The presence of tumor-infiltrating lymphocytes (TILs) and tertiary lymphoid structures (TLSs) reflects an active inflammatory tumor microenvironment. High density of TILs as well as presence of TLS is associated with improved survival in various solid cancer types. We aimed to describe the density and distribution of TILs and TLS in pulmonary metastases (PMs) from primary colorectal cancer (CRC) and its correlation with clinicopathological variables. Fifty-seven CRC pulmonary metastasectomy specimen (PM) and 31 matched primary CRC specimen were included. Cluster of differentiation (CD)3+, CD8+, CD45RO+ and FoxP3+ TILs were evaluated by immunohistochemistry and density was scored semiquantitatively. TLS were evaluated based on morphological criteria. Survival time was defined from pulmonary metastasectomy to death or last follow up. A marked infiltration with CD3+, CD8+, CD45RO+ and FoxP3+ TILs was evident in CRC PM and matched primary CRC. Further assessment of the immune infiltrate in PM showed that a high density of FOXP3+ TILs at the invasive margin [HR 2.40 (1.11–6.96); P = 0.031] and low density of CD8+ cells in TLS [HR 0.30 (0.14–0.79); P = 0.016] were associated with a worse prognosis in univariate analysis. Moreover, a low CD8/FoxP3-ratio of TILs at the invasive margin (P = 0.042) and in TLS (P = 0.027) conferred an impaired prognosis after pulmonary metastasectomy. Our findings suggest that CRC PM harbor an immune active microenvironment. The balance of CD8+ and FoxP3+ T-cells at the tumor border and in TLS provides prognostic information in patients with CRC PM.Electronic supplementary materialThe online version of this article (doi:10.1007/s10585-016-9813-y) contains supplementary material, which is available to authorized users.
Developing effective therapies against chronic wound healing deficiencies is a global priority. Thus we evaluated the safety of two different doses of topically administered autologous APOSEC, the secretome of apoptotic peripheral blood mononuclear cells (PBMCs), in healthy male volunteers with artificial dermal wounds. Ten healthy men were enrolled in a single-center, randomized, double-blinded, placebo-controlled phase 1 trial. Two artificial wounds at the upper arm were generated using a 4-mm punch biopsy. Each participant was treated with both topically applied APOSEC and placebo in NuGel for 7 consecutive days. The volunteers were randomized into two groups: a low-dose group (A) receiving the supernatant of 12.5 × 106 PBMCs and a high-dose group (B) receiving an equivalent of 25 × 106 PBMCs resuspended in NuGel Hydrogel. Irradiated medium served as placebo. The primary outcome was the tolerability of the topical application of APOSEC. All adverse events were recorded until 17 days after the biopsy. Local tolerability assessment was measured on a 4-point scale. Secondary outcomes were wound closure and epithelization at day 7. No therapy-related serious adverse events occurred in any of the participants, and both low- and high-dose treatments were well tolerated. Wound closure was not affected by APOSEC therapy.
Inflammatory markers provided promising prognostic information in this cohort of curative PM patients after colorectal cancer. Further validation is needed to verify the prognostic role of these markers and establish them in clinical routine.
Pulmonary metastasectomy (PM) is an accepted treatment modality in colorectal cancer (CRC) patients with pulmonary tumor spread. Positive intrathoracic lymph nodes at the time of PM are associated with a poor prognosis and 5-year survival rates of <20 %. Increased lymphangiogenesis in pulmonary metastases might represent an initial step for a subsequent lymphangiogenic spreading. We aimed to evaluate the presence of lymphangiogenesis in clinically lymph node negative patients undergoing PM and its impact on outcome parameters. 71 patients who underwent PM for CRC metastases were included in this dual-center study. Tissue specimens of pulmonary metastases and available corresponding primary tumors were assessed by immunohistochemistry for lymphatic microvessel density (LMVD) and lymphovascular invasion (LVI). Results were correlated with clinical outcome parameters. LMVD was 13.9 ± 8.1 and 13.3 ± 8.5 microvessels/field (mean ± SD) in metastases and corresponding primary CRC; LVI was evident in 46.5 and 58.6 % of metastases and corresponding primary CRC, respectively. Samples with high LMVD had a higher likelihood of LVI. LVI was associated with early tumor recurrence in intrathoracic lymph nodes and a decreased overall survival (p < 0.001 and p = 0.029). Herein, we present first evidence in a well-defined patient collective that increased lymphangiogenesis is already present in a subtype of pulmonary metastases of patients staged as N0 at the time of PM. This lymphangiogenic phenotype has a strong impact on patients' prognosis. Our findings may have impact on the post-surgical therapeutic management of CRC patients with pulmonary spreading.
To the best of our knowledge, this is the first structured evaluation of the c-MET axis in the context of pulmonary metastasectomy for CRC. Our results suggest that overexpression of c-MET/pSTAT3 is associated with an impaired prognosis following complete resection. Moreover, this work suggests that the value of c-MET tyrosine kinase inhibitors in the treatment of patients with CRC lung metastases should be assessed in clinical trials.
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