Mesenchymal stem cells as a vector for the inflammatory prostate microenvironment

被引:64
作者
Brennen, W. Nathaniel [1 ]
Denmeade, Samuel R. [1 ]
Isaacs, John T. [1 ]
机构
[1] Sidney Kimmel Comprehens Canc Ctr Johns Hopkins, Chem Therapeut Program, Baltimore, MD 21287 USA
关键词
mesenchymal stem cell; MSC; inflammation; prostate cancer; multipotent stromal cell; HUMAN BONE-MARROW; VERSUS-HOST-DISEASE; INHIBIT LYMPHOCYTE-PROLIFERATION; CARCINOMA-ASSOCIATED FIBROBLASTS; CANCER-ASSOCIATED FIBROBLASTS; EXPRESSING INTERFERON-BETA; HUMAN ADIPOSE-TISSUE; STROMAL CELLS; TUMOR STROMA; IN-VIVO;
D O I
10.1530/ERC-13-0151
中图分类号
R73 [肿瘤学];
学科分类号
100214 [肿瘤学];
摘要
Mesenchymal stem cells (MSCs) have an inherent tropism for sites of inflammation, which are frequently present in sites of cancer, including prostatic lesions. MSCs have been defined as CD73/CD90/CD105 triple-positive cells in the absence of hematopoietic lineage markers with the ability to differentiate into multiple mesodermal lineages, including osteoblasts, adipocytes, and chondrocytes. Our group has previously demonstrated that MSCs represent between 0.01 and 1.1% of the total cells present in human prostatectomy tissue. In addition to their multi-lineage differentiation potential, MSCs are immunoprivileged in nature and have a range of immunomodulatory effects on both the innate and adaptive arms of the immune system. MSCs have been detected in an increasing array of tissues, and evidence suggests that they are likely present in perivascular niches throughout the body. These observations suggest that MSCs represent critical mediators of the overall immune response during physiological homeostasis and likely contribute to pathophysiological conditions as well. Chronic inflammation has been suggested as an initiating event and progression factor in prostate carcinogenesis, a process in which the immunosuppressive properties of MSCs may play a role. MSCs have also been shown to influence malignant progression through a variety of other mechanisms, including effects on tumor proliferation, angiogenesis, survival, and metastasis. Additionally, human bone marrow-derived MSCs have been shown to traffic to human prostate cancer xenografts in immunocompromised murine hosts. The trafficking properties and immunoprivileged status of MSCs suggest that they can be exploited as an allogeneic cell-based vector to deliver cytotoxic or diagnostic agents for therapy.
引用
收藏
页码:R269 / R290
页数:22
相关论文
共 209 条
[51]
Murine Bone Marrow-derived Mesenchymal Stem Cells as Vehicles for Interleukin-12 Gene Delivery Into Ewing Sarcoma Tumors [J].
Duan, Xiaoping ;
Guan, Hui ;
Cao, Ying ;
Kleinerman, Eugenie S. .
CANCER, 2009, 115 (01) :13-22
[52]
Elchin E, 2012, WORLDS 1 APPROVED ST
[53]
Allogeneic marrow stromal cells are immune rejected by MHC class I- and class II-mismatched recipient mice [J].
Eliopoulos, N ;
Stagg, J ;
Lejeune, L ;
Pommey, S ;
Galipeau, J .
BLOOD, 2005, 106 (13) :4057-4065
[54]
Anti-tumor activity of mesenchymal stem cells producing IL-12 in a mouse melanoma model [J].
Elzaouk, Lina ;
Moelling, Karin ;
Pavlovic, Jovan .
EXPERIMENTAL DERMATOLOGY, 2006, 15 (11) :865-874
[55]
IFN-γ and TNF-α differentially regulate immunomodulation by murine mesenchymal stem cells [J].
English, Karen ;
Barry, Frank P. ;
Field-Corbett, Ciara P. ;
Mahon, Bernard P. .
IMMUNOLOGY LETTERS, 2007, 110 (02) :91-100
[56]
Allogeneic Mesenchymal Stem Cells: Agents of Immune Modulation [J].
English, Karen ;
Mahon, Bernard P. .
JOURNAL OF CELLULAR BIOCHEMISTRY, 2011, 112 (08) :1963-1968
[57]
Cancer associated fibroblasts in cancer pathogenesis [J].
Franco, Omar E. ;
Shaw, Aubie K. ;
Strand, Douglas W. ;
Hayward, Simon W. .
SEMINARS IN CELL & DEVELOPMENTAL BIOLOGY, 2010, 21 (01) :33-39
[58]
DEVELOPMENT OF FIBROBLAST COLONIES IN MONOLAYER CULTURES OF GUINEA-PIG BONE MARROW AND SPLEEN CELLS [J].
FRIEDENSTEIN, AJ ;
CHAILAKHJAN, RK ;
LALYKINA, KS .
CELL AND TISSUE KINETICS, 1970, 3 (04) :393-+
[59]
FRIEDENSTEIN AJ, 1976, EXP HEMATOL, V4, P267
[60]
Bone-Metastatic Prostate Carcinoma Favors Mesenchymal Stem Cell Differentiation Toward Osteoblasts and Reduces their Osteoclastogenic Potential [J].
Fritz, V. ;
Brondello, J. M. ;
Gordeladze, J. O. ;
Reseland, J. E. ;
Bony, C. ;
Yssel, H. ;
Noel, D. ;
Jorgensen, C. .
JOURNAL OF CELLULAR BIOCHEMISTRY, 2011, 112 (11) :3234-3245