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Biomedical subjects

Sorapop Kiatpongsan

Publications and source records attributed to Sorapop Kiatpongsan.

9 recordsLinked to original sources

Cyclin A1 promoter hypermethylation in human papillomavirus-associated cervical cancer.

BACKGROUND: The aim of this study was to evaluate epigenetic status of cyclin A1 in human papillomavirus-associated cervical cancer. Y. Tokumaru et al., Cancer Res 64, 5982-7 (Sep 1, 2004)demonstrated in head and neck squamous-cell cancer an inverse correlation between cyclin A1 promoter hypermethylation and TP53 mutation. Human papillomavirus-associated cervical cancer, however, is deprived of TP53 function by a different mechanism. Therefore, it was of interest to investigate the epigenetic alterations during multistep cervical cancer development. METHODS: In this study, we performed duplex methylation-specific PCR and reverse transcriptase PCR on several cervical cancer cell lines and microdissected cervical cancers. Furthermore, the incidence of cyclin A1 methylation was studied in 43 samples of white blood cells, 25 normal cervices, and 24, 5 and 30 human papillomavirus-associated premalignant, microinvasive and invasive cervical lesions, respectively. RESULTS: We demonstrated cyclin A1 methylation to be commonly found in cervical cancer, both in vitro and in vivo, with its physiological role being to decrease gene expression. More important, this study demonstrated that not only is cyclin A1 promoter hypermethylation strikingly common in cervical cancer, but is also specific to the invasive phenotype in comparison with other histopathological stages during multistep carcinogenesis. None of the normal cells and low-grade squamous intraepithelial lesions exhibited methylation. In contrast, 36.6%, 60% and 93.3% of high-grade squamous intraepithelial lesions, microinvasive and invasive cancers, respectively, showed methylation. CONCLUSION: This methylation study indicated that cyclin A1 is a potential tumor marker for early diagnosis of invasive cervical cancer.

Biomarkers, Tumor↗

International stem cell research; networking and collaboration.

Stem cell research has obtained more attention during the last decade because of its strong potential as a new tool to cure many chronic diseases. In addition, stem cell knowledge is an important basis for understanding pathophysiology at the cellular level and developing disease models for experimental research. There are different limitations on resources, budget, policy and regulation among countries. As a result, each country has particular advantages and disadvantages in stem cell research. This result in the establishment of international networks and collaborations to coordinate and promote stem cell research aimed at medical applications.

Community Networks↗

Introduction to stem cell medicine.

Embryonic stem cell is the promising novel therapeutic tool for various degenerative diseases and tissue injuries. With the concept of cell and tissue therapy, many chronic disorders will be curable. The present article provides basic knowledge of stem cell in areas of definition, classification and future clinical applications. In addition, stem cell application is not only focusing on regenerative purpose, but also concentrating on more understanding about the early human development and the pathophysiology of genetic diseases at the cellular level. However, there are some technical problems and ethical concern that should be resolved before applying stem cells into clinical practice.

Cell- and Tissue-Based Therapy↗

Cell therapy: hype or hope.

Cell therapy is a promising therapeutic tool for the next decade. It has a potential to cure a number of chronic diseases and conditions related to aging processes or degenerative changes. In addition, it could be used to replace cells and tissues in injured organs. Furthermore, it may provide a novel approach to congenital anomalies and genetic disorders where current therapeutic options are limited However, many crucial questions need answers to ensure a safe, effective and successful solution in the field of cell therapy. In Thailand, innovative knowledge and expertise in stem cell biology and technology are required as the key elements to make cell therapy a "real" hope.

Aging↗

Conventional and novel methods for embryonic stem cell line derivation.

Cell therapy is the promising therapeutic tool for the next decade. "Regenerative Medicine" based on cell and tissue replacement therapy is proposed as a revolutionary approach to various chronic and incurable conditions. The first key step for successful cell therapy is the establishment of clinical grade human Embryonic Stem Cell (hESC) lines. This article provides a concise summary on conventional and novel methods for hESC line derivation. There is also discussion on progression, future direction and problems in hESC line development. In Thailand, more advance knowledge, skill, and technology are required to develop the first human embryonic stem cell line and step forward to make cell therapy a reality.

Blastomeres↗

Embryonic stem cell bank.

Embryonic stem cell bank is a cornerstone for stem cell research. It is providing essential resources to support advances in research in this challenging field that promises broad-ranging cell and tissue therapy. It is important to make good quality and well characterized embryonic cell lines that will be available for both research and clinical purposes. This article provides a concise summary on embryonic stem cell banking processes from cell line characterization, storage, quality assurance, safety testing, distribution, and post-distribution monitoring. It also states the importance of an international network and collaboration for technology and knowledge transfer Moreover, the Bank should play a substantial role as a national reference and a training center for stem cell research.

Biological Specimen Banks↗

Future cancer management with stem cell knowledge and technology.

Cancer has been proposed as a result of abnormal control of growth and development of stem cells for more than century. This is the "cancer stem cell hypothesis". Both cancer and stem cells share many common especial properties. They are immortal and have good differentiation potential. In addition, organogenesis and carcinogenesis are very similar processes. Recently, more evidence and convincing data from stem cell biology research are supporting this concept. Furthermore, the research provides new promising approaches for cancer diagnosis and treatment based on stem cell knowledge and technology. Upcoming data and evidence may revolutionize cancer management, making it more effective and safer.

Forecasting↗

International trends in bioethics for embryonic stem cell research.

Embryonic stem cell (ESC) has been recognized as one of the most promising therapeutic tools for the next decade. However, there are many controversial issues in bioethics for this challenging research area. Each country has its own distinct regulations and policies for ESC research due to their differences in cultural background, religious belief and political influence. These differences will eventually play an important role on international ESC research collaboration. The present article will provide a concise summary of the different policies and regulations regarding bioethical points for ESC research worldwide and show current progress towards establishing standard bioethical guidelines for ESC research on the international level.

Bioethics↗

Intellectual property and patent in stem cell research era.

Stem cell therapy has obtained much attention, not only for its exceptional promise for curing many chronic disorders and degenerative conditions but also for its great economic potential. Apart from expenses in research laboratories and ongoing clinical trials, intellectual properties, patent of stem cell differentiation protocols, and stem cell-derived medical products for cell and tissue therapy are of very high cost. Intellectual properties and patents are inevitably important issues for stem cell researchers. Stem cell researchers in most countries have a chance to develop affordable stem cell therapy, scientific progression, and innovations for their patients. However, for this to be done, appropriate solutions for international patent barrier must be created so that the owner of the original stem cell protocols and techniques can be acknowledge, build his reputation and reap reasonable financial benefits. International patent barriers will be a crucial step to move the whole stem cell research community forward.

Biomedical Research↗