BACKGROUND:The objective of this study was to determine whether fertility preservation (FP) with oocyte/embryo cryopreservation is associated with differences in disease-free survival (DFS). METHODS: This retrospective study included patients aged 18 to 45 who were diagnosed with invasive breast cancer between 2007 and 2017 and were seen for FP consultation at a university fertility center before cancer treatment. The primary endpoint, DFS, was defined as the time from FP consultation until patients developed a locoregional recurrence, distant metastasis, a contralateral breast tumor, or a new primary malignancy. DFS was compared for FP versus no FP using Kaplan-Meier survival estimates and Cox proportional-hazard regression analysis. RESULTS: The study included 329 women, with 207 (63%) in the FP group and 122 (37%) in the no FP group. Patients who underwent FP had more aggressive initial disease profiles than those in the no FP group. In addition, they were younger (35 vs 37 years; P = .009), more often had stage II or III disease (67% vs 55%; P = .03), and had higher rates of requiring chemotherapy (77% vs 65%; P = .01). Over a median follow-up of 43 months, the rates of DFS were similar among patients in the FP group and the no FP group (93% vs 94%, respectively; hazard ratio [HR] 0.7; 95% CI, 0.3-1.7). Positive ER status (79% vs 83%; P = .38), neoadjuvant chemotherapy (41% vs 48%; P = .32), ER-positive DFS (HR, 0.4; 95% CI, 0.1-1.6), and neoadjuvant chemotherapy DFS (HR, 1.4; 95% CI, 0.2-9.1) were similar in the FP and no FP groups, respectively. CONCLUSIONS: At a median follow-up of 43 months, FP appears unlikely to affect DFS, even in the setting of tumors with positive ER status or treatment with neoadjuvant chemotherapy (in which the tumor remains in situ during FP). Cancer 2020;126:487-495.
Virus-associated hemophagocytic syndromes are a heterogeneous group of disorders in which viral infection is associated with a proliferation of hemophagocytic histiocytes throughout the reticuloendothelial system. The authors report the case of a 24-year-old Vietnamese male who developed a hemophagocytic syndrome associated with Epstein-Barr virus (EBV) and who died following a rapidly progressive course. A proliferation of reactive-appearing lymphoid cells was associated with an extensive proliferation of erythrophagocytic histiocytes. Immunophenotypically, the lymphoid infiltrate consisted of CD56+ natural killer cells, predominantly CD8+ T-cells and rare B-cells (CD20+). Double-label immunohistochemical studies showed CD3+ T-cells and CD56+ natural killer cells to be distinct cell populations. Combined immunohistochemical-in situ hybridization studies localized EBV to CD43+, CD3-, CD68-, lymphoid-appearing cells, indicating the presence of EBV within natural killer cells. Southern hybridization analysis of EBV genomic termini revealed clonal EBV genome. However, there was no detectable immunoglobulin or T-cell receptor gene rearrangements. The findings indicate that this case of hemophagocytic syndrome represents a clonal proliferation of natural killer cells containing EBV and highlights the importance of the analysis of EBV genomic termini for determination of clonality in EBV-associated proliferations. It is possible that other cases of fulminant EBV-associated hemophagocytic syndromes represent clonal natural killer cell proliferations.
Although Hodgkin's disease (HD) has been a subject of much investigation, fundamental questions remain unanswered regarding its lineage and clonality. The authors used a polymerase chain reaction (PCR) technique to investigate whether clonal Variable-Diversity-Joining recombination of the immunoglobulin heavy (IgH) chain gene, a phenomenon that characterizes clonal B-cell proliferations, exists in nodular sclerosing (NSHD) and mixed cellularity (MCHD) Hodgkin's disease (so-called "classical" Hodgkin's disease). The isolation of DNA from paraffin-embedded tissue sections allowed for direct correlation of PCR results with the cell populations that were analyzed. Thirty-two cases were studied. These included 12 cases in which the Reed-Sternberg (RS) cells expressed the B-cell antigen, CD20, and 10 cases that were classified as syncytial variant of NSHD (3 CD20+, 7 B-cell antigen negative). Overall, clonal patterns of VDJ PCR products were found in 14 of 32 (44%) cases. These clonal patterns were identified in 7 of 12 (58%) cases of CD20+ classical HD and in 7 of 20 (35%) cases of B-antigen-negative classical HD. Clonal patterns were found in 3 of 10 cases of syncytial variant of NSHD, including 2 of 3 (67%) CD20+ cases and 1 of 7 (14%) B-cell antigen-negative cases. The results of this study provide support that a subset of HD represents a clonal B-cell neoplasm, and indicate that clonal IgH VDJ sequences are more frequently found in CD20+ HD.
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