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确定用于自体头颈癌疫苗接种和重建的安全高静水压灭活阈值。

Establishing safe high hydrostatic pressure devitalization thresholds for autologous head and neck cancer vaccination and reconstruction.

作者信息

Maletzki Claudia, Freiin Grote Vivica, Kalle Friederike, Kleitke Thoralf, Zimpfer Annette, Becker Anne-Sophie, Bergmann-Ewert Wendy, Jonitz-Heincke Anika, Bader Rainer, Vollmar Brigitte, Hackenberg Stephan, Scherzad Agmal, Mlynski Robert, Strüder Daniel

机构信息

Department of Internal Medicine, Medical Clinic III - Hematology, Oncology, Palliative Medicine, Rostock University Medical Center, Rostock, Germany.

Research Laboratory for Biomechanics and Implant Technology, Department of Orthopedics, Rostock University Medical Centre, Rostock, Germany.

出版信息

Cell Death Discov. 2023 Oct 23;9(1):390. doi: 10.1038/s41420-023-01671-z.

Abstract

High hydrostatic pressure specifically devitalizes cells and tissues without major changes in their molecular structure. Hence, high hydrostatic pressure may enhance the development of whole-cell anti-tumor vaccines, representing tumor heterogeneity and thus (neo-) antigen diversity. Moreover, safe devitalization of tumor-infiltrated supporting tissue may facilitate reimplantation for functional reconstruction. However, precise high hydrostatic pressure thresholds for safe cancer cell killing are unknown. Here, we show that high hydrostatic pressure of at least 450 MPa is necessary to safely devitalize head and neck squamous cell cancer. A pressure of 300 MPa, which has been used frequently in cancer vaccine preparation, resulted in partial devitalization with 27% live cells in flow cytometry and 4% remaining autofluorescence in cell culture after one week. The remaining cells could form vital tumors in the chorioallantoic membrane assay. In contrast, 450 MPa killed all cells in vitro and prevented tumor outgrowth in ovo. The effectiveness of 450 MPa was attributed to the induction of DNA double-strand breaks, independent of apoptosis, autophagy, or methuosis. Furthermore, 450 MPa continued to induce immunogenic cell death. Our results demonstrate that 450 MPa of high hydrostatic pressure induces safe and sustained devitalization of head and neck cancer cells and tissues. Because of the heterogeneity in pressure resistance, we propose our approach as a starting point for determining the precise thresholds for other cancer entities. Further studies on head and neck cancer should focus on immunological co-cultures, combinations of immune checkpoint inhibition, and accurate anatomical reconstruction with pressure-treated autografts.

摘要

高静水压能特异性地使细胞和组织失活,而其分子结构不会发生重大变化。因此,高静水压可能会促进全细胞抗肿瘤疫苗的研发,这种疫苗能够体现肿瘤异质性,进而(产生新的)抗原多样性。此外,对肿瘤浸润的支持组织进行安全失活处理可能有助于重新植入以进行功能重建。然而,安全杀死癌细胞所需的精确高静水压阈值尚不清楚。在此,我们表明,至少450兆帕的高静水压对于安全使头颈部鳞状细胞癌失活是必要的。在癌症疫苗制备中经常使用的300兆帕压力,导致部分失活,流式细胞术检测显示有27%的活细胞,细胞培养一周后仍有4%的自发荧光。剩余的细胞在尿囊膜试验中能够形成活的肿瘤。相比之下,450兆帕能在体外杀死所有细胞,并阻止肿瘤在鸡胚中生长。450兆帕的有效性归因于DNA双链断裂的诱导,与凋亡、自噬或类凋亡无关。此外,450兆帕持续诱导免疫原性细胞死亡。我们的结果表明,450兆帕的高静水压能诱导头颈部癌细胞和组织安全且持续地失活。由于耐压性存在异质性,我们建议将我们的方法作为确定其他癌症实体精确阈值的起点。对头颈部癌症的进一步研究应聚焦于免疫共培养、免疫检查点抑制的联合应用以及用压力处理的自体移植物进行精确的解剖重建。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49cb/10593744/a7bb6e4bdce6/41420_2023_1671_Fig1_HTML.jpg

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