TP53 缺失通过上调 NF-κB-IFN-β-MHC-Ia 信号促进骨肉瘤对 NK 细胞的抵抗
TP53 Loss Elevates NF-κB-IFN-β-MHC-Ia Signaling to Promote NK Cell Resistance in Osteosarcoma.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Cytoprotective role of human dental pulp stem cell-conditioned medium in chemotherapy-induced alopecia.
Cytoprotective role of human dental pulp stem cell-conditioned medium in chemotherapy-induced alopecia.
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DPSC-CM 和 H-CM 分别作为 CIA 的有前景的细胞保护剂和毛发再生刺激剂的潜力需要深入探索。
化疗引起的脱发(CIA)是化疗令人痛苦的不良反应,估计发生率为65%,治疗选择有限。环磷酰胺(CYP)是一种常见的引起脱发的化疗药物。人牙髓干细胞(DPSCs)分泌多种旁分泌因子,可上调毛发生长。从DPSCs收集的条件培养基(DPSC-CM)可促进毛发生长;在缺氧条件下培养间充质干细胞可增强这一效果。
采用细胞活力测定、乳酸脱氢酶(LDH)细胞毒性测定和凋亡检测,研究了在常氧(N-)和缺氧(H-)条件下培养的DPSC-CM对CYP介导的角质形成细胞细胞毒性的作用。通过分析宏观效应、组织学和凋亡,在成熟的CIA小鼠模型中确定了损伤反应通路。采用逆转录定量PCR和Caspase-3/7活性测定,研究DPSC-CM对CYP处理小鼠分子损伤反应通路的影响。通过宏观效应和毛发表面微观结构观察,分析了CIA后应用DPSC-CM对CIA后毛发再生的影响。此外,为研究DPSC-CM作为可行治疗方案的安全性,通过细胞活力测定和皮下肿瘤模型检测了DPSC-CM对癌细胞系的作用。
在细胞活力测定中,观察到DPSC-CM在不同CYP浓度下增加角质形成细胞数量。此外,它降低了LDH活性水平并抑制了CYP处理角质形成细胞的凋亡。DPSC-CM通过营养不良性生长期损伤反应通路在体内表现出细胞保护作用。虽然N-CM和H-CM均下调Caspase-3/7活性水平,但H-CM下调Caspase-3 mRNA表达。在拔毛后第50至59天,CIA后H-CM处理小鼠中毛发>90%正常的比例几乎是载体或N-CM处理小鼠的两倍,表明CIA后应用H-CM可能加速毛发生长并改善毛发质量。此外,DPSC-CM在体外抑制某些癌细胞系的增殖,并且未促进小鼠鳞状细胞癌(SCC-VII)肿瘤生长速率。
Chemotherapy-induced alopecia (CIA) is a distressing adverse effect of chemotherapy, with an estimated incidence of 65% and limited treatment options. Cyclophosphamide (CYP) is a common alopecia-inducing chemotherapy agent. Human dental pulp stem cells (DPSCs) secrete several paracrine factors that up-regulate hair growth. Conditioned medium (CM) collected from DPSCs (DPSC-CM) promotes hair growth; culturing mesenchymal stem cells under hypoxic conditions can enhance this effect.
The effect of DPSC-CM cultured under normoxic (N-) and hypoxic (H-) conditions against CYP-mediated cytotoxicity in keratinocytes was examined using cell viability assay, lactate dehydrogenase (LDH) cytotoxicity assay, and apoptosis detection. The damage-response pathway was determined in a well-established CIA mouse model by analyzing macroscopic effects, histology, and apoptosis. Reverse transcription-quantitative PCR and Caspase-3/7 activity assay were used to investigate the impact of DPSC-CM on the molecular damage-response pathways in CYP-treated mice. The effect of post-CIA DPSC-CM application on post-CIA hair regrowth was analyzed by macroscopic effects and microstructure observation of the hair surface. Furthermore, to investigate the safety of DPSC-CM as a viable treatment option, the effect of DPSC-CM on carcinoma cell lines was examined by cell viability assay and a subcutaneous tumor model.
In the cell viability assay, DPSC-CM was observed to increase the number of keratinocytes over varying CYP concentrations. Furthermore, it reduced the LDH activity level and suppressed apoptosis in CYP-treated keratinocytes. DPSC-CM exhibited the cytoprotective role in vivo via the dystrophic anagen damage-response pathway. While both N-CM and H-CM downregulated the Caspase-3/7 activity level, H-CM downregulated Caspase-3 mRNA expression. The proportion of post-CIA H-CM-treated mice with > 90% normal hair was nearly twice that of vehicle- or N-CM-treated mice between days 50 and 59 post-depilation, suggesting that post-CIA H-CM application may accelerate hair regrowth and improve hair quality. Furthermore, DPSC-CM suppressed proliferation in vitro in certain carcinoma cell lines and did not promote the squamous cell carcinoma (SCC-VII) tumor growth rate in mice.
The potentiality of DPSC-CM and H-CM as a promising cytoprotective agent and hair regrowth stimulant, respectively, for CIA needs in-depth exploration.
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