi, Meysam
    Mehrabi-Dehdezi, Melika
    Alizadeh, Reza
    Labbaf, Sheyda
    Abachi, Parvin
    JOURNAL OF THE MECHANICAL BEHAVIOR OF BIOMEDICAL MATERIALS, 2023, 138
  • [23] DESIGN AND DEVELOPMENT OF PELLETS/GRANULES EXTRUSION SYSTEM FOR ADDITIVE MANUFACTURING
    Krishnanand
    Taufik, Mohammad
    PROCEEDINGS OF ASME 2021 INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION (IMECE2021), VOL 6, 2021,
  • [24] Applications of the design of additive manufacturing (DfAM) in the development of pharmaceutical dosage forms
    Jaemin Lee
    Chanwoo Song
    Inhwan Noh
    Yun-Seok Rhee
    Journal of Pharmaceutical Investigation, 2024, 54 : 175 - 193
  • [25] Using additive manufacturing applications for design and development of food and agricultural equipments
    Javaid, Mohd
    Haleem, Abid
    INTERNATIONAL JOURNAL OF MATERIALS & PRODUCT TECHNOLOGY, 2019, 58 (2-3): : 225 - 238
  • [26] Applications of the design of additive manufacturing (DfAM) in the development of pharmaceutical dosage forms
    Lee, Jaemin
    Song, Chanwoo
    Noh, Inhwan
    Rhee, Yun-Seok
    JOURNAL OF PHARMACEUTICAL INVESTIGATION, 2024, 54 (02) : 175 - 193
  • [27] Collagen tissue engineering: Development of novel biomaterials and applications
    Cen, Lian
    Liu, Wei
    Cui, Lei
    Zhang, Wenjie
    Cao, Yilin
    PEDIATRIC RESEARCH, 2008, 63 (05) : 492 - 496
  • [28] Collagen Tissue Engineering: Development of Novel Biomaterials and Applications
    Lian Cen
    Wei Liu
    Lei Cui
    Wenjie Zhang
    Yilin Cao
    Pediatric Research, 2008, 63 : 492 - 496
  • [29] Augmenting mechanical design engineering with additive manufacturing
    Ishant Singhal
    Bobby Tyagi
    Riya Chowdhary
    Anami Saggar
    Abhishek Raj
    Ankit Sahai
    Haniyeh Fayazfar
    Rahul Swarup Sharma
    Progress in Additive Manufacturing, 2023, 8 : 819 - 841
  • [30] Computational Engineering and Design Tools for Additive Manufacturing
    Carter, Ryan H.
    Seker, Drew P.
    Storck, Steven M.
    Ma, Li
    Sheppard, Sam
    JOHNS HOPKINS APL TECHNICAL DIGEST, 2023, 36 (04): : 422 - 430