The role of skeletal muscle tissue extracellular matrix components in myogenesis

2018 ◽  
Vol XIII (4) ◽  
Author(s):  
T.V. Stupnikova ◽  
I.I. Eremin ◽  
V.L. Zorin ◽  
P.B. Kopnin ◽  
I.R. Gilmutdinova ◽  
...  
Materials ◽  
2020 ◽  
Vol 13 (11) ◽  
pp. 2483 ◽  
Author(s):  
Daniele Boso ◽  
Edoardo Maghin ◽  
Eugenia Carraro ◽  
Mattia Giagante ◽  
Piero Pavan ◽  
...  

Recently, skeletal muscle represents a complex and challenging tissue to be generated in vitro for tissue engineering purposes. Several attempts have been pursued to develop hydrogels with different formulations resembling in vitro the characteristics of skeletal muscle tissue in vivo. This review article describes how different types of cell-laden hydrogels recapitulate the multiple interactions occurring between extracellular matrix (ECM) and muscle cells. A special attention is focused on the biochemical cues that affect myocytes morphology, adhesion, proliferation, and phenotype maintenance, underlining the importance of topographical cues exerted on the hydrogels to guide cellular orientation and facilitate myogenic differentiation and maturation. Moreover, we highlight the crucial role of 3D printing and bioreactors as useful platforms to finely control spatial deposition of cells into ECM based hydrogels and provide the skeletal muscle native-like tissue microenvironment, respectively.


Bone ◽  
2021 ◽  
Vol 153 ◽  
pp. 116172
Author(s):  
Qin Shengnan ◽  
Samuel Bennett ◽  
Wang Wen ◽  
Li Aiguo ◽  
Xu Jiake

2004 ◽  
Vol 30 (4) ◽  
pp. 609-610
Author(s):  
Shirley Campbell ◽  
Mélissa Otis ◽  
Nicole Gallo‐Payet ◽  
Marcel Daniel Payet

Author(s):  
Zaira Heredia‐Ponce ◽  
José Antonio Gutiérrez‐Barranquero ◽  
Gabriela Purtschert‐Montenegro ◽  
Leo Eberl ◽  
Antonio de Vicente ◽  
...  

2019 ◽  
pp. 1-12 ◽  
Author(s):  
Lucas R. Smith ◽  
Rajeswari Pichika ◽  
Rachel C. Meza ◽  
Allison R. Gillies ◽  
Marwan N. Baliki ◽  
...  

2020 ◽  
Vol 20 (3) ◽  
pp. 168-186 ◽  
Author(s):  
Tabinda Urooj ◽  
Bushra Wasim ◽  
Shamim Mushtaq ◽  
Syed Nudrat Nawaid Shah ◽  
Muzna Shah

: In Breast cancer, Lung is the second most common site of metastasis after the bone. Various factors are responsible for Lung metastasis occurring secondary to Breast cancer. Cancer cellderived secretory factors are commonly known as ‘Cancer Secretomes’. They exhibit a prompt role in the mechanism of Breast cancer lung metastasis. They are also major constituents of hostassociated tumor microenvironment. Through cross-talk between cancer cells and the extracellular matrix components, cancer cell-derived extracellular matrix components (CCECs) such as hyaluronan, collagens, laminin and fibronectin cause ECM remodeling at the primary site (breast) of cancer. However, at the secondary site (lung), tenascin C, periostin and lysyl oxidase, along with pro-metastatic molecules Coco and GALNT14, contribute to the formation of pre-metastatic niche (PMN) by promoting ECM remodeling and lung metastatic cells colonization. Cancer cell-derived secretory factors by inducing cancer cell proliferation at the primary site, their invasion through the tissues and vessels and early colonization of metastatic cells in the PMN, potentiate the mechanism of Lung metastasis in Breast cancer. : On the basis of biochemical structure, these secretory factors are broadly classified into proteins and non-proteins. This is the first review that has highlighted the role of cancer cell-derived secretory factors in Breast cancer Lung metastasis (BCLM). It also enumerates various researches that have been conducted to date in breast cancer cell lines and animal models that depict the prompt role of various types of cancer cell-derived secretory factors involved in the process of Breast cancer lung metastasis. In the future, by therapeutically targeting these cancer driven molecules, this specific type of organ-tropic metastasis in breast cancer can be successfully treated.


1993 ◽  
Vol 25 (7) ◽  
pp. 832-840 ◽  
Author(s):  
KATSUYA KAMI ◽  
MITSUHIKO MASUHARA ◽  
HITOSHI KASHIBA ◽  
YOSHINORI KAWAI ◽  
KOICHI NOGUCHI ◽  
...  

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