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用于骨肿瘤缺损修复的增材制造双功能生物陶瓷

Additively manufactured Bi-functionalized bioceramics for reconstruction of bone tumor defects.

作者信息

Belluomo Ruggero, Khodaei Azin, Amin Yavari Saber

机构信息

Department of Orthopedics, University Medical Center Utrecht, Utrecht 3508GA, the Netherlands.

Department of Orthopedics, University Medical Center Utrecht, Utrecht 3508GA, the Netherlands; Regenerative Medicine Utrecht, Utrecht University, Utrecht, the Netherlands.

出版信息

Acta Biomater. 2023 Jan 15;156:234-249. doi: 10.1016/j.actbio.2022.08.042. Epub 2022 Aug 24.

Abstract

Bone tissue exhibits critical factors for metastatic cancer cells and represents an extremely pleasant spot for further growth of tumors. The number of metastatic bone lesions and primary tumors that arise directly from cells comprised in the bone milieu is constantly increasing. Bioceramics have recently received significant attention in bone tissue engineering and local drug delivery applications. Additionally, additive manufacturing of bioceramics offers unprecedented advantages including the possibilities to fill irregular voids after the resection and fabricate patient-specific implants. Herein, we investigated the recent advances in additively manufactured bioceramics and ceramic-based composites that were used in the local bone tumor treatment and reconstruction of bone tumor defects. Furthermore, it has been extensively explained how to bi-functionalize ceramics-based biomaterials and what current limitations impede their clinical application. We have also discussed the importance of further development into ceramic-based biomaterials and molecular biology of bone tumors to: (1) discover new potential therapeutic targets to enhance conventional therapies, (2) local delivering of bio-molecular agents in a customized and "smart" way, and (3) accomplish a complete elimination of tumor cells in order to prevent tumor recurrence formation. We emphasized that by developing the research focus on the introduction of novel 3D-printed bioceramics with unique properties such as stimuli responsiveness, it will be possible to fabricate smart bioceramics that promote bone regeneration while minimizing the side-effects and effectively eradicate bone tumors while promoting bone regeneration. In fact, by combining all these therapeutic strategies and additive manufacturing, it is likely to provide personalized tumor-targeting therapies for cancer patients in the foreseeable future. STATEMENT OF SIGNIFICANCE: To increase the survival rates of cancer patients, different strategies such as surgery, reconstruction, chemotherapy, radiotherapy, etc have proven to be essential. Nonetheless, these therapeutic protocols have reached a plateau in their effectiveness due to limitations including drug resistance, tumor recurrence after surgery, toxic side-effects, and impaired bone regeneration following tumor resection. Hence, novel approaches to specifically and locally attack cancer cells, while also regenerating the damaged bony tissue, have being developed in the past years. This review sheds light to the novel approaches that enhance local bone tumor therapy and reconstruction procedures by combining additive manufacturing of ceramic biomaterials and other polymers, bioactive molecules, nanoparticles to affect bone tumor functions, metabolism, and microenvironment.

摘要

骨组织为转移性癌细胞提供了关键因素,是肿瘤进一步生长的极佳场所。源自骨微环境中细胞的转移性骨病变和原发性肿瘤的数量在不断增加。生物陶瓷最近在骨组织工程和局部药物递送应用中受到了广泛关注。此外,生物陶瓷的增材制造具有前所未有的优势,包括在切除后填充不规则空隙以及制造个性化植入物的可能性。在此,我们研究了用于局部骨肿瘤治疗和骨肿瘤缺损重建的增材制造生物陶瓷及陶瓷基复合材料的最新进展。此外,还详细阐述了如何对陶瓷基生物材料进行双功能化以及当前哪些限制因素阻碍了它们的临床应用。我们还讨论了进一步发展陶瓷基生物材料和骨肿瘤分子生物学的重要性,以:(1)发现新的潜在治疗靶点以增强传统疗法,(2)以定制和“智能”的方式局部递送生物分子制剂,以及(3)实现肿瘤细胞的完全清除以防止肿瘤复发形成。我们强调,通过将研究重点转向引入具有刺激响应性等独特性能的新型3D打印生物陶瓷,有可能制造出促进骨再生同时将副作用降至最低并在促进骨再生的同时有效根除骨肿瘤的智能生物陶瓷。事实上,通过结合所有这些治疗策略和增材制造,在可预见的未来有可能为癌症患者提供个性化的肿瘤靶向治疗。重要性声明:为了提高癌症患者的生存率,手术、重建、化疗、放疗等不同策略已被证明是必不可少的。然而,由于耐药性、手术后肿瘤复发、毒副作用以及肿瘤切除后骨再生受损等限制因素,这些治疗方案的有效性已达到瓶颈。因此,在过去几年中一直在开发专门针对癌细胞并在局部进行攻击,同时再生受损骨组织的新方法。本综述揭示了通过结合陶瓷生物材料与其他聚合物、生物活性分子、纳米颗粒的增材制造来影响骨肿瘤功能、代谢和微环境,从而增强局部骨肿瘤治疗和重建程序的新方法。

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