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:Decoding tumor-infiltrating lymphocytes heterogeneity in ductal carcinoma in situ: immune microenvironment dynamics and prognostic insights.
Decoding tumor-infiltrating lymphocytes heterogeneity in ductal carcinoma in situ: immune microenvironment dynamics and prognostic insights.
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随着乳腺X线摄影的广泛应用,导管原位癌(DCIS)的发病率显著增加,目前约占新诊断乳腺癌病例的20-25%。尽管相当比例的DCIS病变表现出长期惰性且不进展为浸润性癌,但目前缺乏经过验证的用于预测浸润潜能的生物标志物,这在临床实践中造成了治疗困境,可能导致对生物学惰性病变的过度治疗或对高风险前驱病变的治疗不足。作为机体适应性免疫反应的体现,TIL(肿瘤浸润淋巴细胞)(TILs)已被证明与DCIS的不良临床病理因素相关。总TILs与DCIS复发风险之间的关系仍存在争议,但TILs亚群如FOXP3+ T淋巴细胞、B细胞、CD68和CD163巨噬细胞被发现与DCIS复发相关。总TILs水平升高与乳腺病变恶性程度增加相关,且TILs亚群的数量和组成在DCIS进展过程中发生变化。
此外,密集的TILs与高PD-L1表达及DCIS中的“愈合”现象相关。进一步探索DCIS中的免疫微环境、TILs亚群和适应性免疫反应仍是一个关键的未满足需求,有助于对DCIS患者进行更精细的风险分层并促进新疗法的实施。
With the widespread use of mammography, the incidence of ductal carcinoma in situ (DCIS) has significantly increased and currently accounts for approximately 20-25% of newly diagnosed breast cancer cases. While a significant proportion of DCIS lesions exhibit long-term indolence without progression to invasive carcinoma, the current paucity of validated biomarkers for invasive potential prediction creates a therapeutic dilemma in clinical practice, potentially leading to either overtreatment of biologically inert lesions or undertreatment of high-risk precursors.
Reflecting the body's adaptive immune response, tumor-infiltrating lymphocytes (TILs) have been demonstrated to be associated with adverse clinicopathologic factors in DCIS. The relationship between total TILs and the risk of DCIS recurrence remains controversial, but subpopulations of TILs such as FOXP3 + T lymphocytes, B cells, CD68, and CD163 macrophages are found to be associated with DCIS recurrence.
Increased levels of total TILs are associated with increased malignancy of breast lesions, and the number and composition of TILs subpopulations change during DCIS progression.
Moreover, dense TILs are correlated with high PD-L1 expression and the "healing" phenomenon in DCIS.
Further exploration of the immune microenvironment, TILs subpopulations, and adaptive immune responses in DCIS remains a critical unmet need, contributing to more refined risk stratification of DCIS patients and facilitating the implementation of new treatments.
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