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Biomedical subjects

J Fan

Publications and source records attributed to J Fan.

At least 217 records · Page 12Linked to original sources

Clustering of GPI-anchored folate receptor independent of both cross-linking and association with caveolin.

The distribution of the glycosyl-phosphatidylinositol (GPI)-anchored folate receptor (FR) in a diffuse pattern vs. functional clusters associated with caveolae has been debated. The equivocal nature of direct localization studies is due to possible experimental artifacts such as cross-linking of the protein by the antibody probes prior to fixation and alternatively the use of a disruptive fixation method. Such studies have also been complicated by the use of cells that vastly overexpress FR. In this study a monovalent probe, i.e., a biotinylated folate affinity analogue was used to covalently label FR. Cells expressing moderate levels of FR, i.e., JAR epithelial cells expressing FR-alpha and recombinant CHO fibroblasts expressing FR-beta, were used. The affinity label and either caveolin or antigenic sites on FR were localized by electron microscopy using colloidal gold conjugated antibody probes post-embedding in the relatively permeable LR White resin. The method avoided both receptor cross-linking and early fixation steps and also enabled the use of transport permissive conditions while labeling FR at the cell surface. The results indicate that in steady-state FR is not significantly colocalized with caveolin. However, the receptor molecules occur predominantly in clusters, independent of cross-linking, providing a physical basis for the observed kinetics of receptor internalization and recycling during folate transport. Evidence is also presented to suggest that early mild fixation will disrupt the clustering of FR.

Animals↗

Transgenic rabbit models for the study of atherosclerosis.

The rabbit rapidly develops severe hypercholesterolemia leading to premature atherosclerosis in response to dietary manipulation. Transgenic rabbit models with altered expression of specific genes will provide new approaches to understanding the underlying mechanisms that contribute to this disease. Recently established lines of transgenic rabbits that overexpress hepatic lipase and apolipoprotein E are yielding fresh insights into the functions of these proteins and their role in lesion development

APOBEC-1 Deaminase↗

Overexpression of p21waf1 leads to increased inhibition of E2F-1 phosphorylation and sensitivity to anticancer drugs in retinoblastoma-negative human sarcoma cells.

The effect of overexpression of p21waf1 on drug sensitivity was studied in an osteosarcoma cell line (SaOs-2) lacking both p53 and functional retinoblastoma protein using a tetracycline (TC)-inducible expression system. p21waf1 expression was barely detectable in SaOS-2 cells incubated in the presence of TC. After TC withdrawal, high levels of p21waf1 were induced in these cells. These p21waf1-induced cells showed increased sensitivity to doxorubicin, tomudex, and methotrexate as compared to uninduced cells; this condition is associated with increased apoptosis. Expression of p21waf1 reduced cyclin A-associated kinase activity and, surprisingly, resulted in inhibition of phosphorylation of E2F-1 and increased E2F-1 binding activity. An S-G2 cell cycle arrest/delay and an increase in expression of E2F-responsive genes (dihydrofolate reductase and thymidylate synthase) was correspondingly observed. Overexpression of p21waf1 in cells lacking functional retinoblastoma protein may mediate sensitivity to anticancer drugs by inhibiting E2F-1 phosphorylation, which may contribute to increased S-G2 cell cycle delay and increased cell susceptibility to apoptosis.

Anti-Bacterial Agents↗

K-ras modulates the cell cycle via both positive and negative regulatory pathways.

The effect of activated human K-ras on cell cycle proteins was studied by use of a stable MCF-7 transfectant expressing inducible activated K-ras under the control of a tetracycline (Tet)-responsive promoter. Induction of activated K-ras by Tet withdrawal accelerated cell growth and entry into S-phase. To understand the mechanism(s) by which activated K-ras exerts its effect on the cell cycle, expression of both cell cycle stimulatory proteins as well as cell cycle inhibitors was examined. Upon induction of activated K-ras, several cell cycle stimulators were up-regulated, including cyclins A, D3, and E, and the E2F family of transcription factors, which was accompanied by increased cyclin A-associated kinase activity and E2F transcriptional activity, respectively. Up-regulation of cyclin A occurred at the transcriptional level and in a serum-dependent manner. Furthermore, induction of activated K-ras down-regulated p27Kip1 and up-regulated p53. Up-regulation of p53 was correlated with enhanced p53 transactivation and accompanied by up-regulation of p21Waf1 and Gadd 45, two p53 effectors and negative cell cycle regulators. In addition, activated K-ras up-regulates bcl-2 but has no effect on bax or bcl-x expression. Taken together, these data indicate that activated K-ras affects the cell cycle by modulating both positive and negative cell cycle regulatory pathways.

Adenocarcinoma↗

Modulation of cytotoxicity of chemotherapeutic drugs by activated H-ras.

Cells from a single MCF-7 clone were transfected with an isopropyl-1-thio-beta-D-galactopyranoside (IPTG)-inducible construct containing activated human H-ras with a Gly12 --> Val12 mutation. Expression of H-ras was induced by the presence of IPTG with low background. MCF-7-ras clones were examined for sensitivity to a wide variety of drugs under both induced and non-induced conditions. When expression of the activated ras was induced, these clones showed markedly increased resistance to cisplatin and mitomycin C, moderately increased resistance to methotrexate and trimetrexate, and no increased resistance to other drugs including taxol, doxorubicin, and etoposide. A DNA fragmentation assay revealed that DNA in MCF-7-ras cells treated with cisplatin under induced conditions was intact, whereas extensive degradation of DNA occurred in similarly treated cells under non-induced conditions. This result, along with the fact that MCF-7-ras cells, upon induction of the activated H-ras, showed increased resistance to drugs that bind DNA, indicates that the activated H-ras may play a role in the DNA repair process.

Antineoplastic Agents↗

Functional roles of E2F in cell cycle regulation.

The E2F family of transcription factors play a key role in G1-S progression. A dominant negative mutant (E2F97) of E2F1 containing the DNA binding domain of E2F1 under the control of a tetracycline-responsive promoter was constructed. Stable transfectants were produced in the pRb-lacking SaOS-2 cell line and SV40-transformed VA-13 cell line, respectively. Induction of E2F97 by tetracycline withdrawal resulted in strong inhibition of the E2F transcriptional activity and a decreased percentage of cells in S-phase. To understand the mechanism(s) by which E2F97 exerts its effect on the cell cycle, the effect of E2F97 on expression of various cell cycle proteins was examined. Upon induction of E2F97, a significant decrease in the levels of both dihydrofolate reductase and thymidylate synthase was observed in transfectants derived from both cell lines. Induction of E2F97 also led to a decrease in cyclin A and D1 protein levels. Regulation of cyclin A by E2F97 occurred at the transcriptional level. In addition, in VA13 cells, induction of E2F97 resulted in down-regulation of the tumor suppressor protein p53. These data suggest that E2F regulates both G1 and S-phase cyclins and that there may be a potential positive feedback regulatory loop between E2F and cyclin D1.

Carrier Proteins↗

AZT blocks down-regulation of IL-2 and IFN-gamma gene expression in HIV acutely infected cells.

HIV infection causes dysregulation of cytokine gene expression in CD4+ T cells of the infected host. Azidothymidine (AZT) inhibits HIV replication by blocking reverse transcription. Using a one-stop cell-to-cell HIV infection model, we have investigated the expression of several key cytokines in HIV infected T cells in the absence or presence of AZT treatment. Acute HIV infection of T cells resulted in dramatic down regulation of the expression of IL-2 and INF-gamma mRNA. While beta-actin mRNA levels remained constant in both AZT-free and AZT treated cultures after HIV infection, it was found that AZT blocked the down regulation of IL-2 mRNA and INF-gamma mRNA in CD4+ T cells acutely infected with HIV.

CD4-Positive T-Lymphocytes↗

Antigen conformation dependence of Chlamydia trachomatis infectivity neutralization.

Chlamydia trachomatis infections cause the most common notifiable diseases in the United States, reflecting the successful adaptation of these organisms to persist in their obligate human host population. Antigenic variation of the quantitatively predominant major outer membrane protein (MOMP) is considered to play an important role in this adaptation as a means of immune evasion. The relative capacity of murine polyvalent sera produced following infection, recovery, and challenge to neutralize infectivity was highly serovar-specific and dependent upon thermolabile antigens. The structural complexity of these immunodominant antigens was mimicked by chlamydial MOMP expressed in Escherichia coli, as antibodies that neutralize infectivity by recognition of conformation-dependent antigens were specifically removed from sera following absorption using MOMP expressed in E. coli.

Animals↗

Post-transferred tissue expansion of a musculocutaneous free flap for debulking and further reconstruction.

A free flap used for face and neck reconstruction usually results in tissue bulking and needs several debulking procedures to match the contour of the face and neck. In this paper we report an experience with a patient who underwent tissue expansion of a transplanted musculocutaneous free flap in the face for debulking of the flap and four further aesthetic reconstructions of the face and neck. The result shows that a transplanted free flap tolerates tissue expansion well. The versatile use of tissue expansion shows obvious advantages in that the transplanted flap is not only enlarged substantially by means of tissue expansion, but it is also debulked at the same time of achieve a desired thin flap for further reconstruction of the face and neck.

Burns, Electric↗

Double-negative BV8S3 T cells expanded in MRL lpr/lpr lymph nodes conserve TCRBJ gene usage of single-positive BV8S3 T cells.

Enlarged lymph nodes of mice with lpr mutation consist predominantly of CD4- CD8- (double-negative: DN) T cells. Among them, TCRBV8S3 (V beta 8.3) T cells are overrepresented as compared to those in single-positive (SP) T cells. To address the question of whether the expansion of oligoclonal T cells is responsible for the increase in TCRBV8S3 cells, we examined the TCRBJ gene repertoires of BV8S3 DN and SP T cells from multiple MRL lpr/lpr mice. The BJ repertoires of BV3 (V beta 3), BV8S1 (V beta 8.1) and BV8S2 (V beta 8.2) were studied for comparison with those of BV8S3 T cells. The employed method, which was based on a PCR-ELISA technique, was newly developed and allowed us to make a precise quantitation of TCRBJ gene usage of the multiple lymphocyte samples. The results showed that there were no biases of the BJ gene usage by BV8S3 DN T cells as well as other BV T cells. Furthermore, the BJ gene usage of CD4 and CD8 BV8S3 T cells was conserved by the DN T cells. It is suggested that the BV8S3 DN T cells were not expanded by specific antigens. The expansion may result from aberrant regulation specific to the BV8S3-expressing T cells.

Animals↗

Standardized technique of transplanting micrografts in hair restoration surgery. A practical approach.

BACKGROUND: The transplantation of a large number of hair-bearing micrografts has become an important method in hair restoration surgery and one that achieves a more natural looking growth of the transplanted hairs than minigrafts or punchgrafts. However, the process of grafting over a hundred micrografts is still tedious, laborious, and time-consuming, and also increases the amount of surgical trauma to the hair follicles of the donor site. OBJECTIVE: To speed up the process of micrografting and minimize surgical trauma to the follicles and the grafts in order to maximize the grafts survival and therefore optimize clinical results. METHODS: The authors describe the standardized micrografting technique used in our unit for hair transplantation, which speeds up the grafting process and minimizes the trauma due to surgery during the various fares of the transplanting procedure of the hair follicles. RESULTS: The described technique significantly speeds up the process of transplanting micrografts with minimal surgical trauma and therefore the best possible graft survival. CONCLUSION: Standardized micrografting is a fast, practical and efficient technique for hair restoration surgery.

Adult↗

Differential role of glucocorticoids in mediating endotoxin-induced changes in IGF-I and IGFBP-1.

The purpose of the present study was to determine whether endogenous elevations in glucocorticoids mediate the changes in insulin-like growth factor (IGF) 1 and IGF binding protein (IGFBP) 1 levels in plasma and tissues observed after in vivo administration of lipopolysaccharide (LPS). In overnight-fasted male rats LPS injected via the tail vein decreased the IGF-I concentration in plasma, liver, and skeletal muscle (30-45%) and increased IGF-I content in kidney (approximately 3-fold). LPS also decreased IGF-I mRNA abundance in liver and muscle and increased gene expression in kidney. Concomitantly, IGFBP-1 levels in plasma, liver, and muscle were markedly elevated by LPS. All these changes were associated with a greater than fourfold elevation in plasma corticosterone. Pretreatment of rats with the glucocorticoid receptor antagonist RU-486 completely prevented or blunted the LPS-induced changes in IGF-I content in plasma, liver, muscle, and kidney. In liver and muscle RU-486 significantly attenuated the reduction in IGF-I mRNA abundance produced by LPS, but in kidney the LPS-induced increase in IGF-I mRNA was still evident. In contrast, pretreatment with RU-486 did not prevent or attenuate the LPS-induced increase in IGFBP-1 levels in plasma, liver, or muscle. These data suggest that glucocorticoids play a major role in regulating IGF-I mRNA and peptide content in tissues in response to LPS, but the increased IGFBP-1 in blood and tissues induced by LPS appears largely glucocorticoid independent.

Animals↗

Acute alterations in growth hormone-insulin-like growth factor axis in humans injected with endotoxin.

The purpose of the present study was to characterize the acute changes in the insulin-like growth factor (IGF) system in humans after administration of endotoxin (lipopolysaccharide; LPS). Escherichia coli LPS (4 ng/kg) was injected intravenously into healthy adults, and serial blood samples were collected for the next 5 h; subjects injected with saline served as time-matched controls. LPS administration resulted in a gradual decrease in the total extractable IGF-I concentration, which was reduced by approximately 20% over the final 2 h of the experiment; levels of free IGF-I were not significantly altered. LPS also produced a marked but transient elevation in growth hormone (GH) concentration. IGF-binding protein (BP)-1 levels were elevated more than fivefold 2 h after LPS injection, and thereafter levels gradually returned toward baseline. IGFBP-2 concentration also increased after LPS injection, but the maximal increase (approximately 50% above basal) was observed during the final 2 h of the protocol. In contrast, IGFBP-3 levels did not vary over the period examined in response to LPS, and there was no apparent increase in number of BP-3 proteolytic fragments. Cortisol levels were increased early and remained two- to threefold above baseline throughout the protocol. No significant alterations in serum concentration of glucose or insulin were noted. LPS also produced an early elevation in tumor necrosis factor and a later increase in interleukin-6. These data indicate that the acute changes in the GH-IGF axis in humans in response to LPS are comparable with those observed in humans in other traumatic conditions and in animal models of endotoxemia and infection.

Adolescent↗

Versatility of expanded forehead flaps for facial reconstruction. Case report.

Forehead flaps, sometimes with tissue expansion, are usually used for nasal reconstruction because of the severe aesthetic morbidity of the donor area. In this paper we describe six patients who had facial soft-tissue defects that were repaired by versatile design of the expanded forehead flaps and minimal donor morbidity. The results indicate that forehead tissue expansion can provide ample, thin, well-vascularised, and colour-matched flaps for facial reconstruction. Versatile design of the expanded forehead flap can reduce the donor morbidity to a minimum without a visible unsightly scar.

Adolescent↗

Minigraft preparation in surgical hair replacement.

A 38-year-old man with Norwood type V male pattern baldness underwent hair restoration surgery using a new technique aimed to minimise the time spent on cutting minigrafts by using a multibladed knife. A total of 600 minigrafts were harvested from the occipital region, prepared, and inserted into the bald area. This method significantly enhances the rate of minigraft preparation during hair transplantation procedures, as dividing minigrafts from hair-bearing strips of scalp using a multibladed knife simplifies the whole cutting session. Furthermore, grafts prepared with the multibladed scalpel are more regular in size than those obtained with the traditional technique.

Adult↗

Direct cycle sequencing with delta Taq DNA polymerase.

The delta Taq DNA polymerase is a new, genetically modified version of standard Taq DNA polymerase which lacks the 5'-->3'-exonuclease activity. The present study was designed to investigate the use of delta Taq DNA polymerase for direct cycle sequencing. Results show that delta Taq DNA polymerase can be used for direct cycle sequencing of the PCR amplified DNA, either from an asymmetrically amplified template (by PCR), double stranded DNA template, PCR amplified DNA cloned into a plasmid vector or from a single stranded template. The primer to template ratio and number of cycles necessary for best sequence data have been determined. From these results we conclude that delta Taq DNA polymerase is a highly versatile enzyme which can be used for DNA sequence determinations by direct cycle sequencing.

DNA Primers↗