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生物3D打印——从形似到神似 被引量:20
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作者 贺永 高庆 +2 位作者 刘安 孙苗 傅建中 《浙江大学学报(工学版)》 EI CAS CSCD 北大核心 2019年第3期407-419,共13页
系统回顾生物3D打印的提出背景,给出生物3D打印的研究范围,梳理生物3D打印的发展历程.重点聚焦于回顾操纵细胞的生物3D打印研究,并结合课题组近年来的研究及思考,对生物3D打印的发展进行展望.更好地结合临床需求,实现从组织结构的仿生... 系统回顾生物3D打印的提出背景,给出生物3D打印的研究范围,梳理生物3D打印的发展历程.重点聚焦于回顾操纵细胞的生物3D打印研究,并结合课题组近年来的研究及思考,对生物3D打印的发展进行展望.更好地结合临床需求,实现从组织结构的仿生制造过渡到功能化的再造是生物3D打印未来取得突破的关键. 展开更多
关键词 生物3D打印 细胞打印 生物墨水 生物打印机 组织工程 仿生制造
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Development of 3D bioprinting:From printing methods to biomedical applications 被引量:18
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作者 Zeming Gu Jianzhong Fu +1 位作者 Hui Lin Yong He 《Asian Journal of Pharmaceutical Sciences》 SCIE CAS 2020年第5期529-557,共29页
Biomanufacturing of tissues/organs in vitro is our big dream,driven by two needs:organ transplantation and accurate tissue models.Over the last decades,3D bioprinting has been widely applied in the construction of man... Biomanufacturing of tissues/organs in vitro is our big dream,driven by two needs:organ transplantation and accurate tissue models.Over the last decades,3D bioprinting has been widely applied in the construction of many tissues/organs such as skins,vessels,hearts,etc.,which can not only lay a foundation for the grand goal of organ replacement,but also be served as in vitro models committed to pharmacokinetics,drug screening and so on.As organs are so complicated,many bioprinting methods are exploited to figure out the challenges of different applications.So the question is how to choose the suitable bioprinting method?Herein,we systematically review the evolution,process and classification of 3D bioprinting with an emphasis on the fundamental printing principles and commercialized bioprinters.We summarize and classify extrusion-based,dropletbased,and photocuring-based bioprinting methods and give some advices for applications.Among them,coaxial and multi-material bioprinting are highlighted and basic principles of designing bioinks are also discussed. 展开更多
关键词 3D bioprinting Extrusion-based bioprinting Droplet-based bioprinting Photocuring-based bioprinting bioink
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Three-dimensional bioprinting of gelatin methacryloyl (GelMA) 被引量:10
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作者 Guoliang Ying Nan Jiang +1 位作者 Cunjiang Yu Yu Shrike Zhang 《Bio-Design and Manufacturing》 SCIE 2018年第4期215-224,共10页
The three-dimensional (3D)bioprinting technology has progressed tremendously over the past decade.By controlling the size, shape,and architecture of the bioprinted constructs,3D bioprinting allows for the fabrication ... The three-dimensional (3D)bioprinting technology has progressed tremendously over the past decade.By controlling the size, shape,and architecture of the bioprinted constructs,3D bioprinting allows for the fabrication of tissue/organ-like constructs with strong structural-functional similarity with their in vivo counterparts at high fidelity.The bioink,a blend of biomaterials and living cells possessing both high biocompatibility and printability,is a critical component of bioprinting.In particular, gelatin methacryloyl (GelMA)has shown its potential as a viable bioink material due to its suitable biocompatibility and readily tunable physicochemical properties.Current GelMA-based bioinks and relevant bioprinting strategies for GelMA bioprinting are briefly reviewed. 展开更多
关键词 BIOPRINTING bioink GELATIN methacryloyl (GelMA) BIOFABRICATION -Tissue ENGINEERING TISSUE model
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生物3D打印用丝素蛋白基凝胶墨水的研究进展 被引量:8
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作者 姜雨淋 王卉 张克勤 《纺织学报》 EI CAS CSCD 北大核心 2021年第11期1-8,共8页
丝素蛋白(SF)作为一种天然且古老的蛋白质材料,因其优异的特性成为了生物3D打印墨水材料绝佳的候选者,在生物医学领域受到了广泛的关注。为此,概述了SF在生物3D打印领域的发展,总结了SF材料的物理化学和生物学基本特性,探讨了其作为生... 丝素蛋白(SF)作为一种天然且古老的蛋白质材料,因其优异的特性成为了生物3D打印墨水材料绝佳的候选者,在生物医学领域受到了广泛的关注。为此,概述了SF在生物3D打印领域的发展,总结了SF材料的物理化学和生物学基本特性,探讨了其作为生物墨水应用于挤出式生物3D打印、光固化生物3D打印和喷墨生物3D打印的要求和可加工性。综述了近年来SF与人工合成聚合物、天然聚合物和无机功能材料复合形成SF基水凝胶墨水在生物3D打印领域中的研究进展,对其所面临的挑战进行了讨论。指出:随着生物3D打印技术的深入发展,通过生物3D打印形成的SF基水凝胶构建体在生物医学领域会有更广阔的应用前景。 展开更多
关键词 生物3D打印 丝素蛋白 生物墨水 水凝胶 生物相容性
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Bioprinting of skin constructs for wound healing 被引量:8
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作者 Peng He Junning Zhao +4 位作者 Jiumeng Zhang Bo Li Zhiyuan Gou Maling Gou Xiaolu Li 《Burns & Trauma》 2018年第1期11-20,共10页
Extensive burns and full-thickness skin wounds are difficult to repair. Autologous split-thickness skin graft (ASSG) is still used as the gold standard in the clinic. However, the shortage of donor skin tissues is a s... Extensive burns and full-thickness skin wounds are difficult to repair. Autologous split-thickness skin graft (ASSG) is still used as the gold standard in the clinic. However, the shortage of donor skin tissues is a serious problem. A potential solution to this problem is to fabricate skin constructs using biomaterial scaffolds with or without cells. Bioprinting is being applied to address the need for skin tissues suitable for transplantation, and can lead to the development of skin equivalents for wound healing therapy. Here, we summarize strategies of bioprinting and review current advances of bioprinting of skin constructs. There will be challenges on the way of 3D bioprinting for skin regeneration, but we still believe bioprinting will be potential skills for wounds healing in the foreseeable future. 展开更多
关键词 BIOPRINTING SKIN CONSTRUCTS WOUND HEALING bioink
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蚕丝基生物材料精准和功能性组装的3D打印策略 被引量:1
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作者 Xiaoliang Cui Jun Zhang +5 位作者 Yan Qian Siqi Chang Benjamin J.Allardyce Rangam Rajkhowa Hui Wang Ke-Qin Zhang 《Engineering》 SCIE EI CAS CSCD 2024年第3期92-108,共17页
In recent years,significant progress has been made in both three-dimensional(3D)printing technologies and the exploration of silk as an ink to produce biocompatible constructs.Combined with the unlimited design potent... In recent years,significant progress has been made in both three-dimensional(3D)printing technologies and the exploration of silk as an ink to produce biocompatible constructs.Combined with the unlimited design potential of 3D printing,silk can be processed into a broad range of functional materials and devices for various biomedical applications.The ability of silk to be processed into various materials,including solutions,hydrogels,particles,microspheres,and fibers,makes it an excellent candidate for adaptation to different 3D printing techniques.This review presents a didactic overview of the 3D printing of silk-based materials,major categories of printing techniques,and their prototyping mechanisms and structural features.In addition,we provide a roadmap for researchers aiming to incorporate silk printing into their own work by summarizing promising strategies from both technical and material aspects,to relate state-of-the-art silk-based material processing with fast-developing 3D printing technologies.Thus,our focus is on elucidating the techniques and strategies that advance the development of precise assembly strategies for silk-based materials.Precise printing(including high printing resolution,complex structure realization,and printing fidelity)is a prerequisite for the digital design capability of 3D printing technology and would definitely broaden the application era of silk,such as complex biomimetic tissue structures,vasculatures,and transdermal microneedles. 展开更多
关键词 3D printing bioink BIOPRINTING Silk fibroin
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Decellularized extracellular matrix:A promising strategy for skin repair and regeneration 被引量:3
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作者 Shengjie Jiang Yu Zhuang +2 位作者 Ming Cai Xudong Wang Kaili Lin 《Engineered Regeneration》 2023年第4期357-374,共18页
The skin is an important organ of the human body that resists external threats but lacks sufficient self-regeneration ability when severe damage occurs.However,most of the available skin substitutes cannot achieve ide... The skin is an important organ of the human body that resists external threats but lacks sufficient self-regeneration ability when severe damage occurs.However,most of the available skin substitutes cannot achieve ideal restoration of complex structures and multiple functions of native skin tissues.Fortunately,the advent of decellularized extracellular matrix(dECM)offers a promising approach to overcome these obstacles.The dECM,derived from the natural extracellular matrix(ECM),possesses a similar structure and composition,which constructs an environment favorable for cell performance in regeneration.Moreover,dECM retains good bioactivity,low immunogenicity,and high availability,making it a suitable biomaterial for skin repair and regeneration.In this review,various decellularization methods and subsequent evaluations of dECM are introduced first,and the main sources of dECM are then presented.Furthermore,the recent progress of dECM-based biomaterials applied in skin regeneration and future perspectives are summarized. 展开更多
关键词 DECELLULARIZATION Extracellular matrix Skin regeneration Biomaterial bioink
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Advances in 3D bioprinting technology for cardiac tissue engineering and regeneration 被引量:7
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作者 Nanbo Liu Xing Ye +9 位作者 Bin Yao Mingyi Zhao Peng Wu Guihuan Liu Donglin Zhuang Haodong Jiang Xiaowei Chen Yinru He Sha Huang Ping Zhu 《Bioactive Materials》 SCIE 2021年第5期1388-1401,共14页
Cardiovascular disease is still one of the leading causes of death in the world,and heart transplantation is the current major treatment for end-stage cardiovascular diseases.However,because of the shortage of heart d... Cardiovascular disease is still one of the leading causes of death in the world,and heart transplantation is the current major treatment for end-stage cardiovascular diseases.However,because of the shortage of heart donors,new sources of cardiac regenerative medicine are greatly needed.The prominent development of tissue engineering using bioactive materials has creatively laid a direct promising foundation.Whereas,how to precisely pattern a cardiac structure with complete biological function still requires technological breakthroughs.Recently,the emerging three-dimensional(3D)bioprinting technology for tissue engineering has shown great advantages in generating micro-scale cardiac tissues,which has established its impressive potential as a novel foundation for cardiovascular regeneration.Whether 3D bioprinted hearts can replace traditional heart transplantation as a novel strategy for treating cardiovascular diseases in the future is a frontier issue.In this review article,we emphasize the current knowledge and future perspectives regarding available bioinks,bioprinting strategies and the latest outcome progress in cardiac 3D bioprinting to move this promising medical approach towards potential clinical implementation. 展开更多
关键词 3D bioprinting Stem cell therapy bioink Heart repair and regeneration
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Printabilitye-A key issue in extrusion-based bioprinting 被引量:7
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作者 Saman Naghieh Xiongbiao Chen 《Journal of Pharmaceutical Analysis》 SCIE CAS CSCD 2021年第5期564-579,共16页
Three-dimensional(3D)extrusion-based bioprinting is widely used in tissue engineering and regenerative medicine to create cell-incorporated constructs or scaffolds based on the extrusion technique.One critical issue i... Three-dimensional(3D)extrusion-based bioprinting is widely used in tissue engineering and regenerative medicine to create cell-incorporated constructs or scaffolds based on the extrusion technique.One critical issue in 3D extrusion-based bioprinting is printability or the capability to form and maintain reproducible 3D scaffolds from bioink(a mixture of biomaterials and cells).Research shows that printability can be affected by many factors or parameters,including those associated with the bioink,printing process,and scaffold design,but these are far from certain.This review highlights recent developments in the printability assessment of extrusion-based bioprinting with a focus on the definition of printability,printability measurements and characterization,and printability-affecting factors.Key issues and challenges related to printability are also identified and discussed,along with approaches or strategies for improving printability in extrusion-based bioprinting. 展开更多
关键词 EXTRUSION 3D bioprinting bioink PRINTABILITY Tissue engineering
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An oxygenating colloidal bioink for the engineering of biomimetic tissue constructs 被引量:1
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作者 Seol-Ha Jeong Jarno Hiemstra +9 位作者 Patrick V.Blokzijl Rebeca Damian-Ferrara Danilo Martins dos Santos Jéssica H.L.da Fonseca Min-Ho Kang Jihyun Kim Dilara Yilmaz-Aykut Mei L.L.Cham-Pérez Jeroen Leijten Su Ryon Shin 《Bio-Design and Manufacturing》 SCIE EI CAS CSCD 2024年第3期240-261,共22页
Ensuring a sufficient oxygen supply is pivotal for the success of bioprinting applications since it fosters tissue integration and natural regeneration.Variation in oxygen concentration among diverse tissues necessita... Ensuring a sufficient oxygen supply is pivotal for the success of bioprinting applications since it fosters tissue integration and natural regeneration.Variation in oxygen concentration among diverse tissues necessitates the precise recreation of tissue-specific oxygen levels in imprinted constructs to support the survival of targeted cells.Although oxygen-releasing biomaterials,such as oxygen-generating microparticles(OMPs),have shown promise for enhancing the oxygen supply of microenvironments in injured tissues,whether this approach is scalable for large tissues and whether tissue-specific bioinks with varying OMP concentrations remain printable remain unknown.This study addresses this critical gap by introducing an innovative class of engineered oxygenated bioinks that combine colloidal-based microgels with OMPs.We report that incorporating nanosized calcium peroxide(nCaO_(2))and manganese oxide nanosheets(nMnO_(2))into hydrophobic polymeric microparticles enables precise modulation of oxygen release while controlling hydrogen peroxide release.Moreover,the fabrication of oxygenating and cytocompatible colloidal gels is achieved using an aqueous two-phase system.This study thoroughly evaluates the fundamental characteristics of the resulting bioink,including its rheological behaviors,printability,shape fidelity,mechanical properties,and oxygen release properties.Moreover,this study demonstrates the macroscopic scalability and cytocompatibility of printed constructs produced via cell-laden oxygenating colloidal bioinks.By showcasing the effectiveness of extrusion-based bioprinting,this study underscores how it can be used to fabricate biomimetic tissues,indicating its potential for new applications.The findings presented here advance the bioprinting field by achieving scalability with both high cell viability and the possibility of mimicking specifically oxygenated tissues.This work thereby offers a promising avenue for the development of functional tissues with enhanced physiological relevance. 展开更多
关键词 3D bioprinting bioink Colloidal gels Extrusion printing Oxygen-generating microparticle
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生物3D打印技术的新研究进展 被引量:7
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作者 吴春亚 吴佳昊 +3 位作者 吴喆冉 李曦光 黄俊杰 陈明君 《机械工程学报》 EI CAS CSCD 北大核心 2021年第5期114-132,共19页
离体构建生物组织和器官一直以来都是医学界和工程界共同面临的重要难题。由于三维组织结构成型复杂、微环境控制难度大、商业应用下的生产效率和可重复性等因素限制,传统制造方法很难实现生物组织和器官的有效构建。医学模型和生物相... 离体构建生物组织和器官一直以来都是医学界和工程界共同面临的重要难题。由于三维组织结构成型复杂、微环境控制难度大、商业应用下的生产效率和可重复性等因素限制,传统制造方法很难实现生物组织和器官的有效构建。医学模型和生物相容性支架打印技术已发展较为成熟,但相对固定的加工工艺限制了其在活性生物材料打印领域的拓展;4D生物打印技术的概念提出较晚,重点在于产品的可编程性变形,但有关响应性材料的研究仍然较少。采用生物活性物质和生物兼容性材料作为打印墨水的生物3D打印技术,在复杂内部型腔和外部结构的构建方面优势凸显,可以实现器官组织的个性化定制,并高效生成三维活性构建体,在组织工程中的应用潜力巨大。着眼于生物3D打印中关键技术的发展态势,重点分析面向不同器官组织和功能性支架的生物3D打印机理及应用现状,并探讨其在发展过程中需要面临的挑战和仍需注重解决的问题,希望能为后续生物3D打印技术研究工作的大规模推进提供参考。 展开更多
关键词 生物打印 生物墨水 组织器官 生物相容性支架
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生物打印技术在组织与器官修复中的应用进展 被引量:7
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作者 吴明明 林子锋 +2 位作者 程德林 潘浩波 阮长顺 《集成技术》 2018年第1期59-71,共13页
三维打印是一门快速发展的增材制造技术,能精确控制三维支架的外形及内部微结构,从而实现个性化医疗,在组织修复或再生领域拥有巨大的应用潜力。近年来,基于三维打印技术发展而成的三维生物打印(Three-Dimensional Bioprinting,Bio-3DP... 三维打印是一门快速发展的增材制造技术,能精确控制三维支架的外形及内部微结构,从而实现个性化医疗,在组织修复或再生领域拥有巨大的应用潜力。近年来,基于三维打印技术发展而成的三维生物打印(Three-Dimensional Bioprinting,Bio-3DP)受到越来越多研究者的关注,该技术突破了传统组织工程技术生物功能设计的局限性,可精确控制细胞在支架材料中的定点分布,微观上构建具有适合细胞生存的微环境,为细胞提供了真正的三维均衡生长环境,使得复杂器官具有匹配构建和个性化再生的可能。该文主要综述Bio-3DP技术和用于Bio-3DP的生物墨水的最新研究进展,由此展望Bio-3DP在组织与器官修复中的应用潜力。 展开更多
关键词 生物打印 组织与器官再生 生物墨水
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光交联丝素蛋白生物3D打印墨水的研究进展
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作者 潘小鹏 吕玲玲 +4 位作者 张旭 孙广东 邵敏 黄益 邵建中 《丝绸》 CAS CSCD 北大核心 2024年第8期50-59,共10页
丝素蛋白具有生物相容性高、生物降解性可控及力学性能可调等优异特性,是一种极具应用潜力的生物3D打印墨水材料。基于光交联反应的生物材料加工技术具有条件温和、高效可控等优点,是当前生物3D打印领域的热点方向。文章以墨水性能要求... 丝素蛋白具有生物相容性高、生物降解性可控及力学性能可调等优异特性,是一种极具应用潜力的生物3D打印墨水材料。基于光交联反应的生物材料加工技术具有条件温和、高效可控等优点,是当前生物3D打印领域的热点方向。文章以墨水性能要求为主线,先从流变性能出发介绍了适合光交联丝素蛋白生物3D打印的打印方式,再从光交联反应性出发讨论了丝素蛋白的光敏改性方法及光诱导交联机制,然后从生物相容性出发介绍了辐照光源与光引发剂的发展,总结了丝素蛋白及其与合成、天然高分子材料复配墨水在光交联生物3D打印领域的应用,并论述了光交联丝素蛋白生物墨水在制备、发展方向和应用过程中所面临的挑战。 展开更多
关键词 生物3D打印 丝素蛋白 光交联 生物墨水 流变性能
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心肌补片:细胞来源、完善策略及最佳制作方法分析
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作者 胡威 邢健 +5 位作者 陈广新 陈泽娥 赵艺 乔丹 欧阳昆富 黄文华 《中国组织工程研究》 CAS 北大核心 2024年第17期2723-2730,共8页
背景:心肌补片是一种修复损伤心肌的有效方式,但目前使用哪种细胞制作心肌补片和如何使心肌补片在体内发挥最大的治疗效果还存在争议。目的:通过综述心肌补片的细胞来源和完善心肌补片的策略来寻找出制作心肌补片的最佳方法。方法:由第... 背景:心肌补片是一种修复损伤心肌的有效方式,但目前使用哪种细胞制作心肌补片和如何使心肌补片在体内发挥最大的治疗效果还存在争议。目的:通过综述心肌补片的细胞来源和完善心肌补片的策略来寻找出制作心肌补片的最佳方法。方法:由第一作者应用计算机以“cell sheet,cell patch,cardiomyocytes,cardia progenitor cells,fibroblasts,embryonic stem cell,mesenchymal stem cells”等为英文检索词检索PubMed和Web of Science数据库;以“心肌补片,生物3D打印,心肌”为中文检索词检索中国知网和万方数据库,经过入组筛选后,最终纳入94篇文献进入结果分析。结果与结论:①心肌补片的细胞来源主要分为3类:分别是体细胞、单能干细胞和多能干细胞。心肌补片的细胞来源丰富,但是并不是所有的细胞都适合制作心肌补片,例如,成纤维细胞和骨骼肌母细胞制成的心肌补片会有致心律失常的风险,间充质干细胞在体内的作用时间短并且存在伦理方面的问题。随着诱导式多功能干细胞的发现,为制作心肌补片提供了一个可靠的细胞来源。②心肌补片的制作方法有两种:一种是使用细胞片技术,另一种是使用生物3D打印技术。细胞片技术可完整保留细胞外基质成分,可以最大程度地模拟细胞在体内的生长循环,但是想要通过细胞片技术获得具有三维结构的心肌补片还存在困难。而生物3D打印技术可以通过计算机个性化设计获得具有三维结构的心肌补片。③完善心肌补片的策略主要包括:多种细胞共同培养后制作成心肌补片、改进生物3D打印技术中的墨水配方和支架成分、提高心肌补片的治疗效果、抑制移植后的免疫排斥反应和完善干细胞的分化培养方案。④目前还没有制作心肌补片的最佳细胞来源和制作方法,单靠某一种细胞或者某一种技术所获得的心肌补片常无法达到预期的治疗效果,因� 展开更多
关键词 心肌补片 多能干细胞 3D打印 生物墨水 细胞片 综述 间充质干细胞 免疫反应 心肌细胞 骨骼肌母细胞
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Tailoring bioinks of extrusion-based bioprinting for cutaneous wound healing 被引量:5
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作者 Yuzhen Wang Xingyu Yuan +3 位作者 Bin Yao Shuoji Zhu Ping Zhu Sha Huang 《Bioactive Materials》 SCIE 2022年第11期178-194,共17页
Extrusion-based bioprinting (EBB) holds potential for regenerative medicine. However, the widely-used bioinks of EBB exhibit some limitations for skin regeneration, such as unsatisfactory bio-physical (i.e., mechanica... Extrusion-based bioprinting (EBB) holds potential for regenerative medicine. However, the widely-used bioinks of EBB exhibit some limitations for skin regeneration, such as unsatisfactory bio-physical (i.e., mechanical, structural, biodegradable) properties and compromised cellular compatibilities, and the EBB-based bioinks with therapeutic effects targeting cutaneous wounds still remain largely undiscussed. In this review, the printability considerations for skin bioprinting were discussed. Then, current strategies for improving the physical properties of bioinks and for reinforcing bioinks in EBB approaches were introduced, respectively. Notably, we highlighted the applications and effects of current EBB-based bioinks on wound healing, wound scar formation, vasculari-zation and the regeneration of skin appendages (i.e., sweat glands and hair follicles) and discussed the challenges and future perspectives. This review aims to provide an overall view of the applications, challenges and promising solutions about the EBB-based bioinks for cutaneous wound healing and skin regeneration. 展开更多
关键词 bioink Extrusion-based bioprinting Cutaneous wound healing Skin regeneration
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3D生物打印在肾脏再生领域的研究进展
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作者 郭煦妍 罗志嵘 +3 位作者 薛琦 王林猛 吉运华 张波 《中华细胞与干细胞杂志(电子版)》 2024年第3期181-185,共5页
慢性肾脏病(CKD)的发病率在全球范围内持续上升,进一步可发展为终末期肾病(ESRD)。针对ESRD患者,透析或肾移植一直作为主要的临床治疗方法。然而,透析治疗可能会导致一系列并发症,同时会对患者的生活方式和社交活动造成限制。肾移植是E... 慢性肾脏病(CKD)的发病率在全球范围内持续上升,进一步可发展为终末期肾病(ESRD)。针对ESRD患者,透析或肾移植一直作为主要的临床治疗方法。然而,透析治疗可能会导致一系列并发症,同时会对患者的生活方式和社交活动造成限制。肾移植是ESRD另一种可行的治疗选择,但由于供体短缺和排斥反应等问题受到限制。因此,许多有关肾脏再生的策略正在研究中。3D生物打印作为一种组织工程技术,已在体外肾组织模型和类肾结构的制造方面取得了进展。它有望通过制造人造器官(组织)来解决器官供体短缺的问题。虽然该技术已适应各种细胞类型和生物材料,但目前仍然需要解决许多问题。例如细胞和生物材料的选择以及模拟血管网络。本文旨在综述3D生物打印在肾脏再生领域的最新进展,包括常用的3D生物打印技术和生物材料的选择、3D生物打印生成部分肾单位以及面临的挑战和未来发展方向。 展开更多
关键词 3D生物打印 生物墨水 肾细胞 诱导性多能干细胞
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Ink-structing the future of vascular tissue engineering:a review of the physiological bioink design
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作者 Judith Synofzik Sebastian Heene +1 位作者 Rebecca Jonczyk Cornelia Blume 《Bio-Design and Manufacturing》 SCIE EI CAS CSCD 2024年第2期181-205,共25页
Three-dimensional(3D)printing and bioprinting have come into view for a plannable and standardizable generation of implantable tissue-engineered constructs that can substitute native tissues and organs.These tissue-en... Three-dimensional(3D)printing and bioprinting have come into view for a plannable and standardizable generation of implantable tissue-engineered constructs that can substitute native tissues and organs.These tissue-engineered structures are intended to integrate with the patient’s body.Vascular tissue engineering(TE)is relevant in TE because it supports the sustained oxygenization and nutrition of all tissue-engineered constructs.Bioinks have a specific role,representingthenecessarymedium for printability and vascular cell growth.This review aims to understand the requirements for the design of vascular bioinks.First,an in-depth analysis of vascular cell interaction with their native environment must be gained.A physiological bioink suitable for a tissue-engineered vascular graft(TEVG)must not only ensure good printability but also induce cells to behave like in a native vascular vessel,including self-regenerative and growth functions.This review describes the general structure of vascular walls with wall-specific cell and extracellular matrix(ECM)components and biomechanical properties and functions.Furthermore,the physiological role of vascular ECM components for their interaction with vascular cells and the mode of interaction is introduced.Diverse currently available or imaginable bioinks are described from physiological matrix proteins to nonphysiologically occurring but natural chemical compounds useful for vascular bioprinting.The physiological performance of these bioinks is evaluated with regard to biomechanical properties postprinting,with a view to current animal studies of 3D printed vascular structures.Finally,the main challenges for further bioink development,suitable bioink components to create a self-assembly bioink concept,and future bioprinting strategies are outlined.These concepts are discussed in terms of their suitability to be part of a TEVG with a high potential for later clinical use. 展开更多
关键词 Vascular wall histology Vascular cells MICROENVIRONMENT Extracellular matrix Cell–matrix interaction bioink PRINTABILITY
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Bioprinting and regeneration of auricular cartilage using a bioactive bioink based on microporous photocrosslinkable acellular cartilage matrix 被引量:5
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作者 Litao Jia Yujie Hua +5 位作者 Jinshi Zeng Wenshuai Liu Di Wang Guangdong Zhou Xia Liu Haiyue Jiang 《Bioactive Materials》 SCIE 2022年第10期66-81,共16页
Tissue engineering provides a promising strategy for auricular reconstruction.Although the first international clinical breakthrough of tissue-engineered auricular reconstruction has been realized based on polymer sca... Tissue engineering provides a promising strategy for auricular reconstruction.Although the first international clinical breakthrough of tissue-engineered auricular reconstruction has been realized based on polymer scaffolds,this approach has not been recognized as a clinically available treatment because of its unsatisfactory clinical efficacy.This is mainly since reconstruction constructs easily cause inflammation and deformation.In this study,we present a novel strategy for the development of biological auricle equivalents with precise shapes,low immunogenicity,and excellent mechanics using auricular chondrocytes and a bioactive bioink based on biomimetic microporous methacrylate-modified acellular cartilage matrix(ACMMA)with the assistance of gelatin methacrylate(GelMA),poly(ethylene oxide)(PEO),and polycaprolactone(PCL)by integrating multi-nozzle bioprinting technology.Photocrosslinkable ACMMA is used to emulate the intricacy of the cartilage-specific microenvironment for active cellular behavior,while GelMA,PEO,and PCL are used to balance printability and physical properties for precise structural stability,form the microporous structure for unhindered nutrient exchange,and provide mechanical support for higher shape fidelity,respectively.Finally,mature auricular cartilage-like tissues with high morphological fidelity,excellent elasticity,abundant cartilage lacunae,and cartilage-specific ECM deposition are successfully regenerated in vivo,which provides new opportunities and novel strategies for the fabrication and regeneration of patient-specific auricular cartilage. 展开更多
关键词 3D bioprinting Photocrosslinkable acellular cartilage matrix Bioactive bioink MICROPOROUS Auricular cartilage regeneration
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3D生物打印技术在耳廓修复重建中的应用研究进展
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作者 陈小雷 胡浩磊 +7 位作者 李谊 岳玮 张秀静 沈德新 麻文来 邢培梅 张亚戈 关泰红 《中国修复重建外科杂志》 CAS CSCD 北大核心 2024年第6期763-768,共6页
目的对3D生物打印技术在耳廓修复重建方面的应用研究进展作一综述。方法广泛查阅近年来国内外3D打印与耳廓修复重建相关研究文献,对3D生物打印技术概念及其在耳廓修复重建中的应用研究进展进行总结。结果耳廓具有复杂解剖结构和功能,需... 目的对3D生物打印技术在耳廓修复重建方面的应用研究进展作一综述。方法广泛查阅近年来国内外3D打印与耳廓修复重建相关研究文献,对3D生物打印技术概念及其在耳廓修复重建中的应用研究进展进行总结。结果耳廓具有复杂解剖结构和功能,需要精确的组织重建和形态复制,因此3D打印技术在耳廓修复重建方面具有巨大应用潜力。与传统3D打印技术相比,3D生物打印技术不仅能模拟耳廓外形结构,还能将细胞与材料混合打印,在支架成型过程中实现细胞在支架内部精准分布,模拟天然组织组成及结构,更有利于构建具有生物活性功能的耳廓组织,从而提高修复效果。结论3D生物打印技术可以重建耳廓组织,能避免传统自体软骨移植相关并发症,寻找既符合耳廓组织机械性要求,又符合生物要求的生物墨水是目前研究的主要挑战。 展开更多
关键词 3D生物打印技术 耳廓修复重建 组织工程支架 生物墨水
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Modification of plasma protein for bioprinting via photopolymerization
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作者 Wenbi Wu Yinchu Dong +4 位作者 Haofan Liu Xuebing Jiang Li Li Yi Zhang Maling Gou 《Chinese Chemical Letters》 SCIE CAS CSCD 2024年第8期486-490,共5页
Bioprinting is emerging as an advanced tool in tissue engineering.However,there is still a lack of bioinks able to form hydrogels with desirable bioactivities that support positive cell behaviors.In this study,modifie... Bioprinting is emerging as an advanced tool in tissue engineering.However,there is still a lack of bioinks able to form hydrogels with desirable bioactivities that support positive cell behaviors.In this study,modified plasma proteins capable of forming hydrogels with multiple biological functions are developed as bioinks for digital light processing(DLP)printing.The Plasma-MA(BM)was synthesized via a one-pot method through the reaction between the fresh frozen plasma and methacrylic anhydride.The methacry-lated levels were observed to influence the physical properties of BM hydrogels including mechanical properties,swelling,and degradation.The photo-crosslinked BM hydrogels can sustainedly release vascu-lar endothelial growth factor(VEGF)and exhibit positive biological effects on cell adhesion and prolifer-ation,and cell functionality such as tube formation of human umbilical vein endothelial cells(HUVECs),and neurite elongation of rat pheochromocytoma cells(PC12).Meanwhile,BM hydrogels can also induce cell infiltration,modulate immune response,and promote angiogenesis in vivo.Moreover,the plasma bioinks can be used to fabricate customized scaffolds with complex structures through a DLP printing process.These findings implicate that the modified plasma with growth factor release is a promising candidate for bioprinting in autologous and personalized tissue engineering. 展开更多
关键词 BIOPRINTING bioink PHOTOPOLYMERIZATION PLASMA Growth factor
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