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Biomedical subjects

Y E Cho

Publications and source records attributed to Y E Cho.

5 recordsLinked to original sources

Intermediate filament nestin expressions in human cord blood monocytes (HCMNCs).

OBJECTS: Nestin is an intermediate protein and a well-known specific neural stem cell antigen. Some bone marrow stem cells can generate not only blood cells but also neurons and glial cells under specific culture conditions. Furthermore, in vitro cultured bone marrow stem cells also express nestin antigen. However, it is unclear whether cord blood cells also differentiate into neural cells or not. In this study, we investigated the expression of nestin on human cord blood monocytes (HCMNCs) and we discuss the relevance of this finding upon future therapeutic applications of HCMNCs in neurological diseases. METHODS: HCMNCs were prepared from normal placenta after full-term normal delivery. Immunocytochemical staining and reverse transcriptase polymerase chain reaction (RT-PCR) for nestin and CD133 antigen were performed to confirm nestin and CD133 antigen expression in the HCMNCs. RESULTS: Some nestin expressing HCMNCs were found. Immunocytochemical staining showed that some of the blood stem cell marker CD133 expressing cells co-expressed nestin. RT-PCR demonstrated nestin and CD133 mRNA in HCMNCs, but not in adult blood monocytes. Approximately, 60 +/- 8% of CD133 expressing cells expressed nestin. CONCLUSION: In the present study, we found that more than 60% of CD133 expressing HCMNCs also express nestin antigen in their cytoplasm, which supports the idea that cord blood stem cells can adopt a neuronal fate.

AC133 Antigen↗

Neural phenotype expression of cultured human cord blood cells in vitro.

Neural stem cells have been proposed as useful vectors for treating diseases in the CNS, but their utility is severely limited by lack of accessibility. Brain development is ongoing extensively in early postnatal life. However, it is unclear whether stem cells that differentiate into neurons exist in the blood during early postnatal life. We showed in this experiment that neural markers (NeuN, neurofilament, MAP2, GFAP) are expressed and long cytoplasmic processes are elaborated in the cultured human cord blood monocytes prepared from newborn umbilical blood. These results suggest that stem cells in human cord blood may be potential sources of neurons in early postnatal life. We suggest that the neonatal blood system functions as a circulating pool of different types of stem cell.

Cell Differentiation↗

Thermatomal changes in cervical disc herniations.

Subjective symptoms of a cool or warm sensation in the arm could be shown objectively by using of thermography with the detection of thermal change in the case of radiculopathy, including cervical disc herniation (CDH). However, the precise location of each thermal change at CDH has not been established in humans. This study used digital infrared thermographic imaging (DITI) for 50 controls and 115 CDH patients, analyzed the data statistically with t-test, and defined the areas of thermatomal change in CDH C3/4, C4/5, C5/6, C6/7 and C7/T1. The temperature of the upper trunk and upper extremities of the control group ranged from 29.8 degrees C to 32.8 degrees C. The minimal abnormal thermal difference in the right and left upper extremities ranged from 0.1 degree C to 0.3 degree C in 99% confidence interval. If delta T was more than 0.1 degree C, the anterior middle shoulder sector was considered abnormal (p < 0.01). If delta T was more than 0.3 degree C, the medial upper aspect of the forearm and dorsal aspect of the arm, some areas of the palm and anterior part of the fourth finger, and their opposite side sectors and all dorsal aspects of fingers were considered abnormal (p < 0.01). Other areas except those mentioned above were considered abnormal if delta T was more than 0.2 degree C (p < 0.01). In p < 0.05, thermal change in CDH C3/4 included the posterior upper back and shoulder and the anterior shoulder. Thermal change in CDH C4/5 included the middle and lateral aspect of the triceps muscle, proximal radial region, the posterior medial aspect of the forearm and distal lateral forearm. Thermal change in CDH C5/6 included the anterior aspects of the thenar, thumb and second finger and the anterior aspects of the radial region and posterior aspects of the pararadial region. Thermal change in CDH C6/7 included the posterior aspect of the ulnar and palmar region and the anterior aspects of the ulnar region and some fingers. Thermal change in CDH C7/T1 included the scapula and posterior medial aspect of the arm and the anterior medial aspect of the arm. The areas of thermal change in each CDH included wider sensory dermatome and sympathetic dermatome. There was a statistically significant change of temperature in the areas of thermal change in all CDH patients. In conclusion, the areas of thermal change in CDH can be helpful in diagnosing the level of disc protrusion and in detecting the symptomatic level in multiple CDH patients.

Adult↗

Digital infrared thermographic imaging in patients with gastroesophageal reflux disease.

We performed a thermographic study to observe any possible interaction between the esophageal acid perfusion and the temperature changes of skin surface in patients with gastroesophageal reflux disease (GERD). Twenty-seven patients with GERD were categorized as group I(globus symptoms with posterior laryngitis) and group II (heartburn and/or regurgitation symptoms). Patients and 6 healthy volunteers underwent Bernstein test (BT) and digital infrared thermographic imaging (DITI) simultaneously. The positive rate for BT in group I and group II was 22.2% and 55.6%, respectively, and the DITI positive rate was 55.6% for group I and 50.0% for group II. None of healthy control were positive in BT or DITI. All subjects with DITI positive were hypothermic. The overall accordance rate between DITI and BT was 69.7%. All group I patients showed a diffuse type, while in group 11, 4 patients showed diffuse type and 5 patients showed localized type (p<0.05). In patients with DITI (+)/BT (-), 83.3% showed diffuse type, whereas equal numbers of diffuse and localized type were noted in patients with DITI (+)/BT (+). In conclusion, add contact with a sensitive mucosa leads to an activation of the sympathetic nervous system in some patients with GERD, inducing skin surface hypothermia.

Adult↗

Reinduced expression of developmental proteins (nestin, small heat shock protein) in and around cerebral arteriovenous malformations.

Intermediate filament (IF) nestin and small heat shock protein (sHSP) are developmentally regulated proteins. Nestin is highly expressed on proliferating neuroepithelial stem cells of the developing central nervous system (CNS). During the developmental neurulation stage, nestin is replaced by mature neuronal (neurofilament) or glial cell-specific IFs (glial fibrillary acidic protein, GFAP). Several pathologic states induce astrocytes to synthesize nestin transiently in the mature brain. However, the exact nature of the embryonic conversion from nestin to mature cytoskelton is unclear. In an attempt to define the effect of ischemic hemodynamic stress caused by cerebral arteriovenous malformation (AVM) on the brain parenchyma, we examined the synthesis and cellular distribution of sHSP and nestin in vascular elements of AVMs and in the gliotic area surrounding AVMs. Ten consecutively collected surgical specimens meeting the histological criteria for AVM were immunohistochemically stained using primary antibodies for nestin, HSP27 and alphaB-crystallin. Nestin, HSP27 and alphaB-crystallin mRNA expressions were examined by reverse transcriptase-polymerase chain reaction (RT-PCR). Nestin expression is reinduced not only in reactive astrocytes, but also in endothelial cells in the surrounding gliotic tissue of the cerebral AVM. These cells also expressed sHSP (HSP27, alphaB-crystallin) that maintain the integrity of the IF network and prevent unfolding of cellular proteins induced by various stresses. RT-PCR showed the increased expression of sHSP and nestin mRNA in the AVM specimens. These results indicate that embryonic reversion of the mature cytoskeleton to nestin and the increased expression of sHSP in response to cerebral injury are associated with increased wall tension caused by dilating AVM vessels and with the hemodynamic stress that surrounds AVMs.

Adult↗