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减压性颅骨切除术后取出的颅骨瓣显示出相关的骨无活力——将其重新植入值得冒风险吗?

Explanted Skull Flaps after Decompressive Hemicraniectomy Demonstrate Relevant Bone Avitality-Is Their Reimplantation Worth the Risk?

作者信息

Gousias Konstantinos, Stricker Ingo, Hoyer Annika, Theocharous Theocharis, Rompf Csilla, Pranada Arthur B, Tannapfel Andrea, Agrawal Rachit, Tischoff Iris

机构信息

Department of Neurosurgery, Academic Hospital of University of Muenster, St. Marien Hospital Luenen, 44532 Luenen, Germany.

Medical School, Westfaelische Wilhelms University of Muenster, 48149 Muenster, Germany.

出版信息

Brain Sci. 2023 Sep 1;13(9):1277. doi: 10.3390/brainsci13091277.

Abstract

BACKGROUND

Reimplantations of autologous skull flaps after decompressive hemicraniectomies (DHs) are associated with high rates of postoperative bone flap resorption (BFR). We histologically assessed the cell viability of explanted bone flaps in certain periods of time after DH, in order to conclude whether precursors of BRF may be developed during their storage.

METHODS

Skull bone flaps explanted during a DH between 2019 and 2020 were stored in a freezer at either -23 °C or -80 °C. After their thawing process, the skulls were collected. Parameters of bone metabolism, namely PTH1 and OPG, were analyzed via immunohistochemistry. H&E stain was used to assess the degree of avital bone tissue, whereas the repeated assays were performed after 6 months.

RESULTS

A total of 17 stored skull flaps (8 at -23 °C; 9 at -80 °C) were analyzed. The duration of cryopreservation varied between 2 and 17 months. A relevant degree of bone avitality was observed in all skull flaps, which significantly increased at the repeated evaluation after 6 months ( < 0.001). Preservation at -23 °C ( = 0.006) as well as longer storage times ( < 0.001) were identified as prognostic factors for higher rates of bone avitality in a linear mixed regression model.

CONCLUSIONS

Our novel finding shows a clear benefit from storage at -80° C, which should be carefully considered for the future management and storage of explanted skull flaps. Our analysis also further revealed a significant degree of bone avitality, a potential precursor of BFR, in skull flaps stored for several weeks. To this end, we should reconsider whether the reimplantation of autologous skull flaps instead of synthetic skull flaps is still justified.

摘要

背景

减压性颅骨切除术(DHs)后自体颅骨瓣再植入与术后骨瓣吸收(BFR)的高发生率相关。我们对DH术后特定时间段内取出的骨瓣进行组织学细胞活力评估,以确定BFR的前体是否在骨瓣保存期间形成。

方法

2019年至2020年DH术中取出的颅骨瓣分别储存在-23°C或-80°C的冰箱中。解冻后收集颅骨,通过免疫组织化学分析骨代谢参数,即甲状旁腺激素1(PTH1)和骨保护素(OPG)。苏木精-伊红(H&E)染色用于评估无活力骨组织的程度,并在6个月后进行重复检测。

结果

共分析了17个保存的颅骨瓣(8个在-23°C;9个在-80°C)。冷冻保存时间为2至17个月。所有颅骨瓣均观察到一定程度的骨无活力,在6个月后的重复评估中显著增加(<0.001)。在线性混合回归模型中,-23°C保存(=0.006)以及更长的保存时间(<0.001)被确定为骨无活力发生率较高的预后因素。

结论

我们的新发现表明,-80°C保存具有明显优势,在未来取出颅骨瓣的管理和保存中应予以慎重考虑。我们的分析还进一步揭示,保存数周的颅骨瓣存在显著程度的骨无活力,这是BFR的潜在前体。为此,我们应重新考虑自体颅骨瓣再植入而非合成颅骨瓣植入是否仍然合理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49a1/10526390/96fe70b2b322/brainsci-13-01277-g001.jpg

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