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[Computed tomography in the evaluation of tumor regression after neoadjuvant therapy: X-ray surgery and X-ray morphological comparisons].

An analysis was made of chest computed tomograms of 38 small-cell lung cancer patients subjected to radical surgical treatment after neoadjuvant therapy. CT data were compared with the findings of macro- and microscopic examination of surgical specimens. In 24 (63.2%) patients, computed tomograms made before surgery showed complete tumor response confirmed by gross examination in 22 (96.1%) of them. However, microscopic examination found cancer cells in 8 (33.3%) patients. In 2 (8.3%) patients, small residual tumors could be detected by sight, which was confirmed by pathological examination. In 14 (36.8%) patients with partial response, radiological and gross examination findings fully coincided. Nevertheless, in 2 (14.3%) cases the "residual tumor" appeared to be a segment of fibrocicatrical tissue under pathological examination. On the basis of the CT findings the values of diagnostic sensitivity, accuracy and specificity in tumor response evaluation were calculated which made up 87.5%, 68.4% and 54.5% respectively. With sufficiently high sensitivity, CT specificity is low. CT makes it possible to objectively define the response of small-cell lung cancer to neoadjuvant therapy. However, the conclusion about complete response to the treatment can be made only on the basis of a comprehensive evaluation of the results of all available investigation methods and pathological examination.

Carcinoma, Small Cell↗

Interleukin-2 in neoadjuvant therapy potentiates inhibitory activity of 5-fluorouracil and interferon in experimental liver metastases.

Our previous studies showed that interferon (IFN) used in combination with 5-fluorouracil (5-FU) was effective in inhibiting colorectal tumor cell metastases to the liver in nude mice. Furthermore, IFN was also effective in neoadjuvant therapy and allowed the combination treatment (5-FU + IFN) to be delayed for 2-3 weeks following i.s. injections of tumor cells. In this study, we have examined the potential of interleukin-2 (IL-2) to substitute for IFN in neoadjuvant therapy. IL-2 was found to be equally effective, if not superior, to IFN as a neoadjuvant in inhibiting liver and lung metastases with 5-FU + IFN. Moreover, the effect of IL-2 was demonstrable even after 1 week, whereas IFN did not have an effect until 2 weeks of neoadjuvant dosing. These studies demonstrate IL-2 to be more effective than IFN as an immunomodulatory agent in combination with 5-FU + IFN for the inhibition of liver metastases in nude mice.

Animals↗

Adjuvant and neoadjuvant therapy for gastric cancer.

In the United States and in Europe, curative resections are possible in only 50% to 60% of newly diagnosed gastric cancer patients chosen to undergo surgery. For patients with higher stage tumors (T3-N(any)M0, T34N(any)M0, stages II, IIIa or IIIb), even after resection of all gross disease with negative margins, the recurrence risk is high. In the absence of earlier diagnosis, there is a clear need to develop new innovative treatment strategies that will increase the potentially curative resection rate and decrease the risk of recurrence after operation. The major treatment strategy pursued during the last 20 to 30 years has been postoperative systemic therapy with or without associated regional radiation. In general, using the systemic treatment regimens available in the past, no major decrease in recurrence rate has been shown. The use of routine postoperative systemic chemotherapy remains unproven. Several new approaches are currently undergoing intense study, in addition to chemoradiation. One involves the use of preoperative (neoadjuvant) systemic chemotherapy. The goal of these treatment plans is to allow an early attack on systemic micrometastatic disease, and by downstaging the primary tumor to increase the percentage of patients able to undergo curative resection. Phase 11 studies performed to date indicate acceptable toxicity to multidrug regimens including cisplatin-fluorouracil, variants of the 5-fluorouracil, doxorubicin, high-dose methotrexate (FAMTX) regimen, or other cisplatin-containing combinations. No increase in operative morbidity or mortality has been found. Large-scale trials using neoadjuvant therapy are in the advanced planning stage. A second approach (used with or without neoadjuvant therapy) is treatment with intraperitoneal adjuvant chemotherapy given in the immediate postoperative period. This strategy is based on the failure pattern of resected gastric cancer with its high rate of peritoneal and hepatic metastasis. In addition to phase II trials, several small-scale phase III studies have been completed. Although those which involve patients with known residual disease have, in general, been negative, studies in patients who were treated in the truly adjuvant setting (having undergone potentially curative resections with no residual disease) are more promising. Finally, chemoimmunotherapy has been extensively studied in trials in Japan and Korea. Thus, from the point of view of clinical practice, routine administration of intravenous postoperative chemotherapy has not yet shown clear evidence of benefit and the standard of care remains surgery alone. The most promising current approaches are neoadjuvant chemotherapy using newer combination regimens with or without postoperative intraperitoneal therapy, chemoimmunotherapy after surgery, and postoperative chemoradiation. National or international trials testing the hypothesis that these types of approaches are superior to expectant observation have a high priority. A large American intergroup trial is underway testing the concept of postoperative adjuvant chemoradiation. Additional trials involving preoperative and postoperative therapy are in the advanced planning stage.

Antineoplastic Agents↗

Neoadjuvant therapy for squamous cell esophageal carcinoma.

A number of studies have demonstrated that preoperative chemotherapy (CTx) and combination radiochemotherapy (RTx/CTx) in patients with potentially resectable and locally advanced squamous cell esophageal carcinoma is feasible. In patients with potentially resectable tumors, neoadjuvant therapy followed by surgical resection has, however, so far not shown an increase in the resection rate, rate of complete macroscopic and microscopic tumor resections, i.e. R0-resections according to the UICC, or survival time as compared to patients who had surgical resection alone. In this situation a survival benefit, if at all, can be expected only in those who respond to preoperative therapy. At the present time preoperative CTx or RTx/CTx in patients with potentially resectable esophageal carcinoma must therefore be considered investigational and should not be performed outside the context of clinical trials. In patients with locally advanced esophageal carcinoma, neoadjuvant therapy markedly increases the rate of R0-resections and appears to prolong survival. Combined modality therapy in this context is, however, associated with a substantial perioperative mortality and morbidity. Open questions that have to be addressed by randomized studies include the role, extent and timing of surgical resection in the combined modality approach to patients with locally advanced squamous cell esophageal carcinoma. Research has to focus on preoperative staging modalities and the development of more effective and less toxic preoperative therapy regimen to improve identification of patients that might benefit from combined modality therapy and to more effectively combat systemic recurrences.

Antineoplastic Agents↗

Bropirimine as neoadjuvant therapy decreases residual disease and expression of markers PCNA and TGF-beta 1 in a rat orthotopic prostate adenocarcinoma.

The role of bropirimine in prostate cancer remains unexplored. To address the efficacy of this immune modulator as neoadjuvant therapy we utilized the orthotopic placement of the Dunning AT-3 tumor. 2.4-2.6 x 10(6) Dunning AT-3 cells were injected into the ventral prostates of 50 Copenhagen X Fischer rats. Animals were then divided into 5 groups consisting of: 1) untreated controls; 2) those treated with ventral prostatectomy alone (performed 10-12 days following tumor cell inoculation); 3) those treated with ventral prostatectomy plus bropirimine (10 mg/kg) on postimplantation days 1, 3, 5, 10 and 11; 4) those treated with ventral prostatectomy plus bropirimine (100 mg/kg), at the same schedule; and 5) those treated with ventral prostatectomy plus bropirimine (500 mg/kg), at the same schedule. Animals were sacrificed 10 days after prostatectomy, autopsied, and residual disease was weighed. Prostate weights upon removal following neoadjuvant treatment and residual disease remaining after 20-22 days were expressed in grams (g). Following prostatectomy, mean prostate weights were: Group 2, 0.67 +/- 0.11; Group 3, 0.53 +/- 0.11; Group 4, 0.54 +/- 0.12; Group 5, 0.44 +/- 0.09. The effect of bropirimine was significant (p = 0.0001) by multiple regression analysis. In addition, mean residual tumor weights (expressed in grams) after 20-22 days were: Group 1, 12.7 +/- 1.9; Group 2, 6.7 +/- 4.8; Group 3, 5.2 +/- 5.9; Group 4, 3.8 +/- 3.5; and Group 5, 2.8 +/- 3.5. The effect of bropirimine was not significant (p = 0.07) by multiple regression analysis. However, prostatectomy alone, by Student's test, significantly (p = 0.04) reduced residual mean tumor weights by 47% and the additional effect of bropirimine upon residual disease was significant (p = 0.038) if a Chi-square analysis is applied. Finally, a multivariate analysis of the overall effect of bropirimine in rats treated with prostatectomy was significant (p = 0.002). The effect of bropirimine on expression of proliferating cell nuclear antigen (PCNA) and transforming growth factor beta 1 (TGF-beta 1) was also evaluated immunohistochemically and expression of both tumor markers was significantly reduced (p < 0.05). We conclude that bropirimine may have a role as a neoadjuvant therapy when combined with prostatectomy.

Adenocarcinoma↗

Response monitoring of neoadjuvant therapy using CT, EUS, and FDG-PET.

Neoadjuvant or adjuvant multimodality therapy in oesophageal cancer is introduced in an effort to improve prognosis. However, in a substantial fraction of patients there is no response to this non-surgical therapy. Non-invasive imaging modalities such as computed tomography (CT), endoscopic ultrasound (EUS) and 18F-2-fluoro-2-deoxy-d-glucose positron emission tomography (FDG-PET) have been evaluated for assessing patient response to therapy, and these are described in this review. Currently, FDG-PET seems to be the best available tool for neoadjuvant therapy response assessment in oesophageal cancer.

Adenocarcinoma↗

Adjuvant and neoadjuvant therapies of pancreatic cancer: a review.

The survival of patients diagnosed with pancreatic cancer is dismal. Few patients on initial presentation are suitable for surgical resection. This has prompted clinical studies with chemotherapy and/or radiotherapy designed either to increase the number of patients eligible for surgery (neoadjuvant therapy) or to prolong the survival of patients who had undergone surgery (adjuvant therapy). None of these studies may at this time be considered definitive. Wherever possible, patients felt eligible for neoadjuvant or adjuvant therapy should be entered on clinical trials. Where this is not possible, clinicians should exercise their best judgment in offering this type of treatment to pancreatic cancer patients under their care.

Chemotherapy, Adjuvant↗

Safety of percutaneous ethanol injection as neoadjuvant therapy for hepatocellular carcinoma in waiting list liver transplant candidates.

UNLABELLED: Orthotopic liver transplantation (OLT) as therapy of hepatocellular carcinoma (HCC) improves the survival of a selected group of patients. Unfortunately, the progressive increase in waiting time for OLT may allow tumor progression. Percutaneous ethanol injection (PEI) has been proposed as neoadjuvant therapy for HCC in patients awaiting OLT, but its safety has not been defined. PATIENTS AND METHODS: During a 60-month period, 34 patients (27 men, overall mean age of 58.5 years, range 41-67) with HCC, were listed for OLT. Ultrasonography-guided PEI was delivered into 39 nodules at 117 sessions on an inpatient basis. Written informed consent was obtained from all patients before PEI. Doppler-ultrasonography was done before PEI, immediately after, and 4 weeks later. Noninvasive monitoring of arterial pressure, cardiac rate, and temperature was performed during the procedure and during a 24-hour period after each session. Pain was considered significant if analgesia was required or discontinuation of PEI necessary. Fever was defined as a temperature > or =37.5 degrees C after PEI. RESULTS: Minor complications included pain in 45 sessions (38.5%), fever in 17 (14.5%), arterial hypertension in 14 (12%), hypotension in 7 (7%), and vomiting in 2 (1.7%). The major complications were segmental liver infarction (n = 3), portal branch venous thrombosis (n = 2), ascites (n = 2), and one case each of subcapsular hematoma, duodenal ulcer, pneumonia, hepatic encephalopathy, and hepatic artery thrombosis. In all cases, clinical outcomes were favorable with conservative treatment. No evidence of tumor seeding in the needle track was reported and no PEI-related mortality observed. CONCLUSIONS: PEI is a safe neoadjuvant therapy for HCC on waiting list liver transplant candidates. In our series, pain and self-limited fever were the most frequent complications. Clinically significant severe complications were uncommon, and nonconservative treatments were not required.

Administration, Cutaneous↗

Activity of combination chemotherapy, docetaxel and epirubicin as neoadjuvant therapy for women with breast cancer.

BACKGROUND: This study assesses the efficacy of epirubicin and docetaxel as neoadjuvant therapy for women with breast cancer. PATIENTS AND METHODS: This is a single institution, single arm, phase II study of epirubicin given at 75 mg/m(2) and docetaxel at 75 mg/m(2) every three weeks for four cycles prior to surgical excision in women with large breast cancers. Pegfilgrastim was routinely administered as primary prophylaxis against febrile neutropenia. RESULTS: Out of the 18 patients enrolled on the study, 12 (66.7%) had a clinical response and 13 (72.2%) had a pathologic response, with a pathologic complete response of 5.6%. Pre-menopausal women and patients with estrogen receptor positive tumors had a higher response rate. One patient died due to sepsis and febrile neutropenia. CONCLUSION: Combination chemotherapy with epirubicin and docetaxel is highly active against breast cancer. With close monitoring for toxicity, this combination can be safely administered with mild side-effects.

Adult↗

Apoptotic and proliferative indexes in esophageal cancer: predictors of response to neoadjuvant therapy [corrected].

Altered expression of the genes that control apoptosis and proliferation may influence the response of cancer cells to cytotoxic agents. The primary aim of this study was to determine the role of the novel antiapoptotic and cell cycle gene, survivin, in apoptotsis and proliferation in esophageal cancer and to evaluate whether the survivin, p53, and bcl-2 status were able to predict a patient's response to neoadjuvant therapy. A total of 104 patients with esophageal tumors were studied. Tumor tissue was immunostained for survivin, p53, and bcl-2 proteins. Proliferative and apoptotic activity was measured using ki-67 immunohistochemical analysis and the TUNEL method, respectively. Forty-eight patients whose pretreatment biopsies were analyzed received neoadjuvant chemoradiation therapy or chemotherapy followed by surgery. Outcome was graded as a complete response, a partial response, or no response according to the results of histologic examination and CT imaging. Expression of survivin was found to correlate significantly with the proliferative index but not the apoptotic index. Patients who received neoadjuvant treatment were more likely to achieve a complete response if their tumors had high proliferative activity, and p53 positive tumors were more likely to contain residual tumor after treatment. In conclusion, survivin expression appears to foster proliferative activity in esophageal cancer, and tumors with a high proliferative index or a functioning p53 gene are more responsive to neoadjuvant chemoradiation therapy.

Adenocarcinoma↗

Neoadjuvant therapy for oesophagogastric cancer.

BACKGROUND: The prognosis after surgery for oesophagogastric cancer remains poor. METHODS: This review clarifies current indications for neoadjuvant therapy for oesophageal and gastric cancer. A systematic literature research and evaluation of data from international cancer meetings were carried out. RESULTS: Recently published results of large randomized phase III trials underscore the potential value of neoadjuvant treatment for oesophagogastric cancer. However, it remains uncertain which subgroups of patients should routinely undergo preoperative therapy. Metabolic response evaluation during neoadjuvant treatment is a promising tool for the selection of responding patients. CONCLUSION: Neoadjuvant chemotherapy is a valid option for locally advanced oesophageal and gastric cancer. In the future, more effective and better tolerated treatment strategies, tailored to the specific tumour characteristics of each individual, should be possible.

Chemotherapy, Adjuvant↗

Evaluation of response to neoadjuvant therapy by quantitative 2-deoxy-2-[18F]fluoro-D-glucose with positron emission tomography in patients with esophageal cancer.

PURPOSE: This work evaluates positron emission tomography (PET) with 2-deoxy-2-[18F]fluoro-D-glucose (FDG) in assessing response to therapy in patients with esophageal cancer. PROCEDURES: Twenty-four patients underwent FDG-PET before (pre-Rx) and after (post-Rx) chemoradiation therapy; 20 then underwent esophagectomy. The response of the primary tumors was visually assessed, and tumor volume, peak tumor standardized uptake value (SUV(peak)), average SUV (SUV(ave)), and total lesion glycolysis were determined pre-treatment and post-treatment. Patients were divided into groups according to the absence (Group A) or presence (Group B) of residual tumor after neoadjuvant therapy. RESULTS: Among the quantitative PET parameters for Group A (n = 6) and Group B (n = 18), only change in tumor volume identified complete responders. Quantitative PET indices were not different in patients with or without post-Rx esophagitis. CONCLUSIONS: The change in tumor volume identifies patients with complete response to neoadjuvant therapy, and quantitative evaluation of the primary tumor cannot separate post-Rx inflammation from residual tumor.

Journal Article↗

Comparative effects of anastrozole, tamoxifen alone and in combination on plasma lipids and bone-derived resorption during neoadjuvant therapy in the impact trial.

BACKGROUND: Estrogen has beneficial effects on lipid metabolism and bone preservation. The IMPACT trial evaluated neoadjuvant therapy with anastrozole or tamoxifen alone, or a combination. The comparative effects of these treatments on serum lipids and bone resorption were assessed. PATIENTS AND METHODS: Non-fasting clotted blood samples were taken from 176 postmenopausal patients at baseline, 2 and 12 weeks for assessment of serum levels of estradiol, the bone resorption marker CTx and lipid profiles [total cholesterol (TC), high density lipoprotein cholesterol (HDL-C) and non-HDL cholesterol (N-HDL-C)]. RESULTS: After 12 weeks, tamoxifen was associated with a significant increase in HDL-C (26.5%), and a decrease in TC (6.5%) and N-HDL-C (12.3%). Anastrozole was associated with a significant increase in HDL-C (11.2%), and a non-significant increase in TC (2.9%) and N-HDL-C (3.4%), both of which were significantly different from tamoxifen. The combination was associated with a significant increase in HDL-C (9.4%), and a decrease in TC (10.9%) and N-HDL-C (13.9%). For tamoxifen and the combination, there were non-significant decreases in CTx compared with a significant increase (45.6%) with anastrozole. No correlation between serum estradiol and CTx was seen in any of the treatment groups. CONCLUSION: Anastrozole did not have a detrimental effect on lipid profiles following 3 months of therapy. There was a significant increase in CTx with anastrozole in contrast to tamoxifen.

Aged↗

Anastrozole as neoadjuvant therapy for patients with hormone-dependent, locally-advanced breast cancer.

BACKGROUND: We investigated the efficacy and safety of anastrozole as neoadjuvant therapy in a group of postmenopausal patients with locally-advanced breast cancer. PATIENTS AND METHODS: This was an open-label trial, which recruited patients with histopathologically-confirmed unilateral, locally-advanced, estrogen-receptor-positive breast cancer (stage IIIA/B). All patients received anastrozole 1 mg/day for 3 months, after which the clinical response was evaluated. All patients with a complete or partial clinical response (cCR or cPR) underwent surgery (radical modified mastectomy), after which patients continued with the same therapy for two years or until progression. Primary end points were clinical response rate (cCR + cPR), surgery rate, pathological complete response rate and tolerability profile. RESULTS: cCR and cPR were seen in 61/112 (54.5%) and 32/112 (28.6%) patients (n=112), respectively, giving an objective response rate of 93/112 (83%) patients. Following surgery in responding patients, 14/61 patients (23%) had a pathological CR and 47/61 (77%) patients had a pathological PR. CONCLUSION: Neoadjuvant anastrozole treatment was highly effective and well-tolerated in postmenopausal women with hormone-dependent locally-advanced breast cancer.

Aged↗

[Intraarterial chemotherapy for uterine cervical adenocarcinoma: evaluation of its efficacy as neoadjuvant therapy].

We performed preoperative intraarterial chemotherapy in twenty cases of uterine cervical adenocarcinoma (stage Ib: 2, II: 15, III: 3) and evaluated the efficacy of this therapy. The dosages used were 75-120 mg of CDDP, 10-20 mg of MMC and 30-60 mg of EPIR. These drugs were administered by intraarterial one-shot infusion twice every three weeks. In five cases, complete response (CR) of the primary lesion was confirmed by histologic examination. There were no cases of CR inpatients with well differentiated adenocarcinoma. Stage reduction was achieved in all cases except three. In all but one case, more than 50% volume reduction was recognized on MR images. These results were not significantly different from those in cases of uterine cervical squamous cell carcinoma in which we performed this therapy. Therefore, we concluded that intraarterial chemotherapy is highly effective and should be carried out as neoadjuvant therapy for advanced uterine cervical adenocarcinoma.

Adenocarcinoma↗

[The role of neoadjuvant therapy in the treatment of locally advanced, stage III non-small-cell lung cancer].

OBJECTIVE: to review the progress achieved in the neoadjuvant treatment of patients with locally advanced NSCLC by evaluating the articles published during the last 10 years. METHOD: altogether 51 articles (including prospective and retrospective studies, and reviews) were analysed with the intention to evaluate the efficacy of the different neoadjuvant modalities. RESULTS: different types of neoadjuvant treatments were reported. The articles were heterogeneous not only in the aspect of the patient populations but also in regard to the treatment modalities and schedules, the mode and timing of combination of chemotherapy with radiotherapy. Most studies support the advantage of chemoradiotherapy. The chemotherapy should be platinum based, and combination with modern drugs as gemcitabine is recommended. Surgery provides the best local control of the disease. Lobectomy, and in special circumstances sleeve resection, are preferred. The best prognostic factors are the R0 resection and the downstaging of the mediastinal lymph nodes. The cause of death is usually progressive disease, often brain metastases. Because of frequent occurrence of brain metastases, preventive cranial irradiation is recommended by many authors. CONCLUSION: to be able to compare different treatment modalities with consistent patient groups, patients should be classified into well-defined subgroups. T4 tumours (except pleuritis carcinomatosa) behave as locoregional disease, N2/N3 tumours, however, resemble more to systemic diseases. With two- or three-modality treatment, 3-7% improvement can be achieved in the 5-year survival time of patients. Evaluating the results, the heterogeneity of stage III NSCLC should always be kept in mind. It is still unknown to which patients should surgery be offered after neoadjuvant therapy, and who will benefit more from chemoradiotherapy alone. Considering the downstaging effect of the therapy, the tumour and nodal state should be evaluated separately. To answer these questions, it is time to start large randomised studies.

Carcinoma, Non-Small-Cell Lung↗

Neoadjuvant therapy for gastrointestinal cancers.

Neoadjuvant (primary) chemotherapy is an attractive concept for upper GI tract malignancies and to a lesser extent rectal cancer to increase local control, as well as to destroy micrometastasis. Endoscopic ultrasonography for esophageal, gastric, and rectal cancers is a new tool that may allow identification of appropriate high-risk patients for such investigational approaches. In esophageal cancer, radiation therapy alone has probably been supplanted by combined concurrent systemic chemotherapy and radiation. Phase III trials of chemotherapy prior to operation are currently underway. Phase II trials of neoadjuvant chemotherapy are underway in gastric cancer. In rectal cancer, while the use of postoperative adjuvant chemotherapy plus radiation is firmly established, more recent data suggest that there may be less toxicity with preoperative treatment, and in selected patients may result in increased potentially curative resection rates.

Chemotherapy, Adjuvant↗