Cell interactions in an adult mesenchymal stem cell niche
Cell interactions in an adult mesenchymal stem cell niche
批准号:
G0901599/1
负责人:
Paul Sharpe
金额:
$71.63万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2010
资助国家:
英国
项目状态:
已结题
起止时间:
2010 至 --
中文摘要
间充质干细胞(MSCs)是一种不能形成不同类型间充质细胞的干细胞。这些细胞包括骨细胞、软骨细胞、脂肪细胞和许多其他细胞。骨髓间充质干细胞存在于几种成人组织中,最显著的是骨髓。除了干细胞特性外,间充质干细胞还具有抑制免疫系统的良好能力。因此,间充质干细胞是组织修复和免疫抑制临床应用中非常重要的细胞来源,美国正在进行几项大型临床试验。MSCs的问题在于,大多数研究都是在骨髓上进行的,骨髓是一种难以研究的组织,临床应用MSCs的主要来源是骨髓或脂肪组织。为了了解更多的这些细胞,以便改善它们在临床应用中的应用,需要研究更容易获得的细胞来源。在牙齿中也发现了间充质干细胞,特别是在牙齿中心的牙髓组织中,它们参与牙齿损伤后的修复。自然失踪儿童牙髓细胞的商业银行?S牙是可用的。然而,与骨髓间充质干细胞一样,这些细胞很难研究,因为它们的数量非常少。与人类不同,老鼠的牙齿(门牙)可以持续生长,因为它们有大量的间充质干细胞,可以不断提供新的细胞。我们已经确定了这些细胞的位置,并且可以很容易地看到这些细胞。这意味着我们现在有大量容易获得的间充质干细胞,可以对其进行详细研究,以了解它们的特性以及它们如何作为干细胞维持。这一信息将极大地促进对其他间充质干细胞的了解,并改善这些细胞在临床治疗中的应用。
英文摘要
Mesenchymal stem cells (MSCs) are stem cells that cant form different types of cells derived from mesenchyme. These include bone cells, cartilage cells, fat cells and many others. MSCs are found in several adult tissues, most notably the bone marrow. In addition to their stem cell properties, MSCs also have a well-established ability to repress the immune system. MSCs are thus a very important source of cells for clinical applications in tissue repair and in immune suppression and several large clinical trials are underway in the US. The problem with MSCs is that most research has been carried out on the bone marrow, a difficult tissue to study and the main source of MSCs for clinical applications is the bone marrow or fat tissue. In order understand more of these cells so that they use in clinical applications can be improved, a more accessible source of cells needs to be studied. MSCs are also found in teeth, particularly in the pulp tissue in the centre of the tooth where they are involved in tooth repair following damage. Commercial banking of tooth pulp cells from naturally lost children?s teeth is available. However in common with bone marrow MSCs these cells are difficult to study since they are present in very small numbers. Unlike us, mice have teeth (incisors) that grow continuously because they have a population of MSCs that continuously provide new cells. We have identified the location of these cells and can visualise the cells easily. This means we now have a large population of easily accessible MSCs that can be studied in detail to understand their properties and how they are maintained as stem cells. This information will greatly benefit the understanding of other MSCs and improve the use of these cells in clinical treatments.
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