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Wyszukujesz frazę "Cell Transplantation" wg kryterium: Temat


Wyświetlanie 1-2 z 2
Tytuł:
The role of satellite cells in skeletal muscle regeneration
Rola komórek satelitarnych w regeneracji mięśnia szkieletowego
Autorzy:
Harasiuk, Dorota
Górski, Jan
Powiązania:
https://bibliotekanauki.pl/articles/1942938.pdf
Data publikacji:
2009
Wydawca:
Akademia Wychowania Fizycznego im. Bronisława Czecha w Krakowie
Tematy:
satellite cells
Myoblasts
Myogenic Regulatory Factors
self-renewal
Cell Transplantation
komórki satelitarne
mioblasty
mięśniowe czynniki transkrypcyjne
samoodnowa
przeszczepy komórkowe
Opis:
Skeletal muscles are composed of multinucleated fibers that cannot divide. They retain the ability to regenerate due to the presence of mononucleated cells, called satellite cells. Mitotically quiescent satellite cells are located between the sarcolemma and the basal lamina of the muscle fiber. They can be activated in response to muscle injury. Then they proliferate, differentiate and eventually fuse to damaged myofibers or fuse together to form new myofibers. A part of the activated cells escape differentiation and restore the pool of quiescent satellite cell under the basal lamina of the newly formed muscle fibers. A decline in the number and activity of satellite cells results in an impaired regeneration potential of aged muscle. However regeneration can be improved by modification of the microenvironment of the skeletal muscle. Satellite cells have been considered as a source for cell-based therapies in the treatment of diseases such as muscular dystrophies, heart failure, insufficient function of external urethral sphincter. They can be derived easily from skeletal muscle biopsies and cultured in vitro before cell transplantation. After injection to the host muscle they undergo a myogenic differentiation program. In the case of muscle dystrophy, clinical trials have demonstrated a lack of health improvement after transplantation. This was the result of the poor survival and limited migratory capacity of the injected cells. More promising results were obtained when satellite cells were transferred to the locally damaged muscles. This article demonstrates the role of satellite cells in skeletal muscle regeneration, and the possibilities of their use in cell-based therapies in the case of diseases where muscle fibers are impaired.
Źródło:
Medical Rehabilitation; 2009, 13(3); 25-32
1427-9622
1896-3250
Pojawia się w:
Medical Rehabilitation
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Perspectives of use of bone marrow cells in future therapy of brain diseases
Możliwosci wykorzystania komórek szpiku kostnego w przyszłej terapii chorób mózgu
Autorzy:
Opydo-Chanek, Małgorzata
Pasiut, Szymon
Powiązania:
https://bibliotekanauki.pl/articles/1938534.pdf
Data publikacji:
2007
Wydawca:
Akademia Wychowania Fizycznego im. Bronisława Czecha w Krakowie
Tematy:
Bone Marrow Cells
cell therapy
Brain
Transplantation
Rehabilitation
komórki szpiku kostnego
terapia komórkowa
mózg
transplantacja
rehabilitacja
Opis:
Medical problems associated with the increasing number of patients suffering from brain diseases have resulted in a constant search for effective therapeutics. Considering the complicated pathological processes occurring in diseases of the central nervous system and the limited capability of the neural tissue to regenerate, therapy of neurological diseases is extremely difficult. The lack of efficient medical treatment results in complex problems associated with rehabilitation and thus in functional disturbances, which prevent patients from restoring their independence and returning to complete, also professional, activity, Cell therapy has recently been considered as a possible approach in the treatment of brain diseases. Its aim is to supply pathologically changed brain tissue with factors promoting regeneration and with cells that may replace the damaged ones. Bone marrow cells have become a potential source of cells in this type of therapy. Bone marrow contains at least two major kinds of stem cells: haematopoietic stem cells, which give rise to the blood cells and mesenchymal stem cells, which can differentiate into cells of mesenchymal lineage and produce an array of growth factors essential for repair. The review presents the achievements of studies on use of bone marrow cells in the therapy of various brain diseases of traumatic or neurodegenerative aetiology.
Źródło:
Medical Rehabilitation; 2007, 11(1); 31-39
1427-9622
1896-3250
Pojawia się w:
Medical Rehabilitation
Dostawca treści:
Biblioteka Nauki
Artykuł
    Wyświetlanie 1-2 z 2

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