Prognostic impact of low allelic ratio FLT3-ITD and NPM1 mutation in acute myeloid leukemia
BLOOD ADVANCES
Authors: Sakaguchi, Masahiro; Yamaguchi, Hiroki; Najima, Yuho; Usuki, Kensuke; Ueki, Toshimitsu; Oh, Iekuni; Mori, Sinichiro; Kawata, Eri; Uoshima, Nobuhiko; Kobayashi, Yutaka; Kako, Shinichi; Tajika, Kenji; Gomi, Seiji; Shono, Katsuhiro; Kayamori, Kensuke; Hagihara, Masao; Kanda, Junya; Uchiyama, Hitoji; Kuroda, Junya; Uchida, Naoyuki; Kubota, Yasushi; Kimura, Shinya; Kurosawa, Saiko; Nakajima, Nana; Marumo, Atsushi; Omori, Ikuko; Fujiwara, Yusuke; Yui, Shunsuke; Wakita, Satoshi; Arai, Kunihito; Kitano, Tomoaki; Kakihana, Kazuhiko; Kanda, Yoshinobu; Ohashi, Kazuteru; Fukuda, Takahiro; Inokuchi, Koiti
Abstract
In the opinion of the European LeukemiaNet (ELN), nucleophosmin member 1 gene mutation (NPM1 mut)-positive acute myeloid leukemia (AML) with an fms-like kinase 3-internal tandem duplication (FLT3-ITD) allele ratio (AR) < 0.5 (low AR) has a favorable prognosis, and allogeneic hematopoietic stem cell transplant (allo-HSCT) in the first complete remission (CR1) period is not actively recommended. We studied 147 patients with FLT3-ITD gene mutation-positive AML, dividing them into those with low AR and those with AR of >= 0.5 (high AR), and examined the prognostic impact according to allo-HSCT in CR1. Although FLT3-ITD AR and NPM1 mut are used in the prognostic stratification, we found that NPM1 mut-positive AML with FLT3-ITD low AR was not associated with favorable outcome (overall survival [OS], 41.3%). Moreover, patients in this group who underwent allo-HSCT in CR1 had a significantly more favorable outcome than those who did not (relapse-free survival [RFS] P = .013; OS P = .003). Multivariate analysis identified allo-HSCT in CR1 as the sole favorable prognostic factor (RFS P < .001; OS P < .001). The present study found that prognosis was unfavorable in NPM1 mut-positive AML with FLT3-ITD low AR when allo-HSCT was not carried out in CR1.
The Reparative Abilities of Menstrual Stem Cells Modulate the Wound Matrix Signals and Improve Cutaneous Regeneration
FRONTIERS IN PHYSIOLOGY
Authors: Cuenca, Jimena; Le-Gatt, Alice; Castillo, Valentina; Belletti, Jose; Diaz, Macarena; Monica Kurte, G.; Gonzalez, Paz L.; Alcayaga-Miranda, Francisca; Schuh, Christina M. A. P.; Ezquer, Fernando; Ezquer, Marcelo; Khoury, Maroun
Abstract
Considerable advances have been made toward understanding the cellular and molecular mechanism of wound healing, however, treatments for chronic wounds remain elusive. Emerging concepts utilizing mesenchymal stem cells (MSCs) from umbilical cord, adipose tissue and bone marrow have shown therapeutical advantages for wound healing. Based on this positive outcome, efforts to determine the optimal sources for MSCs are required in order to improve their migratory, angiogenic, immunomodulatory, and reparative abilities. An alternative source suitable for repetitive, non-invasive collection of MSCs is from the menstrual fluid (MenSCs), displaying a major practical advantage over other sources. This study aims to compare the biological functions and the transcriptomic pattern of MenSCs with umbilical cord MSCs in conditions resembling the wound microenvironment. Consequently, we correlate the specific gene expression signature from MenSCs with changes of the wound matrix signals in vivo. The direct comparison revealed a superior clonogenic and migratory potential of MenSCs as well as a beneficial effect of their secretome on human dermal fibroblast migration in vitro. Furthermore, MenSCs showed increased immunomodulatory properties, inhibiting T-cell proliferation in co-culture. We further, investigated the expression of selected genes involved in wound repair (growth factors, cytokines, chemokines, AMPs, MMPs) and found considerably higher expression levels in MenSCs (ANGPT1 1.5-fold; PDGFA 1.8-fold; PDGFB 791-fold; MMP3 21.6-fold; ELN 13.4-fold; and MMP10 9.2-fold). This difference became more pronounced under a pro-inflammatory stimulation, resembling wound bed conditions. Locally applied in a murine excisional wound splinting model, MenSCs showed a significantly improved wound closure after 14 days, as well as enhanced neovascularization, compared to the untreated group. Interestingly, analysis of excised wound tissue revealed a significantly higher expression of VEGF (1.42-fold) among other factors, translating an important conversion of the matrix signals in the wound site. Furthermore, histological analysis of the wound tissue from MenSCs-treated group displayed a more mature robust vascular network and a genuinely higher collagen content confirming the proangiogenic and reparative effect of MenSCs treatment. In conclusion, the superior clonogenicity, immunosuppressive and migration potential in combination with specific paracrine signature of MenSCs, resulted in an enhanced wound healing and cutaneous regeneration process.