OVC, Ovarian cancer

  • 文章类型: Journal Article
    内皮细胞(ECs)在肿瘤进展中起重要作用。目前,抗血管生成治疗的主要靶点是血管内皮生长因子(VEGF)通路。一些患者确实从抗VEGF/VEGFR治疗中获益;然而,大量患者在治疗后没有反应或获得耐药性。此外,抗VEGF/VEGFR治疗可能由于其对正常ECs的作用而导致肾毒性和心血管相关的副作用。因此,有必要确定对肿瘤ECs具有特异性并可应用于各种癌症类型的靶标。我们整合了来自六种癌症类型的单细胞RNA测序数据,并构建了一个多癌症EC图谱以解码肿瘤EC的特征。我们发现尖端样ECs主要存在于肿瘤组织中,而在正常组织中几乎不存在。提示样ECs参与促进肿瘤血管生成和抑制抗肿瘤免疫反应。此外,肿瘤细胞,骨髓细胞,周细胞是促血管生成因子的主要来源。高比例的尖端样ECs与多种癌症类型的不良预后相关。我们还发现,前列腺特异性膜抗原(PSMA)是我们研究的所有癌症类型中尖端样ECs的特异性标志物。总之,我们证明,尖端样EC是肿瘤和正常组织之间的主要差异EC亚簇。头端样ECs可通过促进血管生成同时抑制抗肿瘤免疫应答来促进肿瘤进展。PSMA是尖端状ECs的特异性标记,可作为诊断和治疗非前列腺癌的潜在靶点。
    Endothelial cells (ECs) play an important role in tumor progression. Currently, the main target of anti-angiogenic therapy is the vascular endothelial growth factor (VEGF) pathway. Some patients do benefit from anti-VEGF/VEGFR therapy; however, a large number of patients do not have response or acquire drug resistance after treatment. Moreover, anti-VEGF/VEGFR therapy may lead to nephrotoxicity and cardiovascular-related side effects due to its action on normal ECs. Therefore, it is necessary to identify targets that are specific to tumor ECs and could be applied to various cancer types. We integrated single-cell RNA sequencing data from six cancer types and constructed a multi-cancer EC atlas to decode the characteristic of tumor ECs. We found that tip-like ECs mainly exist in tumor tissues but barely exist in normal tissues. Tip-like ECs are involved in the promotion of tumor angiogenesis and inhibition on anti-tumor immune responses. Moreover, tumor cells, myeloid cells, and pericytes are the main sources of pro-angiogenic factors. High proportion of tip-like ECs is associated with poor prognosis in multiple cancer types. We also identified that prostate-specific membrane antigen (PSMA) is a specific marker for tip-like ECs in all the cancer types we studied. In summary, we demonstrate that tip-like ECs are the main differential EC subcluster between tumors and normal tissues. Tip-like ECs may promote tumor progression through promoting angiogenesis while inhibiting anti-tumor immune responses. PSMA was a specific marker for tip-like ECs, which could be used as a potential target for the diagnosis and treatment of non-prostate cancers.
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  • 文章类型: Journal Article
    已显示,恶性肿瘤中细胞外基质的重塑增加与肿瘤侵袭性和不良预后相关。这种重塑涉及原始细胞外基质(ECM)的降解和新的支持肿瘤的ECM的沉积。ECM的主要成分是胶原蛋白,胶原蛋白周转主要以顺序方式发生,其中不溶性纤维的初始蛋白水解裂解随后是大的明确定义的胶原片段的细胞内化以用于溶酶体降解。然而,尽管在该领域进行了广泛的研究,关于肿瘤微环境中哪些细胞类型表达相关蛋白酶的共识仍然存在。此外,不同细胞类型对胶原内化的相对贡献尚不明确.这里,我们开发了定量的离体胶原降解试验,并显示在两个小鼠同系肿瘤模型中,负责胶原初始裂解的蛋白酶是由癌症相关成纤维细胞产生的基质金属蛋白酶,并且胶原降解片段主要被来自肿瘤基质的肿瘤相关巨噬细胞和癌症相关成纤维细胞胞吞.利用甘露糖受体缺陷小鼠的肿瘤,我们表明,这种受体对于肿瘤相关巨噬细胞的胶原内化至关重要。一起,这些发现确定了负责整个胶原蛋白降解途径的细胞类型,从最初的裂解到细胞内降解片段的内吞。
    Increased remodeling of the extracellular matrix in malignant tumors has been shown to correlate with tumor aggressiveness and a poor prognosis. This remodeling involves degradation of the original extracellular matrix (ECM) and deposition of a new tumor-supporting ECM. The main constituent of the ECM is collagen and collagen turnover mainly occurs in a sequential manner, where initial proteolytic cleavage of the insoluble fibers is followed by cellular internalization of large well-defined collagen fragments for lysosomal degradation. However, despite extensive research in the field, a lack of consensus on which cell types within the tumor microenvironment express the involved proteases still exists. Furthermore, the relative contribution of different cell types to collagen internalization is not well-established. Here, we developed quantitative ex vivo collagen degradation assays and show that the proteases responsible for the initial collagen cleavage in two murine syngeneic tumor models are matrix metalloproteinases produced by cancer-associated fibroblasts and that collagen degradation fragments are endocytosed primarily by tumor-associated macrophages and cancer-associated fibroblasts from the tumor stroma. Using tumors from mannose receptor-deficient mice, we show that this receptor is essential for collagen-internalization by tumor-associated macrophages. Together, these findings identify the cell types responsible for the entire collagen degradation pathway, from initial cleavage to endocytosis of fragments for intracellular degradation.
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