FP6Индивидуална стипендия2005–2007

IGF1ESC · Effect of the local isoform of IGF on epidermal stem cells, aging and skin diseases

6РП — Действия „Мария Кюри“

Период
2005-09-15 → 2007-09-14
Финансиране от ЕС
144 313 €
Участници
1
Схема
IIF

Линиите свързват координатора с партньорите.

Накратко на български

Локалната форма на хормона IGF-1 се тества за регенерация на кожата и косата чрез генетично модифицирани мишки. Това е важно, защото може да стимулира възстановяването на тъканите и да забави стареенето, без да предизвиква системни странични ефекти в организма.

Този кратък обзор е генериран от изкуствен интелект

Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.

Резултати накратко

Final Activity Report Summary - IGF1ESC (Effect of the local isoform of IGF on epidermal stem cells, aging and skin diseases)

Our project was aimed at testing the therapeutic potential of a local isoform of insulin like growth factor 1 (mIGF-1) in skin and hair regeneration. IGF-1 is a peptide hormone that is produced by almost all tissues in the body and plays an important role in body growth, development and metabolism. Animals, in which IGF-1 was removed, showed a range of phenotypes that included severe growth retardation and in some cases lethality. Mutations in IGF-1 gene were also linked to human growth impairments. Due to its ability to stimulate cellular growth and survival, IGF-1 is an attractive candidate to be used in therapy. In fact, therapeutic and regenerative potential of IGF-1 molecule is being tested in a variety of settings. However, systemic infusion of IGF-1 has lead to hypoglycemia, electrolyte imbalance and fatigue, due to the supraphysiological doses needed to attain stimulatory effects. In addition, IGF-1 has been implicated in cancerogenesis. Our laboratory had studied the regenerative potential of a locally acting form of IGF-1 (mIGF-1) in the muscle and in the heart by generating transgenic animals with localised expression on mIGF-1. In both cases, mIGF-1 did not alter normal tissue homeostasis. At the same time, it stimulated regeneration after injury by promoting cell survival and renewal, while reducing inflammation and scarring. In addition, aged muscle of transgenic animals escaped age-related atrophy, maintained muscle strength and retained regenerative capacity in response to injury. In the project we tested the ability of mIGF-1 to assist regeneration in the skin and hair by generating a transgenic mouse model (K14/mIGF-1) in which mIGF-1 is expressed by skin cells called keratinocytes, that normally do not synthesise IGF-1. Being local, we expected mIGF-1 to remain near the site of production and to influence the behaviour of cells that synthesise it. Accordingly, we did not detect an increase in serum levels of IGF-1 in transgenic animals. Histological evaluation of K14/mIGF-1 skin did not reveal pathological alterations during the first year of life. We next tested the effect of mIGF-1 on two types of regeneration: wound healing and hair cycling. Wound healing was accelerated in transgenic animals due to more rapid wound closure. This was likely to be due to ability of mIGF-1 to stimulate proliferation and migration of keratinocytes that participated in wound closure. The underlying scar tissue was not significantly different, supporting the local nature of mIGF-1 action. In addition, growth phase during the first hair cycling, a regenerative process that occurs in the skin throughout the life span was also accelerated. Transgenic mice showed earlier hair appearance, faster growth and resulting increase in the hair length. However, with age, 20 % of K14/mIGF-1 transgenic mice developed tumours. Tumours arose when mice reached 14 months of age. In our experiment, the onset of tumourogenesis and the frequency of cases was significantly decreased, as compared to another transgenic mouse model (BK5.IGF-1), in which a similar IGF-1 isoform was used. The likely explanation being reduced levels of mIGF-1 in K14/mIGF-1 animals. In both, K14/mIGF-1 and BK5.IGF-1 mouse lines, IGF-1 was produced throughout the life span, giving a prolonged and persistent delivery of this factor molecule. Thus, it is likely that with a lower dose and/or controlled time window of IGF-1 delivery tumour formation can be avoided. In summary, constitutive production of mIGF-1 by keratinocytes improves wound healing and accelerates hair formation and growth, while maintaining normal skin morphology and function in young and adult animals.

Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз

Цел на проекта

The skin is the first line of defence to protect the body from dehydratation, injury and infection. The epidermis, the outer covering of the skin, is maintained throughout life by stem cells. The Rosenthal group has recently reported that a local isoform o f IGF-1 (mIGF-1) is able to enhance both skeletal muscle and heart regeneration, inducing the proliferation of a specific cell population in the bone marrow and enhancing their recruitment to the site of injury and their fusion with existing myocytes. In t his context, we will study the effect of specific expression of mIGF-1 in the epidermis by generating transgenic mice expressing mIGF-1 in a tissue specific and inducible manner.We will compare the gene expression profiles of the mIGF-1 expressing skin with the data on m-IGF-expressing muscle already available, to see how much of the muscle regenerative response is recapitulated in the epidermis. After analysing the action of mIGF-1 on the regeneration and proliferative capacity of the skin, we will identify the molecules mediating such an effect, mainly focusing on the capacity of mIGF-1 to modify the secretion of growth factors and cytokines that may regulate the behaviour of surrounding cells. We will determine whether mIGF-1 expression results in increased stem cell proliferation in vivo, whether mIGF-1 enhances the recruitment of epidermal stem cells to the site of injury and will determine the capacity of these stem cells to differentiate and engraft different tissues. We will analyse the ability of epidermal mIGF-1 to interfere with scar formation or to enhance extra cellular matrix destruction and will study the effect of mIGF-1 expression on skin aging.Finally, we will study whether mIGF-1 expression in the epidermis protects mice from developing immune-associated skin diseases. The proposed goals fulfil the program's requirements for human mobility, transfer of knowledge, gender balance and multidisciplinary approach.

Оригинален текст от CORDIS (на английски).

Участници

  • EUROPEAN MOLECULAR BIOLOGY LABORATORY · HEIDELBERGКоординаторГермания

Връзки

Данни: CORDIS, © Европейски съюз