基于 DNA 超分子水凝胶的保护性 NK 细胞储库用于增强三阴性乳腺癌治疗
Protective NK Cell Reservoir Based on DNA Supramolecular Hydrogel for Enhanced Triple-Negative Breast Cancer Therapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Expression of cell surface zinc transporter LIV1 in triple negative breast cancer is an indicator of poor prognosis and therapy failure.
Expression of cell surface zinc transporter LIV1 in triple negative breast cancer is an indicator of poor prognosis and therapy failure.
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三阴性乳腺癌(TNBC)是乳腺癌(BC)的一种侵袭性分子亚型,其特征是缺乏雌激素、孕激素和人表皮生长因子受体-2的受体表达。缺乏切实可用的药物靶点使得TNBC需要进一步研究。LIV1是一种锌(Zn)转运蛋白,已知在包括BC在内的少数癌症类型中过表达。最近,在美国,FDA批准了一种靶向LIV1的新药——抗体药物偶联物SGN-LIV1A用于治疗TNBC患者。尽管LIV1还通过其差异性锌转运在调节免疫细胞中发挥作用,但关于肿瘤细胞LIV1表达与免疫细胞浸润之间的相关性报道甚少。
此外,关于LIV1在其他人群中表达的充分基线数据尚未被记录。我们的目标是在一个大型印度TNBC患者样本队列中筛选LIV1,使用CD4/CD8表达对免疫细胞浸润进行分类,并将结果与治疗结局进行关联。
此外,我们还研究了TNBC患者中原发与继发肿瘤配对样本以及化疗前后样本中LIV1的表达。结果显示,与癌旁正常组织相比,TNBC样本中LIV1表达升高,平均Q评分分别为183.06 ± 6.39和120.78 ± 7.37(p < 0.0001)。同样,继发肿瘤中LIV1水平高于原发肿瘤,化疗后患者样本中LIV1水平高于初治样本。在TNBC队列中,使用自动化方法计算了细胞形态学参数,分析显示LIV1水平在3级TNBC样本中升高,这些样本呈现细胞形态学参数改变,即细胞大小、细胞周长和细胞核大小。
因此,表明表达 LIV1 的 TNBC 样本呈现出侵袭性表型。最后,与 LIV1 表达为 2+ 的患者(5.47 年)相比,染色强度为 3+ 的 TNBC 患者生存期较差(4.44 年),强调 LIV1 表达是 TNBC 的不良预后因素。
总之,该研究报告了在大型印度 TNBC 队列中 LIV1 表达升高;高表达是不良预后因素,并与侵袭性疾病相关,表明需要针对 LIV1 的靶向治疗。
Triple negative breast cancers (TNBC) are an aggressive molecular subtype of breast carcinoma (BC) identified by the lack of receptor expression for estrogen, progesterone, & human epidermal growth factor receptor-2. Lack of tangible drug targets warrants further research in TNBC. LIV1, is a zinc (Zn) transporter known to be overexpressed in few cancer types including BCs.
Recently, in the United States of America, FDA approved the use of a new drug targeting LIV1, antibody drug conjugate SGN-LIV1A for treatment of TNBC patients. Though LIV1 also has a role in modulating immune cells by its differential transport of Zn, a correlation between the tumor cell expression of LIV1 and immune cell infiltrations were scantily reported.
Further adequate baseline data on LIV1 expression in other populations have not been documented.
Our objective was to screen a large Indian cohort of TNBC patient samples for LIV1, categorize the immune cell infiltration using CD4/CD8 expression and correlate the findings with therapy outcomes.
Further, we also investigated for LIV1 expression in matched samples of primary & secondary tumors; pre & postchemotherapy in TNBC patients. Results showed an elevated expression of LIV1 in TNBC samples as compared to adjacent normal, the mean Q scores being 183. 06 ± 6. 39 and 120. 78 ± 7. 37 (p < 0. 0001), respectively.
Similarly, LIV1 levels were elevated in secondary tumors than primary & in patient samples postchemotherapy as compared to naïve. In the TNBC cohort, using automated method, cell morphology parameters were computed and analysis showed LIV1 levels were elevated in grade 3 TNBC samples presenting with altered cell morphology parameters namely cell size, cell perimeter, & nucleus size.
Thus indicating LIV1 expressing TNBC samples portrayed an aggressive phenotype.
Finally, TNBC patients with 3+ staining intensity showed poor survival (4. 44 year) as compared to patients with 2+ LIV1 expression (5. 47 year), emphasizing that LIV1 expression is a poor prognostic factor in TNBC.
In conclusion, the study reports elevated expression of LIV1 in a large Indian TNBC cohort; high expression is a poor prognostic factor and correlated with aggressive disease and indicating the need for LIV1 targeted therapies.
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