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Granulocyte-Colony Stimulating Factor (G-CSF) as an adjunct to antibiotics in the treatment of pneumonia in adults.

BACKGROUND: Granulocyte colony stimulating factor (G-CSF) is a naturally-occurring cytokine that has been shown to increase neutrophil function and number. Exogenous administration of recombinant G-CSF (filgrastim, pegfilgrastim or lenograstim) has found extensive use in the treatment of febrile neutropaenia, but its role in the treatment of infection in non-neutropaenic hosts is less well defined. OBJECTIVES: We explored the role of G-CSF as an adjunct to antibiotics in the treatment of pneumonia in non-neutropaenic adults. SEARCH STRATEGY: We searched the following electronic databases in 2003 and updated the search in 2004: the Cochrane Central Register of Controlled Trials (CENTRAL) (The Cochrane Library, Issue 1, 2004); MEDLINE (January 1966 to March Week 1, 2004); EMBASE (1998 to December 2003); online databases of clinical trials; and reference lists of articles. We also contacted study authors, manufacturers and distributors of G-CSF. SELECTION CRITERIA: We considered randomised controlled trials (RCTs) which included hospitalised adult patients with either community acquired pneumonia or hospital-acquired pneumonia. DATA COLLECTION AND ANALYSIS: Two reviewers independently extracted data and assessed trial quality. The primary outcome measure was 28 day mortality. Secondary outcome measures included other markers of mortality as well as markers of adverse events, including organ dysfunction. An assessment of methodological quality was made for each study. MAIN RESULTS: Six studies with a total of 1984 people were identified. G-CSF use appeared to be safe with no increase in the incidence of total serious adverse events (pooled odds ratio (OR) 0.91; 95% confidence interval (CI): 0.73 to 1.14) or organ dysfunction. However, the use of G-CSF was not associated with improved 28 day mortality (pooled OR 0.86; 95% CI: 0.56 to 1.31). REVIEWERS' CONCLUSIONS: There is no current evidence supporting the routine use of G-CSF in the treatment of pneumonia. Studies in which G-CSF is administered prophylactically or earlier in therapy may be of interest.

Adult↗

New treatments in ulcer healing and wound infection.

This review examines several of the recently introduced wound care products that have been put forward as treatment modalities for the diabetic foot ulcer. Discussed are the results of clinical trials with the platelet-derived growth factor, becaplermin, the tissue-engineered products Dermagraft and Apligraf, and Hyaff which is an ester of hyaluronic acid. In patients with an infected foot ulcer, encouraging results were obtained with the granulocyte-colony stimulating factor, Filgrastim.

Becaplermin↗

Severe chronic neutropenia: treatment and follow-up of patients in the Severe Chronic Neutropenia International Registry.

Severe chronic neutropenia (SCN) is defined as an absolute neutrophil (ANC) of less than 0.5 x 10(9)/L, lasting for months or years. Congenital, cyclic, and idiopathic neutropenia are principal categories of SCN. Since 1994, the Severe Chronic Neutropenia International Registry (SCNIR) has collected data to monitor the clinical course, treatments, and disease outcomes for SCN patients. This report summarizes data for 853 patients, almost all treated with daily or alternate-day recombinant human granulocyte colony-stimulating factor (G-CSF or Filgrastim). G-CSF treatment increased the ANC overall from 0.34 x 10(9)/L +/- 0.018 pre-treatment to 3.70 x 10(9)/L +/- 0.18 during the first year of treatment. For most patients, the responses were durable with patients remaining on the same dose of G-CSF for many years. Long-term hematological observations showed stable mean leukocyte and neutrophil counts and gradually increasing hemoglobin levels. Thrombocytopenia developed in 4% of patients. As of January 1, 2000, myelodysplasia (MDS) or acute myelogenous leukemia (AML) has occurred in 35 of 387 patients with congenital neutropenia with a cumulative risk of 13% after 8 years of G-CSF treatment. This event occurred without a predictable relationship to the duration or dose of G-CSF treatment. No patients with cyclic or idiopathic neutropenia developed MDS or AML. Other important adverse events included hepatomegaly, osteoporosis, vasculitis, glomerulonephritis, and deaths in 4 of 14 cases requiring splenectomy. Growth and development and the outcome of pregnancy appeared to be unaffected by G-CSF treatment. These data indicate that congenital, cyclic, and idiopathic neutropenia can be effectively treated with long-term G-CSF. The risk of leukemia, osteoporosis, other potentially adverse events, and pregnancy outcome need to be further evaluated with continuing long-term observations.

Adolescent↗

Delayed introduction of G-CSF after chemotherapy does not affect peripheral blood stem cell yield and engraftment kinetics in children with high-risk malignancies: retrospective study of 45 cases.

We retrospectively compared the effects of two time points of G-CSF (Filgrastim) introduction for PBSC mobilization in 45 children with different malignancies. Seventeen patients received the first G-CSF dose on day 2 or 3 following chemotherapy (group 1). Twenty-eight patients received a "flexible" G-CSF injection schedule when the G-GSF was started at the time of the first platelet count rise during post-chemotherapy recovery phase (group 2). Leukapheresis was performed when WBC recovery reached >2.0 x 10(9)/l or if the peripheral blood CD34(+) cell level was >0.01 x 10(9)/l. A median of 2 (1-4) leukapheresis procedures was performed in both groups to yield a median of 4.2 and 6.1 x 10(6) CD34(+) cells/kg in groups 1 and 2, respectively, which was generally sufficient for auto-transplantation. The proportion of patients with a failure of PBSC collection was similar and G-CSF consumption estimated through the total cycle dose was 2.3 times less in group 2 without increasing infectious risks. The short-term hematological recovery and the early post-transplant course were similar in the two groups. Delayed introduction of G-CSF after chemotherapy allowed PBSC harvest equivalent to that obtained after early G-CSF introduction. This approach could be an interesting alternative in PBSC mobilization but should be assessed by a prospective controlled study.

Adolescent↗

A phase 1 study to address the safety and efficacy of granulocyte colony-stimulating factor for the mobilization of hematopoietic progenitor cells in active rheumatoid arthritis.

OBJECTIVE: To examine the safety and efficacy of granulocyte colony-stimulating factor (G-CSF) alone for the mobilization of peripheral blood progenitor cells in patients with resistant active rheumatoid arthritis (RA). METHODS: Five patients with resistant active RA were studied. A dose of 5 microg/kg of G-CSF (Filgrastim) was given subcutaneously each day for 5 days, and the number of stem cells mobilized into the peripheral blood was assessed by daily CD34 counts. RA disease activity was assessed by standard clinical methods. RESULTS: The absolute numbers of peripheral blood CD34+ cells peaked on day 4, with a mean value of 0.025 x 10(9)/liter (range 0.013-0.048 x 10(9)/liter). There was no significant change in disease activity during the study or in the month following therapy. CONCLUSION: Using G-CSF alone, CD34+ progenitor peripheral blood cells were mobilized in numbers suitable for leukopheresis. G-CSF therapy was well-tolerated in patients with active RA, and was not associated with a flare during treatment or in the month following treatment.

Adult↗

A single, high dose of idarubicin combined with cytarabine as induction therapy for adult patients with recurrent or refractory acute lymphoblastic leukemia.

BACKGROUND: The majority of adult patients who are treated for lymphoblastic disease will either develop recurrent disease or will be refractory to their initial therapy. One option for patients with recurrent/refractory disease is to administer a reinduction regimen that employs a dose-intense combination of anthracycline and cytarabine. These salvage regimens are relatively distinct from the traditional vincristine/prednisone-based programs that are used typically as primary induction therapy. The authors studied a regimen that contained high-dose cytarabine and a single high dose of idarubicin as salvage induction therapy for patients with recurrent or refractory lymphoblastic disease. METHODS: Twenty-nine previously treated adult patients with recurrent or refractory acute lymphoblastic leukemia were treated with a new intensive regimen. Eight patients had primary refractory disease. Twenty-one patients had recurrent disease, and 16 of these patients developed recurrent disease while they were still receiving their primary therapy. The treatment regimen consisted of cytarabine 3.0 g/m(2) by 3-hour infusion daily for 5 days and idarubicin 40 mg/m(2) given as a single dose on Day 3. Filgrastim (granulocyte-colony stimulating factor) 5 microg/kg administered subcutaneously every 12 hours was started on Day 7 and was continued until the absolute neutrophil count was > 5000/microL. Response was assessed using standard criteria. RESULTS: There were 11 complete responses (38%; 95% confidence interval, 20-56%). Four patients subsequently underwent allogeneic bone marrow transplantation. Moderate but acceptable toxicity was observed given the severely myelosuppressive nature of the regimen. There was only one treatment-related death (3%). Two patients, both with significant prior exposure to anthracyclines, suffered reductions in left ventricular function to the 20-30% range during episodes of severe systemic infection. After recovery from infection, the ejection fraction in one patient improved to 50%. CONCLUSIONS: The authors conclude that this regimen has moderate activity and a relatively low incidence of mortality for this high-risk group of patients. This regimen may be most suitable for patients who can undergo potentially curative allogeneic bone marrow transplantation if they achieve a complete response.

Adult↗

Alternating chemotherapy with etoposide plus cisplatin and topotecan plus paclitaxel in patients with untreated, extensive-stage small cell lung carcinoma: a phase II trial of the North Central Cancer Treatment Group.

BACKGROUND: The objective of this study was to test the response rate and toxicity of alternating chemotherapy in previously untreated patients with extensive-stage small cell lung carcinoma (SCLC). METHODS: Patients with histologically proven, extensive-stage SCLC, with a performance status of 0-2, and who had received no prior chemotherapy were eligible. The design was a two-stage, Phase II, multicenter trial. Treatment consisted of alternating chemotherapy every 3 weeks with etoposide (100 mg/m(2) on Days 1-3) and cisplatin (30 mg/m(2) on Days 1-3) on Cycles 1, 3, 5 and with topotecan (1 mg/m(2) on Days 1-5) and paclitaxel (200 mg/m(2) on Day 5) on Cycles 2, 4, and 6. Filgrastim support was given with Cycles 2, 4, 6. RESULTS: Forty-four patients were eligible and evaluable. The primary toxicity was myelosuppression. The median absolute neutrophil count was 300/microL with 70% Grade 4 neutropenia. The median platelet count was 58,000/microL with 23% Grade 4 thrombocytopenia. Grade 4 nonhematologic toxicities occurred in 16% of patients. Overall toxicities were not different between the two regimens. There were no treatment-related deaths. Complete or partial responses occurred in 34 patients (77%). The median time to progression was 6.9 months, with a median survival of 10.5 months and with 1-year and 2-year survival rates of 37% and 12%, respectively. CONCLUSIONS: The regimen of alternating chemotherapy was associated with substantial myelosuppression and resulted in a high response rate and good overall survival. The results were similar to those reported in prior trials and did not suggest any improvement in therapy for patients with SCLC.

Adult↗

Monitoring tumour cells in the peripheral blood of small cell lung cancer patients.

BACKGROUND: Flow cytometry was used to enumerate tumour cells in longitudinal studies of peripheral blood from small cell lung cancer (SCLC) patients, together with magnetic bead selection to isolate and identify these cells. As part of a trial, 11 patients received either standard (four weekly) chemotherapy with ifosfamide, carboplatin, and etoposide (ICE) or accelerated (two weekly) ICE with filgrastim (granulocyte colony-stimulating factor [G-CSF]) and autologous stem cell support. METHODS: Fresh venous blood was taken throughout treatment and follow-up. Aliquots were stained with a "tumour-specific" antibody against epithelial tissue (Ber EP4), verified as a good marker of SCLC cells by immunohistochemistry. Matched samples labelled with Ber EP4 were separated magnetically by adding a secondary bead-antibody conjugate for confirmation of tumour cell identity. RESULTS: Circulating tumour cells were detected and monitored throughout treatment periods. An initial rise in circulating cells after the first cycle was followed by a fall in both treatment arms to baseline levels set by normal controls. This was achieved by week 12 in the accelerated treatment arm and by week 24 in the standard arm. CONCLUSIONS: Flow cytometry and magnetic bead isolation can be used to identify changes in numbers of circulating tumour cells in patients undergoing chemotherapy for SCLC and thereafter during follow-up periods. Absence of tumour cells may indicate a more favourable patient group who would benefit from a more intense course of treatment.

Antibody Affinity↗

Cytosolic proteins from neutrophilic granulocytes: a comparison between patients with severe chronic neutropenia and healthy donors.

A modified technique of two-dimensional gel electrophoresis (2-DE) was used to investigate differences in the pattern of cytosolic proteins of neutrophilic granulocytes from patients with severe congenital neutropenia, cyclic neutropenia, and idiopathic neutropenia in comparison with healthy donors. At the time of study, all patients tested received treatment with a recombinant human granulocyte colony-stimulating factor (r-metHuG-CSF; Filgrastim, Amgen). Using the Investigator 2-D Electrophoresis System (Millipore) we were able to detect more than 1000 protein spots in the cytosol of neutrophilic granulocytes from both patients and healthy controls. We investigated six patients with severe congenital neutropenia, five patients with cyclic neutropenia, four patients with idiopathic neutropenia, and 13 healthy donors. In the cytosol of neutrophilic granulocytes from patients we found an additional protein spot. This protein spot (molecular mass approximately 32.4 kDa, pI about 5.5) could be identified by internal sequencing after in-gel digestion with endoproteinase Lys-C as tropomyosin. The importance of the overexpression of tropomyosin in neutrophilic granulocytes from patients with severe chronic neutropenia is not yet understood.

Amino Acid Sequence↗

Stem cell mobilization by G-CSF in solid and hematological malignancies: single daily dose is better than split dose in obese patients.

In the past, variable results were reported for single daily and two divided daily doses of granulocyte colony-stimulating factor (G-CSF) in stem cell collection where no study exists investigating the effect of body mass index (BMI) on mobilization. The numbers of CD34(+) cells collected were compared in 86 patients with solid or hematological malignancies receiving either single daily (14 mug/kg/day) G-CSF (filgrastim) as group I (n=36) or two divided doses of G-CSF daily (2 x 7 mug/kg/day) as group II (n = 50). Both groups were divided into subgroups according to their BMI as group a (BMI </=25 kg/m(2)) and group b (BMI >25 kg/m(2)). Two groups were similar in terms of BMI, gender, and disease characteristics. All patients have received G-CSF as a single or two divided doses subcutaneously and aphereses have been done on the 5th day. No significant difference in numbers of CD34(+) cells between groups Ia and Ib, groups IIa and IIb, and groups Ia and IIa was found. On the other hand, the mean ratio and the number of CD34(+) cells in group Ib were significantly higher than those of group IIb (0.58 +/- 0.06% vs. 0.37 +/- 0.26%, P = 0.01 and 3.67 +/- 0.65 x 10(4)/kg/ml vs. 1.92 +/- 0.37 x 10(4)/kg/ml, P= 0.02). In conclusion, in patients with BMI >25 kg/m(2), once daily G-CSF compared to split dose administration induces a greater number of CD34(+) stem cell mobilization, which suggests the presence of a different pharmacokinetics in obese patients.

Adolescent↗

Hematopoietic growth factors for the treatment of severe chronic neutropenia.

Severe chronic neutropenia (SCN) is a rare but important cause of recurrent fevers, oropharyngeal ulcerations and severe infections. In three forms of SCN, i.e., congenital neutropenia (Kostmann's syndrome and related syndromes), idiopathic neutropenia (both childhood and adult), and cyclic neutropenia, it is now established that long-term treatment with the hematopoietic growth factor, recombinant human granulocyte colony stimulating factor (rHuG-CSF or Filgrastim), can elevate blood neutrophil counts to the normal range in most patients, with a concomitant reduction in infection-related events including fever, oral ulcerations, antibiotic use and symptoms of inflammation. Treatment with this growth factor causes an increase in the number and maturity of marrow cells of the neutrophilic series; other cell lines are largely unaffected. Marrow stimulation and expansion are reflected by the occurrence of bone pain early in therapy, as well as some increase in spleen size in most cases. Adverse effects of therapy are infrequent in both children and adults, and long-term treatment with daily or every-other-day s.c. injections of rHuG-CSF are well accepted. Because of the risk that some patients with chronic neutropenia may have or develop myelodysplasia and/or leukemia, careful pretreatment evaluations (blood, bone marrow and cytogenetics) and long-term observations are extremely important. An international registry for patients with SCN has been established to maintain records and further investigate these conditions.

Adult↗

Sequential high-dose treatment with peripheral blood progenitor cell transplantation in patients with multiple myeloma.

In June 1992, we started a dose-escalated cytotoxic therapy with peripheral blood progenitor cell (PBPC) transplantation in patients with chemosensitive multiple myeloma (MM). At the time of best response to conventional treatment, 70 patients received high-dose cyclophosphamide (HD-CY) or, in case of pre-existing heart disease, dose-escalated ifosfamide/mitoxantrone followed by filgrastim (R-metHuG-CSF, 300 micrograms/day). PBPC collection was commenced when CD34+ cells were detectable using direct immunofluorescence analysis. Fifty-four out of 70 patients were successfully harvested (> or = 2.5 x 10(6) CD34+ cells/kg body weight [BW]) after the first cycle of HD chemotherapy. Conditioning therapy consisted of 140 mg/m2 melphalan plus TBI (14.4 Gy hyper-fractionated) or 200 mg/m2 melphalan in patients not eligible for TBI because of previous radiotherapy. To date, 56 patients have been transplanted. Autografts contained a median of 3.4 x 10(6) CD34+ cells/kg BW. Following reinfusion of PBPC, rapid engraftment was achieved in 54 out of 56 patients with a median of 14 days (range 9-23) to reach 0.5 x 10(9)/l neutrophils and 10 days (range 5-22) for an unsubstituted platelet count of > 20 x 10(9)/l. One patient died of transplantation-related complications. Sequential HD treatment improved the remission status (European Bone Marrow Transplantation criteria) in 19 out of 46 patients (9 patients too early). Of note, in 11 patients the immunofixation became negative and a polyclonal immunoglobulin reconstitution was achieved. Our protocol provides an effective treatment strategy for patients with advanced MM combined with low treatment-related toxicity.

Adult↗

Early Australian clinical studies with pegylated recombinant human megakaryocyte growth and development factor.

Pegylated recombinant human megakaryocyte growth and development factor (PEG-rHuMGDF, an Mpl ligand) is a truncated form of native thrombopoietin currently undergoing clinical development. A series of studies in Australia have examined the safety and biological activities of PEG-rHuMGDF. Administration of PEG-rHuMGDF causes a dose-dependent increase in platelet count but has no effect on white cell count or hematocrit. These platelets are morphologically and functionally normal. When administered following moderately myelosuppressive chemotherapy, PEG-rHuMGDF significantly enhances platelet recovery, although scheduling in relation to chemotherapy may be important in optimizing the full effects. PEG-rHuMGDF mobilizes progenitor cells of multiple hematopoietic lineages, and alters the kinetics of peripheral blood progenitor cell mobilization after chemotherapy and filgrastim. PEG-rHuMGDF is well tolerated and does not cause toxicity similar to that observed with other thrombopoietic cytokines. Numerous studies are underway to help determine the precise role of PEG-rHuMGDF in clinical practice.

Australia↗

Increase of anti-inflammatory cytokines in patients with esophageal cancer after perioperative treatment with G-CSF.

Granulocyte colony-stimulating factor (G-CSF) has been shown to effectively stimulate granulopoiesis, in both neutropenic and in non-neutropenic patients. Recently, other effects of G-CSF on the immune system have attracted interest in treating non-neutropenic patients with a high risk of severe infection. In this phase II trial, we measured the effects of G-CSF on the serum cytokine levels in patients with esophageal cancer undergoing esophagectomy. Twenty subsequent patients (study group, 19 evaluable) received G-CSF (rhG-CSF, Filgrastim) at standard doses (300 microg or 480 microg) subcutaneously 2 days before and up to 7 days after surgery. G-CSF was well tolerated. Leukocytes increased from 7600/microl at study entry (day -2) to a maximum of 45 100/microl (day 6). In the study patients, we found a highly significant (P<0.001) postoperative increase of G-CSF, IL-1ra, sTNFRp55 and sTNFRp75 as compared with the baseline level. In contrast, IL-8 levels were decreased by a factor of 6.8; there were no changes in the very low TNF-alpha levels. The comparison of the study group with a control group of 21 cancer patients undergoing major surgery who were not treated with G-CSF showed significant differences in the serum levels of G-CSF, sTNFRp55, sTNFRp75, and IL-1ra, respectively. There was no infection in the study group up to 10 days after surgery as compared with 29.9% in a historical control group (P=0.008). Thus, the induction of anti-inflammatory cytokines and the downregulation of pro-inflammatory cytokines by G-CSF might be a promising adjuvant treatment of infectious complications in patients undergoing esophagectomy.

Adenocarcinoma↗

Phase I trial of carboplatin, paclitaxel, etoposide, and cyclophosphamide with granulocyte colony stimulating factor as first-line therapy for patients with advanced epithelial ovarian cancer.

OBJECTIVES: The goal of this study was to determine the maximally tolerated doses (MTDs) of carboplatin, paclitaxel (Taxol), etoposide, and cyclophosphamide (CTEC) with granulocyte-colony stimulating factor (G-CSF, Filgrastim) support as first-line chemotherapy in women with advanced epithelial ovarian cancer (EOC). METHODS: Newly diagnosed patients with either stage IV EOC, or stage III EOC and any amount of gross residual tumor after surgical debulking were eligible to receive six cycles of CTEC over five different dose levels in this phase I trial (planned 21-day cycle length). Paclitaxel, carboplatin, and cyclophosphamide were administered intravenously on Day 1, and oral etoposide was administered on Days 1, 2, and 3. G-CSF was administered beginning Day 4. RESULTS: Twenty patients received a total of 98 cycles of CTEC over the five dose levels evaluated. Bone marrow suppression was the major toxic effect, with grade 4 neutropenia and thrombocytopenia being observed in 25 and 23% of cycles, respectively. The overall incidence of febrile neutropenia was 10%, and no toxic deaths occurred. No grade IV thrombocytopenia or febrile neutropenia was observed once the carboplatin dose was reduced from AUC of 7 to 5. Nonhematologic toxicity was generally mild (grade 2 or less). Dose-limiting toxicity was not observed at the highest dose level evaluated in this study, preventing assignment of the MTD. The clinical complete response rate was 92%, although 15 of 16 evaluable patients have progressed with a median progression-free interval of 4 months (range, 2-11 months). One patient remains disease-free 9 months from the completion of CTEC. CONCLUSIONS: The CTEC regimen is well tolerated and highly active. Although the MTD was not reached in this study, the short median progression-free interval suggests that this regimen is unlikely to be superior to standard treatment with paclitaxel and carboplatin. Strategies to optimize the development of future combination chemotherapy regimens in the treatment of newly diagnosed ovarian cancer are discussed.

Adult↗

[G-CSF in radiochemotherapy].

BACKGROUND: G-CSF enhances the division, maturation and release of granulocyte precursor cells. The shortening of chemotherapy-induced leukopenia via G-CSF is well documented in literature, with fractionated radiotherapy alone one finds a distinct increase of the granulocyte level. There are only few results for combined simultaneous radiochemotherapy. PATIENTS AND METHODS: In the Department of Radiotherapy of the University of Erlangen 102 patients were treated with G-CSF since 1992. Twenty-eight patients (31 applications) undergoing radiotherapy only (n = 4) or combined simultaneous radiochemotherapy (n = 27) received G-CSF interventional daily. These results are presented and discussed. Indications for the application of G-CSF were severe leukopenia below 1000/mm3 (level IV according to WHO) or rapid decreasing leukocytes during therapy. G-CSF was not applied during chemotherapy and terminated at least 24 h before the next chemotherapy cycle. r-metHuG-CSF (Filgrastim, Neupogen) was used subcutaneously. Documented were the duration until the leukocyte increase, neutrophil granulocytes, thrombocytes, interruption of radiotherapy, febrile episodes and side effects. RESULTS: In case of severe leukopenia (< 1000/mm3 n = 16) the leukocytes increased after 3 days of G-CSF application, the radiotherapy was interrupted in 2 cases, terminated in 1 case. Four patients had lever before during G-CSF 4 additional febrile episodes occurred. If G-CSF application was started between leukocyte levels of 1000 and 1500/mm3 after 1 day the leukocytes increased in 9 of 10 cases beyond the starting level. Interruption of radiotherapy was not necessary. Only 1 febrile episode occurred (1/11). There were no relevant side effects of G-CSF. CONCLUSIONS: Rapidly developing or severe leukopenia during radio(chemo)therapy are indications for an interventional application of G-CSF. The leukocyte level for the start of G-CSF should be chosen so that without G-CSF an interruption of therapy or a level IV leukopenia seems to be unavoidable.

Antineoplastic Combined Chemotherapy Protocols↗

Granulocyte-colony stimulating factor in the prevention of postoperative infectious complications and sub-optimal recovery from operation in patients with colorectal cancer and increased preoperative risk (ASA 3 and 4). Protocol for a controlled clinical trial developed by consensus of an international study group. Part two: design of the study.

GENERAL DESIGN: Presentation of a new type of a study protocol for evaluation of the effectiveness of an immune modifier (rhG-CSF, filgrastim): prevention of postoperative infectious complications and of sub-optimal recovery from operation in patients with colorectal cancer and increased preoperative risk (ASA 3 and 4). This part describes the design of the randomised, placebo controlled, double-blinded, single-centre study performed at an university hospital (n = 40 patients for each group). OBJECTIVE: The trial design includes the following elements for a prototype protocol: * The study population is restricted to patients with colorectal cancer, including a left sided resection and an increased perioperative risk (ASA 3 and 4). * Patients are allocated by random to the control or treatment group. * The double blinding strategy of the trial is assessed by psychometric indices. * An endpoint construct with quality of life (EORTC QLQ-C30) and a recovery index (modified Mc Peek index) are used as primary endpoints. Qualitative analysis of clinical relevance of the endpoints is performed by both patients and doctors. * Statistical analysis uses an area under the curve (AUC) model for improvement of quality of life on leaving hospital and two and six months after operation. A confirmatory statistical model with quality of life as the first primary endpoint in the hierarchic test procedure is used. Expectations of patients and surgeons and the negative affect are analysed by social psychological scales. CONCLUSION: This study design differs from other trials on preoperative prophylaxis and postoperative recovery, and has been developed to try a new concept and avoid previous failures.

Clinical Protocols↗

Granulocyte-colony stimulating factor in the prevention of postoperative infectious complications and sub-optimal recovery from operation in patients with colorectal cancer and increased preoperative risk (ASA 3 and 4). Protocol of a controlled clinical trial developed by consensus of an international study group. Part three: individual patient, complication algorithm and quality manage.

GENERAL DESIGN: Presentation of a new type of a study protocol for evaluation of the effectiveness of an immune modifier (rhG-CSF, filgrastim): prevention of postoperative infectious complications and of sub-optimal recovery from operation in patients with colorectal cancer and increased preoperative risk (ASA 3 and 4). A randomised, placebo controlled, double-blinded, single-centre study is performed at an University Hospital (n = 40 patients for each group). This part presents the course of the individual patient and a complication algorithm for the management of anastomotic leakage and quality management. OBJECTIVE: In part three of the protocol, the three major sections include: The course of the individual patient using a comprehensive graphic display, including the perioperative period, hospital stay and post discharge outcome. A center based clinical practice guideline for the management of the most important postoperative complication--anastomotic leakage--including evidence based support for each step of the algorithm. Data management, ethics and organisational structure. CONCLUSIONS: Future studies with immune modifiers will also fail if not better structured (reduction of variance) to achieve uniform patient management in a complex clinical scenario. This new type of a single-centre trial aims to reduce the gap between animal experiments and clinical trials or--if it fails--at least demonstrates new ways for explaining the failures.

Algorithms↗