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1.

Introduction

It is unknown whether cervical lymphadenectomy as a treatment for cutaneous squamous cell carcinoma of the head and neck (cSCCh&n) increases survival in elderly patients. The aim of this study is to determine whether this procedure has an influence on the survival of these patients, and whether the Short-Form Charlson Comorbidity Index (CCI-SF) can be used as an alternative to age in the surgeon's estimation of elderly patient mortality.

Methods

The study population included all patients diagnosed with cSCCh&n consecutively treated between 2006 and 2011. Non-invasive, non-cutaneous carcinomas were excluded. Patients were grouped according to their age (< 70, 70-79, 80-89, > 90), CCI-SF (< 3, ≥ 3) and presence (N1) or absence (N0) of cervical metastases. The dependent variable was the performance or not of cervical lymphadenectomy. A univariate survival analysis was performed according to the presence of metastases, a bivariate analysis for each of the independent variables according to the received treatment and a multivariate analysis.

Results

416 cases were included. The mean survival time was greater in the N0 group. For each of the groups based on the presence of metastasis, the differences in the mean survival time according to age and CCI-SF were not significant, regardless of the treatment received. The multivariate analysis showed the influence of age (p = 0.0001, OR = 1.488, 95%CI = [1.318; 1.679]) and CCI-SF (p = 0.001, OR = 1.817, 95%CI = [1.257; 2.627]) in the N0 group. In the N1 group only regional treatment has a positive influence on survival (p = 0.048, OR = 0.15, 95%CI = [0.023; 0.981]).

Conclusions

CCI-SF and age are good mortality indicators in cSCCh&n N0 patients, but not so in cSCCh&n N1 patients. In cSCCh&n N1 patients, regional treatment has a positive influence on survival. Differences cannot be affirmed in the mean survival time of patients with cSCCh&n, based on the development of metastases and the treatment given. New studies will be necessary.  相似文献   
2.

Background and Aims

The mechanisms governing the progression of non-alcoholic fatty liver disease (NAFLD) towards steatohepatitis (NASH) and hepatocellular carcinoma (HCC) remain elusive. Here, we evaluated the role of hsa-miRNA-21-5p in NASH-related hepatocarcinogenesis.

Methods

Hepatic hsa-miR-21-5p expression was evaluated in two cohorts of patients with biopsy-proven NAFLD (n = 199) or HCC (n = 366 HCC and n = 11 NAFLD-HCC). Serum/liver metabolomic profiles were correlated with hsa-miR-21-5p in NAFLD obese patients. Wild-type (WT) and Mir21 KO mice were fed a choline-deficient, amino acid-defined (CDAA) diet for 32 and 66 weeks to induce NASH and NASH-HCC, respectively.

Results

In obese individuals, hsa-miR-21-5p expression increased with NAFLD severity and associated with a hepatic lipotoxic profile. CDAA-fed WT mice displayed increased hepatic mmu-miR-21-5p levels and progressively developed NASH and fibrosis, with livers presenting macroscopically discernible pre-neoplastic nodules, hyperplastic foci and deregulated cancer-related pathways. Mir21 KO mice exhibited peroxisome-proliferator-activated receptor α (PPARα) activation, augmented mitochondrial activity, reduced liver injury and NAS below the threshold for NASH diagnosis, with the pro-inflammatory/fibrogenic milieu reversing to baseline levels. In parallel, Mir21 KO mice displayed reduced number of pre-neoplastic nodules, hepatocyte proliferation and activation of oncogenic signalling, being protected from NASH-associated carcinogenesis. The hsa-miRNA-21-5p/PPARα pathway was similarly deregulated in patients with HCC- or NASH-related HCC, correlating with HCC markers and worse prognosis.

Conclusions

Hsa-miR-21-5p is a key inducer of whole-spectrum NAFLD progression, from simple steatosis to NASH and NASH-associated carcinogenesis. The inhibition of hsa-miR-21-5p, leading to a pro-metabolic profile, might constitute an appealing therapeutic approach to ameliorate NASH and prevent progression towards HCC.  相似文献   
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ATP measured by the luciferin-luciferase bioluminescence assay was used to examine the effect of toxic substances on whole microbial communities in activated sludge mixed liquor samples. The response of the microorganisms to toxicants is rapid using ATP reduction as the criterion. The sensitivity of the mixed populations to various toxicant types (e.g., organic material and heavy metals) is lower than when using single species toxicity tests such as the Microtox bioassay. The differences in sensitivity is considered a function of acclimatization, modification of the toxicant by the waste physicochemical environment, and the predominance of less sensitive organisms than those used in the Microtox bioassay (Photobacterium phosphoreum). ATP bioluminescence is, however, considered an important rapid test utilizing natural waste treatment microorganisms in determining the toxicity of wastes discharged to sewer. It can detect whether wastewater will have an effect on the biodegradation capability of the resident population of microrganisms. © 1997 by John Wiley & Sons, Inc. Environ Toxicol Water Qual 12: 23–29, 1997  相似文献   
5.
Journal of Assisted Reproduction and Genetics - To characterize the most relevant changes in the lipidome of endometrial fluid aspirate (EFA) in non-implantative cycles. Lipidomics in a prospective...  相似文献   
6.
Since the introduction of cell immunoisolation as an alternative to protect transplanted cells from host immune attack, much effort has been made to develop this technology into a realistic clinical proposal. Several promising approaches have been investigated to resolve the biotechnological and biosafety challenges related to cell microencapsulation. Here, a multifunctional hydrogel-based scaffold consisting of cell-loaded alginate-poly-l-lysine-alginate (APA) microcapsules and dexamethasone (DXM)-loaded poly(lactic-co-glycolic) acid (PLGA) microspheres embedded in alginate hydrogel is developed and evaluated. Initially, the feasibility of using an alginate hydrogel for enclosing APA microcapsules was studied in a xenogeneic approach. In addition, the performance of the local release of DXM was addressed. The in vitro studies confirmed the correct adaptation of the enclosed cells to the scaffolds in terms of metabolic activity and viability. The posterior implantation of the hydrogel-based scaffolds containing cell-loaded microcapsules revealed that the hematocrit levels were maintained high and constant, and the pericapsular overgrowth was reduced in the DXM-treated rats for at least 2 months. This multifunctional scaffold might have a synergistic effect: (1) providing a physical support for APA microcapsules, facilitating administration, ensuring retention and recuperation and preventing dissemination; and (2) reducing post-transplantation inflammation and foreign body reaction, thus prolonging the lifetime of the implant by the continuous and localized release of DXM.  相似文献   
7.
Cell encapsulation technology raises hopes in medicine and biotechnology. However, despite important advances in the field in the past three decades, several challenges associated with the biocompatibility are still remaining. In the present study, the effect of a temporary release of an anti-inflammatory agent on co-administered encapsulated allogeneic cells was investigated. The aim was to determine the biocompatibility and efficacy of the approach to prevent the inflammatory response. A composite delivery system comprised of alginate-poly-l-lysine-alginate (APA)-microencapsulated Epo-secreting myoblasts and dexamethasone (DXM)-releasing poly(lactic-co-glycolic acid) (PLGA) microspheres was implanted in the subcutaneous space of Balb/c mice for 45 days. The use of independently co-implanted DXM-loaded PLGA microspheres resulted in an improved functionality of the cell-based graft, evidenced by significantly higher hematocrit levels found in the cell-implanted groups by day 45, which was found to be more pronounced when higher cell-doses (100 μL) were employed. Moreover, no major host reaction was observed upon implantation of the systems, showing good biocompatibility and capability to partially avoid the inflammatory response, probably due to the immunosuppressive effects related to DXM. The findings of this study imply that DXM-loaded PLGA microspheres show promise as release systems to enhance biocompatibility and offer advantage in the development of long-lasting and effective implantable microencapsulated cells by generating a potential immunopriviledged local environment and an effective method to limit the structural ensheathing layer caused by inflammation.  相似文献   
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