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1.
Front Immunol ; 13: 980462, 2022.
Article in English | MEDLINE | ID: mdl-36793549

ABSTRACT

Ischemia-reperfusion injury (IRI) amplifies T cell alloimmune responses after transplantation with thrombin playing a key pro-inflammatory role. To explore the influence of thrombin on regulatory T cell recruitment and efficacy we used a well-established model of IRI in the native murine kidney. Administration of the cytotopic thrombin inhibitor PTL060 inhibited IRI, and by skewing expression of chemokines (reducing CCL2 and CCL3 but increasing CCL17 and CCL22) increased the infiltration of M2 macrophages and Tregs. When PTL060 was combined with infusion of additional Tregs, these effects were further amplified. To test the benefits of thrombin inhibition in a transplant model, BALB/c hearts were transplanted into B6 mice with or without perfusion with PTL060 in combination with Tregs. Thrombin inhibition or Treg infusion alone led to small increments in allograft survival. However, the combined therapy led to modest graft prolongation by the same mechanisms as in renal IRI; graft survival was accompanied by increased numbers of Tregs and anti-inflammatory macrophages, and reduced expression of pro-inflammatory cytokines. While the grafts succumbed to rejection associated with the emergence of alloantibody, these data suggest that thrombin inhibition within the transplant vasculature enhances the efficacy of Treg infusion, a therapy that is currently entering the clinic to promote transplant tolerance.


Subject(s)
T-Lymphocytes, Regulatory , Thrombin , Mice , Animals , Thrombin/pharmacology , Kidney , Endothelium , Allografts
2.
Cytotherapy ; 22(9): 482-485, 2020 09.
Article in English | MEDLINE | ID: mdl-32425691

ABSTRACT

STATEMENT: The International Society for Cellular and Gene Therapies (ISCT) and the International Society for Extracellular Vesicles (ISEV) recognize the potential of extracellular vesicles (EVs, including exosomes) from mesenchymal stromal cells (MSCs) and possibly other cell sources as treatments for COVID-19. Research and trials in this area are encouraged. However, ISEV and ISCT do not currently endorse the use of EVs or exosomes for any purpose in COVID-19, including but not limited to reducing cytokine storm, exerting regenerative effects or delivering drugs, pending the generation of appropriate manufacturing and quality control provisions, pre-clinical safety and efficacy data, rational clinical trial design and proper regulatory oversight.


Subject(s)
Extracellular Vesicles , Mesenchymal Stem Cells/cytology , Coronavirus Infections/drug therapy , Coronavirus Infections/immunology , Exosomes/transplantation , Extracellular Vesicles/transplantation , Humans , Societies, Scientific , COVID-19 Drug Treatment
3.
J Immunol Methods ; 483: 112794, 2020 08.
Article in English | MEDLINE | ID: mdl-32428450

ABSTRACT

A commonly employed method to determine the function of a particular cell population and to assess its contribution to the overall system in vivo is to selectively deplete that population and observe the effects. Using monoclonal antibodies to deliver toxins to target cells can achieve this with a high degree of efficiency. Here, we describe an in vivo model combining the use of immunotoxins and multidrug resistant (MDR) gene deficient mice so that only MDR deficient cells expressing the target molecule would be depleted while target molecule expressing, but MDR sufficient, cells are spared. This allows targeted depletion at a higher degree of specificity than has been previously achieved. We have applied this technique to study trogocytosis, the intercellular transfer of cell surface molecules, but this principle could also be adapted using technology already available for use in other fields of study.


Subject(s)
ATP Binding Cassette Transporter, Subfamily B, Member 1/metabolism , Cytotoxicity, Immunologic/drug effects , Genes, MDR/physiology , Immunotoxins/toxicity , Lymphocyte Depletion/methods , ATP Binding Cassette Transporter, Subfamily B/deficiency , ATP Binding Cassette Transporter, Subfamily B/genetics , ATP Binding Cassette Transporter, Subfamily G, Member 2/deficiency , ATP Binding Cassette Transporter, Subfamily G, Member 2/genetics , Animals , Female , Graft Survival/drug effects , Heart Transplantation , Histocompatibility Antigens Class II/immunology , Immunoconjugates/toxicity , Immunoglobulin Fab Fragments/toxicity , Kidney Transplantation , Mice, Inbred C57BL , Mice, Inbred CBA , Mice, Knockout , Ribosome Inactivating Proteins, Type 1/toxicity , Spleen/drug effects , Spleen/immunology , Spleen/pathology , Transplantation Tolerance/drug effects
4.
Exp Clin Transplant ; 17(3): 330-338, 2019 06.
Article in English | MEDLINE | ID: mdl-30880652

ABSTRACT

OBJECTIVES: Tertiary lymphoid organs are formed at sites of chronic inflammation and are thought to contribute to the immune response. Here, we aimed to characterize the structure and function of tertiary lymphoid organs in a model of murine kidney allotransplant to understand their role in alloimmunity. MATERIALS AND METHODS: We transplanted 4 C57BL/6 mouse kidneys (isograft group) and 17 DBA/2 mouse kidneys into C57BL/6 mouse recipients. Three DBA/2-to-C57BL/6 transplant mice that rejected their grafts acutely (before 10 days posttransplant) were excluded from the study. The 14 surviving DAB2 grafts were retrieved at day 45 posttransplant and evaluated histologically. The presence of antibody-secreting cells and circulating levels of donor-specific antibodies were also evaluated. RESULTS: We found that tertiary lymphoid organs can be associated with a beneficial response in a kidney allotransplant model. Characterization of B-cell subsets within tertiary lymphoid organs in mouse kidney allografts revealed naive, plasma, and memory B cells, which were mostly grouped within or in close proximity of tertiary lymphoid organs. Staining for intracellular immunoglobulin G showed that many of the B cells within tertiary lymphoid organs were capable of producing antibodies. Although allospecific antibodies were found in the serum of recipient mice and were deposited in the transplanted kidneys, graft function was not affected in this model. CONCLUSIONS: B cells within tertiary lymphoid organs are functional and contribute to the humoral arm of the alloresponse. However, tertiary lymphoid organs are not necessarily associated with graft rejection, suggesting that protective mechanisms are at play.


Subject(s)
Allografts/immunology , B-Lymphocytes/immunology , Immunity, Humoral , Kidney Transplantation , Tertiary Lymphoid Structures/immunology , Animals , Male , Mice , Mice, Inbred C57BL , Mice, Inbred DBA
5.
Circulation ; 137(5): 488-503, 2018 01 30.
Article in English | MEDLINE | ID: mdl-28775077

ABSTRACT

BACKGROUND: Cardiac transplantation is an excellent treatment for end-stage heart disease. However, rejection of the donor graft, in particular, by chronic rejection leading to cardiac allograft vasculopathy, remains a major cause of graft loss. The lymphatic system plays a crucial role in the alloimmune response, facilitating trafficking of antigen-presenting cells to draining lymph nodes. The encounter of antigen-presenting cells with T lymphocytes in secondary lymphoid organs is essential for the initiation of alloimmunity. Donor lymphatic vessels are not anastomosed to that of the recipient during transplantation. The pathophysiology of lymphatic disruption is unknown, and whether this disruption enhances or hinders the alloimmune responses is unclear. Although histological analysis of lymphatic vessels in donor grafts can yield information on the structure of the lymphatics, the function following cardiac transplantation is poorly understood. METHODS: Using single-photon emission computed tomography/computed tomography lymphoscintigraphy, we quantified the lymphatic flow index following heterotrophic cardiac transplantation in a murine model of chronic rejection. RESULTS: Ten weeks following transplantation of a minor antigen (HY) sex-mismatched heart graft, the lymphatic flow index was significantly increased in comparison with sex-matched controls. Furthermore, the enhanced lymphatic flow index correlated with an increase in donor cells in the mediastinal draining lymph nodes; increased lymphatic vessel area; and graft infiltration of CD4+, CD8+ T cells, and CD68+ macrophages. CONCLUSIONS: Chronic rejection results in increased lymphatic flow from the donor graft to draining lymph nodes, which may be a factor in promoting cellular trafficking, alloimmunity, and cardiac allograft vasculopathy.


Subject(s)
Cell Movement , Graft Rejection/immunology , Heart Transplantation , Lymph/immunology , Lymphatic Vessels/immunology , Allografts , Animals , Chronic Disease , Disease Models, Animal , Female , Graft Rejection/diagnostic imaging , Graft Rejection/pathology , Graft Survival , H-2 Antigens/genetics , H-2 Antigens/immunology , Histocompatibility , Lymphangiogenesis , Lymphatic Vessels/diagnostic imaging , Lymphatic Vessels/pathology , Lymphoscintigraphy/methods , Male , Mice , Mice, Inbred C57BL , Mice, Transgenic , Single Photon Emission Computed Tomography Computed Tomography , Time Factors
6.
J Tissue Eng Regen Med ; 10(1): E23-33, 2016 Jan.
Article in English | MEDLINE | ID: mdl-23894134

ABSTRACT

The aim of this study was to decellularize a 30 cm long segment of porcine small intestine, determine its in vivo behaviour and assess the type of immunological reaction it induces in a quantitative manner. A segment of porcine ileum up to 30 cm long, together with its attached vasculature, was decellularized via its mesenteric arcade as a single entity. The quality of the acellular scaffold was assessed histologically and using molecular tools. The host response to the scaffold was evaluated in a rodent model. Stereological techniques were incorporated into quantitative analysis of the phenotype of the macrophages infiltrating the scaffold in vivo. Lengths of ileal scaffold, together with its attached vasculature, were successfully decellularized, with no evidence of intact cells and DNA or collagen and GAGs overdegradation. Analysis of explants harvested over 2 months postimplantation revealed full-thickness recellularization and no signs of foreign body or immune reactions. Macrophage profiling proved that between weeks 4 and 8 in vivo there was a switch from an M1 (pro-inflammatory) to an M2 (pro-remodelling) type of response. We show here that the decellularization process results in a biocompatible and non-toxic matrix that upon implantation triggers cellular infiltration and angiogenesis, primarily characterized by a pro-remodelling type of mononuclear response, without inducing foreign body reaction or fibrosis.


Subject(s)
Biocompatible Materials/pharmacology , Intestine, Small/cytology , Animals , Cell Adhesion/drug effects , Cell Count , Cell Proliferation/drug effects , DNA/metabolism , Glycosaminoglycans/metabolism , Immunohistochemistry , Implants, Experimental , Macrophages/drug effects , Macrophages/metabolism , Perfusion , Staining and Labeling , Sus scrofa , Tissue Scaffolds/chemistry
7.
J Tissue Eng Regen Med ; 10(2): 140-8, 2016 Feb.
Article in English | MEDLINE | ID: mdl-23554406

ABSTRACT

Biologically derived scaffolds are becoming viable treatment options for tissue/organ repair and regeneration. A continuing hurdle is the need for a functional blood supply to and from the implanted scaffold. We have addressed this problem by constructing an acellular ileal scaffold with an attached vascular network suitable for implantation and immediate reperfusion with the host's blood. Using a vascular perfusion approach, a segment of porcine ileum up to 30 cm long, together with its attached vasculature, was decellularized as a single entity. The quality of the decellularized scaffold was assessed histologically and using molecular tools. To establish vascular perfusion potentials of the scaffold, a right-sided nephrectomy and end-to-end anastomosis of the decellularized scaffold's vasculature to a renal artery and vein were performed in a pig of similar size to the donor animal. Lengths of ileal scaffold, together with its attached vasculature, were successfully decellularized, with no evidence of intact cells/nuclear material or collagen degradation. The scaffold's decellularized vascular network demonstrated optimum perfusion at 1, 2 and 24 h post-implantation and the mesenteric arcade remained patent throughout the assessment. The 1, 2 and 24 h explanted scaffolds demonstrated signs of cellular attachment, with cells positive for CD68 and CD133 on the vascular luminal aspect. It is possible to decellularize clinically relevant lengths of small intestine, together with the associated vasculature, as a single segment. The functional vascular network may represent a route for recellularization for future regeneration of bowel tissue for patients with short bowel syndrome.


Subject(s)
Allografts/physiology , Prosthesis Implantation , Tissue Scaffolds/chemistry , Allografts/cytology , Animals , Blood Coagulation , Immunohistochemistry , Sus scrofa , Tissue Engineering/methods
8.
Transpl Immunol ; 32(1): 40-5, 2015 Jan.
Article in English | MEDLINE | ID: mdl-25460809

ABSTRACT

BACKGROUND: After inflammatory stimulus, mast cells (MC) migrate to secondary lymphoid organs contributing to adaptive immune response. There is growing evidence that MC also contribute to transplant tolerance, but little is known about MC kinetics in the setting of transplant tolerance and rejection. Likewise it has been demonstrated that complement split products, which are known to act as chemoattractants for MC, are necessary for transplant tolerance. METHODS: Naive skin and lymph nodes, skin grafts and draining lymph nodes from wild type and complement deficient mice treated with a tolerogenic protocol were analyzed. RESULTS: Early after tolerance induction MC leave the graft and migrate to the draining lymph nodes. After this initial efflux, MC reappear in tolerant skin grafts in numbers exceeding that of naive skin. MC density in draining lymph nodes obtained from tolerant mice also increased post transplant. There was no difference in MC density, migration and degranulation status between wild type and complement deficient mice implicating that chemotaxis is not disturbed in complement deficient mice. CONCLUSION: This study gives detailed insight in kinetics of MC migration during transplant tolerance induction and rejection providing further evidence for a role of MC in transplant tolerance.


Subject(s)
Cell Degranulation/immunology , Cell Movement/immunology , Graft Rejection/immunology , Mast Cells/immunology , Skin Transplantation , Allografts , Animals , Graft Rejection/pathology , Graft Rejection/prevention & control , Mast Cells/pathology , Mice , Mice, Knockout , Transplantation Tolerance
9.
J Exp Bot ; 58(15-16): 4307-17, 2007.
Article in English | MEDLINE | ID: mdl-18182433

ABSTRACT

The balance between antioxidants, such as ascorbate (ASC) and glutathione, and oxidative reactive oxygen species (ROS) is known to play a pivotal role in the response of plant cells to abiotic stress. Here cell cultures of Arabidopsis thaliana were investigated with regard to their response to elevated levels of cadmium. At concentrations <100 microM, Cd induces a rapid and concentration-dependent H(2)O(2) accumulation. This response could be inhibited by diphenylene iodonium (DPI, 20 microM). Reverse transcription-PCR analysis of three RBOH (respiratory burst oxidase homologues) genes showed an increased transcription of RBOHF after 15 min. No change in ASC concentration was observed during the first 3 h after Cd addition. In contrast, glutathione levels completely diminished within 1 h. This drop could be attributed to an increase in phytochelatin 4. At the plasma membrane, Cd further induced a significant decrease in dehydroascorbate (DHA) uptake activity (up to 90% inhibition after 4 h). This decrease is not present when cells are treated with LaCl(3) before exposure to CdCl(2). LaCl(3) is a typical inhibitor of Ca channels and prevents Cd uptake in these cells as well as the Cd-induced ROS production. Therefore, these results appear to indicate that Cd uptake is a prerequisite for the change in DHA transport activity. However, DPI did not prevent the drop in DHA uptake activity present in Cd-treated Arabidopsis cells, indicating that this response seems to be independent of the Cd-induced H(2)O(2) production.


Subject(s)
Arabidopsis/drug effects , Cadmium/pharmacology , Dehydroascorbic Acid/metabolism , Hydrogen Peroxide/metabolism , Arabidopsis/metabolism , Ascorbic Acid/metabolism , Cadmium/metabolism , Cadmium Chloride/pharmacology , Cell Membrane/metabolism , Cells, Cultured , Enzyme Inhibitors/pharmacology , Glutathione/metabolism , Lanthanum/pharmacology , Onium Compounds/pharmacology , Phytochelatins/metabolism
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