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result(s) for
"Graft Rejection - metabolism"
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Use of the Tissue Common Rejection Module Score in Kidney Transplant as an Objective Measure of Allograft Inflammation
by
Sarwal, Reuben
,
Morales Buenrostro, Luis E.
,
Aguilar-Frasco, Jorge L.
in
acute rejection
,
Allografts
,
Allografts - immunology
2021
Long-term kidney transplant (KT) allograft outcomes have not improved as expected despite a better understanding of rejection and improved immunosuppression. Previous work had validated a computed rejection score, the tissue common rejection module (tCRM), measured by amplification-based assessment of 11 genes from formalin-fixed paraffin-embedded (FFPE) biopsy specimens, which allows for quantitative, unbiased assessment of immune injury. We applied tCRM in a prospective trial of 124 KT recipients, and contrasted assessment by tCRM and histology reads from 2 independent pathologists on protocol and cause biopsies post-transplant. Four 10-μm shaves from FFPE biopsy specimens were used for RNA extraction and amplification by qPCR of the 11 tCRM genes, from which the tCRM score was calculated. Biopsy diagnoses of either acute rejection (AR) or borderline rejection (BL) were considered to have inflammation present, while stable biopsies had no inflammation. Of the 77 biopsies that were read by both pathologists, a total of 40 mismatches in the diagnosis were present. The median tCRM scores for AR, BL, and stable diagnoses were 4.87, 1.85, and 1.27, respectively, with an overall significant difference among all histologic groups (Kruskal-Wallis, p < 0.0001 ) . There were significant differences in tCRM scores between pathologists both finding inflammation vs. disagreement (p = 0.003), and both finding inflammation vs. both finding no inflammation (p < 0.001), along with overall significance between all scores (Kruskal-Wallis, p < 0.001). A logistic regression model predicting graft inflammation using various clinical predictor variables and tCRM revealed the tCRM score as the only significant predictor of graft inflammation (OR: 1.90, 95% CI: 1.40–2.68, p < 0.0001). Accurate, quantitative, and unbiased assessment of rejection of the clinical sample is critical. Given the discrepant diagnoses between pathologists on the same samples, individuals could utilize the tCRM score as a tiebreaker in unclear situations. We propose that the tCRM quantitative score can provide unbiased quantification of graft inflammation, and its rapid evaluation by PCR on the FFPE shave can become a critical adjunct to help drive clinical decision making and immunosuppression delivery.
Journal Article
Bioequivalence between innovator and generic tacrolimus in liver and kidney transplant recipients: A randomized, crossover clinical trial
2017
Although the generic drug approval process has a long-term successful track record, concerns remain for approval of narrow therapeutic index generic immunosuppressants, such as tacrolimus, in transplant recipients. Several professional transplant societies and publications have generated skepticism of the generic approval process. Three major areas of concern are that the pharmacokinetic properties of generic products and the innovator (that is, \"brand\") product in healthy volunteers may not reflect those in transplant recipients, bioequivalence between generic and innovator may not ensure bioequivalence between generics, and high-risk patients may have specific bioequivalence concerns. Such concerns have been fueled by anecdotal observations and retrospective and uncontrolled published studies, while well-designed, controlled prospective studies testing the validity of the regulatory bioequivalence testing approach for narrow therapeutic index immunosuppressants in transplant recipients have been lacking. Thus, the present study prospectively assesses bioequivalence between innovator tacrolimus and 2 generics in individuals with a kidney or liver transplant.
From December 2013 through October 2014, a prospective, replicate dosing, partially blinded, randomized, 3-treatment, 6-period crossover bioequivalence study was conducted at the University of Cincinnati in individuals with a kidney (n = 35) or liver transplant (n = 36). Abbreviated New Drug Applications (ANDA) data that included manufacturing and healthy individual pharmacokinetic data for all generics were evaluated to select the 2 most disparate generics from innovator, and these were named Generic Hi and Generic Lo. During the 8-week study period, pharmacokinetic studies assessed the bioequivalence of Generic Hi and Generic Lo with the Innovator tacrolimus and with each other. Bioequivalence of the major tacrolimus metabolite was also assessed. All products fell within the US Food and Drug Administration (FDA) average bioequivalence (ABE) acceptance criteria of a 90% confidence interval contained within the confidence limits of 80.00% and 125.00%. Within-subject variability was similar for the area under the curve (AUC) (range 12.11-15.81) and the concentration maximum (Cmax) (range 17.96-24.72) for all products. The within-subject variability was utilized to calculate the scaled average bioequivalence (SCABE) 90% confidence interval. The calculated SCABE 90% confidence interval was 84.65%-118.13% and 80.00%-125.00% for AUC and Cmax, respectively. The more stringent SCABE acceptance criteria were met for all product comparisons for AUC and Cmax in both individuals with a kidney transplant and those with a liver transplant. European Medicines Agency (EMA) acceptance criteria for narrow therapeutic index drugs were also met, with the only exception being in the case of Brand versus Generic Lo, in which the upper limits of the 90% confidence intervals were 111.30% (kidney) and 112.12% (liver). These were only slightly above the upper EMA acceptance criteria limit for an AUC of 111.11%. SCABE criteria were also met for the major tacrolimus metabolite 13-O-desmethyl tacrolimus for AUC, but it failed the EMA criterion. No acute rejections, no differences in renal function in all individuals, and no differences in liver function were observed in individuals with a liver transplant using the Tukey honest significant difference (HSD) test for multiple comparisons. Fifty-two percent and 65% of all individuals with a kidney or liver transplant, respectively, reported an adverse event. The Exact McNemar test for paired categorical data with adjustments for multiple comparisons was used to compare adverse event rates among the products. No statistically significant differences among any pairs of products were found for any adverse event code or for adverse events overall. Limitations of this study include that the observations were made under strictly controlled conditions that did not allow for the impact of nonadherence or feeding on the possible pharmacokinetic differences. Generic Hi and Lo were selected based upon bioequivalence data in healthy volunteers because no pharmacokinetic data in recipients were available for all products. The safety data should be interpreted in light of the small number of participants and the short observation periods. Lastly, only the 1 mg tacrolimus strength was utilized in this study.
Using an innovative, controlled bioequivalence study design, we observed equivalence between tacrolimus innovator and 2 generic products as well as between 2 generic products in individuals after kidney or liver transplantation following current FDA bioequivalence metrics. These results support the position that bioequivalence for the narrow therapeutic index drug tacrolimus translates from healthy volunteers to individuals receiving a kidney or liver transplant and provides evidence that generic products that are bioequivalent with the innovator product are also bioequivalent to each other.
ClinicalTrials.gov NCT01889758.
Journal Article
Quantitative sodium MR imaging of native versus transplanted kidneys using a dual-tuned proton/sodium (1H/23Na) coil: initial experience
2014
Objectives
To compare sodium (
23
Na) characteristics between native and transplanted kidneys using dual-tuned proton (
1
H)/sodium MRI.
Methods
Six healthy volunteers and six renal transplant patients (3 normal function, 3 acute allograft rejection) were included. Proton/sodium MRI was obtained at 3 T using a dual-tuned coil. Signal to noise ratio (SNR), sodium concentration ([
23
Na]) and cortico-medullary sodium gradient (CMSG) were measured. Reproducibility of [
23
Na] measurement was also tested. SNR, [
23
Na] and CMSG of the native and transplanted kidneys were compared.
Results
Proton and sodium images of kidneys were successfully acquired. SNR and [
23
Na] measurements of the native kidneys were reproducible at two different sessions. [
23
Na] and CMSG of the transplanted kidneys was significantly lower than those of the native kidneys: 153.5 ± 11.9 vs. 192.9 ± 9.6 mM (
P
= 0.002) and 8.9 ± 1.5 vs. 10.5 ± 0.9 mM/mm (
P
= 0.041), respectively. [
23
Na] and CMSG of the transplanted kidneys with normal function vs. acute rejection were not statistically different.
Conclusions
Sodium quantification of kidneys was reliably performed using proton/sodium MRI. [
23
Na] and CMSG of the transplanted kidneys were lower than those of the native kidneys, but without a statistically significant difference between patients with or without renal allograft rejection.
Key Points
•
Dual-tuned proton/sodium RF coil enables co-registered proton and sodium MRI
.
•
Structural and sodium biochemical property can be acquired by dual-tuned proton/sodium MRI
.
•
Sodium and sodium gradient of kidneys can be measured by dual-tuned MRI
.
•
Sodium concentration was lower in transplanted kidneys than in native kidneys
.
•
Sodium gradient of transplanted kidneys was lower than for native kidneys
.
Journal Article
Current target ranges of mycophenolic acid exposure and drug-related adverse events: A 5-year, open-label, prospective, clinical follow-up study in renal allograft recipients
by
de Loor, Henriette
,
Halewijck, Evelyne
,
Kuypers, Dirk R.J.
in
Acids
,
Anemia - blood
,
Anemia - chemically induced
2008
Background: Two recent randomized clinical trials—Fixed Dose Versus Concentration Controlled and the Apomygre—evaluating the benefit of therapeutic drug monitoring of mycophenolate mofetil (MMF) in renal allograft recipients reported conflicting results. In both studies, target mycophenolic acid (MPA) AUC
0-14;12h ranges (ie, values used to guide MMF dosing) were derived from a previous study establishing target MPA AUC
0-12h ranges in cyclosporine-treated patients between 30 and 60 mg/L . h
-1. Both studies found an association between MPA exposure and acute rejection. However, only one of the studies found concentrationcontrolled MMF dosing to be significantly associated with less biopsy-proven acute-rejection episodes compared with fixed dosing. No reduced incidence of MMF-related adverse events (AEs) was observed in either of the 2 trials when MMF concentration-controlled and fixed dosing were compared.
Objective: The aim of this study was to assess the clinical utility of target MPA AUC
0-12h ranges between 30 and 60 mg/L . h
-1 in associating drug exposure with AEs within different time windows after transplantation, thereby identifying patients at increased risk for MMF-related AEs. The effects of single nucleotide polymorphisms (SNPs) of the uridine glucuronosyltransferase 1A9 (UGT1A9) and MRP2 genes (ie, coding for the UGT1A9 and the multidrug resistance protein transporter MRP2)—both involved in MPA metabolism—on stratified MPA exposure were assessed by applying the current advised target MPA AUC
0-12h ranges.
Methods: We conducted a 5-year clinical follow-up study in renal allograft recipients in whom MPA exposure was measured at 7 days, 6 weeks, 3 months, 1, 3, and 5 years post transplantation using abbreviated AUC measurements. MMF dose adjustments were based on clinical indications (eg, persistent leukopenia, chronic afebrile diarrhea, BK-polyomavirus infection of the renal allograft). Clinicians were blinded to the results of the AUC measurements.
Results: One hundred white de novo renal allograft recipients (59 men, 41 women; mean [SD] age 51.4 [13.8] years) were included in this study. Ninety-eight patients received a renal allograft from a deceased donor. Significantly more episodes of leukopenia were associated with MPA AUC
0-12h ranges >60 mg/L . h
-1 (P = 0.03). Anemia was also significantly associated with higher MPA exposure ranges (incidence of anemia was 40.8%, 52.2%, and 64.3% for MPA AUC
0-12h ranges <30, 30-60, and >60 mg/L . h
-1, respectively; P = 0.004). Mean MPA AUC
0-12h was significantly higher in the time window immediately preceding or following leukopenia (mean [SD] 59.7 [31.0] vs 46.5 [26.0] mg/L . h
-1; P = 0.004) and anemia (mean [SD] hemoglobin <12 g/L . d
-1: 52.5 [30.0] vs 42.2 [21.2] mg/L . h
-1, P = 0.002; hemoglobin <10 g/L . d
-1: 56.2 [32.5] vs 45.6 [24.7] mg/L . h
-1, P = 0.005). No association was found between incident episodes
Journal Article
IL-17A Mediates Early Post-Transplant Lesions after Heterotopic Trachea Allotransplantation in Mice
2013
Primary graft dysfunction (PGD) and bronchiolitis obliterans (BO) are the leading causes of morbidity and mortality after lung transplantation. Reports from clinical and rodent models suggest the implication of IL-17A in either PGD or BO. We took advantage of the heterotopic trachea transplantation model in mice to study the direct role of IL-17A in post-transplant airway lesions. Across full MHC barrier, early lesions were controlled in IL-17A(-/-) or anti-IL17 treated recipients. In contrast, IL-17A deficiency did not prevent subsequent obliterative airway disease (OAD). Interestingly, this early protection occurred also in syngeneic grafts and was accompanied by a decrease in cellular stress, as attested by lower HSP70 mRNA levels, suggesting the involvement of IL-17A in ischemia-reperfusion injury (IRI). Furthermore, persistence of multipotent CK14(+) epithelial stem cells underlined allograft protection afforded by IL-17A deficiency or neutralisation. Recipient-derived γδ(+) and CD4(+) T cells were the major source of IL-17A. However, lesions still occurred in the absence of each subset, suggesting a high redundancy between the innate and adaptive IL-17A producing cells. Notably, a double depletion significantly diminished lesions. In conclusion, this work implicated IL-17A as mediator of early post-transplant airway lesions and could be considered as a potential therapeutic target in clinical transplantation.
Journal Article
Targeting metabolism to regulate immune responses in autoimmunity and cancer
2019
Metabolic programming is emerging as a critical mechanism to alter immune cell activation, differentiation and function. Targeting metabolism does not completely suppress or activate the immune system but selectively regulates immune responses. The different metabolic requirements of the diverse cells that constitute an immune response provide a unique opportunity to separate effector functions from regulatory functions. Likewise, cells can be metabolically reprogrammed to promote either their short-term effector functions or long-term memory capacity. Studies in the growing field of immunometabolism support a paradigm of ‘cellular selectivity based on demand’, in which generic inhibitors of ubiquitous metabolic processes selectively affect cells with the greatest metabolic demand and have few effects on other cells of the body. Targeting metabolism, rather than particular cell types or cytokines, in metabolically demanding processes such as autoimmunity, graft rejection, cancer and uncontrolled inflammation could lead to successful strategies in controlling the pathogenesis of these complex disorders.
Journal Article
Dysregulated Treg repair responses lead to chronic rejection after heart transplantation
by
Tabib, Tracy
,
Webber, Steven A.
,
Demetris, Anthony J.
in
Allografts
,
Amphiregulin
,
Amphiregulin - genetics
2024
Chronic rejection (CR) after organ transplantation is alloimmune injury manifested by graft vascular remodeling and fibrosis that is resistant to immunosuppression. Single-cell RNA-Seq analysis of MHC class II–mismatched (MHCII-mismatched) heart transplants developing chronic rejection identified graft IL-33 as a stimulator of tissue repair pathways in infiltrating macrophages and Tregs. Using IL-33–deficient donor mice, we show that graft fibroblast–derived IL-33 potently induced amphiregulin (Areg) expression by recipient Tregs. The assessment of clinical samples also confirmed increased expression of Areg by intragraft Tregs also during rejection. Areg is an EGF secreted by multiple immune cells to shape immunomodulation and tissue repair. In particular, Areg is proposed to play a major role in Treg-mediated muscle, epithelium, and nerve repair. Assessment of recipient mice with Treg-specific deletion of Areg surprisingly uncovered that Treg secretion of Areg contributed to CR. Specifically, heart transplants from recipients with Areg-deficient Tregs showed less fibrosis, vasculopathy, and vessel-associated fibrotic niches populated by recipient T cells. Mechanistically, we show that Treg-secreted Areg functioned to increase fibroblast proliferation. In total, these studies identify how a dysregulated repair response involving interactions between IL-33 + fibroblasts in the allograft and recipient Tregs contributed to the progression of CR.
Journal Article
Conversion of extracellular ATP into adenosine: a master switch in renal health and disease
by
Dwyer, Karen M
,
Kishore, Bellamkonda K
,
Robson, Simon C
in
Adenosine
,
Immune system
,
Inflammation
2020
ATP and its ultimate degradation product adenosine are potent extracellular signalling molecules that elicit a variety of pathophysiological functions in the kidney through the activation of P2 and P1 purinergic receptors, respectively. Extracellular purines can modulate immune responses, balancing inflammatory processes and immunosuppression; indeed, alterations in extracellular nucleotide and adenosine signalling determine outcomes of inflammation and healing processes. The functional activities of ectonucleotidases such as CD39 and CD73, which hydrolyse pro-inflammatory ATP to generate immunosuppressive adenosine, are therefore pivotal in acute inflammation. Protracted inflammation may result in aberrant adenosinergic signalling, which serves to sustain inflammasome activation and worsen fibrotic reactions. Alterations in the expression of ectonucleotidases on various immune cells, such as regulatory T cells and macrophages, as well as components of the renal vasculature, control purinergic receptor-mediated effects on target tissues within the kidney. The role of CD39 as a rheostat that can have an impact on purinergic signalling in both acute and chronic inflammation is increasingly supported by the literature, as detailed in this Review. Better understanding of these purinergic processes and development of novel drugs targeting these pathways could lead to effective therapies for the management of acute and chronic kidney disease.Purinergic signalling in the kidney maintains homeostasis and mediates injury-induced inflammation. The extracellular conversion of ATP into adenosine is critical for modulating these processes. Here, the authors discuss the pathological conditions associated with extracellular ATP metabolism and novel strategies for their treatment.
Journal Article
TNF signaling drives myeloid-derived suppressor cell accumulation
2012
TNF, an inflammatory cytokine that is enriched in the tumor microenvironment, promotes tumor growth and subverts innate immune responses to cancer cells. We previously reported that tumors implanted in TNF receptor-deficient (Tnfr-/-) mice are spontaneously rejected; however, the molecular mechanisms underlying this rejection are unclear. Here we report that TNF signaling drives the peripheral accumulation of myeloid-derived suppressor cells (MDSCs). MDSCs expand extensively during inflammation and tumor progression in mice and humans and can enhance tumor growth by repressing T cell-mediated antitumor responses. Peripheral accumulation of MDSCs was drastically impaired in Tnfr-/- mice. Signaling of TNFR-2, but not TNFR-1, promoted MDSC survival through upregulation of cellular FLICE-inhibitory protein (c-FLIP) and inhibition of caspase-8 activity. Loss of TNFRs impaired the induction of MDSCs from bone marrow cells, but this could be reversed by treatment with caspase inhibitors. These results demonstrate that TNFR-2 signaling promotes MDSC survival and accumulation and helps tumor cells evade the immune system.
Journal Article
Targeting allograft inflammatory factor 1 reprograms kidney macrophages to enhance repair
by
Souma, Tomokazu
,
Varghese, Shyni
,
Chen, Yanting
in
Acute Kidney Injury - genetics
,
Acute Kidney Injury - metabolism
,
Acute Kidney Injury - pathology
2025
The role of macrophages (MΦs) remains incompletely understood in kidney injury and repair. The plasticity of MΦs offers an opportunity to polarize them toward mediating injury resolution in both native and transplanted kidneys undergoing ischemia and/or rejection. Here, we show that infiltrating kidney MΦs augmented their own allograft inflammatory factor 1 (AIF-1) expression after injury. Aif1 genetic deletion led to MΦ polarization toward a reparative phenotype while halting the development of kidney fibrosis. The enhanced repair was mediated by higher levels of antiinflammatory and proregenerative markers, leading to a reduction in cell death and an increase in proliferation of kidney tubular epithelial cells after ischemia followed by reperfusion injury (I/RI). Adoptive transfer of Aif1 –/– MΦs into Aif1 +/+ mice conferred protection against I/RI. Conversely, depletion of MΦs reversed the tissue-reparative effects in Aif1 –/– mice. We further demonstrated increased expression of AIF-1 in human kidney biopsies from native kidneys with acute kidney injury or chronic kidney disease, as well as in biopsies from kidney allografts undergoing acute or chronic rejection. We conclude that AIF-1 is a MΦ marker of renal inflammation, and its targeting uncouples MΦ reparative functions from profibrotic functions. Thus, therapies inhibiting AIF-1 when ischemic injury is inevitable have the potential to reduce the global burden of kidney disease.
Journal Article