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Biomedical subjects

W Han

Publications and source records attributed to W Han.

At least 55 records · Page 3Linked to original sources

Transgenic anti-CD4 monoclonal antibody secretion by mouse segmental pancreas allografts promotes long term survival.

To compare the effectiveness of transgenic and systemic monoclonal antibody therapy for pancreas transplantation, vascularised segmental pancreas allografts from wild-type or transgenic pancreatic tissue that secreted monoclonal anti-CD4 were placed in CBA recipients in which diabetes had been induced chemically by streptozotocin (STZ, non-autoimmune diabetes). In untreated CBA recipients, wild-type BALB/c or C57BL/6 bml pancreas transplants were rejected in a mean survival time (MST) of 27 and 30 days, respectively. BALB/c and C57BL/6 graft survival improved when recipients were given a short course of T cell depleting monoclonal anti-CD4 antibody, (GK 1.5, 2 mg total on days -1, 0, 1, 2 with grafting on day 0) with MST +/- S.D. of 71 +/- 29 and 44 +/- 36 days, respectively. Thus, transient depletion of CD4 was effective in delaying pancreas allograft rejection in these strain combinations. The use of C57BL/6 bml mice transgenic for a rat anti-CD4 antibody (GK5 mice) as pancreas donors provided allografts that secreted sufficient anti-CD4 antibody to cause CD4 T cell depletion in the recipients (CD4 cells decreased from 30 to < 5% of small lymphocytes). This degree of depletion was not sustained and the CD4 recovery inversely correlated with graft survival. Mice with > 20% CD4 cells in the splenic lymphocyte population 4 weeks post-transplant rejected their grafts (3 of 10 mice). However, in 7 of 10 mice CD4 cells remained low (< 15%) and allografts survived for > 80 days. The GK5 allografts survived significantly longer than those from non-transgenic bml controls (MST 83 +/- 32 days, compared with 30 days, P < 0.0005). This survival time was similar to that of BALB/c allografts in CBA recipients treated with a high dose of anti-CD4 antibody. Thus, transgenic secretion of anti-CD4 antibody by the pancreas allograft was very effective in prolonging its survival.

Animals↗

Naturally acquired anti-alpha Gal antibodies in a murine allograft model similar to delayed xenograft rejection.

Antibodies directed against galactose-alpha1,3-galactose (alphaGal) are believed to play an important role in the pathogenesis of delayed xenograft rejection (DXR). This study was designed to determine whether alpha1,3-galactosyltransferase-deficient (Gal KO) mice can naturally acquire a sufficient anti-alphaGal titre to cause the delayed type rejection of alphaGal-expressing hearts. Gal KO mice of various ages were assessed for anti-alphaGal antibody levels. alphaGal-expressing hearts were transplanted heterotopically into these mice and monitored daily. Rejecting and surviving hearts were evaluated histologically. In Gal KO mice greater than 6-month-old, 64% had an anti-alphaGal antibody titre above the background level. When wild-type alphaGal-expressing hearts were transplanted into this group, 45% of grafts rejected within 5 to 13 days. Histological examination of the rejected hearts displayed marked tissue damage and an inflammatory infiltrate of predominantly macrophage/monocytes. Surviving grafts showed preserved morphology. Like humans, Gal KO mice naturally develop anti-alphaGal antibodies with age. The titre in these mice was sufficient to cause a "delayed-type" rejection of a significant proportion of alphaGal-expressing cardiac grafts. This model thus provides an opportunity to investigate the role of naturally acquired anti-alphaGal antibodies in the pathogenesis of DXR.

Animals↗

Hyperacute rejection of vascularized heart transplants in BALB/c Gal knockout mice.

Pig-to-primate vascularized xenografts undergo hyperacute rejection (HAR). This results from pre-formed xenoreactive antibodies directed against galactose-alpha1,3-galactose (alphaGal) in the donor organ and activation of the complement cascade. We describe an in vivo murine model of HAR using a BALB/c mice system devoid of histocompatibility or complement differences between donor and recipient to investigate in isolation, the effects of alphaGal epitope and anti-alphaGal antibody interactions in causing rejection of vascularized heart transplants. Gal KO mice were immunized with rabbit red blood cell membranes to induce high anti-alphaGal antibody titers that were predominantly IgM by ELISA (enzyme-linked immunosorbent assay). When alphaGal-expressing mice hearts were transplanted heterotopically into these recipients (n= 12), 67% of grafts rejected within 24 h, the majority within 16 h with histological features of HAR. In contrast, none of the grafts in the non-immunized Gal KO recipient control group (n=11) underwent HAR. Interestingly, approximately 50% of the remaining grafts in both the immunized and non-immunized Gal KO recipient group were rejected between 7 and 27 days by a rejection process characterized by a dense infiltrate of macrophage/monocytes, perivascular cuffing and tissue destruction similar to recent descriptions of delayed xenograft rejection (DXR). In addition, some grafts (21.5%) continued to survive in the immunized Gal KO recipients despite the presence of anti-alphaGal antibody and normal complement activity and these showed well-preserved myocardium when harvested whilst still functioning well at days 30 or 90. No rejection was seen when Gal KO donors were used in this system (n=4), nor when alphaGal-expressing BALB/c hearts were transplanted into alphaGal-expressing BALB/c recipients (n=5). This in vivo small animal model offers the opportunity to test a variety of strategies to overcome HAR prior to more resource intensive pig-to-primate studies, and may provide insights into the processes similar to DXR and accommodation.

Acute Disease↗

Distinctive functions of Syk N-terminal and C-terminal SH2 domains in the signaling cascade elicited by oxidative stress in B cells.

Syk plays a crucial role in the transduction of oxidative stress signaling. In this paper, we investigated the roles of Src homology 2 (SH2) domains of Syk in oxidative stress signaling, using Syk-negative DT40 cells expressing the N- or C-terminal SH2 domain mutant [mSH2(N) or mSH2(C)] of Syk. Tyrosine phosphorylation of Syk in cells expressing mSH2(N) Syk after H(2)O(2) treatment was higher than that in cells expressing wild-type Syk or mSH2(C) Syk. The tyrosine phosphorylation of wild-type Syk and mSH2(C) Syk, but not that of mSH2(N), was sensitive to PP2, a specific inhibitor of Src-family protein-tyrosine kinase. In oxidative stress, the C-terminal SH2 domain of Syk was demonstrated to be required for induction of tyrosine phosphorylation of cellular proteins, phospholipase C (PLC)-gamma2 phosphorylation, inositol 1,4, 5-triphosphate (IP(3)) generation, Ca(2)(+) release from intracellular stores, and c-Jun N-terminal kinase activation. In contrast, in mSH2(N) Syk-expressing cells, tyrosine phosphorylation of intracellular proteins including PLC-gamma2 was markedly induced in oxidative stress. The enhanced phosphorylation of mSH2(N) Syk and PLC-gamma2, however, did not link to Ca(2)(+) mobilization from intracellular pools and IP(3) generation. Thus, the N- and C-terminal SH2 domains of Syk possess distinctive functions in oxidative stress signaling.

Animals↗

A comparison of transient outward currents in canine cardiac Purkinje cells and ventricular myocytes.

Although abnormalities in Purkinje cell (PC) repolarization are important causes of cardiac arrhythmias, the detailed properties of repolarizing currents in PCs are incompletely understood. We compared transient outward K(+) current (I(to)) in single PCs from canine false tendons with midmyocardial ventricular myocytes (VMs). I(to) reactivation was biexponential, with a similar rapid-phase time constant (30 +/- 5 and 35 +/- 4 ms for VM and PC, respectively) but a large, slow component in PCs with a much greater time constant than VM (1,427 +/- 70 vs. 181 +/- 24 ms, P < 0.001). Tetraethylammonium had no effect on VM I(to) but reversibly inhibited PC I(to) (IC(50) = 2.4 +/- 0.4 mM). PC I(to) was also more sensitive to 4-aminopyridine (IC(50) = 50 +/- 7 vs. 526 +/- 49 microM in VM, P < 0.0001). H(2)O(2) slowed I(to) inactivation in PCs but did not affect VM I(to). We conclude that PC I(to) shows significant differences from VM I(to), with some features, such as tetraethylammonium sensitivity, that have been reported in neither cardiac I(to) of atrial or ventricular myocytes nor cloned K(+) channel subunits (Kv1.4, Kv4.2, or Kv4.3) known to participate in cardiac I(to).

4-Aminopyridine↗

[The effects of mechanical stretching on DNA synthesis of human periodontal ligament fibroblasts].

This study was aimed at the effects of mechanical stretching on DNA synthesis of human periodontal ligament fibroblasts(PDLF). Flow cytometry(FCM) was used to examine the proliferative activities of PDLF grown on the flexible culture dishes subjected to mechanical stretching. The results showed that in the range of 0.5%-8%, mechanical stretching could stimulate DNA synthesis 2 hours after the cells had been subjected to stretches. DNA synthesis reached the peak in the 6 hours. The effect of 2% stretching was more significant. As time went by, the mitogenic effect of stretch was decreased. These findings suggest that mechanical stretching can stimulate DNA synthesis of PDLF.

Cell Cycle↗

[Mitochondrial DNA4977 deletions associated with human presbycusis].

OBJECTIVE: To determine whether or not the mtDNA4977 deletions contribute to human aging and involve in the development of presbycusis. METHODS: 67 sides of archival temporal bone sections, 20 temporal brains, 21 cochlear nucleus, 20 hearts and 22 livers were harvested and the total DNA was extracted. The presence of mtDNA4977 deletions was examined using nest polymerase chain reaction(PCR). RESULTS: Our results showed: (1) the highly conserved mitochondrially-encoded tRNA and ND1 segments were amplified from all tissues, as well as mtDNA4977 deletions related to aging. (2) The incidence of carrying mtDNA4977 deletions in all tissues in aged group was significant higher than that of young control group (P < 0.05). (3) The incidence of carrying mtDNA4977 deletions in temporal bone sections and cochlear nucleus with presbycusis patients was significant higher than that of aged normal hearing control group (P < 0.05). However, the incidence of carrying mtDNA4977 deletions in heart and liver were no significant difference between presbycusis patients and the control group. CONCLUSION: These findings indicated that mtDNA4977 deletions in human contribute to presbycusis, as well as aging.

Adult↗

Neuropeptide release by efficient recruitment of diffusing cytoplasmic secretory vesicles.

Neuropeptides are slowly released from a limited pool of secretory vesicles. Despite decades of research, the composition of this pool has remained unknown. Endocrine cell studies support the hypothesis that a population of docked vesicles supports the first minutes of hormone release. However, it has been proposed that mobile cytoplasmic vesicles dominate the releasable neuropeptide pool. Here, to determine the cellular basis of the releasable pool, single green fluorescent protein-labeled secretory vesicles were visualized in neuronal growth cones with the use of an inducible construct or total internal reflection fluorescence microscopy. We report that vesicle movement follows the diffusion equation. Furthermore, rapidly moving secretory vesicles are used more efficiently than stationary vesicles near the plasma membrane to support stimulated release. Thus, randomly moving cytoplasmic vesicles participate in the first minutes of neuropeptide release. Importantly, the preferential recruitment of diffusing cytoplasmic secretory vesicles contributes to the characteristic slow kinetics and limited extent of sustained neuropeptide release.

Animals↗

Pleckstrin homology domains interact with filamentous actin.

A fraction of Bruton's tyrosine kinase (Btk) co-localizes with actin fibers upon stimulation of mast cells via the high affinity IgE receptor (FcepsilonRI). In this study, a molecular basis of the Btk co-localization with actin fibers is presented. Btk and other Tec family tyrosine kinases have a pleckstrin homology (PH) domain at their N termini. The PH domain is a short peptide module frequently found in signal-transducing proteins and cytoskeletal proteins. Filamentous actin (F-actin) is shown to be a novel ligand for a subset of PH domains, including that of Btk. The actin-binding site was mapped to a 10-residue region of the N-terminal region of Btk. Basic residues in this short stretch are demonstrated to be involved in actin binding. Isolated PH domains induced actin filament bundle formation. Consistent with these observations, Btk binds F-actin in vitro and in vivo. Wild-type Btk protein is in part translocated to the cytoskeleton upon FcepsilonRI cross-linking, whereas Btk containing a mutated PH domain is not. Phosphatidylinositol 3,4, 5-trisphosphate-mediated membrane translocation of Btk was enhanced in cytochalasin D-pretreated, FcepsilonRI-stimulated mast cells. These data indicate that PH domain-mediated F-actin binding plays a role in Btk co-localization with actin filaments.

Actins↗

Ca2+-induced deprotonation of peptide hormones inside secretory vesicles in preparation for release.

The acidic environment inside secretory vesicles ensures that neuropeptides and peptide hormones are packaged in a concentrated condensed form. Although this is optimal for storage, decondensation limits release. Thus, it would be advantageous to alter the physical state of peptides in preparation for exocytosis. Here, we report that depolarization of the plasma membrane rapidly increases enhanced green fluorescent protein (EGFP)-tagged hormone fluorescence inside secretory vesicles. This effect requires Ca2+ influx and persists when exocytosis is inhibited by N-ethylmaleimide. Peptide deprotonation appears to produce this response, because it is not seen when the vesicle pH gradient is collapsed or when a pH-insensitive GFP variant is used. These data demonstrate that Ca2+ evokes alkalinization of the inside of secretory vesicles before exocytosis. Thus, Ca2+ influx into the cytoplasm alters the physical state of intravesicular contents in preparation for release.

Animals↗

Antibody recognition imaging by force microscopy.

We have developed a method that combines dynamic force microscopy with the simultaneous molecular recognition of an antigen by an antibody, during imaging. A magnetically oscillated atomic force microscopy tip carrying a tethered antibody was scanned over a surface to which lysozyme was bound. By oscillating the probe at an amplitude of only a few nanometers, the antibody was kept in close proximity to the surface, allowing fast and efficient antigen recognition and gentle interaction between tip and sample. Antigenic sites were evident from reduction of the oscillation amplitude, as a result of antibody-antigen recognition during the lateral scan. Lysozyme molecules bound to the surface were recognized by the antibody on the scanning tip with a few nanometers lateral resolution. In principle, any ligand can be tethered to the tip; thus, this technique could potentially be used for nanometer-scale epitope mapping of biomolecules and localizing receptor sites during biological processes.

Antigen-Antibody Reactions↗

Distinct structural requirements for clustering and immobilization of K+ channels by PSD-95.

PDZ-domain-containing proteins such as PSD-95 have been implicated in the targeting and clustering of membrane proteins. Biochemical and immunohistochemical studies indicate that PSD-95 recognizes COOH-terminal S/TXV sequences present in Kv1 K+ channels. However, the effect of binding a PDZ domain on a target protein has not been studied in live cells. In the present study, a green fluorescent protein-Kv1.4 fusion protein is used to study the effect of PSD-95 on channel movement. Fluorescence recovery after photobleaching showed that PSD-95 can immobilize K+ channels in the plasma membrane in an all-or-none manner. Furthermore, time lapse imaging showed that channel clusters formed in the presence of PSD-95 are stable in size, shape, and position. As expected from previous reports, two green fluorescent protein-tagged COOH-terminal variants of Kv1.4, Delta15 and V655A, are not clustered by PSD-95. However, coexpression of PSD-95 with V655A, but not Delta15, leads to the appearance of PSD-95 immunoreactivity in the plasma membrane. Furthermore, fluorescence recovery after photobleaching studies show that V655A channels are immobilized by PSD-95. Thus, V655A channels can interact with PSD-95 in a manner that leads to channel immobilization, but not clustering. These experiments document for the first time that PSD-95 immobilizes target proteins. Additionally, the data presented here demonstrate that the structural requirements for protein clustering and immobilization by PSD-95 are distinct.

Animals↗

[Malignant pheochromocytoma: diagnosis and treatment].

OBJECTIVE: To review the experience with the diagnosis and treatment of malignant pheochromocytoma. METHODS: Between 1986 and 1996, 7 patients with malignant pheochromocytoma were analysed. RESULTS: Compared with benign pheochromocytoma of adrenal gland, the malignant one usually exceeded 7.0 cm in diameter, irregular in shape, invading the surrounding tissue and the normal structure of the effected adrenal gland disappeared. Bleeding and necrotic area were seen in tumor mass, even seemed as a cystic lesion with thick wall. In some patients, blood catecholamine and urine VMA significantly elevated without hypertension. The separating phenomenon and progressive weight loss, accelerated ESR were characteristics of malignant pheochromocytoma. CONCLUSIONS: In some patients with malignant pheochromocytoma, histological findings are not consistent with their biological behaviors. Follow-up studies is mandatory in malignant pheochromocytoma as well as in benign one. Recurrence and/or metastasis after operation often occur in patients with malignant pheochromocytoma. In addition to early diagnosis and surgery, radiotherapy of tumor bed and systematic chemotherapy should be emphasized.

Adrenal Gland Neoplasms↗

[Prevention of postoperative recurrence of bladder cancer: a clinical study].

OBJECTIVE: To lower postoperative recurrence rate of bladder cancer, the prophylactic effects of five kinds of method on bladder cancer were evaluated. METHODS: Between 1982 and 1997, 313 patients after TURBT or partial cystectomy were followed up for 2 to 15 years (average 7.6 years). These patients were divided into six groups: BCG, mitomycin C (MMC), thiotepa, Chinese herb medicine Zhuling (Grifola umbellata pilat), afterloading brachytherapy and control group. The prophylactic effects of them on postoperative recurrence of bladder cancer was evaluated. RESULTS: During the follow-up, the recurrence rates were 35.1% in BCG group, 34.9% in Zhuling group, 41.7% in MMC group, 52.6% in thiotepa group, 64.7% in control group, respectively. 25 high-risk patients with invading or multiple bladder cancer were treated by afterloading brachytherapy. They were followed up from 12 to 42 months, with a recurrence rate being 24.0%. CONCLUSIONS: The prophylactic effect of Zhuling and BCG on bladder cancer recurrence was better than MMC. The vale of thiotepa was not significant. The afterloading brachytherapy was of great vale to invading or recurrent, multiple bladder cancer.

Adult↗

[Phenotypic changes of mandibular condylar cartilage cells during subculture].

OBJECTIVE: To demonstrate the phenotypic changes of mandibular condylar cartilage(MCC) cells during subculture in vitro. METHODS: MCC cells were harvested from human fetus by digestion of collagenase and cultured in DMEM supplemented with 10% newborn calf serum, then they were passaged when reached confluence. Morphological changes were observed under phase-contrast microscope. Type II collagen, proteoglycan synthesis and type I, II and III procollagen mRNA levels were also studied in serial monolayer cultures. RESULTS: During subculture, type II collagen and proteoglycan synthesis were decreased, being accompanied by a lower type II collagen mRNA level. In contrast, type I and III procollagen mRNA levels were elevated progressively. The morphology of polygonal-shaped chondrocytes was lost to the bipolar fibroblastic cells. CONCLUSION: Passage and culture can affect the phenotypic property of MCC cells.

Cells, Cultured↗

[Effects of growth factors on DNA and collagen synthesis of human mandibular condylar cartilage cells].

OBJECTIVE: To investigate the effects of transforming growth factor-beta 1 (TGF-beta 1), insulin-like growth factor-I (IGF-I) and basic fibroblast growth factor(bFGF) on DNA and collagen synthesis of mandibular condylar cartilage(MCC) of human fetus. METHODS: Cell culture, 3H-TdR and 3H-Proline incorporation methods were used. MCC cells were harvested from 4 to 5 months old human fetus. Cells were seeded at 2 x 10(4)/well on 96-well Plate. After synchronization, medium was replaced by DMEM containing 0.4% NCS with various growth factors and concentrations. RESULTS: bFGF stimulated the DNA synthesis significantly, and IGF-I had less effect, while the effect of TGF-beta 1 was insignificant. For collagen synthesis, bFGF caused a dose-dependent increase(60%). A greater effect(98%) was achieved when IGF-1 was added. In contrast, TGF-beta 1 could inhibit collagen synthesis (24%). CONCLUSION: Growth factors play an important part in the proliferation and matrix synthesis of MCC cells, which might be of potential application in treating cartilage destructive lesions.

Cell Division↗