表达钙通道α2δ1亚基的卫星细胞对肌肉谱系的承诺。

Journal of signal transduction Pub Date : 2012-01-01 Epub Date: 2012-11-29 DOI:10.1155/2012/460842
Tammy Tamayo, Liliana Grajales, Jesús García
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引用次数: 2

摘要

卫星细胞可以维持或修复肌肉,因为它们具有干细胞的特性,使它们成为细胞治疗的一个有价值的选择。然而,肌肉萎缩症患者的骨骼肌细胞移植受到供体细胞附着、迁移和宿主组织存活的限制。用于治疗的细胞是根据存在于质膜上的特定标记物来选择的。虽然已经鉴定了许多标记物,但仍需要找到在卫星细胞、激活细胞、静止细胞或分化细胞中以不同状态表达的标记物。此外,该标记必须存在于人体组织中。最近我们报道了肌母细胞的质膜α2δ1蛋白参与细胞附着和迁移。α2δ1亚基是成人骨骼肌l型电压依赖性钙离子通道的一部分。我们发现α2δ1亚基在大多数新分离的卫星细胞中表达,并且比α1亚基出现得更早,比β或γ亚基出现得更高。我们还发现那些表达α2δ1的细胞会分化成肌肉细胞。这表明α2δ1可以作为卫星细胞向肌肉分化的标志。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Commitment of Satellite Cells Expressing the Calcium Channel α2δ1 Subunit to the Muscle Lineage.

Commitment of Satellite Cells Expressing the Calcium Channel α2δ1 Subunit to the Muscle Lineage.

Commitment of Satellite Cells Expressing the Calcium Channel α2δ1 Subunit to the Muscle Lineage.

Commitment of Satellite Cells Expressing the Calcium Channel α2δ1 Subunit to the Muscle Lineage.

Satellite cells can maintain or repair muscle because they possess stem cell properties, making them a valuable option for cell therapy. However, cell transplants into skeletal muscle of patients with muscular dystrophy are limited by donor cell attachment, migration, and survival in the host tissue. Cells used for therapy are selected based on specific markers present in the plasma membrane. Although many markers have been identified, there is a need to find a marker that is expressed at different states in satellite cells, activated, quiescent, or differentiated cell. Furthermore, the marker has to be present in human tissue. Recently we reported that the plasma membrane α2δ1 protein is involved in cell attachment and migration in myoblasts. The α2δ1 subunit forms a part of the L-type voltage-dependent calcium channel in adult skeletal muscle. We found that the α2δ1 subunit is expressed in the majority of newly isolated satellite cells and that it appears earlier than the α1 subunits and at higher levels than the β or γ subunits. We also found that those cells that expressed α2δ1 would differentiate into muscle cells. This evidence indicates that the α2δ1 may be used as a marker of satellite cells that will differentiate into muscle.

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