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Biomedical subjects

W C Rose

Publications and source records attributed to W C Rose.

At least 73 records · Page 4Linked to original sources

Immunotherapy of Madison 109 lung carcinoma and other murine tumors using lentinan.

Lentinan was evaluated initially against the Lewis (LL) and Madison 109 (M109) lung carcinomas implanted in the footpads of syngeneic mice. Activity in these tumor models was assessed by both reduction in early tumor growth rates and increases in life span and cures, relative to untreated control mice with tumors. Lentinan given i.p. to mice bearing LL footpad tumors caused a reduction in tumor growth rate in only one of three experiments and an increase in life span of 48% at one dose level on another occasion. In contrast, lentinan given i.p. to mice bearing M109 footpad tumors was consistently curative (50 to 70%) in three experiments despite the lack of an effect upon early tumor growth rate. In subsequent experiments, syngeneic mice were implanted s.c. with M109 or LL and treated with lentinan. Although lentinan had no substantial effect upon LL, 25 to 75% of mice bearing s.c. M109 tumors were cured in three separate experiments following early treatment initiation. Delayed lentinan therapy, initiated when s.c. M109 tumors were greater than 100 mg, also resulted in complete tumor regression and cure of 29 to 63% of the mice in three experiments. Surgical adjuvant immunotherapy of s.c. M109 using lentinan also improved survival rates over those obtained using surgery alone. Mice cured of s.c.-implanted M109 using lentinan, or surgery plus lentinan, but not surgery alone, survived a rechallenge with M109. The therapeutic effects of lentinan in mice implanted s.c. with B16 melanoma were inconsistent.

Animals↗

Antiemetic activity of butorphanol against cisplatin-induced emesis in ferrets and dogs.

The analgesic agent butorphanol was evaluated for its ability to block cisplatin-induced emesis in ferrets and dogs. In ferrets, butorphanol (0.15, 0.3, or 0.45 mg/kg; expressed in terms of the tartrate salt) administered sc 30 minutes prior to cisplatin (8 mg/kg iv) reduced the number of emetic episodes but did not eliminate them. When these doses of butorphanol were administered 30 minutes before and 30 and 90 minutes after cisplatin, they caused a dose-related reduction in the number of emetic episodes; there was complete protection at a dose of 0.45 mg/kg/injection. In dogs, butorphanol (0.185 or 0.37 mg/kg/injection, expressed in terms of the tartrate salt) was administered sc on the same multiple-dose schedule used in the ferrets; this caused a nearly complete elimination of the emetic response to cisplatin (3 mg/kg iv). Butorphanol caused some sedation in both species at effective antiemetic doses but had no effect on the antitumor activity of cisplatin against murine L1210 leukemia. Naloxone blocked the antiemetic effect of butorphanol in ferrets, indicating the involvement of opiate receptors. The results of these studies suggest that butorphanol may be useful clinically in mitigating the emetic effects of cisplatin.

Animals↗

Comparative antitumor activity of actinomycin analogs in mice bearing Ridgway osteogenic sarcoma or P388 leukemia.

Actinomycin (Act) analogs, differing in the chemical substitution(s) made at various positions in either their pentapeptide chain(s) or chromophore ring, were evaluated for their antitumor activity in mice bearing either Ridgway osteogenic sarcoma (ROS) or P388 leukemia. Of the analogs tested against advanced (2--3-g) ROS tumors, azetomicin I and Act III caused therapeutic responses which, although variable, were nevertheless indicative of antitumor activities greater than was found using Act D. Several other analogs, Act C2, 2-N-(gamma-hydroxypropyl)-Act D, Act X0delta, and azetomicin II, displayed antitumor activity in ROS-bearing mice which varied, in different experiments, from comparable to superior to that achieved using Act D. Additionally, Act Pip1beta and 3'-(4-cisCl-Pro)-Act were comparable to, and Act-2-hydroxy-C3 inferior to, Act D in activity against ROS. Both azetomicin I and II were as effective as Act D in mice bearing P388 leukemia. Moreover, a subline of P388 that is resistant to Act D was cross-resistant to both azetomicin I and II.

Animals↗

Graft versus leukemia. VIII. Selective reduction in antihost reactivity without loss of antileukemic reactivity by treatment of donor mice with lipopolysaccharide.

Spleen and lymph node cells from DBA/2 (H-2d) donor mice treated with multiple injections of bacterial lipopolysaccharide (LPS) were tested in vivo for reactivity against normal tissues of host AKR (H-2k) mice against an AKR long-passage, acute lymphoblastic leukemia (BW5147). LPS treatment of donor mice resulted in a reduction in graft-versus-host (GVH) reactivity without loss of graft-versus-leukemia (GVL) reactivity. Immunocompetent cells from LPS treated DBA/2 donors were effective when used for adoptive immunotherapy (in combination with chemoradiotherapy) of BW5147 leukemia. GVH associated mortality decreased as the dose of spleen cells from LPS treated histoincompatible donors was increased as much as four times the number necessary to eliminate leukemia. The mechanism by which LPS reduced GVH reactivity without eliminating GVL reactivity is unclear; however, it does not appear to be the result of a dilution in the number of GVH reactive cells by nonlymphoid elements in the donor spleen nor of the adjuvant effects of LPS on resistance to bacterial infections.

Animals↗

Therapeutic potentiation of nitrosoureas using chlorpromazine and caffeine in the treatment of murine tumors.

The therapeutic usefulness of chlorpromazine (CPZ) and caffeine (CAF) in combination with selected nitrosoureas was investigated in mice bearing L1210 leukemia, Lewis lung carcinoma, and B16 melanoma. We found that using BCNU with either CAF or CPZ was therapeutically superior to using either agent alone to treat mice bearing L1210 leukemia. Administering all three drugs in combination did not improve upon the therapeutic responses obtained with the two-drug combinations. In mice implanted with Lewis lung carcinoma or B16 melanoma, responses to treatment with the triple combination of methyl-CCNU, CAF, and CPZ suggested, but did not clearly establish, superiority over each two-drug combination or methyl-CCNU alone.

Animals↗

Growth of human tumors in lethally irradiated mice reconstituted with syngeneic fetal liver cells.

Transplantation into lethally irradiated mice of hematopoietic and lymphoid cells from immature donors which hypothetically will not mount a cell mediated attack against simultaneously inoculated human tumor cells has resulted in tumor engraftment and growth in long-term surviving radiation chimeras. Twenty-four hours after lethal irradiation, A or CBA mice were given iv injections of 2 X 10(7) fetal liver cells from syngeneic donors of 14, 16, or 18 days of embryonation and sc injections of 1, 3, or 6 X 10(6) human choriocarcinoma (C-1, C-2, and C-3) cells or human breast carcinoma (B-1) cells that had been maintained in culture. Palpable tumors greater than or equal to 5 mm were noted in 18/22 mice injected with C-1, 9/16 with C-2, 10/10 with C-3, and 18/30 with B-1. Tumors of 17 (31%) of mice remained palpable until death of the animal or until termination of the experiment 100 days post inoculation. Histologic study of autopsy specimens revealed malignant tumors with occasional pulmonary metastases. Human chorionic gonadotropin was found in the serum of mice that received choriocarcinoma cells.

Animals↗

Transplantation of hematopoietic and lymphoid cells in mice.

CBA mice were exposed to a supralethal dose of whole body X-irradiation and recieved transplants of graded, small doses of bone marrow, fetal liver, or fetal liver plus fetal thymus cells obtained from H-2 matched C58 or H-2 mismatched A donors. Survival at 20 days was used to evaluate the ability of the transplants to restore hematopoiesis following the acute radiation injury. In the higher dose ranges of 6 X 10(7) and 1.2 X 10(8) cells/kg body weight, the fetal cells were as effective as adult bone marrow in both the matched and mismatched strain combinations. Survival at 100 days was used to evaluate the severity of chronic graft-versus-host disease produced by each of the transplants. In the higher dose ranges, cells from fetal donors promoted higher long-term survival rates than did comparable doses of bone marrow cells in both the matched and mismatched strain combinations. In some experimental groups, the addition of fetal thymus cells to fetal liver cells resulted in higher short-term and long-term survival rates than did fetal liver alone, but this was inconsistent and generally fell short of statistical significance. The most important finding was that cells from mismatched unrelated fetal donors (using a cell dose per kilogram body weight comparable to the number of fetal liver and thymus cells which would be obtainable from one human fetus at 14 weeks of embryonation) promoted higher long-term survival rates than did bone marrow transplants from matched unrelated donors.

Animals↗

Graft-versus-leukemia for AKR spontaneous leukemia-lymphoma.

Adoptive immunotherapy in the form of a transient graft of mismatched DBA/2 BM + LN cells was used in combination with several chemoradiotherapy regimens to treat AKR mice bearing advanced SLL. Leukemic mice treated in this manner had a significant prolongation of their MST and significantly higher survival rates 60 and 90 days posttreatment than corresponding control groups. Syngeneic- or allogeneic-matched cells did not provide substantial GVL effect. An inverse relationship that influenced survival was observed between the radiation dose and the dose of GVL effector cells used to treat leukemic AKR mice in the treatment model. Recurrence leukemia remains a major problem.

Amphotericin B↗

Mitigation of graft-versus-host disease in mice by treatment of donors with bacterial endotoxin.

Treatment of DBA/2 (H-2d) mice with bacterial endotoxin prior to transplantation of their spleen and lymph node cells into immunosuppressed AKR (H-2k) mice prevented acute mortality from graft-versus-host (GVH) disease. AKR mice that received immunocompetent cells from untreated DBA/2 mice had a median survival time (MST) of 13 days. In contrast, AKR mice that received immunocompetent cells from endotoxin-treated DBA/2 donors had an MST of 54 days. Endotoxin treatment of AKR recipients was not essential for preventing mortality from acute GVH disease. Chimerism was proved by demonstrating that the lymphoid cells of long-term surviving AKR mice had the characteristics of DBA/2 lymphoid cells as measured by their response in mixed leukocyte culture (MLC) tests. Spleen cells from endotoxin-treated DBA/2 mice were able to stimulate, and to be stimulated by, AKR spleen cells in MLC assays. Furthermore, spleen cells from endotoxin-treated DBA/2 mice did not suppress the responses of DBA/2 or AKR spleen cells in 'three-party' MLC tests.

Animals↗

Low-dose chemotherapy as a prelude to intensive treatment of spontaneous leukemia-lymphoma in AKR mice.

Groups of AKR mice bearing spontaneous leukemia-lymphoma were treated with five different combinations of chemotherapy or chemoradiotherapy. Each treatment combination was given in two sequences--high dose first and low dose last, or low dose first and high dose last--administered over 6-7 days. When the initial treatment was a high dose of chemotherapy, radiotherapy, or chemoradiotherapy, mortality in the first 24 hours exceeded 40%, and at least 70% of the mice in each group were dead within 2 weeks. When low-dose chemotherapy was given first, mortality in the first 24 hours was minimal but, most significantly, no deaths occurred in the 24 hours after subsequent high-dose treatment. In the most successful group (100 mg cyclophosphamide/kg on day 0, and 250 mg cyclophosphamide/kg and 400 R total-body X-irradiation on day 7), the median survival time increased significantly as compared with the median survival time among mice given the same regimen in reverse sequence (p less than 0.001) or among untreated control mice (p less than 0.01). With this regimen, survival 60 days after the last treatment was 47%. No mouse survived 30 days when the sequence of treatments was reversed. From these results, we conclude that chemotherapeutic and chemoradiotherapeutic regimens for AKR spontaneous leukemia-lymphoma should be designed so that low, minimally lethal doses precede higher doses.

Amphotericin B↗

Graft versus leukemia. VI. Adoptive immunotherapy in combination with chemoradiotherapy for spontaneous leukemia-lymphoma in AKR mice.

A three-step treatment plan incorporating adoptive immunotherapy and chemoradiotherapy was used to treat AKR (H-2k) mice bearing spontaneous leukemia-lymphoma (SLL). 1) Leukemic mice were treated with chemoradiotherapy for immunosuppression and leukemia cytoreduction. 2) To introduce a graft-versus-leukemia reaction against residual malignant cells, the immunosuppressed AKR mice were given immunocompetent cells from H-2 mismatched DBA/2 (H-2d) donors. 3) To "rescue" the AKR hosts from incipient graft-versus-host disease, the mismatched DBA/2 cells were killed with combination chemotherapy, and cells from allogeneic H-2 matched RF (H-2k) donors were administered to restore hematopoiesis. Leukemic AKR mice thus treated had significant prolongation of their median survival time and a higher 60-day survival rate post treatment than did untreated controls, chemoradiotherapy controls, or control mice that received chemoradiotherapy plus cells from syngeneic donors. Therefore, adoptive immunotherapy may be useful as an adjunct to conventional therapy for treatment of SLL in AKR mice.

Amphotericin B↗