KMP01D Demonstrates Beneficial Anti-inflammatory Effects on Immune Cells: An ex vivo Preclinical Study of Patients With Colorectal Cancer
FRONTIERS IN IMMUNOLOGY
Authors: Gasser, Martin; Lissner, Reinhard; Nawalaniec, Karol; Hsiao, Li-Li; Waaga-Gasser, Ana Maria
Abstract
Background: Colorectal cancer (CRC) is frequently associated with dysbiosis of the gut microbiome which, together with a compromised gut barrier, can result in perioperative endotoxin leakage into the circulation. Constant local and systemic inflammatory activity is suggested to facilitate metastases formation. Previous studies have pointed to the capacity of a colostrum preparation to neutralize endotoxins within the gastrointestinal tract which could ameliorate associated inflammatory responses and tumor recurrence in affected patients. This study aimed to examine the effects of the colostrum preparation, KMP01D, on the inflammatory activity of patient-derived immune cells. Methods: The effects of KMP01D on pro-/anti-inflammatory cytokine responses and apoptosis were examined ex vivo using immune cells from CRC patients (stages I-IV, n = 48). The expression of CD14, CD68, Toll-like receptor (TLR)4, and insulin-like growth factor (IGF)-1 was also analyzed. Results: KMP01D increased interleukin (IL)-10 and IL-13 anti-inflammatory cytokine expression in patient-derived peripheral blood mononuclear cells (PBMCs). Interestingly, KMP01D also decreased the secretion of IL-1 beta, IL-6, interferon (IFN)-gamma, tumor necrosis factor (TNF)-alpha, IL-12 inflammatory cytokines, and IGF-1 in these cells. Moreover, CD14 and TLR4 expression involved in endotoxin signaling was downregulated in PBMCs and tumor-derived cells. Apoptosis of immune cells and tumor-derived cells was likewise enhanced with KMP01D. Addition of vitamin D3 as a cofactor demonstrated enhanced anti-inflammatory effects. Conclusions: KMP01D demonstrated beneficial ex vivo effects on inflammatory cytokine responses in PBMCs and enhanced apoptosis of immune cells from CRC patients. In line with previous clinical trials, we present new evidence endorsing KMP01D as a treatment strategy to regulate stage-dependent local and systemic inflammation in CRC patients.
CD200 is overexpressed in neuroblastoma and regulates tumor immune microenvironment
CANCER IMMUNOLOGY IMMUNOTHERAPY
Authors: Xin, Chao; Zhu, Jianmin; Gu, Song; Yin, Minzhi; Ma, Jing; Pan, Ci; Tang, Jingyan; Zhang, Peng; Liu, Yang; Bai, Xue-Feng; Mo, Xi; Xu, Min; Zhu, Hua
Abstract
Patients with pediatric cancers such as neuroblastoma (NB) are often unresponsive to checkpoint blockade immunotherapy. One major factor in pediatric tumor resistance to immunotherapy is considered to be the low mutation rate of pediatric tumors. Another factor may be the overexpression of additional inhibitory pathways. While analyzing the RNA-sequencing database TARGET, we found that human NB tumors overexpress immune checkpoint molecule CD200. To determine its significance and impact on tumor immune microenvironment, we analyzed 49 cases of previously untreated, surgically removed NB tumors using immunohistochemistry and multi-color flow cytometry (FACS). We found that CD200 is overexpressed in more than 90% of NB tumors. In the tumor microenvironment of NB, CD200 is mainly overexpressed in CD45(-)NB tumor cells, while its cognate receptor (CD200R) is mainly expressed in HLA-DR(+)CD14(+)myeloid cells and CD11c(+)dendritic cells. Low-level expression of CD200R is also observed in tumor-infiltrating CD4(+)and CD8(+)T cells. In NB tumors with higher CD200 expression (CD200(high)), we observed lower numbers of HLA-DR(+)CD14(+)myeloid cells and less tumor-infiltrating CD4(+)and CD8(+)T cells. Moreover, we found that CD4(+)and CD8(+)T cells produced less IFN-gamma and/or TNF-alpha in CD200(high)NB tumors. Thus, CD200-CD200R pathway appears to downregulate anti-tumor immunity in the tumor microenvironment of NB tumors, and blockade of this pathway may be beneficial for NB patients.