Shanxi Bethune Hospital, Shanxi Academy of Medical Sciences, Third Hospital of Shanxi Medical University, Taiyuan 030032, Shanxi Province, China.
Laboratory of Biomaterial Surface and Interface, School of Materials Science and Engineering, Taiyuan University of Technology, Taiyuan 030024, Shanxi Province, P.R. China.
ACS Appl Bio Mater. 2021 Sep 20;4(9):7094-7102. doi: 10.1021/acsabm.1c00701. Epub 2021 Aug 22.
A bolus is a kind of tissue equivalent material used in radiotherapy for treating superficial lesions. Despite the availability of various commercial boluses, it is hard for them to form full contact with the irregular surface of patients' skin, such as the scalp, nose, and ear, resulting in air gaps and leading to a discrepancy between the delivered dose and planned dose. To solve this problem, we provided a photocurable bioink created from chitosan (CHI) for digital light processing (DLP) three-dimensional (3D) printing the bolus in radiotherapy application. The chitosan-based bioink (CHI-MA) was obtained by a methacrylation process using methacrylic anhydride (MA). Photosensitive crosslinkers with different molecular weights were introduced into the bioink. The photocuring efficiency and mechanical properties of CHI-MA hydrogels can be well modulated by varying the crosslinkers. This CHI-MA bioink allowed us to create complex structures with reliable biocompatibility, good flexibility, and excellent structural stability. Furthermore, the nose bolus processed by 3D printing this bioink proved to be a good fit for the nose model and showed a desirable radiotherapy effect. This suggests that DLP 3D printing of the CHI-MA bioink would be a promising approach to obtain the customized bolus in the application of radiotherapy.
一种用于治疗表浅病变的组织等效材料,即射束档块。尽管有各种商业射束档块可供选择,但它们很难与患者皮肤的不规则表面(如头皮、鼻子和耳朵)完全接触,从而导致空气间隙,并导致实际剂量与计划剂量之间存在差异。为了解决这个问题,我们提供了一种由壳聚糖(CHI)制成的可光固化生物墨水,用于数字光处理(DLP)三维(3D)打印在放射治疗中的射束档块。壳聚糖基生物墨水(CHI-MA)是通过使用甲基丙烯酰酐(MA)进行甲基丙烯酰化过程获得的。将具有不同分子量的光交联剂引入到生物墨水中。通过改变交联剂,可以很好地调节 CHI-MA 水凝胶的光固化效率和机械性能。这种 CHI-MA 生物墨水允许我们创建具有可靠生物相容性、良好柔韧性和出色结构稳定性的复杂结构。此外,用这种生物墨水 3D 打印的鼻档块与鼻模型贴合良好,具有理想的放射治疗效果。这表明,使用 CHI-MA 生物墨水的 DLP 3D 打印将是获得放射治疗应用中定制化射束档块的一种很有前途的方法。