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Biomedical subjects

Hui Shao

Publications and source records attributed to Hui Shao.

At least 19 recordsLinked to original sources

Efficacy and safety of mitapivat in adults with transfusion-dependent α-thalassaemia or β-thalassaemia (ENERGIZE-T): a double-blind, randomised, multicentre, placebo-controlled, phase 3 trial.

BACKGROUND: The absence of disease-modifying therapies for patients with α-thalassaemia and oral disease-modifying therapies for patients with β-thalassaemia has been a substantial unmet need in these patients. We assessed the efficacy and safety of mitapivat, an oral allosteric activator of pyruvate kinase, in adults with transfusion-dependent thalassaemia. METHODS: ENERGIZE-T is a global, double-blind, randomised, placebo-controlled, phase 3 trial, conducted across 19 countries in North America, Europe, Asia-Pacific, South America, and the Middle East. Patients aged 18 years or older with transfusion-dependent α-thalassaemia or β-thalassaemia were randomly allocated (2:1) with a central interactive response technology system, stratified by geographical region and thalassaemia genotype, to receive 100 mg mitapivat or placebo orally twice a day for 48 weeks. The primary endpoint was transfusion reduction response (TRR), defined as a reduction of at least 50% in transfused red blood cell units with a reduction of at least two units in any consecutive 12-week period until week 48 compared with baseline. Efficacy was analysed in the full analysis set, comprising all randomly allocated patients. Type, severity, and relationship of adverse events and serious adverse events were assessed in patients who received at least one dose of study treatment. This study is registered with ClinicalTrials.gov (NCT04770779) and is active but not recruiting. FINDINGS: Between Nov 30, 2021 and May 2, 2023, 305 patients were screened, of whom 258 were randomly allocated (median age 33·5 years [IQR 27·0-44·0]; 136 [53%] female and 122 [47%] male participants). Of 258 patients allocated, 238 (92%) completed the double-blind treatment period. All patients were required to have a safety follow-up approximately 4 weeks after the final dose of study drug, regardless of completion of the double-blind period or continuation into the open-label extension period. In the full analysis set, TRRs occurred in 52 (30%) of 171 patients in the mitapivat group and 11 (13%) of 87 in the placebo group (adjusted difference 18 percentage points [95% CI 8-27]; two-sided p=0·0003). The safety analysis set comprised 172 patients in the mitapivat group (including one patient allocated to the placebo group who received one dose of mitapivat in error) and 85 in the placebo group. Adverse events were reported in 155 (90%) patients treated with mitapivat and 71 (84%) treated with placebo; the most common events with mitapivat were headache, upper respiratory tract infection, initial insomnia, diarrhoea, and fatigue. Serious adverse events were reported in 19 (11%) patients treated with mitapivat and 13 (15%) treated with placebo. Ten (6%) patients who received mitapivat and one (1%) who received placebo discontinued study treatment due to adverse events. No deaths were reported. INTERPRETATION: Mitapivat significantly reduced the transfusion burden and was generally well tolerated, showing a favourable benefit-risk profile. These findings support mitapivat as the first oral disease-modifying therapy for adults with transfusion-dependent α-thalassaemia or β-thalassaemia, providing a new treatment option to reduce transfusion burden in this patient population. FUNDING: Agios Pharmaceuticals, Inc.

Adult↗

The net effect of costimulatory blockers is dependent on the subset and activation status of the autoreactive T cells.

In this study, we investigated whether CD4 and CD8 autoreactive T cells have different costimulatory requirements for their activation in vitro by testing the effect of a panel of Abs specific for various costimulatory molecules. Our results showed that CD8 interphotoreceptor retinoid-binding protein-specific T cells are more dependent on costimulatory molecules for activation than their CD4 counterparts. Interphotoreceptor retinoid-binding protein-specific T cells are less dependent on costimulatory molecules in the secondary response than the primary response. We also showed that blockade of costimulatory molecules can either promote or inhibit the proliferation of autoreactive T cells, depending on the degree of activation of the cells. Our results show that anti-costimulatory molecule treatment can have diverse actions on autoreactive T cell subsets, the net effect being determined by the subset of immune cells affected and the type and dose of treatment used.

Animals↗

Suppressor role of rat CD8+CD45RClow T cells in experimental autoimmune uveitis (EAU).

To determine whether decreased regulatory T cell activity contributes to the pathogenesis of recurrent experimental autoimmune uveitis (EAU), we compared the immunoregulatory activity of CD8+CD45RClow T cells isolated from rats that had recovered from acute EAU with those from rats with the progressive, recurrent disease. Our results showed that CD8+CD45RClow T cells isolated from the recovered rats showed suppressive activity in vitro, whereas those from rats with progressive, recurrent EAU do not. Depletion of CD8+CD45RClow T cells from T cells used for adoptive transfer of EAU increased the pathogenic activity of the T cells. Co-transfer of CD8+CD45RClow T cells with uveitogenic T cells prevented the relapse of disease in the recipient rats. The suppressive CD8+CD45RClow T cells expressed increased levels of Foxp3 after stimulation in vitro with the autoantigen, and inhibited the production of IFN-gamma by autoreactive T cells. Our data indicate that the decreased suppressive activity of CD8+CD45RClow T cells is correlated with disease development in this autoimmune disease. Further studies on the biology of this T cell population should provide much needed insights into disease pathogenesis.

Adoptive Transfer↗

In vitro activation of CD8 interphotoreceptor retinoid-binding protein-specific T cells requires not only antigenic stimulation but also exogenous growth factors.

In a previous study, we demonstrated that immunization with the uveitogenic peptide interphotoreceptor retinoid-binding protein (IRBP) 1-20 induces both CD4 and CD8 uveitogenic T cells in the B6 mouse. In the current study, we determined the role of the CD8 IRBP-specific T cells in the pathogenesis of experimental autoimmune uveitis. We also determined the conditions that facilitated the activation of CD8 autoreactive T cells. Our results showed that the beta2-microglobulin(-/-) mouse had a greatly decreased susceptibility to induction of experimental autoimmune uveitis by adoptive transfer of IRBP-specific T cells from B6 mice. We also showed that unlike CD4 autoreactive T cells, activated CD8 autoreactive T cells produced only a limited number and amounts of growth factors. As a result, in the absence of exogenously supplied growth factor(s), CD8 T cell activation and expansion were aborted. However, the growth and expansion of triggered CD8 autoreactive T cells could be supported by various cytokines. In addition to factors produced by activated CD4 autoreactive T cells, factors produced by nonlymphoid cells, such as IL-7 and IL-15, and unidentified factors in the culture supernatants of astrocytes and retinal pigment epithelial cells support the CD8 autoreactive T cells as well. Finally, we showed that, although several cytokines augmented the CD8 T cell response in vitro, different cytokines appeared to act on different CD8 subsets or on different activation/differentiation phases of CD8 autoreactive T cells. As a result, cytokines, such as IL-7, supported the proliferation and survival of CD8 IRBP-specific T cells, while others had only a growth-promoting effect.

Adoptive Transfer↗

Crystal structure of isoflavone reductase from alfalfa (Medicago sativa L.).

Isoflavonoids play important roles in plant defense and exhibit a range of mammalian health-promoting activities. Isoflavone reductase (IFR) specifically recognizes isoflavones and catalyzes a stereospecific NADPH-dependent reduction to (3R)-isoflavanone. The crystal structure of Medicago sativa IFR with deletion of residues 39-47 has been determined at 1.6A resolution. Structural analysis, molecular modeling and docking, and comparison with the structures of other NADPH-dependent enzymes, defined the putative binding sites for co-factor and substrate and potential key residues for enzyme activity and substrate specificity. Further mutagenesis has confirmed the role of Lys144 as a catalytic residue. This study provides a structural basis for understanding the enzymatic mechanism and substrate specificity of IFRs as well as the functions of IFR-like proteins.

Amino Acid Sequence↗

Blockade of the interaction of leukotriene b4 with its receptor prevents development of autoimmune uveitis.

PURPOSE: To investigate the role of leukotriene B4 (LTB4) and its receptor BLT1 in the pathogenesis of mouse uveitis. METHODS: Experimental autoimmune uveitis (EAU) was induced in B10RIII mice by immunization of interphotoreceptor retinoid binding protein (IRBP; peptide sequence 161-180) or in C57BL/6 (B6) mice by transfer of activated T cells specific for IRBP1-20. The animals were then treated with and without the BLT1 receptor antagonist, CP105696, at the disease onset after immunization or at day 0 or day 6 after T-cell transfer. EAU was also induced in wild-type B6 (WT) and BLT1-deficient (BLT1-/-) mice by reciprocal transfer of the T cells from B6 to BLT1-deficient mice and vise versa. Clinical signs of inflammation and ocular histology were compared. The chemotactic activity of LTB4 on naïve and IRBP-specific autoreactive T cells as well as effector leukocytes was examined. RESULTS: The treatment of CP105696, greatly reduced the intensity of ongoing disease. IRBP1-20-specific T cells derived from wild-type B6 mice induced only mild uveitis in syngeneic BLT1-deficient mice and that IRBP1-20-specific T cells derived from BLT1-/- mice induced milder disease in wild-type B6 mice than those derived from wild-type B6 mice, suggesting that expression of the LTB4 receptor on both activated autoreactive T cells and effector leukocytes was necessary for ocular inflammation to occur. Consistent with these data, transfer of autoreactive T cells from B6 mice to 5-lipoxygenase-deficient (5-LO-/-) mice, which have a functional defect in LTB4 expression, also failed to induce uveitis in the recipient mice. CONCLUSIONS: The results demonstrate a critical role for LTB4 in ocular inflammation and in the development and progression of EAU and suggest a new potential target for therapeutic intervention in this disease.

Adoptive Transfer↗

Crystal structures of a multifunctional triterpene/flavonoid glycosyltransferase from Medicago truncatula.

Glycosylation is a ubiquitous reaction controlling the bioactivity and storage of plant natural products. Glycosylation of small molecules is catalyzed by a superfamily of glycosyltransferases (GTs) in most plant species studied to date. We present crystal structures of the UDP flavonoid/triterpene GT UGT71G1 from Medicago truncatula bound to UDP or UDP-glucose. The structures reveal the key residues involved in the recognition of donor substrate and, by comparison with other GT structures, suggest His-22 as the catalytic base and Asp-121 as a key residue that may assist deprotonation of the acceptor by forming an electron transfer chain with the catalytic base. Mutagenesis confirmed the roles of these key residues in donor substrate binding and enzyme activity. Our results provide an initial structural basis for understanding the complex substrate specificity and regiospecificity underlying the glycosylation of plant natural products and other small molecules. This information will direct future attempts to engineer bioactive compounds in crop plants to improve plant, animal, and human health and to facilitate the rational design of GTs to improve the storage and stability of novel engineered bioactive compounds.

Amino Acids↗

Severe chronic experimental autoimmune uveitis (EAU) of the C57BL/6 mouse induced by adoptive transfer of IRBP1-20-specific T cells.

Experimental autoimmune uveitis (EAU) can be induced in susceptible mice by immunization with retinal antigens. The response to uveitogens is genetically restricted. B10RIII and B10A mouse are highly susceptible to IRBP-induced uveitis, whereas B6 mouse is less susceptible. Immunization to B6 mouse with IRBP only induced very mild disease with low incidence. However, the susceptibility can be enhanced by transferring activated IRBP-specific T cells. In this study, we show that a reproducible and severe uveitis can be induced in B6 mice by adoptive transfer of IRBP-specific T cells. The disease incidence, severity, and duration can be readily controlled by the number and activation status of the injected T cells. Both CD4(+)- and CD8(+) IRBP1-20-specific T cells were identified in vitro IRBP peptide stimulation. In addition, IRBP1-20-specific T cells were consistently detected in recipient mice for up to 2 months, but only detected in the acute phase of the disease in actively immunized mice, indicating that persistency of injected IRBP1-20-specific T cells in recipient B6 mice might be one of the mechanisms causing chronic and severe disease. Giving that a large number of transgenic and KO mice are available in B6 background, an improved uveitis model in B6 mouse should assist the determination of pathogenesis of disease and identify molecules that can be targeted by new therapies.

Acute Disease↗

A shared epitope of the interphotoreceptor retinoid-binding protein recognized by the CD4+ and CD8+ autoreactive T cells.

We previously demonstrated that cultures of rat uveitogenic T cells rapidly become dominated by CD4+ cells, but activation of CD8+ autoreactive T cells also occurred during the in vitro culture of in vivo-primed T cells. In the present study, we show that the commonly used uveitogenic peptide, interphotoreceptor retinoid-binding protein (IRBP) 1-20, generated both CD4+ and CD8+ autoreactive T cells in the C57BL/6 (B6) mouse and that this 20-mer contains at least two distinct antigenic epitopes. To determine whether the CD8 response was Ag-specific and whether CD4+ and CD8+ IRBP1-20-specific T cells recognize distinct antigenic epitopes, we prepared highly purified CD4+ and CD8+ T cells from IRBP1-20-primed mice and tested their proliferative response to a large panel of truncated peptides derived from IRBP1-20. The results showed that both CD4+ and CD8+ T cells recognized the same spectrum of peptides. In addition, peptides P10-18 were found to bind effectively to CD8+ IRBP1-20-specific T cells when complexed with recombinant H-2K(b) and also stimulate the proliferation and cytokine production of CD4+ IRBP1-20-specific T cells. Our results document for the first time that CD8+ and CD4+ autoreactive T cells display characteristic epitope recognition and they both recognize the same core epitope.

Amino Acid Sequence↗

Chronic recurrent autoimmune uveitis with progressive photoreceptor damage induced in rats by transfer of IRBP-specific T cells.

Recurrent uveitis is a common cause of vision blindness. Using a rat model of chronic recurrent uveitis, we examined the relationship between clinical expression, pathological changes, and the heterogeneity of the disease. Chronic recurrent uveitis was induced by adoptive transfer of interphotoreceptor retinoid-binding protein (IRBP)-specific T cells in a total of more than 60 Lewis rats. In about 75% of cases recurrent uveitis was pathologically a chronic and progressive disease. The major pathological changes included the gradual loss of photoreceptor cells. However, disease progression did not always parallel the severity of ocular inflammation and clinical recurrent disease, with about a quarter showing no pathological damage in the eye.

Adoptive Transfer↗

Anti-CD137 mAb treatment inhibits experimental autoimmune uveitis by limiting expansion and increasing apoptotic death of uveitogenic T cells.

PURPOSE: To explore the role of CD137 in the pathogenesis of experimental autoimmune uveitis (EAU) and to compare the inhibitory mechanism of anti-CD137 mAb with other costimulatory blockers. METHODS: EAU was induced in B10RIII mice, either by immunization with a uveitogenic peptide, IRBP161-180, derived from the interphotoreceptor retinoid-binding protein, or by adoptive transfer of IRBP161-180-specific T cells. The effect of an agonistic anti-CD137 mAb (2A) on the in vivo induction of disease was studied. Subsequently, the mechanism by which anti-CD137 mAb inhibits uveitogenic T-cell activation was investigated, by using the adoptive transfer of T cells derived from anti-CD137 mAb-treated mice, and in vitro, using the proliferative response and apoptotic cell death of IRBP-specific T cells from anti-CD137 mAb-treated mice. RESULTS: Administration of anti-CD137 mAb prevented the development of de novo induced uveitis, but not that induced by adoptive transfer of pathogenic T cells. Furthermore, anti-CD137 mAb treatment of the animals resulted in decreased expansion of uveitogenic T cells, accompanied by increased activated cell death and resistance to reinduction of uveitis. CONCLUSIONS: CD137 plays a critical role in the induction, rather than the effector, phase of the disease. Different costimulatory molecules have different effects on the activation of autoreactive T cells by acting in different phases of T-cell activation.

Adoptive Transfer↗

[Screen for the position in influx of airflow of esophageal voice and the study of the new voice way].

OBJECTIVE: To discuss the best position of the prosthesis after total laryngectomy and the possible way to improve. METHOD: Thirty-three patients with vocal prosthesis after total laryngectomy through April 1994 and July 2004 were selected. Among them, 10 cases were selected from 12 nonspeakers were defined as the experiment group; 10 cases with the same gender and nationality and closed occupation, age, the type of pathology,ways of the operation were selected from the rest cases who had got voice as the contrasted group. And intraesophageal pressure measurements, esophageal insufflation testing, esophageal barium solution x-ray, laryngofiberscopy were performed. Paired-samples t-test was adopted. RESULT: The distances from nostril to the entrance of esophagus, the best vocal position and the level of vocal prosthesis have no significant difference between two groups. The esophageal insufflation testing showed there was no one case got the voice in the experiment group and there were 7 cases got voice in the contrasted group. The best voice position of the experiment group were at 3.6 cm above the prosthesis, and the contrasted group were at 2 cm above the prosthesis. The pressure of superior esophagus suggested that the pressure of 1 cm below the entrance of esophagus and 2 cm below the prosthesis were lower and there were no significant difference (P > 0.05) between two groups, but the pressures of the level of prosthesis were higher and there were significant difference (P < 0.01) between them. CONCLUSION: The pressure at the level of the prosthesis in experiment group were more higher than the contrasted group was the main factors for failure to get voice. The best voice position could be found in both groups below the entrance of the esophagus, and below it was the level of the prosthesis with the highest pressure which could effectively prevent the air from flowing into the stomach. Allow the air flow into the position by operations and the reform of the prosthesis could solve the problem of could not get the voice and improve the rate of success to get voice.

Adult↗

Characterization of rat CD8+ uveitogenic T cells specific for interphotoreceptor retinal-binding protein 1177-1191.

The uveitogenic T cells that mediate experimental autoimmune uveitis are commonly assumed to be exclusively CD4(+). In the present study, we showed that, although a panel of long-term cultured rat uveitogenic T cell lines specific for the interphotoreceptor retinal-binding protein peptide, R16, all expressed CD4, approximately 40% of the R16-specific uveitogenic T cells freshly prepared from Ag-immunized rats were CD8(+)alphabetaTCR(+), as demonstrated by CFSE staining. We showed that the expansion of these CD8(+)alphabetaTCR(+) T cells was Ag-specific and that highly purified CD8(+) R16-specific T cells were able to induce uveitis on transfusion into naive rats. Moreover, CD8(+) uveitogenic T cells more readily switched phenotype from, and to, TCR(-)CD8(-)CD4(-) during in vivo or in vitro activation compared with their CD4(+) counterparts. In a previous study, we showed that highly purified CD8(+) myelin oligodendrocyte glycoprotein-specific T cells induced more severe autoimmune encephalomyelitis than the corresponding CD4(+) T cells. In this study, we show that an interphotoreceptor retinal-binding protein peptide consistently activated a high proportion of CD8(+)alphabetaTCR(+) T cells, which were uveitogenic in Lewis rats.

Adoptive Transfer↗

Myelin/oligodendrocyte glycoprotein-specific T-cells induce severe optic neuritis in the C57BL/6 mouse.

PURPOSE: The optic nerve is a common site of tissue damage in multiple sclerosis (MS) and experimental autoimmune encephalomyelitis (EAE). To determine the relationship between optic neuritis (ON) and EAE, we examined the incidence of ON in C57BL/6 (B6) mice immunized with a myelin oligodendrocyte/glycoprotein (MOG)-derived peptide or injected with MOG-specific T cells, which are known to induce EAE. METHODS: Mice were immunized with MOG35-55 or MOG40-54 peptides emulsified in complete Freund's adjuvant (CFA). Pertussis toxin (PTX) was injected intraperitoneally 1 day before and after immunization. For disease induction by adoptive transfer of primed cells, donor C57BL/6 mice were received with T-cell blasts (1-6 x 10(6)/mouse). Both EAE and ON were observed by either clinical signs or histology. RESULTS: ON developed in a high proportion of B6 mice treated with either protocol. The most severe inflammation was observed in the adoptively transferred mice. The induced ON was most frequently bilateral. In either actively or adoptively transferred diseases, both association and dissociation of EAE and ON was observed. CONCLUSIONS: Different MOG-specific T-cell subsets might be involved in the pathogenesis of EAE and ON. A better understanding of the pathogenesis of ON after induction by MOG may have important diagnostic and therapeutic implications.

Adoptive Transfer↗

Conversion of monophasic to recurrent autoimmune disease by autoreactive T cell subsets.

Autoimmune uveitis has been elicited in susceptible rodents by several ocular-specific Ags. In most of these animal models the induced uveitis is acute and monophasic. Because recurrent uveitis poses the highest risk for blinding ocular complications in human disease, a spontaneous relapsing animal model would be most helpful in understanding the disease pathogenesis. In our current study we have observed that the adoptive transfer of interphotoreceptor retinoid-binding protein residues 1177-1191-specific T cells to naive Lewis rats induced a chronic relapsing disease, in contrast to the monophasic disease induced by immunization with interphotoreceptor retinoid-binding protein residues 1177-1191 emulsified in CFA. The chronic relapsing uveitis induced by autoreactive T cell subsets is dependent on the number of autoreactive T cells generated as well as their activation status. Our study documented a spontaneous model of recurrent uveitis in the rat, which should assist us in the study of disease pathogenesis and the design of specific therapy.

Adoptive Transfer↗

CpG-containing oligodeoxynucleotide 1826 converts the weak uveitogenic rat interphotoreceptor retinoid-binding protein peptide 1181-1191 into a strong uveitogen.

Aberrant activation of autoreactive T cells is one of the major causes of autoimmune disease. Autoantigens are sequestered and in many cases weak immunogens. For example, in experimental autoimmune uveitis, immunization of naive rats with autologous interphotoreceptor retinoid-binding protein (IRBP) fails to induce intraocular inflammation or a strong T cell response, whereas bovine IRBP is a strong inducer of experimental autoimmune uveitis. Such observations challenge the view that the autoantigen alone is responsible for the development of autoimmunity. Here, we demonstrate that autologous rat IRBP is converted to a strong immunogen in the presence of a small dose of CpG-containing oligodeoxynucleotides. Our results indicate that specific CpG-containing oligodeoxynucleotides may play an important role in the activation and expansion of autoreactive T cells in vivo, leading to autoimmune disease.

Adjuvants, Immunologic↗

Lymphotoxin beta receptor-Ig fusion protein treatment blocks actively induced, but not adoptively transferred, uveitis in Lewis rats.

Previous studies have shown that treatment of rodents with a lymphotoxin (LT) beta receptor-Ig fusion protein (LTbetaR-Ig), which binds to both LT and LIGHT, prevents the development of autoimmune diseases, but the mechanism involved is unclear. To explore the potential role of LT or LIGHT in the pathogenesis of autoimmune uveitis, uveitis was induced in Lewis rats either by immunization with an uveitogenic peptide, R16, derived from the interphotoreceptor retinoid-binding protein, or by adoptive transfer of R16-specific T cells. Interestingly, LTbetaR-Ig treatment completely prevented actively induced uveitis, but not the adoptively transferred disease. We also show that LTbetaR-Ig-treated R16-injected rats had a significantly decreased T cell response to R16 and that herpesvirus entry mediator (HVEM)-Ig, a fusion protein that blocks LIGHT, also inhibited disease development. Our results suggest that LT or LIGHT plays a critical role in the induction, rather than the effector, phase of the disease.

Adoptive Transfer↗

Retinal pigment epithelial cells activate uveitogenic T cells when they express high levels of MHC class II molecules, but inhibit T cell activation when they express restricted levels.

The retinal pigment epithelium (RPE) plays an important role in maintaining the privileged status of the eye. In this study, we examined the outcome of the in vitro interaction between uveitogenic T cells and non-activated or activated RPE cells. An interphotoreceptor retinoid-binding protein (IRBP)-reactive T cell line was established and RPE cell monolayers prepared. The expression of MHC class II molecules on RPE cells activated by graded doses of IFN-gamma was determined by flow cytometry. Proliferation and cytokine production of IRBP-reactive T cells were measured after exposure to IFN-gamma-activated RPE cells. We found that RPE cells expressed various levels of MHC class II molecules depending on the concentration of IFN-gamma used. IRBP-specific T cells could be stimulated or inhibited by exposure to RPE cells. The dual effect of RPE cells might be regulated via different levels of MHC class II molecules on the RPE cells. It suggests that controlling the immune activities of uveitogeneic T cells by varying the levels of MHC class II expression on the RPE might be one of the regulatory mechanisms by which the RPE maintains immune privilege in the eye.

Animals↗