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Mark Onaitis

Publications and source records attributed to Mark Onaitis.

5 recordsLinked to original sources

The Kraske procedure: a critical analysis of a surgical approach for mid-rectal lesions.

BACKGROUND AND OBJECTIVES: To analyze the Kraske procedure as an approach to mid-rectal disease. METHODS: Twenty-two patients underwent a Kraske procedure at either Duke University Medical Center, the Durham Veterans Administration Medical Center, or the Durham Regional Hospital between 1992 and 1997. The clinical and pathologic characteristics of these patients were retrospectively analyzed and compared with previous published series. RESULTS: Of the 22 patients, 13 underwent resection of an adenocarcinoma and 9 underwent resection of a villous adenoma. Post-operative complications included four fecal fistulas (two of which required a temporary diverting colostomy), two wound infections, two cases of urinary retention, and one case of transient fecal incontinence. CONCLUSIONS: The Kraske procedure minimizes exposure of mid-rectal lesions without the morbidity of a major laparotomy. However, it does carry a moderate complication rate and thus should be utilized selectively in managing patients with mid-rectal tumors not amenable to other treatment options.

Adenocarcinoma↗

Predictors of outcome after hyperthermic isolated limb perfusion: role of tumor response.

HYPOTHESIS: Analysis of multiple clinical and pathological factors in patients undergoing therapeutic hyperthermic isolated limb perfusion for extremity melanoma can identify variables with prognostic significance. DESIGN: Retrospective review of a prospectively collected limb perfusion database with a median follow-up interval of 32.2 months. SETTING: Single-institution tertiary care surgical oncology unit. PATIENTS: We report a series of 59 consecutive therapeutic hyperthermic isolated limb perfusion treatments (14 upper extremity and 45 lower extremity) in 54 patients with melanoma from January 1, 1995, through December 31, 2002, using a standard melphalan dosing protocol. At the time of perfusion, 31 cases had fewer than 10 lesions, with none greater than 3 cm in diameter. The remaining 28 cases had 10 or more lesions or at least 1 lesion greater than 3 cm in diameter. MAIN OUTCOME MEASURES: Response, recurrence, and survival were assessed in relation to multiple demographic, clinical, and technical variables using chi2, log-rank, and Kaplan-Meier survival analyses. RESULTS: The 3-year survival for the entire cohort was 54%. Thirty-three (56%) of the 59 perfusion treatments resulted in a persistent complete response of at least 6 months' duration. Statistical analysis showed that patients with no evidence of regional nodal involvement had a significantly lower incidence of distant recurrence (P = .02). Those patients achieving a complete response to therapy had a survival advantage (P = .03). CONCLUSION: In patients undergoing therapeutic hyperthermic isolated limb perfusion for in-transit melanoma, the ability to achieve a complete response following treatment, independent of regional nodal status, was the strongest predictor of long-term survival.

Aged↗

Adjuvant hepatic arterial chemotherapy following metastasectomy in patients with isolated liver metastases.

OBJECTIVE: To examine survival and toxicity by querying a single-institutional experience with adjuvant hepatic arterial infusional (HAI) chemotherapy. SUMMARY BACKGROUND DATA: Three randomized series in the literature have examined adjuvant HAI after complete resection of liver metastases. Only one of these trials showed an overall survival benefit at 2 years but not over the entire time period of the study. Previous studies in patients with unresectable disease were plagued by high rates of biliary toxicity. METHODS: A retrospective review of a prospectively maintained database was performed. Hepatic arterial pumps were placed in the standard fashion. Patients received floxuridine at doses previously demonstrated as safe in the literature. Standard statistical methods were used. RESULTS: Twenty-one of 92 patients underwent placement of hepatic arterial pumps at the time of liver resection. The HAI group was similar in all demographic measures to the non-HAI group, with the exception that the HAI patients were significantly younger. No differences were seen between the groups in either disease-free or overall survival, although a trend toward improved hepatic progression-free survival was noted. Significant biliary sclerosis developed in six patients in the HAI group, requiring chronic indwelling stents in four patients. One patient died of progressive liver failure associated with this toxicity. CONCLUSIONS: Biliary toxicity is an important potential side effect of hepatic arterial chemotherapy. Although larger randomized studies and this one suggest significant improvements in hepatic recurrences, these have not reliably translated into overall survival benefit. This fact, in light of the potential toxicity, would argue for a larger confirmatory trial of HAI in the adjuvant setting, incorporating recent advances in systemic therapy and careful attention to hepatotoxicity.

Adult↗

Dendritic cell gene therapy.

All of these studies taken together highlight key areas that must be addressed in the future in order for the field to continue to move forward. These issues are many, including but not limited to method of delivery of dendritic cells to patients, maturation status of the dendritic cells, and methods of monitoring responses to these vaccines. Each of these requires some comment. Different strategies of immunization were used in these studies. DCs were injected at various times and in various locations, including intradermally/subcutaneously, intranodally, and intravenously. Investigation of the pattern of spread of subcutaneously injected fluorescently labeled DCs in the chimpanzee was studied at the University of Pittsburgh. Although rodent DCs had previously been shown to remain at the site of injection, these immature primate DCs migrated to draining lymph nodes and interact appropriately with T cells for as long as 5 days after administration. Data not shown in the same study reveal that intravenously administered DCs were undetectable in draining lymph nodes. Two groups have undertaken evaluation of route of administration of DCs in humans. The first of these examined migration of immature, indium-111-labeled dendritic cells after RNA-loading in metastatic cancer patients [44]. The DCs were injected either intravenously, subcutaneously, and intradermally. Only DCs injected intradermally were cleared from the injection site with migration to regional lymph nodes. The immunologic significance of these findings is unclear, however. Another study examined this issue by studying prostatic acid phosphatase (PAP) protein-loaded mature DCs injected intravenously, intradermally, and intralymphatically in prostate cancer patients [45]. Regardless of route of administration, T cell responses were induced as measured by proliferation when PBMCs in vitro were stimulated with the PAP protein. Cytokine analysis of the patients revealed that the majority of patients undergoing either intralymphatic or intradermal injection had increases in measurable interferon-gamma but that none of the intravenously-injected patients did. The intralymphatic and intradermal routes thus seem to lead to stronger Th1 responses. But no data was presented regarding the numbers of PAP precursors induced by vaccination nor their specificity/cytotoxicity. Another issue in DC administration that should also affect route of administration is maturation status of the dendritic cells. Many of the studies used immature dendritic cells to immunize patients whereas others used mature cells. A number of studies have demonstrated that maturation signals such as inflammatory cytokines and CD40 ligation lead to down-regulation of antigen processing and up-regulation of the chemokine receptor CCR7, which leads to homing to lymph nodes [46] as well as the MHC molecules, costimulatory molecules, and maturation markers [8,47,48]. In addition, different maturation agents and sequences of addition of these maturation agents may lead to differences in functions of dendritic cells [48-51]. Others have found that injection of immature DCs pulsed with influenza matrix peptide and KLH, and lead to greater numbers of influenza-specific T cells, but these cells had reduced interferon-gamma production and lacked killer activity [52]. Perhaps the most impressive results in a clinical trial, however, were gained by injecting similar cells loaded with melanoma peptides [21]. In addition, sequence of loading and maturation may be important in creating vaccines. One study using CEA peptides and CEA RNA found that optimal T cell presentation occurs when peptides are loaded after maturation with CD40 ligand and when RNA is transfected before maturation with CD40 ligand [53]. As all of these studies reveal, more investigation into the role of DC maturation as well as its timing and sequence is needed. Finally, a multitude of methods to detect response to vaccination have been attempted in all of the above studies. Many use DTH responses, but these may measure CD4 T cells instead of CD8 T cells. The availability of tetramers allows easier quantification of CTL precursors, but they provide no assessment of the function of these T cells. Enzyme-linked immunospot assays allow identification and quantification of numbers of cells producing cytokines such as interferon-gamma when encountering target antigens, but cytokine production may not correlate with tumor cell killing. Chromium release assays or flow cytometric assays for molecules such as perforin may be used to validate killing, but inability of many tumors to grow in vitro precludes direct assessment of tumor cell killing via this method. Other responses in human subjects may also be measured. Some of the cited studies yielded clinical responses that could be measured via physical examination or radiologic study. This is the exception rather than the rule, however. Others have monitored the decrease in serum tumor markers such as PSA or CEA. But these may not correlate directly with tumor burden. Indirect calculation of tumor burden by using quantitative PCR to estimate the number of circulating tumor cells in peripheral blood may be promising in this regard. Despite the lack of consensus as to what constitutes an effective response, most would agree that monitoring of these patients should include measures of both immunologic response and clinical tumor effect. All of this leads to the conclusion that DC-based cancer vaccines have progressed a great deal but that much work still needs to be done. Only rigorous bench top experimentation followed by careful patient selection and vaccine administration, and then by meticulous patient monitoring, will lead to advances in the field.

Cancer Vaccines↗