BACKGROUND:Platelet factor 4-polyanion enzyme-linked immunosorbent assays (ELISAs) are considered highly sensitive for diagnosing heparin-induced thrombocytopenia (HIT), such that current practice guidelines recommend use of ELISA-negative results to exclude HIT. Once HIT is ruled out, alternative, non-heparin-based anticoagulant treatments are ceased, and heparin reintroduction frequently occurs. METHODS:Antigen-based and PF4-dependent functional testing were used to study PF4/polyvinylsulfonate ELISA-negative platelet-activating antibodies in HIT-suspected patients. RESULTS:Three patients with clinical presentations consistent with HIT tested negative in an ELISA using PF4-polyvinylsulfonate (PF4/PVS), an antigenic target very commonly used for HIT antibody screening. All three patients demonstrated PF4-dependent platelet activation in functional testing that was sensitive to blockade of platelet FcγRIIa receptors and inhibited by high concentrations of heparin, consistent with pathogenic HIT antibodies. Functional testing-based screening of 500 ELISA-negative patients identified three additional patients whose sera activated platelets in a PF4- and FcγRIIa-dependent manner and had clinical histories consistent with HIT. Five of the six ELISA-negative HIT patients were re-exposed to heparin, which precipitated a decrease in platelet counts in all re-exposed patients, and one patient developed a new thrombus. CONCLUSIONS:Recognition of ELISA-negative HIT is critical to avoid harm due to the cessation of alternative anticoagulation therapy and re-exposure of these patients to heparin.
BACKGROUND:Platelet factor 4-polyanion enzyme-linked immunosorbent assays (ELISAs) are considered highly sensitive for diagnosing heparin-induced thrombocytopenia (HIT), such that current practice guidelines recommend use of ELISA-negative results to exclude HIT. Once HIT is ruled out, alternative, non-heparin-based anticoagulant treatments are ceased, and heparin reintroduction frequently occurs. METHODS:Antigen-based and PF4-dependent functional testing were used to study PF4/polyvinyl sulfonate ELISA-negative platelet-activating antibodies in HIT-suspected patients and mice immunized with PF4/heparin. RESULTS:Three patients with clinical presentations consistent with HIT tested negative in an ELISA using PF4-polyvinylsulfonate (PF4/PVS), an antigenic target very commonly used for HIT antibody detection. All three patients demonstrated PF4-dependent platelet activation in functional testing that was sensitive to blockade of platelet FcγRIIa receptors and inhibited by high concentrations of heparin, consistent with pathogenic HIT antibodies. Functional testing-based screening of 500 ELISA-negative patients identified three patients whose sera activated platelets in a PF4- and FcγRIIa-dependent manner, and had clinical histories consistent with HIT. Five of the six ELISA-negative HIT patients were re-exposed to heparin, which precipitated a decrease in platelet counts in all re-exposed patients, and one patient developed a new thrombus. To advance the study of ELISA-negative HIT antibodies, mice were immunized with PF4/heparin, and functional and antigenic assays were simultaneously used to successfully identify an ELISA-negative, PF4-dependent platelet-activating murine monoclonal antibody that recapitulated the serological characteristics of ELISA-negative HIT patients. CONCLUSIONS:Recognition of ELISA-negative HIT is critical to avoid harm due to the cessation of alternative anticoagulation therapy and re-exposure of these patients to heparin.
Monoclonal gammopathy of thrombotic significance (MGTS) is a recently recognized thrombophilia characterized by the production of a monoclonal antibody that binds to platelet factor 4 (PF4) and stimulates platelet activation (Blood. 2022 Jul 7;140(1):73-77). Typical signs of MGTS include a history of recurrent thrombosis, persistent thrombocytopenia, and positive laboratory results in PF4/polyanion enzyme-linked immunosorbent assay (ELISA) and serotonin release assay (SRA) testing, as in the related thrombotic disorder heparin-induced thrombocytopenia (HIT). Here, we present a case of MGTS, presenting with transient thrombocytopenia coincident with thrombotic episodes and negative test results in SRA and PF4/polyanion-based testing platforms (ELISAs and automated assays). A 56-year-old male patient initially presented with acute left lower extremity deep vein thrombosis (DVT) and a pulmonary embolism. Following the administration of warfarin, the patient experienced a second DVT four months later and was transitioned to a factor Xa inhibitor. Fifty-two months later, the patient developed occlusion of the splenic and superior mesenteric veins despite additional anticoagulation therapy. Further testing led to a diagnosis of an IgG2 kappa monoclonal gammopathy of undetermined significance (MGUS). Eleven months later, the patient again suffered breakthrough thrombosis, specifically radial artery thrombosis, and a thrombotic cerebrovascular accident, leading to the addition of aspirin to the patient's treatment regimen. Notably, where detailed blood counts were available in the patient's clinical history, the patient experienced only transient thrombocytopenia coinciding with his two most recent thrombotic episodes and has had platelet counts in the normal range in the four-year period since his last thrombotic event. After initiating dual anticoagulant/antiplatelet therapy, the patient has not developed recurrent thrombocytopenia or new thrombotic events. Antigen-based and functional testing for HIT antibodies (ELISA, SRA, and automated immunoassays) were negative in this patient, unlike in the previously described index case of MGTS, where serological testing mimicked classical HIT serology (i.e., HIT ELISA and SRA positivity). The sample was also non-reactive in a vaccine-induced immune thrombotic thrombocytopenia (VITT)-specific ELISA employing uncomplexed PF4 targets, as previously described (Am J Hematol. 2022 May;97(5):519-526). Conversely, the patient's antibody consistently stimulated platelet activation in a PF4- and IgG-dependent manner in functional testing using PF4-treated platelets. This included PF4-treated platelets that were freshly isolated and used in the PF4-dependent P-selectin expression assay (PEA) and cryopreserved platelets used in the thrombospondin-1 release assay. Interestingly, consistently positive PEA results have been documented from four samples over the last four years, during which the patient had normal platelet counts. To further characterize the patient's IgG2 MGUS antibody, the patient's monoclonal was immuno-enriched. Patient sera and the immuno-enriched MGUS were then compared by mass spectrometry, which generated identical mass profiles. After confirming the effective enrichment of the patient's MGUS by mass spectrometry, the antibody was de novo sequenced or “reverse-engineered” to obtain the antibody's amino acid sequence. The antibody was then expressed and tested in ELISA-based and functional platelet assays. Importantly, the recombinant antibody replicated the PF4-dependent platelet activation observed with patient serum and did not bind PF4/polyanion targets in ELISA testing. Together, these data strongly support the identification of a new class of ELISA- and SRA-negative anti-PF4 monoclonal antibodies that cause MGTS. This case illustrates the diagnostic challenges in MGTS. MGTS patients may not exhibit persistent thrombocytopenia, and diagnostic tests for detecting HIT antibodies may be ineffective in accurately diagnosing this new thrombophilia. This case emphasizes the importance of reviewing platelet counts in the peri-thrombotic period to recognize transient thrombocytopenia and establishes the utility of PF4-enhanced functional assays to detect pathogenic anti-PF4 antibodies, even in settings where classical HIT testing (i.e., ELISA/SRA) is negative.
Introduction. Platelet-activating anti-Platelet factor 4 (PF4) antibodies mediate a number of thrombotic thrombocytopenic syndromes, including heparin-induced thrombocytopenia (HIT), and more recently recognized conditions, vaccine-induced immune thrombotic thrombocytopenia (VITT), adenovirus-associated thrombotic thrombocytopenia, and monoclonal gammopathy of thrombotic significance (MGTS). In MGTS (Blood. 2023 Apr 6;141(14):1772-1776), a monoclonal IgG antibody to PF4 mediates a chronic prothrombotic state characterized by recurrent thrombosis. More recent evidence suggests that MGTS may present with negative results in HIT enzyme-linked immunosorbent assay (ELISA) and serotonin release assay (SRA), and positivity only in PF4-dependent functional assays such as the PF4-dependent P-selectin expression assay (PEA; submitted). The presence of MGUS in patients has long been associated with high risks of thrombotic disease (Blood. 2010 Jun 17;115(24):4991-8), but the mechanism by which they predispose to thrombosis has been relatively unexplored. In this study, we evaluated a cohort of MGUS patients who experience thrombosis for the presence of platelet-activating anti-PF4 antibodies. M ethods. An administrative database search was performed of Mayo Clinic records to identify patients who had a diagnosis of MGUS, and thrombosis. Research samples from 134 MGUS patients with IgG monoclonal protein and thrombosis were obtained from Mayo Clinic's dysproteinemia biobank and subjected to PF4 antigen-based and functional screening. Research studies were approved by the Institutional Review Board of Mayo Clinic. Results. Of the 134 patients, 17 (12.7%) activated platelets in the PEA (≥19%). To exclude non-specific activation (e.g. due to HLA antibodies), secondary PEA testing was performed to assess whether platelet activation was mediated by a HIT-like antibody (i.e., PF4- and IgG-dependent, and inhibitable with high concentrations of heparin). Four patients, hereafter referred to as patients 1-4, were identified as having a HIT-like antibody, as demonstrated by PF4-dependent platelet activation that could be inhibited with high concentrations of heparin (100 U/mL), and blockade of the platelet IgG receptor, FcγRIIa. Patients 1 and 2 had persistent, platelet-activating anti-PF4 antibodies based on PEA testing of multiple samples obtained several years apart. Patient 1 had a recurrent, multi-year history of deep venous thrombosis (DVT), while patient 2 had one DVT episode. Patient 3 demonstrated a HIT antibody-like profile in the PEA in two of three samples available for testing and had a history of thrombotic cerebrovascular accident (CVA). Patient 4 demonstrated a HIT-like platelet-activating antibody in only one of four samples tested, and consistent with this finding, had an MGUS identified on clinical testing at only one time point (“small” IgG lambda, not quantified), 3 months prior to the platelet-activating sample. This patient experienced multiple thrombotic events including DVTs, left atrial thrombus and embolic CVA, pulmonary embolism and acute limb ischemia. All patients tested negative in two FDA-approved antigen-based HIT assays tested (Immucor PF4 IgG and Zymutest HIA IgG), similar to a recent MGTS case (submitted). SRA was negative in both Patients 1 & 2, weakly positive in Patient 3 (33%, with high CV), and positive (72%) in Patient 4. Conclusions. Definitive diagnosis of patients with MGTS provides insight into a mechanism of “unexplained” thrombosis and may offer additional treatment pathways for these patients with recurrent thrombosis (New Eng J of Med, 2024 Aug 8). Serologic testing in two patients correlated strongly with observations of thrombosis, and the study confirmed recent findings that anti-PF4 antibodies may present with unusual serology that is neither HIT- nor VITT-like (with negative results in both ELISA and SRA). The incidence of confirmed/suspected MGTS was 3% (4/134) in this population of MGUS patients with thrombosis. Prospective studies are needed to confirm these observations.
Background: Vaccine-induced immune thrombotic thrombocytopenia (VITT) is a severe thrombotic thrombocytopenia that predominantly occurs after adenoviral vector-based vaccines. VITT patients produce anti-platelet factor 4 (PF4) antibodies with restricted clonality (i.e., mono/oligoclonal) with lambda light chains. Long-term follow-up studies in VITT show a disconnect in the persistence of anti-PF4 antibodies, whereby ELISA-positive antibodies persist significantly longer than platelet-activating antibodies. The mechanistic basis of this is unclear and could be explained by a couple of hypotheses: (1) Epitope spreading where, with time, the specificity of platelet-activating anti-PF4 antibodies may “spread” to recognize only PF4 complexed to heparin vs. (2) Persistence of clonally restricted platelet-activating anti-PF4 antibodies which decrease in titers with time such that their levels are insufficient to crosslink platelet FcGRIIa and induce platelet activation. Methods: Acute, convalescent patient sera and affinity-purified anti-PF4 antibodies were evaluated in antigen-based, functional (platelet-activation-based), and mass spectrometry studies as previously described (Blood, 2022 Jul 7;140(1):73-77). The median time to last follow-up was 243 days after the acute episode (range: 114-664 days). Results: Follow-up samples were obtained from 6 VITT patients after Ad26.COV2.S vaccination. At last follow-up, anti-PF4 IgG antibodies reactive in PF4/polyanion ELISA were detected in the sera of 5/6 VITT patients. However, only one of these samples stimulated platelet activation in the PF4-dependent P-selectin expression assay (PEA; 199 days after acute presentation). Affinity-purified anti-PF4 antibodies were detected by ELISA in all follow-up samples and three of the six affinity-purified anti-PF4 antibody samples activated platelets in the PEA. Four of the six VITT patients demonstrated a monoclonal anti-PF4 antibody, while one each had a biclonal and triclonal profile. Five VITT patients produced IgG lambda light chain antibodies, while one produced an IgG kappa. All six VITT patients demonstrated synonymous anti-PF4 antibody profiles when comparing acute and follow-up antibody repertoires, without evidence of VITT patients producing new anti-PF4 antibodies after the acute episode. In all cases, levels of anti-PF4 antibodies were significantly lower in convalescent samples relative to acute samples. Given this data on the persistence of clonally-restricted VITT antibodies, samples from another VITT patient with thrombocytopenia (100-150,000/uL) persisting for more than three years were similarly evaluated. This patient, who experienced severe thrombosis after ChAdOx1 nCoV19 vaccination, demonstrated persistent ELISA and PEA positivity even three years after symptom onset but had not experienced breakthrough thrombosis while on anticoagulation therapy. Serum protein electrophoresis (SPEP) did not detect a monoclonal gammopathy. Anti-PF4 antibodies immuno-enriched from a sample obtained >2 years after acute presentation demonstrated a monoclonal profile. While non-availability of an acute sample for anti-PF4 antibody characterization precluded a firm determination of whether this “Long VITT” case represented a subset of monoclonal gammopathy of thrombotic significance (MGTS; Blood 2023 Apr 6;141(14):1772-1776; New Eng J Med 2024 Aug 8), the chronicity of thrombocytopenia, presence of a monoclonal anti-PF4 antibody and persistently positive anti-PF4 serology supports this diagnosis. Conclusions. Clonally-restricted VITT antibodies persist for months-years with no evidence for the production of novel anti-PF4 antibodies after the acute event. Decreased abundance of anti-PF4 antibodies leads to negative functional results with follow up samples. Some platelet-activating antibodies can persist for very long periods (>3 years) and mediate persistent thrombocytopenia, representing an SPEP-negative MGTS-like state. This study also demonstrates the first example of a VITT antibody with a kappa light chain. The requirement for anticoagulation in patients demonstrating ELISA-positive/functional test-negative results is not clear, but the persistence of mono/oligoclonal anti-PF4 antibodies raises the possibility for the upregulation of pathogenic antibody production in proinflammatory settings.
Introduction: Ticagrelor is a widely used reversible platelet adenosine 5'-diphosphate (ADP) P2Y12 receptor inhibitor used in patients with acute coronary syndrome and coronary interventions. Ticagrelor treated patients may be concomitantly exposed to heparin treatment for prophylaxis/treatment of thrombosis, and heparin induced thrombocytopenia (HIT), a thrombotic thrombocytopenic adverse event may be suspected in such patients. Objective: Here we describe the serological profile of a patient on ticagrelor treatment and strong clinical suspicion of HIT who presented with negative serotonin release assay (SRA) results. A follow up systematic study on the impact of ticagrelor on this gold standard HIT assay is presented. Methods: Remnants from 23 patient samples submitted for clinical SRA testing (5- SRA negative; 6- “low positive” [20-50%]; 5- “moderate positive” [>50 to <90%]; 7- “strong positive” [>90%]) were spiked with ticagrelor in concentrations of 100, 250, 500, and 1000 ng/mL before SRA re-testing. Testing was performed using heat inactivated serum, with low (0.1 units/mL) or high (100 units/mL) heparin and washed platelets (Leger, THSNA 2022). A positive SRA result was defined as ≥20% serotonin release with the low heparin condition and >50% inhibition of serotonin release with high concentration of heparin. A subset of SRA positive patient samples that tested falsely negative upon ticagrelor addition were subsequently incubated with activated charcoal and retested in the SRA to determine if ticagrelor interference was reversible using this methodology. Results: The index patient on ticagrelor had a high 4Ts score, ELISA optical density >1.0 but tested negative in the SRA. Re-testing of this patient with an activated charcoal treated sample demonstrated a striking change in SRA to a strong positive result (91% serotonin release). Upon testing of ticagrelor-spiked samples in the SRA negative patient cohort, as expected, the drug had no effect on results, with all 5 samples persistently staying SRA negative. Of the 6 patients that had low positive SRA results, all converted to SRA negative with ticagrelor concentrations >500 ng/mL. One of these patients became SRA negative at 100 ng/mL and 3 at 250 ng/mL. Of the 5 patients with moderately positive SRA results, 2 converted to SRA negative with ticagrelor concentrations >100 ng/mL, and 4 of 5 patients became negative with spiking at 500 ng/mL. Finally, of the 7 patients with strong positive SRA results, 1 became falsely negative in the SRA at a ticagrelor concentration of 1000 ng/mL. Activated charcoal was incubated with 6 samples that demonstrated negative SRA results with drug concentration of 500 ng/mL. Two samples reverted to SRA positive, while 4 samples remained persistently negative. Conclusion: In preliminary studies, ticagrelor has been shown to interfere with the heparin induced platelet activation (HIPA) assay but its impact on the SRA has been relatively unexplored. Here, we demonstrate that patients on ticagrelor may present with spuriously false HIT functional assay testing by the SRA, particularly if the HIT antibody is not strongly platelet activating. Activated charcoal treatment was only able to reverse drug interference in a subset of samples, even at drug concentrations below peak levels recorded in patients (approx. 800ng/mL). Given these findings, we recommend de-emphasizing the utility of the SRA in ticagrelor treated patients with reliance more on criteria such as pre-test probability of HIT (e.g. 4Ts score), and ELISA results in order to facilitate an accurate diagnosis of HIT.
BACKGROUND:There are very few documented reports in literature of cerebral venous sinus thrombosis (CVST) caused by immune-mediated heparin-induced thrombocytopenia (HIT). Further, there are very few reports of false negative serotonin release assays (SRAs) when testing for immune-mediated HIT.CASE PRESENTATION:We present a case of a 60- year-old male with recent unfractionated heparin administration for venous thromboembolism prophylaxis, an elevated 4T score of 5 and acute CVST in which immune-mediated HIT was suspected. The enzyme-linked immunosorbent assay (ELISA) screening assay was positive for PF4 antibodies and subsequent reflexive SRA testing was negative. However, given the clinical picture, a false-negative SRA was suspected (and eventually confirmed), prompting use of the alternative PF4-dependent p-selectin expression assay (PEA) which was confirmed to be positive. The patient was successfully managed with a bivalirudin infusion and eventually transitioned to apixaban.CONCLUSION:It is uncommon for immune-mediated HIT with thrombosis to manifest as CVST. Similarly, false-negative SRA is uncommon in immune-mediated HIT. Take-away lessons from our case report include considering HIT in CVST patients with an elevated 4T score and considering the entire clinical picture and degree of suspicion for HIT when interpreting negative HIT testing results. The PEA, in conjunction with the 4Ts score, may be considered as an alternate diagnostic assay for HIT.
][5][6][7] Here, we present the case of a patient with recurrent thrombosis and thrombocytopenia, secondary to a persistent anti-PF4/polyanion monoclonal antibody due to an underlying neoplastic condition, which we refer to as monoclonal gammopathy of thrombotic/thrombocytopenic significance (MGTS).The implications of these findings for the investigation of unexplained thrombophilia are discussed.
We identified a patient with a recently described syndrome, monoclonal gammopathy of thrombotic significance (MGTS; Blood. 2023 Apr 6;141(14):1772-1776), and three additional patients with high 4Ts scores who were consistently negative in the PF4-polyanion HIT ELISA (Lifecodes PF4 IgG, Immucor). The MGTS patient, with a monoclonal IgG kappa, had recurrent thrombosis, and transient mild thrombocytopenia (nadir in the low 100s) over a period of years, and was noted to have a HIT ELISA optical density (OD) of 0.117. The three HIT patients experienced thrombocytopenia and thrombosis with ELISA ODs of 0.37, 0.18 and 0.20. All patients were positive in platelet-activation (functional) testing demonstrating PF4 dependence and inhibited with both high concentrations of heparin (100U/mL) and the FcγRIIa blocking monoclonal antibody (mAb) IV.3, consistent with the presence of anti-PF4 antibodies in the patient samples ( data not shown). Because the serologic profile of these patients suggested a novel HIT subtype characterized by negative HIT ELISA results, we undertook a functional platelet assay screen of 500 consecutive HIT ELISA-negative patients tested in our diagnostic laboratory. Research studies were approved by the Institutional Review Board of Mayo Clinic. Of the 500 patients tested, 20 (4.0%) stimulated platelet activation in the PF4-dependent P-selectin Expression Assay (PEA ≥19%; data not shown). To exclude non-specific activation that can be induced by HLA antibodies, additional testing was performed to evaluate whether platelet activation was PF4-dependent using buffer or PF4-treated platelets. Three patients demonstrated PF4-dependent activation that was inhibited by high heparin concentrations and mAb IV.3, as would be expected for HIT antibodies (ELISA-negative HIT, EN-HIT1-3; Figure 1). On retrospective review, all three patients thus identified had clinical histories and courses consistent with high clinical probability for HIT. To develop tools to study this new class of antibodies, monoclonal HIT antibodies were generated in mice after PF4/heparin immunizations and screened using a novel approach that included simultaneous testing of hybridoma supernatants in the PEA and PF4-polyanion ELISA. This strategy was designed to enabled us to identify mAbs that activated platelets (in the PEA), but that did not bind antigenic targets in the HIT ELISA. A novel mAb 431.4 that was developed using this approach, and the well-characterized HIT-like mAb KKO were evaluated for their abilities to both bind PF4-polyanion targets in ELISA, and to activate PF4-treated platelets in the PEA (Figure 2). In significant contrast to KKO, mAb 431.4 did not bind PF4/polyanion complexes, however, like KKO, strongly activated platelets in a PF4-dependent manner. Activation induced by both KKO and mAb 431.4 was inhibited by high heparin concentrations, as would be expected for HIT antibodies. In vivo murine studies using this novel mAb are pending at this time. In summary, the non-canonical diagnostic profile of HIT ELISA-negative but platelet activation-positive antibodies were found at a relatively high incidence in HIT-suspected patients (0.6%; 3 of 500 ELISA-negative patients). These findings have important diagnostic/management implications and suggest a re-evaluation of ASH's HIT management guidelines as noted in recommendations 2.7 and 2.8 of that document (“In patients with an intermediate (Recommendation 2.7) or high (Recommendation 2.8)-probability 4Ts score and a negative immunoassay, the ASH guideline panel recommends discontinuation of the non-heparin anticoagulant and resumption of heparin, if indicated ”; Blood Adv (2018) 2 (22): 3360-3392). Figure 1. A subset of ELISA-negative HIT-suspected patients harbor anti-PF4 platelet-activating antibodies. Three ELISA-negative (EN) HIT patient samples from a screen of 500 samples demonstrate PF4-dependent platelet activation and inhibition with high heparin concentration and mAb IV.3 incubation. PBS, phosphate buffered saline; IC, isotype control; HDH- high dose heparin (100U/mL). Figure 2. Murine mAb 431.4 serologically mimics pathogenic ELISA-negative HIT/MGTS antibodies. ELISA and PEA testing was performed using the “HIT-like” mAb KKO, novel mAb 431.4, or an isotype control (IC) antibody. PVS-polyvinyl sulfonate (polyanion used in the Immucor IgG ELISA assay).
Background:Urgent surgery requiring heparin exposure during cardiopulmonary bypass can be challenging in patients with acute heparin-induced thrombocytopenia (HIT). The use of treatments such as therapeutic plasma exchange (TPE) to remove HIT antibodies and intravenous immunoglobulin (IVIg) to antagonize HIT antibody-mediated platelet activation are increasingly reported in patients who undergo cardiac surgery. The optimal treatment approach to mitigate the risks of heparin administration in this situation is not known.Key Clinical Question:Can TPE coupled to IVIg allow for safe heparin exposure in patients with HIT?Clinical Approach:TPE and IVIg were used to enable heparin exposure for surgical placement of a left ventricular assist device in a patient with HIT. Serial patient samples were tested in antigen-based and functional HIT assays.Conclusion:Dissociation between antigen-based (enzyme-linked immunosorbent assay) and functional (serotonin release assay) testing was noted, and TPE coupled to IVIg was associated with an excellent clinical response.
Heparin-induced thrombocytopenia (HIT) is suspected much more often than it is confirmed. Technically simple platelet factor 4 (PF4)-polyanion enzyme-linked immunosorbent assays (ELISAs) are sensitive but nonspecific. In contrast, accurate functional tests such as the serotonin release assay, heparin-induced platelet activation assay, and PF4-dependent P-selectin expression assay require fresh platelets and have complex assay end points, limiting their availability to specialized reference laboratories. To enable broad deployment of functional testing, we sought to extend platelet viability significantly by optimizing storage conditions and developed a simple functional assay end point by measuring the release of a platelet α-granule protein, thrombospondin-1 (TSP1), in an ELISA format. Platelet cryopreservation conditions were optimized by freezing platelets at controlled cooling rates that preserve activatability. Several-month-old cryopreserved platelets were treated with PF4 or heparin and were evaluated for their ability to be activated by HIT and vaccine-induced immune thrombotic thrombocytopenia (VITT) antibodies in the TSP1 release assay (TRA). HIT and spontaneous HIT patient samples induced significantly higher TSP1 release using both PF4-treated (PF4-TRA) and heparin-treated cryopreserved platelets relative to samples from patients suspected of HIT who lacked platelet-activating antibodies. This latter group included several patients that tested strongly positive in PF4-polyanion ELISA but were not platelet-activating. Four VITT patient samples tested in the TRA activated PF4-treated, but not heparin-treated, cryopreserved platelets, consistent with recent data suggesting the requirement for PF4-treated platelets for VITT antibody detection. These findings have the potential to transform the testing paradigm in HIT and VITT, making decentralized, technically simple functional testing available for rapid and accurate in-hospital diagnosis.
Vaccine-induced immune thrombotic thrombocytopenia (VITT) is a rare, life-threatening disorder fi rst recog-nized in early 2021 that has been documented mainly in relation to adenoviral vector-based vaccines ChAdOx1 nCoV-19 (Oxford-AstraZeneca) and Ad26.COV2.S (Janssen, Johnson & Johnson) vaccination. 1 VITT is characterized by severe thrombosis, often at unusual locations such as cerebral venous sinuses and splanchnic vessels, and thrombocytopenia, occurring due to the development of platelet-activating anti-platelet factor 4 (PF4) antibodies. More recently, a likely case of ultra-rare messenger RNA (mRNA)-1273 – associated VITT, also mediated by anti-PF4 antibodies, has been documented. 2 Acute management generally incorporates the use of intravenous immunoglobulins, often with corticosteroids, as well as nonhe-parin anticoagulation, 3 and is generally effective in treating acute VITT. However, some patients continue to have a refractory course, requiring additional interventions. 4 Given the rarity and relatively recent discovery of this disorder, little is known about potential long-term consequences and considerations for management. Several groups have emboli. A hypercoagulable workup did not reveal any abnormalities. After a presumptive diagnosis of VITT was made, he was treated empirically with 1 g/kg of intravenous immunoglobulin G (IVIG) for 2days, 1 mg/kg of prednisone, and intravenous argatroban infusion drip. His anti-PF4 ELISA (LIFECODES PF4 immunoglobulin G [IgG], Immucor), performed on a sample collected prior to initiating IVIG therapy, demonstrated a strongly positive result of 3.323 optical density (OD) units (reference interval , 0.399), consis-tent with a diagnosis of VITT. Subsequent testing in a recently described novel, speci fi c VITT test that
Primary sclerosing cholangitis (PSC) is an idiopathic, progressive cholangiopathy. Cholangiocyte senescence is important in PSC pathogenesis, and we have previously reported that senescence is regulated by the transcription factor ETS proto-oncogene 1 (ETS1) and associated with overexpression of BCL2 like 1 (BCL2L1 or BCL-xL), an anti-apoptotic BCL2-family member. Here, we further explored the mechanisms regulating BCL-xL-mediated, apoptosis resistance in senescent cholangiocytes and uncovered that ETS1 and the histone acetyltransferase E1A-binding protein P300 (EP300 or p300) both promote BCL-xL transcription. Using immunofluorescence, we found that BCL-xL protein expression is increased both in cholangiocytes of livers from individuals with PSC and a mouse model of PSC. Using an in vitro model of lipopolysaccharide-induced senescence in normal human cholangiocytes (NHCs), we found increased BCL-xL mRNA and protein levels, and ChIP-PCRs indicated increased occupancy of ETS1, p300, and histone 3 Lys-27 acetylation (H3K27Ac) at the BCL-xL promoter. Using co-immunoprecipitation and proximity ligation assays, we further demonstrate that ETS1 and p300 physically interact in senescent but not control NHCs. Additionally, mutagenesis of predicted ETS1-binding sites within the BCL-xL promoter blocked luciferase reporter activity, and CRISPR/Cas9-mediated genetic deletion of ETS1 reduced senescence-associated BCL-xL expression. In senescent NHCs, TRAIL-mediated apoptosis was reduced ∼70%, and ETS1 deletion or RNAi-mediated BCL-xL suppression increased apoptosis. Overall, our results suggest that ETS1 and p300 promote senescent cholangiocyte resistance to apoptosis by modifying chromatin and inducing BCL-xL expression. These findings reveal ETS1 as a central regulator of both cholangiocyte senescence and the associated apoptosis-resistant phenotype.