Classification of Hodgkin's disease: yesterday, today and tomorrow.
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Biomedical subjects
Publications and source records attributed to J E Ultmann.
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Unknown primary malignancy (UPM) is not a disease entity. Rather, it represents a variety of different metastatic, malignant neoplasms all presenting with either an occult primary or having such a highly undifferentiated histologic appearance that an accurate pathologic classification on routine hematoxylin-eosin section is not possible. UPM is a spectrum of malignancies that includes those that are treatable and curable and those for which no specific treatment exists. For the physician, a diagnosis of UPM represents a beginning rather than an end. The minimal workup of such patients includes a thorough history and physical examination, complete blood counts, urine analysis, multichannel chemistries, a chest radiograph, and computed tomography of the abdomen and pelvis. Having completed this workup, further tests are unnecessary and unwarranted unless specific symptoms or physical signs exist. Once the aforementioned workup is completed, the physician must communicate frequently and freely with the pathologist as further diagnostic tests will be laboratory based and include electron microscopy, histochemical stains, and immunocytochemistries. Immunocytochemistries are relatively new laboratory procedures which have made a significant contribution in the accurate pathologic diagnosis of a tissue specimen that in years past would have been classified as an unidentified malignant neoplasm. An initial panel of immunocytochemistries (vimentin, cytokeratin, CEA, and common leukocyte antigen) should be performed on the tissue block in patients with UPM as they provide direction in the accurate classification of the malignant neoplasm. Chromosomal analysis of tissue is useful in the recognition of lymphomas or soft-tissue sarcomas which would otherwise be classified as UPM. In years to come, when specific DNA probes capable of identifying specific chromosomal rearrangeaments are widely available, pathologic classification of UPM will be performed on a molecular level. Some unknown primary malignancies are treatable and potentially curable. These include large cell lymphoma, extragonadal germ cell malignancies, squamous cell carcinoma metastatic to cervical lymph nodes without an obvious primary, metastatic adenocarcinoma to axillary lymph nodes in women (invariably on occult breast primary), and malignant ascites in women, which usually represents ovarian cancer. Metastatic adenocarcinoma of unknown primary origin, with the exception noted above and the rare presentation of an occult prostate cancer as UPM, is an ultimately fatal malignancy with a relatively shor clinical course.(ABSTRACT TRUNCATED AT 400 WORDS)
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Between September 1983 and April 1985, 15 patients with previously untreated intermediate and high grade lymphoma were treated with COMLA/ABP (cyclophosphamide, vincristine, cytarabine, methotrexate, leucovorin, adriamycin, bleomycin, prednisone). There were nine males and six females; age ranged between 36 and 77 years (median, 58). Histologic diagnoses included five patients with diffuse large cell, six patients with immunoblastic, three patients with composite, and one patient with follicular large cell with diffuse areas. Following therapy, 10 patients (67%; 95% confidence interval (Cl), 43-91%) achieved a complete remission (CR) including five of six patients with immunoblastic; three patients (20%) had a partial remission, and two patients (14%) had no response. Toxicity was acceptable. After a minimum follow up of 4 years, there has been only one relapse which occurred 7 months after CR. The 4-year survival for all 15 patients is 65% (95% Cl, 40-89%). The COMLA/APB program produced a high rate of complete and durable remissions especially among patients with immunoblastic lymphoma.
Ninety-eight patients with pathological Stage (PS) III Hodgkin's disease treated between 1969 and 1984 were retrospectively analyzed. Treatment consisted of radiation therapy (RT) alone in 46 patients and combined radiation therapy and chemotherapy (CMT) in 52 patients. The median follow-up was 10 years (range 3-19 years). Fifteen-year year survival for patients with Stage III1-is better than for Stage III2 patients (82% vs 53%; p = .014). Patients with Stage III1A have a favorable prognosis regardless of treatment modality. The probability of freedom from relapse at 15 years for patients with pathological Stage III1A treated with radiation therapy is 70%, compared to 83% for pathological Stage III1A patients treated with combined modality therapy (p = .56). In patients with pathological Stage III2A, III1B, and III2B relapses were less frequent with the use of combined modality therapy compared to radiation therapy. We conclude that pathological Stage III1A patients may be treated with radiation therapy alone; the other subsets of patients benefit from combined radiation and chemotherapy.
Radiation therapy was used to treat 36 patients with pathological Stage I and II diffuse histiocytic lymphoma at The University of Chicago Hospitals from 1970 to 1986. Twenty-two patients had pathological Stage I and 14 had pathological Stage II diffuse histiocytic lymphoma. The patients were treated with a median tumor dose of 50 Gy (range of 40-60 Gy). Therapy consisted of extended field radiation therapy in 27 patients (extended mantle or total nodal irradiation) and involved field irradiation in nine patients. The 10-year actuarial relapse-free survival for pathological Stage I and pathological Stage II patients was 91% and 35%, respectively (median follow-up of 7 years). None of the 22 pathological Stage I patients had bulky mediastinal or abdominal disease. Of the 22 pathological Stage I patients, one failed in an unirradiated contiguous lymph node and one relapsed with disseminated disease. Of the 14 pathological Stage II patients, two patients with bulky disease failed in field, one patient failed in a contiguous node, three patients failed within the abdomen, and three patients failed with disseminated disease. To better evaluate the efficacy of staging laparotomy, we analyzed the patterns of failure of 17 clinical Stage I and II diffuse histiocytic lymphoma patients. Four of these patients failed in field (three in sites of bulky disease), and five patients relapsed in the abdomen (three with disseminated disease). Salvage treatment with multiagent chemotherapy resulted in second complete responses in seven of ten patients; however, all but one have recurred and are dead of disease. Radiation therapy may be used as the sole treatment in patients with pathological Stage I diffuse histiocytic lymphoma without bulky disease. Patients with pathological Stage II diffuse histiocytic lymphoma and clinically staged patients have a higher incidence of dissemination and relapse within the abdomen. A benefit resulting from the administration of extended field irradiation was not revealed by this study.
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In a significant fraction of patients with NHL or HD, disease develops that is resistant to conventional chemotherapy. Experience using high-dose chemotherapy, with or without TBI, and ABMR is expanding. In HD, remissions can be achieved in approximately half of the patients with relapsed advanced disease. This may also be true in patients with NHL who do not respond to conventional regimens. High-dose chemoradiotherapy regimens are toxic and require extensive supportive care. Relapse frequently occurs in areas of previous disease, suggesting failure of the conditioning regimen rather that an infusion of occult tumor cells in the autologous bone marrow had occurred. Thus, the role of marrow purging in this therapy needs to be further evaluated and compared with findings involving nonpurged marrow reinfusion. It is also important to evaluate the effects of more vigorous attempts at cytoreduction of bulky disease prior to high-dose therapy and ABMR. We recommend that high-dose therapy and ABMR in an investigational setting be used (1) in patients with HD who experience relapse after MOPP/ABVD or equivalent regimens and (2) in patients with intermediate or high-grade NHL whose disease recurs or is resistant to conventional regimens. Potential areas for development include the use of this modality as intensification therapy following conventional therapy in patients with intermediate or high-grade NHL with poor prognostic features. Toxicity can be decreased and efficacy increased only if therapy is administered to patients who have not been heavily pretreated and who have lower tumor burden and a good performance status. The role of high-dose chemotherapy of ABMR in the nodular lymphomas is not known at this point. Finally, high-dose ABMR therapy has a definite role in salvaging patients with malignant lymphomas. Many issues need to be resolved, including (i) the optimal timing of this approach, (ii) the optimal conditioning regimen, and (iii) the need for purging bone marrow prior to reinfusion. The past 10 years have led to significant gains. During the next 10 years, it may be possible to refine this therapy and find solutions to the above issues.
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Sixty-seven previously untreated patients with Hodgkin's disease, pathologic stages I and II, seen during a 7-year period were evaluted with respect to initial staging and treatment, as well as relapse and retreatment results. The initial treatment consisted of radiation therapy (RT) to an involved field (IF) or an extended field (EF) for patients with stages IA and IIA, or RT and, in recent cases, combination chemotherapy [cyclophosphamide, Oncovin, procarbazine, and prednisone (COPP)] for patients with stages IB and IIB. Nineteen of the 67 patients relapsed (28%), including 11 of 56 patients with stages IA and IIA (20%) and 8 of 11 patients with stages IB and IIB (73%). Seventeen of the 19 relapses occurred within 24 months after completion of the initial therapy (89%). The relapse-free survival at 5 years was 75% for the A patients and 25% for the B patients. The actuarial survival of stage IA and stage IIA patients at 5 years was 91%; there was no significant difference between patients treated initially with either IF or EF. The actuarial survival at 5 years for the patients with stages IB and IIB was 88%, as most responded to a second program of induction therapy. No correlation could be found between the pattern of relapse and the initial pathologic stage or the mode of treatment.
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The preferred histopathological classification of Hodgkin's disease (HD) is that suggested by Lukes and Butler as modified at the Rye Symposium; the histologic subtypes are highly reproducible and correlate well with the anatomic sites of involvement, clinical stage, and survival. The accuracy of the bipedal lymphangiogram, 67gallium scan, and ultrasonography in predicting abdominal involvement by HD is 90% , 50%, and 88%, respectively. Staging laparotomy remains the most accurate method of detecting intra-abdominal disease and has added immensely to new concepts in the management of HD. These concepts suggest that patients with nodal disease limited to the celiac axis or upper para-aortic areas (substage III1) or pathologic stage (PS) IIIS+N-A, when treated with extended field radiotherapy alone have survival rates comparable to PS IIA patients. In contrast, patients in PS IIIA with lower abdominal nodal disease (substage III2), regardless of splenic involvement, have a prognosis comparable to PS IV disease. Thus, there may only be two stages of HD, those curable with extended mantle or smaller radiotherapy fields alone, and those requiring chemotherapy with or without supplemental radiotherapy.
Four patients with advanced diffuse histiocytic lymphoma who developed lactic acidosis are described. All four patients demonstrated disturbed liver function tests. In two of the patients, the lactic acidosis was unresponsive to treatment. The third patient responded successfully to the early initiation of combination chemotherapy with achievement of a clinical remission and correction of the lactic acidosis. The fourth patient responded to the initiation of chemotherapy with abatement of his lactic acidosis, but expired probably as the result of a pulmonary embolus. It seems likely that extensive hepatic infiltration may be one of the factors contributing to lactic acidosis in patients with diffuse histiocytic lymphoma. The early initiation of antineoplastic therapy may be important in the management of patients with histiocytic lymphoma and lactic acidosis.