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Sirolimus-induced remission of posttransplantation lymphoproliferative disorder.

Posttransplantation lymphoproliferative disorder (PTLD) is one of the most serious complications of solid-organ transplantation. It potentially is treatable in most cases, but current methods involve withdrawal or reduction of immunosuppression and the consequent risk for graft rejection. Sirolimus was shown in vivo and in vitro to limit proliferation of a number of malignant cell lines, including those of PTLD-derived cells. We present a case of disseminated PTLD in a patient with a renal transplant that resolved completely with conversion of immunosuppression to sirolimus. Graft function was maintained and improved with treatment. This offers a novel means of treating these patients and minimizing transplant loss.

Adult↗

Rapidly developing T-cell posttransplantation lymphoproliferative disorder.

Posttransplantation lymphoproliferative disorder (PTLD) of T-cell origin has been rarely described in chronically immunosuppressed allograft recipients. We report a case of renal PTLD of a T lineage that occurred shortly after transplantation under a triple-immunosuppressive regimen. Renal graft biopsy performed 58 days posttransplantation showed extensive interstitial infiltrates of polymorphic lymphoid cells, which expressed the UCHL-1 and CD3 markers for T-cell lineage. The clonal nature of the T cells in renal tissue was identified by showing rearrangement of the T-cell receptor gamma chain genes using a polymerase chain reaction (PCR). DNA extracted from the graft biopsy specimen did not show the sequences of human T-cell leukemia virus type 1 (HTLV-1) by PCR. Signals for Epstein-Barr virus (EBV) infection in renal tissue were not shown by in situ hybridization. After the reduction of immunosuppressive therapy, regression of PTLD lesion and development of rejection were shown in the second graft biopsy and graftectomy specimen. The extreme rarity of rapidly developing T-cell PTLD in a renal allograft prompted us to write this report.

Adult↗

Pretransplantation assessment of the risk of lymphoproliferative disorder.

Posttransplantation lymphoproliferative disorder (PTLD) is an uncommon but often fatal complication of solid organ transplantation that occurs in approximately 3% of patients. To determine the relative importance and relationship of potential risk factors for PTLD before transplantation (i.e., Epstein-Barr virus [EBV] serostatus of the recipient and the cytomegalovirus [CMV] sero-status of the recipient and the potential donor) and the principal risk factor after transplantation (immunosuppression with antilymphocyte antibody), we analyzed the findings for the first 381 consecutive adult nonrenal transplant recipients seen at Mayo Clinic. In the absence of the other risk factors, the incidence rate of PTLD for EBV-seronegative recipients was 24 times higher (95% confidence interval [CI]: 6.2, 89) than that for EBV-seropositive recipients. The additional risk factors of therapy with OKT3 for rejection and CMV seromismatch (i.e., a negative recipient and a positive donor) each further amplified this risk four- to sixfold. Together, all three risk factors acted synergistically to increase the incidence rate of fatal and/or CNS PTLD by a factor of 654 (CI: 368, 1,162) compared with the low incidence rate (.458 cases per 100 person years) when none of these risk factors were present. Pretransplantation determination of recipient EBV and CMV serostatus can identify a subgroup of patients whose risk for severe PTLD may preclude transplantation.

Adult↗

Molecular histogenesis of posttransplantation lymphoproliferative disorders.

Posttransplantation lymphoproliferative disorders (PTLDs) represent a serious complication of solid organ transplantation. This study assessed the molecular histogenesis of 52 B-cell monoclonal PTLDs, including 12 polymorphic PTLDs (P-PTLDs), 36 diffuse large B-cell lymphomas (DLBCLs), and 4 Burkitt/Burkitt-like lymphomas (BL/BLLs). Somatic hypermutation (SHM) of immunoglobulin variable (IgV) genes documented that most monoclonal B-cell PTLDs (75% P-PTLDs, 91.3% DLBCLs, 100% BL/BLLs) derive from germinal center (GC)-experienced B cells. B-cell lymphoma 6 (BCL6) mutations occurred in 25% P-PTLDs, 60.6% DLBCLs, and 75.0% BL/BLLs. A first histogenetic category of PTLDs (31.2% DLBCLs) express the BCL6+/multiple myeloma oncogene-1 protein (MUM1-/+)/CD138- profile and mimic B cells experiencing the GC reaction, as also suggested by ongoing SHM in a fraction of these cases. A second subset of PTLDs (66.7% P-PTLDs and 31.2% DLBCLs) display the BCL6-/MUM1+/CD138- phenotype and mimic B cells that have concluded the GC reaction. A third histogenetic category of PTLDs (25.0% P-PTLDs and 31.2% DLBCLs) shows the BCL6-/MUM1+/CD138+ profile, consistent with preterminally differentiated post-GC B cells. Crippling mutations of IgV heavy chain (IgVH) and/or IgV light chain (IgVL) genes, leading to sterile rearrangements and normally preventing cell survival, occur in 4 DLBCLs and 1 BL/BLL that may have been rescued from apoptosis through expression of Epstein-Barr virus (EBV)-encoded latent membrane protein 1 (LMP1). Overall, the histogenetic diversity of monoclonal B-cell PTLDs may help define biologically homogeneous categories of the disease.

Adolescent↗

Hodgkin lymphoma-like posttransplantation lymphoproliferative disorder.

Posttransplantation lymphoproliferative disorders (PTLD) are a heterogeneous group of monoclonal or polyclonal lymphoproliferative lesions that occur in immunosuppressed recipients following solid organ or bone marrow transplantation, including 4 categories: (1) early lesions (reactive plasmacytic hyperplasia, and infectious-mononucleosis-like PTLD), (2) polymorphic PTLD, (3) monomorphic PTLD (including B-cell neoplasms and T-cell neoplasms), and (4) Hodgkin lymphoma (HL) and HL-like PTLD in the current World Health Organization classification. Although HL-like PTLD has been grouped with classic HL PTLD, controversy remains as to whether it is truly a form of HL or whether it should be more appropriately considered as a form of B-cell PTLD. The current available literature data indicate the presence of important immunophenotypic, molecular genetic, and clinical differences between HL PTLD and HL-like PTLD, suggesting that HL-like PTLD is in fact most often a form of B-cell PTLD. Distinction from true HL may be important for clinical management and prognosis.

B-Lymphocytes↗

Lymphoproliferative disorders of the head and neck.

Lymphoproliferative disorders are the frequent cause of indeterminate processes in the head and neck region for which otolaryngologists are often consulted by colleagues seeking a diagnosis. Because a wide spectrum of diseases may be represented, tissue diagnosis is often required. Recent advances in tissue immunotyping and DNA probes permit more precise identification and classification of these disorders. Lymphoproliferative disorders may be subdivided into five categories: Hodgkin's disease, non-Hodgkin's lymphoma, histiocytosis X, benign reactive lymphoproliferative disorders, and plasma cell neoplasms. Representative cases are presented, along with a brief discussion of each category.

Adult↗

Immunodeficiency-associated lymphoproliferative disorders.

The incidence of lymphoproliferative disease is significantly higher in individuals who have congenital, acquired, or iatrogenically induced immunodeficiency. The immunodeficiency-associated lymphoproliferative disorders are clinically and pathologically heterogeneous, are of variable clonal composition, and vary according to the immunodeficiency syndrome. Nonetheless, they share several features, including frequent origination in or involvement of extranodal sites, diffuse aggressive histology, B-cell lineage derivation, association with the Epstein-Barr virus (EBV), and, often, rapid clinical progression. Reactive and atypical lymphoid hyperplasias and malignant lymphomas occur in association with congenital (primary) immunodeficiency. Post-transplantation lymphoproliferative disorders are often comprised of a polymorphic cell population, making it difficult to identify their benign or malignant nature by histopathologic criteria alone. Recent studies suggest that they are divisible into plasmacytic hyperplasias, polymorphic lymphoproliferative disorders, and malignant lymphomas. The plasmacytic hyperplasias are polyclonal and generally regress spontaneously following withdrawal of immunosuppression. The malignant lymphomas are monoclonal, possess a variety of genetic alterations, and generally progress despite aggressive therapy. The polymorphic lymphoproliferative disorders are also monoclonal but display variable clinical behavior, their progression apparently correlating with bcl-6 gene mutation. Non-Hodgkin's lymphoma (NHL) is the second most common AIDS-related neoplasm and an AIDS-defining illness. AIDS-related NHLs are divisible by anatomic site of origin into systemic (nodal/extra nodal), primary central nervous system, and body cavity-based (primary effusion) lymphomas; and by histopathology into Burkitt's and Burkitt's-like lymphoma, large cell lymphoma, and large cell immunoblastic (plasmacytoid) lymphoma More than 90% are monoclonal B-cell neoplasms. The primary effusion lymphomas contain the Kaposi's sarcoma-associated herpesvirus. Multiple molecular pathways appear to operate in AIDS lymphomagenesis and some may be preferentially associated with specific histopathologic categories or anatomic sites of origin. In conclusion, the immunodeficiency-associated lymphoproliferative disorders often represent a significant diagnostic problem requiring correlative analysis of the clinical behavior of the patient with the histopathology, immunophenotype, clonal composition, viral content, and genetic alterations of the lymphoproliferative disorder. They also represent an important biological model for studying the development and progression of lymphoid neoplasia

Humans↗

Malignant lymphoproliferative disorders in liver cirrhosis.

BACKGROUND: Lymphoproliferative disorders in patients with liver cirrhosis, although uncommon, have been reported in at least 49 cases. Some authors have suggested that the association between chronic liver disease and lymphoma is not coincidental, that immune mechanisms may be pathogenetically involved. PATIENTS AND METHODS: In the present study we calculated the incidence rate of lymphoproliferative disorders in 334 liver cirrhosis patients (201 males, mean age 59 +/- 12; 133 females, mean age 61 +/- 11) treated at the Gastroenterology Department of the Mauriziano Hospital in Turin from January 1987 to September 1990. RESULTS: We diagnosed 12 lymphoproliferative disorders, corresponding to an incidence of 9.56/1,000 person-years, a figure much higher than expected on the basis of the incidence rate registered in the Turin general population. Six of the 12 lymphoproliferative disorders were non-Hodgkin's lymphomas of the stomach, a proportion by far exceeding expectation. CONCLUSIONS: Our data support the hypothesis that the association between chronic liver disease and lymphoproliferative disorders is not just coincidental, and suggest that liver cirrhosis might be considered an immunological disturbance which entails an increased risk of developing lymphoproliferative disorders. Mechanisms causing lymphoproliferative disorders to develop in the course of chronic liver disease have been hypothesized.

Aged↗

Treatment of posttransplant lymphoproliferative disorder with the anti-CD20 monoclonal antibody rituximab alone in an adult after liver transplantation: a new drug in therapy of patients with posttransplant lymphoproliferative disorder after solid organ transplantation?

BACKGROUND: Posttransplant lymphoproliferative (PT-LPD) disorder is a life-threatening complication with an incidence of 1-10%. Uniform treatment, so far, does not exist. METHODS: In December 1996, 5 months after a liver transplant, a 43-year-old patient developed a PT-LPD with para-aortal lymphomas and splenomegaly. Histological investigations revealed a PT-LPD of a diffuse large B-cell type of the centroblastic variant. The patient received three cycles of a modified cyclophosphamide, doxorubicin, vincristine, and prednisone-regimen, resulting in complete remission but the patient withdrew from further treatment. In February 1998, the patient had a recurrence of PT-LPD with gastric involvement and parasplenic lymphomas. The patient rejected cytotoxic treatment because of her fear of drug-induced progressive myopathy, so we conducted treatment with the monoclonal antibody--directed against CD20-rituximab. RESULTS AND CONCLUSIONS: After 2 doses of rituximab, clinical symptoms had disappeared and after 6 doses, gastroscopy revealed no residual disease. At this time, the patient remains in remission, with a follow up of > or =6 months. Anti-CD20 monoclonal antibody rituximab is a new, well-tolerated drug for the treatment of lymphomas. In addition, this drug may offer an additional treatment option for patients with PT-LPDs.

Adult↗

T-cell large granular lymphocytic leukemia of donor origin occurring after allogeneic bone marrow transplantation for B-cell lymphoproliferative disorders.

T-cell lymphoproliferative disorders are uncommon occurrences after bone marrow transplantation (BMT). We describe 2 patients in whom a monoclonal T-cell large granular lymphocytosis (T-LGL) developed after allogeneic BMT for B-cell lymphoproliferative disorders. Both patients showed a persistent expansion of CD3+, CD8+, and CD57+ large granular lymphocytes of donor origin with clonally rearranged T-cell receptor gamma genes and no evidence of Epstein-Barr virus-related infection. The manifestations were consistent with T-LGL leukemia as defined by the World Health Organization criteria. In both patients, graft-vs-host disease developed, and 1 had recurrent episodes of cytomegalovirus viremia. The other patient had received a graft from a hepatitis C antibody-positive donor without developing any signs of hepatitis C infection. Both patients remain in complete remission from their B-cell lymphoproliferative disorders and do not have symptoms related to T-LGL leukemia. These data show that T-LGL leukemia should be included as one of the types of posttransplantation lymphoproliferative disorders that can occur after allogeneic BMT for B-cell neoplasms.

Bone Marrow Transplantation↗

An aggressive extranodal NK-cell lymphoma arising from indolent NK-cell lymphoproliferative disorder.

Indolent NK-cell lymphoproliferative disorder, also known as chronic natural killer (NK) cell large granular lymphocytosis (leukemia), is a very rare entity in the World Health Organization (WHO) Classification of Tumors of Hematopoietic & Lymphoid Tissues. Unlike aggressive NK-cell leukemia, which is malignant, the WHO does not specify whether indolent NK-cell lymphoproliferative disorder is reactive or neoplastic. Patients with indolent NK-cell lymphoproliferative disorder are usually asymptomatic older adults who have a nonprogressive, very stable clinical course. We report an unusual case of an aggressive extranodal NK-cell lymphoma, non-nasal type, which presented as a subcutaneous tissue mass, which apparently transformed from a preexisting, untreated indolent NK-cell lymphoproliferative disorder in an 65-year-old otherwise healthy white man. The extranodal NK-cell lymphoma and the NK-cell lymphoproliferative disorder in the blood and bone marrow share a distinctive and identical NK-cell immunophenotype and genotype: CD56/CD8/TIA-1-positive and surface CD3-negative, negative for Epstein-Barr virus infection, and no evidence of T-cell and B-cell receptor gene rearrangements. To the best of our knowledge, such aggressive lymphomatous transformation in an indolent NK-cell lymphoproliferative disorder has not been previously reported.

Aged↗

Pediatric central nervous system posttransplant lymphoproliferative disorder.

Post-transplant lymphoproliferative disorder complicates approximately 1% of all renal transplants. The usual site of occurrence is within the abdomen, thorax, allograft, or head and neck. Central nervous system involvement is uncommon but, when present, occurs in isolation, sparing other organ systems. Few articles in the radiology literature have focused on the acute and follow-up central nervous system findings of the disease, especially in children. Because the clinical and imaging characteristics of central nervous system post-transplant lymphoproliferative disorder overlap those of infection and primary central nervous system lymphoma and the fact that untreated posttransplant lymphoproliferative disorder has a poor prognosis, it is important to maintain a high index of suspicion for this disorder so that appropriate treatment can be instituted.

Acyclovir↗

Posttransplantation lymphoproliferative disorder in the knee.

Lymphoproliferative disorders with primary presentation in a joint are extremely rare. Posttransplantation lymphoproliferative disorders are commonly extranodal at presentation but rarely involve joint structures. The authors describe a fatal case of posttransplantation lymphoproliferative disorder presenting in the knee of a 39-year-old woman who had undergone renal transplantation many years before.

Amyloidosis↗

Pulmonary lymphoproliferative disorders.

Nonlymphomatous pulmonary lymphoproliferative disorders include plasma cell granuloma, Castleman's disease, pseudolymphoma, lymphocytic interstitial pneumonitis, angioimmunoblastic lymphadenopathy, and lymphomatoid granulomatosis. They are thought to represent a hyperplasia of the pulmonary immune system in response to chronic antigenic stimulation. A description of the variable clinical, radiographic, and pathologic features of each entity is presented.

Humans↗

Correlative morphologic and molecular genetic analysis demonstrates three distinct categories of posttransplantation lymphoproliferative disorders.

The posttransplantation lymphoproliferative disorders (PT-LPDs) are a morphologically heterogeneous group of Epstein-Barr virus (EBV)-driven lymphoid proliferations of varying clonal composition. Some PT-LPDs regress after a reduction in immunosuppression, while others progress in spite of aggressive therapy. Previously defined morphologic categories do not correlate with clonality, and neither morphology nor clonality has reliably predicted the clinical behavior of PT-LPDs. We investigated 28 PT-LPD lesions occurring in 22 patients for activating alterations involving the bcl-1, bcl-2, c-myc, and H-, K- and N-ras proto-oncogenes and for mutations involving the p53 tumor suppressor gene. We correlated the results of these studies with the morphology of the lesions, their clonality based on Ig heavy and light chain gene rearrangement analysis, and the presence and clonality of EBV infection. We found that the PT-LPDs are divisible into three distinct categories as follows: (1) plasmacytic hyperplasia: most commonly arise in the oropharynx or lymph nodes, are nearly always polyclonal, usually contain multiple EBV infection events or only a minor cell population infected by a single form of EBV, and lack oncogene and tumor suppressor gene alterations; (2) polymorphic B-cell hyperplasia and polymorphic B-cell lymphoma: may arise in lymph nodes or various extranodal sites, are nearly always monoclonal, usually contain a single form of EBV, and lack oncogene and tumor suppressor gene alterations; and (3) immunoblastic lymphoma or multiple myeloma: present with widely disseminated disease, are monoclonal, contain a single form of EBV, and contain alterations of one or more oncogene or tumor suppressor genes (N-ras gene codon 61 point mutation, p53 gene mutation, or c-myc gene rearrangement). The PT-LPDs are divisible into three categories exhibiting distinct morphologic and molecular genetic characteristics. Alterations involving the N-ras and c-myc proto-oncogenes and the p53 tumor suppressor gene may play an important role in the development and/or progression of the PT-LPDs.

Base Sequence↗

Thoracic presentations of posttransplant lymphoproliferative disorders.

BACKGROUND: Posttransplant lymphoproliferative disorders (PTLDs) are rare complications following transplantation. Although organ-specific cases have been reported, primary presentation in the thoracic cavity has not been fully characterized. METHODS: Eleven cases of PTLD with a primary thoracic presentation were identified among 3,085 solid-organ transplant patients and 1,662 bone marrow transplant patients from 1990 to 2001. RESULTS: There were eight men and three women with a mean age of 49 years. Transplanted organs included lungs (three patients), kidneys (three patients), kidney/pancreas (two patients), allogeneic bone marrow (two patients), and heart (one patient). The time to presentation ranged from 1 to 97 months (median time, 8 months). Six patients developed PTLD within 1 year of undergoing transplantation. Pretransplant serology for Epstein-Barr virus (EBV) and cytomegalovirus was negative in 80% and 78% of cases, respectively. Radiographic evaluation revealed mediastinal adenopathy in 45% of patients, and pulmonary parenchymal lesions in 55%. Fifty-five percent of patients also had extrathoracic involvement. Diagnosis was achieved by CT-guided transthoracic needle biopsy in eight patients, and by open biopsy in three patients. Pathologic analysis revealed monomorphic PTLD (ie, diffuse large B-cell lymphoma) in seven patients, polymorphic PTLD in two patients, anaplastic large cell lymphoma in one patient, and Hodgkin lymphoma in one patient. Eighty-four percent of the specimens evaluated for EBV were determined to be positive by in situ hybridization and/or immunohistochemistry. All patients were initially treated with a reduction in immunosuppression therapy, and six patients (55%) received adjuvant chemotherapy. The overall mortality rate was 64%. Four patients died from complications of PTLD (kidney, two patients; heart, one patient; bone marrow, one patient), and three patients (all lung transplant recipients) died from rejection or infectious complications. The median interval from diagnosis to death was 13 months (range, 1 to 42 months). CONCLUSIONS: Thoracic PTLD can occur in any transplant patient and must be regarded as a potentially fatal complication in the immunosuppressed patient. Heart and lung allograft recipients have the worst prognosis because of the mortality that accompanies rejection with subtherapeutic immunosuppression therapy. Earlier diagnosis and improvements in immunosuppression and chemotherapy may improve survival for these inherently high-risk patients.

Adult↗

Autopsy pathology of pediatric posttransplant lymphoproliferative disorder.

OBJECTIVES: Posttransplant lymphoproliferative disorder (PTLD) causes significant morbidity and mortality, is related to Epstein-Barr virus (EBV) infection, and is more common in children than in adults. We reviewed autopsies of children who died with PTLD to compare postmortem with antemortem PTLD histology, to assess the extent of PTLD, to document associated pathology, and to identify cause of death. METHODS: Postmortem examinations were performed on 7 patients after bone marrow (n = 3) or liver (n = 4) transplant. PTLD was classified histologically as hyperplasia or lymphoma. In situ hybridization for EBER1 messenger RNA was performed on tissue samples from all cases. EBV serologies were used to categorize infections as negative, primary, or reactive. RESULTS: PTLD was diagnosed in 5 children 12 to 35 (mean: 22) days before death, and 1.5 to 4 (mean: 3) months after transplant; PTLD was diagnosed in 2 cases at autopsy 2.5 and 4 months after transplant. Postmortem PTLD histology resembled antemortem histology; 5 PTLDs were lymphoma, 1 was hyperplasia, and 1 contained both lymphoma and hyperplasia. EBER1 messenger RNA was detected in 6 B-cell PTLDs, including lesions from patients who did not have EBV serology that indicated active infection. Complete autopsy of 4 patients who died with biopsy-proven PTLD revealed widely disseminated disease, and lymph node, brain, gastrointestinal tract, and kidney were involved in all 4 patients. Cases diagnosed at autopsy were 1 widely disseminated PTLD that had been suspected but not proven antemortem, and 1 PTLD confined to abdominal lymph nodes that was not suspected antemortem. Severe organ dysfunction (renal failure, gastrointestinal hemorrhage) was caused by massive PTLD infiltration in 2 patients. The conditions other than PTLD that contributed to morbidity and death were organ infection (5 cases), infarcts (4 cases), and diffuse alveolar damage (3 cases). CONCLUSIONS: PTLD may occur within weeks after transplant in children. The distribution of PTLD comprises a spectrum from localized and subclinical to widely disseminated and symptomatic. PTLD may cause demise quickly after the onset of signs and symptoms, through massive organ infiltration or associated conditions, such as diffuse alveolar damage. EBV serology may not accurately reflect the presence or extent of PTLD. Autopsy studies of transplant patients are necessary to identify the true incidence, natural history, and response to treatment of PTLD.

Autopsy↗

Bcl-6 protein expression by follicle center lymphomas. A marker for differentiating follicle center lymphomas from other low-grade lymphoproliferative disorders.

Low-grade lymphoproliferative disorders are a heterogeneous group of lymphoid neoplasms with wide variation in histologic features, immunologic phenotype, and molecular abnormalities. Subclassification of these disorders with small lymphocytic proliferation may be difficult on the basis of morphologic findings alone. The bcl-6 gene, originally cloned from a tumor with 3q27 translocation, is commonly expressed in large cell lymphomas. In humans, bcl-6 encodes for a Krüppel-type zinc finger protein and is believed to be important in germinal center formation. Bcl-6 protein is expressed mainly by follicle center cells and a few interfollicular T lymphocytes. We analyzed Bcl-6 expression with immunologic methods in common low-grade lymphoproliferative disorders as an aid to differentiation of tumors with follicle center origin. We analyzed Bcl-6 staining of formalin-fixed paraffin-embedded tissue from 72 indolent lymphomas including 31 grade I and II follicle center lymphomas (FCL). 13 small lymphocytic lymphomas (SLL), 12 mantle cell lymphomas (MCL), and 16 marginal zone lymphomas (MZL) including lymphomas of mucosa-associated lymphoid tissue and spleen. All of 31 FCL were positive for Bcl-6 expression. One of 13 SLL and 1 of 12 MCL were positive, whereas none of 16 MZL were positive. Bcl-6 was also detected in 5 of 5 FCL and 1 of 3 MZL but in no SLL or MCL by Western blot analysis in 14 cases with lymphoid disorders. Our study demonstrates that Bcl-6 expression is common in low-grade FCL but is rare in other indolent B-cell lymphoid disorders, and may be a useful adjunct in classification of indolent lymphomas.

Adult↗