Detecting tumor-infiltrating Forkhead box P3-positive T cells in the prognosis of lung adenocarcinoma: Possible role of clustering tumor interleukin-12 subunit alpha and transforming growth factor beta 1 expression
ADVANCES IN CLINICAL AND EXPERIMENTAL MEDICINE
Authors: Matsuoka, Hiroyasu; Matsubara, Hirochika; Sugimura, Aya; Uchida, Tsuyoshi; Kunimitsu, Tamo; Ichihara, Tomofumi; Oonuki, Yuichiro; Miyauchi, Yoshihiro; Kondo, Tetsuo; Nakajima, Hiroyuki
Abstract
Background. While regulatory T cells (Tregs) are a poor prognostic factor for lung cancer, they may be detected as Forkhead box P3+ (FOXP3+) and cluster of differentiation (-CD) 4+ T cells by classifying FOXP3+CD4+ T cells into different subpopulations of CD4 cells. Objectives. To classify clusters of tumor-infiltrating Tregs in lung adenocarcinoma based on the mRNA expression levels of interleukin-12 subunit alpha (IL12A) and transforming growth factor beta 1 (TGFB1) in tumor specimens. Material and methods. Seventy-nine patients with lung adenocarcinoma were evaluated in this study. Clinical data were obtained from the patients' medical records, while tumor tissue samples were preserved as formalin-fixed paraffin-embedded (FFPE) tissue specimens. Immunohistochemical staining for CD4, CD8 and FOXP3 was performed and stained cell counts were obtained under 5 high-power fields. cDNA was synthesized from total RNA extracted from FFPE tissue specimens and amplified with Taqman probes for FOXP3, IL12A, TGFB1, and the glyceraldehyde-3-phosphate dehydrogenase gene. Results. Two clusters were identified:IL12AlowTGF1low (Cluster 1: n =44) and IL12AhighTGB1high (Cluster 2: n = 39). Although no significant difference in the FOXP3+ cell/CD4+ cell ratio was observed between the 2 clusters (p =0.921), the high FOXP3+/CD4+ cell ratio group showed a significantly poorer relapse-free survival rate than the low FOXP3+/CD4+ cell ratio group in Cluster 1 (p = 0.031). Conclusions. Although the results revealed no direct association between Tregs and prognosis according to each subtype, these results suggest that if a lung cancer specimen contains low levels of IL12A and T6F67, the FOXP3+/CD4+ cell ratio is useful for predicting the prognosis of lung cancer.
Comparison of human bone marrow stromal cells cultured in human platelet growth factors and fetal bovine serum
JOURNAL OF TRANSLATIONAL MEDICINE
Authors: Ren, Jiaqiang; Ward, Dawn; Chen, Steven; Tran, Katherine; Jin, Ping; Sabatino, Marianna; Robey, Pamela G.; Stroncek, David F.
Abstract
Background: Bone marrow stromal cells (BMSCs) have classically been cultured in media supplemented with fetal bovine serum (FBS). As an alternative to FBS, pooled solvent detergent apheresis platelets, HPGF-C18, was evaluated for BMSC culture. Methods: A comparison of passage 2 BMSC growth revealed that 10% HPGF-C18 produced similar cell numbers as 20% FBS. Marrow aspirates from 5 healthy subjects were cultured for 4 passages in 10% HPGF-C18 or 20% FBS and were analyzed for proliferation, colony formation efficiency (CFE), surface marker expression, suppression of mixed lymphocyte reactions (MLRs), global gene and microRNA expression analysis. BMSC supernatant cytokine and growth factor concentrations were also compared. Results: Primary cultures of marrow aspirates in 10% HPGF-C18 and 20% FBS yielded similar numbers and CFE. After 4 passages, 10% HPGF-C18 and 20% FBS yielded similar numbers of BMSCs, surface marker expression patterns and immunosuppression effects. Gene and microRNA expression analysis revealed that BMSCs cultured under the two conditions had distinct expression profiles. Gene Set Enrichment Analysis (GSEA) revealed HPGF-C18-cultured BMSCs were enriched in metabolic processing and biosynthetic pathways, cell proliferation and cell cycle pathways, and immune response pathways. FBS-cultured BMSCs were enriched in MAPK signaling, TGF-beta signaling, cell adhesion and extracellular matrix pathways. Differently expressed microRNAs were related to the osteogenesis of BMSCs. The supernatant of HPGF-C18 BMSCs had higher levels of PEDF and TGFB1 and lower levels of IL6, VEGF, SDF1 and PLGF. Conclusions: Traditional measures, expansion, surface marker expression and inhibition of MLRs suggest that BMSC cultured in HPGF-C18 and FBS were similar, but analysis at the molecular level revealed many differences. BMSCs cultured in HPGF-C18 should be assessed in specific functional assays that reflect application-specific potency before substituting FBS with HPGF-C18.