Division of Life Science
Stem Cell-niche Interactions in Tissue Maintenance and Engineering
Stem cells support normal development and maintain tissue homeostasis in adults through their unique ability to replicate and differentiate into specialized cells. They have been proposed as treatments for degenerative diseases such as Parkinson’s disease, Alzheimer’s disease and type I diabetes. Cancer stem cells can also replicate, driving tumor growth, metastasis and relapse. The age-dependent decline of stem cell activity has been linked to age-related deterioration in tissue functions.
To harness the full potential of stem cells as therapeutic agents, ongoing efforts have been made to combine them with biomaterial scaffolds for the generation of transplantable tissues or organs to treat degenerative diseases. Thus, knowledge of stem cell development and aging is critical for the development of stem cell-based therapies to combat many human diseases. The major obstacle in realizing the full potential of stem cell therapy is the lack of sufficient knowledge of the regulation of stem cell activities inside intact tissues.
In this TRS project, we propose to investigate the molecular mechanisms underlying stem cell maintenance, differentiation and aging in model organisms such as Drosophila, zebrafish and mice. A team of investigators from HKUST, HKU and CUHK with complementary expertise, experience of successful collaboration and with outstanding research records has been assembled to reveal how the microenvironment, or niche, controls stem cell behaviors and functions at the molecular and cellular level using a combination of advanced genomic, genetic, molecular, biochemical and developmental approaches.
科研发现
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科大突破性发现罕见肿瘤细胞「间谍」 揭示不为人知的癌细胞
香港科技大学(科大)研究人员研发了一种可为冷冻和新鲜细胞组织样本同时进行单细胞DNA和RNA测序的新技术,更利用这方法识别出伪装为正常细胞的罕见脑肿瘤细胞「间谍」。是次发现为一些最复杂和罕见肿瘤的研究带来突破,并为未来的药物靶标发现开辟新方向。
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解构秀丽隐杆线虫pri-miRNA加工复合体的分子机制
小分子核糖核酸(microRNAs,以下简称miRNAs)是一种在动物和人类基因调控中发挥重要作用的小型核糖核酸(RNA),一直令许多科学家为之着迷。在生物学和医学中,一項非常重要的研究范畴就是miRNA如何控制和调节基因表达,因为科学界一般相信,这个课题对理解细胞突变有重大作用,对於治疗癌症和其他与细胞突变有关的疾病,至为关键。