Li Yuanjiaozi, Katayama Yasuhiro, Nie Ie, Nakano Takashi, Sawaragi Eiichi, Sakamoto Michiharu, Yamanaka Hiroki, Tsuge Itaru, Demura Satoru, Yamada Yohei, Tsuchiya Hiroyuki, Morimoto Naoki
Department of Plastic and Reconstructive Surgery, Graduate School of Medicine, Kyoto University, Kyoto, Japan.
Department of Orthopaedic Surgery, Graduate School of Medicine, Kanazawa University, Kanazawa, Japan.
Regen Ther. 2023 Mar 2;22:224-231. doi: 10.1016/j.reth.2023.02.002. eCollection 2023 Mar.
Surgical resection of malignant bone tumors leads to significant defects in the normal surrounding tissues that should be reconstructed to avoid amputation. Our research aimed to inactivate osteosarcoma (OS)-affected bone to obtain autologous bone grafts for bone defect reconstruction using a novel therapy called high hydrostatic pressurization (HHP) therapy. The key points are complete tumor death and preservation of the non-denatured native extracellular matrix (ECM) and bone tissue by HHP. Previously, we found that HHP at 200 MPa for 10 min can completely inactivate cells in normal skin and skin tumors, including malignant melanoma and squamous cell carcinoma while maintaining their original biochemical properties and biological components. Based on our previous research, this study used HHP at 200 MPa for 10 min to eradicate OS. We prepared an OS cell line (LM8), pressurized it at 200 MPa for 10 min, and confirmed its inactivation through morphological observation, WST-8 assay, and live/dead assay. We then injected OS cells with or without HHP into the bone marrow of the murine tibia, after which we implanted tumor tissues with or without HHP into the anterior surface of the tibia. After HHP, OS cells did not proliferate and were assessed using a live/dead assay. The pressurized cells and tumors did not grow after implantation. The pressurized bone was well prepared as tumor-free autologous bone tissues, resulting in the complete eradication of OS. This straightforward and short-pressing treatment was proven to process the tumor-affected bone to make a transplantable and tumor-free autologous bone substitute.
恶性骨肿瘤的手术切除会导致周围正常组织出现明显缺损,需要进行重建以避免截肢。我们的研究旨在通过一种名为高静水压(HHP)疗法的新方法使受骨肉瘤(OS)影响的骨失活,从而获得用于骨缺损重建的自体骨移植材料。关键在于通过HHP实现肿瘤细胞完全死亡,并保留未变性的天然细胞外基质(ECM)和骨组织。此前,我们发现200MPa的HHP处理10分钟可使正常皮肤及皮肤肿瘤(包括恶性黑色素瘤和鳞状细胞癌)中的细胞完全失活,同时保持其原始生化特性和生物成分。基于我们之前的研究,本研究采用200MPa的HHP处理10分钟来根除骨肉瘤。我们制备了一种骨肉瘤细胞系(LM8),将其在200MPa下加压10分钟,并通过形态学观察、WST - 8检测和活/死检测来确认其失活情况。然后,我们将经过或未经过HHP处理的骨肉瘤细胞注射到小鼠胫骨骨髓中,之后将经过或未经过HHP处理的肿瘤组织植入胫骨前表面。经过HHP处理后,骨肉瘤细胞不再增殖,并通过活/死检测进行评估。植入后,经过加压处理的细胞和肿瘤均未生长。经过加压处理的骨被成功制备为无肿瘤的自体骨组织,从而实现了骨肉瘤的完全根除。这种直接且短时间加压的治疗方法被证明能够处理受肿瘤影响的骨,制成可移植的无肿瘤自体骨替代物。