Suscribirse

Single-cell transcriptomics profiling the compatibility mechanism of As2O3-indigo naturalis formula based on bone marrow stroma cells - 03/06/22

Doi : 10.1016/j.biopha.2022.113182 
Xianxie zhang a, b, c, 1, Hebing Chen a, 1, Xin Huang a, 1, Huanhua Xu d, 1, Yaru Li a, Hailong Yuan c, , Jia Yu b, , Yue Gao a,
a Department of Pharmaceutical Sciences, Beijing Institute of Radiation Medicine, Beijing 100850, China 
b State Key Laboratory of Medical Molecular Biology, Department of Biochemistry and Molecular Biology, Institute of Basic Medical Sciences, Chinese Academy of Medical Sciences, School of Basic Medicine Peking Union Medical College, Beijing 100005, China 
c Air Force Medical Center of PLA, Beijing, China 
d Key Laboratory of Modern Preparation of TCM, Ministry of Education, Jiangxi University of Chinese Medicine, Nanchang 330004, China 

Corresponding authors.

Abstract

Compound realgar natural indigo tablet is the only oral arsenic agent widely used in acute promyelocytic leukemia (APL) treatment. However, as a therapeutic drug for diseases of the blood system, the scientific knowledge of As2O3-indigo naturalis formula compatibility has not been studied in bone marrow stromal cells (BMSCs). We chose arsenic trioxide (As2O3: A), tanshinone IIA (T) and indirubin (I) as representative active compounds of realgar, indigo naturalis, and Salvia miltiorrhiza, respectively, to evaluated the pharmaceutical mechanism and the compatibility of ATI (drug combination) using single-cell RNA sequencing (scRNA-seq). The overlapped genes associated with both disease and drug were selected in BMSCs for in-depth analysis. Results show that joint applications of ATI had the strongest therapeutic efficacy in a murine APL model. Lepr-MSCs, OLCs and BMECs were the sensitive cell groups targeted by ATI in the murine APL model. ATI could regulate the related genes of osteogenic differentiation, adipogenic differentiation, and endothelial cell migration in bone marrow mesenchymal lineage cells in murine APL model and improve normal hematopoiesis-related gene expression and poor prognosis of Lepr-MSCs, OLCs and BMECs in mice with leukemia according to scRNA-seq data. The strongest regulatory effects were found in the joint applications of ATI. ATI combination had the potential mechanism to maintain the stability of the hematopoietic microenvironment and promote hematopoiesis to assist in the treatment of APL. This study illustrated the potential mechanism of ATI in regulating BMSCs from the overall perspective of the hematopoietic microenvironment, and broadened the scientific understanding of ATI compatibility in BMSCs.

El texto completo de este artículo está disponible en PDF.

Highlights

Lepr-MSCs, OLCs and BMECs were the sensitive cell groups targeted by ATI on BMSCs in the murine APL model.
ATI could regulate the related genes of osteogenic differentiation, adipogenic differentiation, endothelial cell migration and improve poor prognosis in BMSCs in the murine APL model.
Joint applications of ATI had the strongest therapeutic efficacies and had a potential mechanism to promote hematopoiesis to assist in the treatment of APL in the murine APL model.

El texto completo de este artículo está disponible en PDF.

Keywords : Bone marrow stroma cells, Acute promyelocytic leukemia (APL), Single-cell RNA sequencing (scRNA-seq), Compatibility, As2O3-indigo naturalis formula

Abbreviations : APL, scRNA-seq, BMSCs, A, T, I, TCM, ATI


Esquema


© 2022  The Authors. Publicado por Elsevier Masson SAS. Todos los derechos reservados.
Añadir a mi biblioteca Eliminar de mi biblioteca Imprimir
Exportación

    Exportación citas

  • Fichero

  • Contenido

Vol 151

Artículo 113182- juillet 2022 Regresar al número
Artículo precedente Artículo precedente
  • Self-derived peptides from the SARS-CoV-2 spike glycoprotein disrupting shaping and stability of the homotrimer unit
  • Monikaben Padariya, Alison Daniels, Christine Tait-Burkard, Ted Hupp, Umesh Kalathiya
| Artículo siguiente Artículo siguiente
  • Downregulation of peripheral lipopolysaccharide binding protein impacts on perigonadal adipose tissue only in female mice
  • Ferran Comas, Ramon Díaz-Trelles, Aleix Gavaldà-Navarro, Edward Milbank, Nathalia Dragano, Samantha Morón-Ros, Rajesh Mukthavaram, Jessica Latorre, Francisco Ortega, Maria Arnoriaga-Rodriguez, Núria Oliveras-Cañellas, Wifredo Ricart, Priya P. Karmali, Kiyoshi Tachikawa, Pad Chivukula, Francesc Villarroya, Marta Giralt, Miguel López, José Manuel Fernández-Real, José María Moreno-Navarrete

Bienvenido a EM-consulte, la referencia de los profesionales de la salud.
El acceso al texto completo de este artículo requiere una suscripción.

¿Ya suscrito a @@106933@@ revista ?

@@150455@@ Voir plus

Mi cuenta


Declaración CNIL

EM-CONSULTE.COM se declara a la CNIL, la declaración N º 1286925.

En virtud de la Ley N º 78-17 del 6 de enero de 1978, relativa a las computadoras, archivos y libertades, usted tiene el derecho de oposición (art.26 de la ley), el acceso (art.34 a 38 Ley), y correcta (artículo 36 de la ley) los datos que le conciernen. Por lo tanto, usted puede pedir que se corrija, complementado, clarificado, actualizado o suprimido información sobre usted que son inexactos, incompletos, engañosos, obsoletos o cuya recogida o de conservación o uso está prohibido.
La información personal sobre los visitantes de nuestro sitio, incluyendo su identidad, son confidenciales.
El jefe del sitio en el honor se compromete a respetar la confidencialidad de los requisitos legales aplicables en Francia y no de revelar dicha información a terceros.


Todo el contenido en este sitio: Copyright © 2026 Elsevier, sus licenciantes y colaboradores. Se reservan todos los derechos, incluidos los de minería de texto y datos, entrenamiento de IA y tecnologías similares. Para todo el contenido de acceso abierto, se aplican los términos de licencia de Creative Commons.