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1.
Chinese Journal of Hepatobiliary Surgery ; (12): 314-317, 2014.
Article in Chinese | WPRIM | ID: wpr-448106

ABSTRACT

The phenomenon of perineural invasion in pancreatic cancer occurs more easily.It can cause pain and tumor recurrence,and result in poor prognosis.The perineural invasion of pancreas cancer is closely related to the anatomical basis of pancreas and nerve tissue as well as the changes in the tumor microenvironment.Multiple factors in the microenvironment take part in the development of perineural invasion,meanwhile,the tumor tissue itself can also change the microenvironment.This article is to overview the research on the anatomy and molecular biology of perineural invasion of pancreas cancer.

2.
Chinese Journal of Biotechnology ; (12): 691-694, 2014.
Article in Chinese | WPRIM | ID: wpr-279496

ABSTRACT

Biomass is the most abundant organic macromolecules in nature, which is expected to achieve the brilliant of biorefinery equivalent to petroleum refining. However, it is considered as the future industry to human due to the complicated composition and transformation processes. The traditional lignocellulose bio-refining thoughts ignored the functional requirements of products, but spent a lot of energies to destruct macromolecule into small molecules, and then converted the small molecules into different products, which was high energy consumption and low atom economy. How to realize the biorefinery of lignocellulose is the key point and difficulty to achieve the biomass industry. An ideal biorefinery of lignocellulose should as far as possibly to obtain the maximum yield of each component, to maintain the integrity of the molecule, to optimize the utilization of raw materials and finally to realize the maximum value. Therefore, it requires the raw materials refining of lignocellosic biomass should be based on the relationship of structure, process transformation and related product characteristics. This special issue reports the latest advances in the fields of raw material refinery, refining technologies, conversion technologies of component.


Subject(s)
Biomass , Biotransformation , Lignin , Chemistry
3.
Chinese Journal of Biotechnology ; (12): 726-733, 2014.
Article in Chinese | WPRIM | ID: wpr-279492

ABSTRACT

Laccase is one of the most important oxidoreductase with industrialization potential. However, due to the high cost and catalytic toxicity of laccase synthetic mediator, the laccase-mediator-system still cannot achieve industrialization. Therefore, searching for high efficient, environment-friendly, and cheap natural mediator from small molecule precursors or intermediates and degradation products of lignin has been considered as a hot research topic. Therefore, we introduce the type and catalytic mechanism of laccase mediator, the composition and separation of natural laccase mediator from water washed solution of steam exploded straw, black liquor and lignocelluloses degradation products during the fermentation of white-rot fungi. We also provide the theoretical and technical direction for exploring of high reactive of laccase natural mediators and achieving the oriented high-value utilization of lignocellulose degradation products.


Subject(s)
Basidiomycota , Fermentation , Laccase , Chemistry , Lignin , Chemistry , Steam
4.
Chinese Journal of Digestive Surgery ; (12): 855-858, 2013.
Article in Chinese | WPRIM | ID: wpr-442360

ABSTRACT

Tumor in the caudate lobe is difficult for surgical treatment due to its unusual local anatomy.As the development of surgical techniques,the success rate of caudate lobectomy is increased.In recent years,the concept of precision hepatectomy aiming to reduce the iatrogenic damage from hepatectomy and improving the recovery of patients on the basis of radical treatment has been raised.This article summarized the experiences of precision hepatectomy for the treatment of huge tumor in the caudate lobe which was performed in the Ruijin Hospital of Shanghai Jiaotong University.With the help of precision hepatectomy concept and techniques,a more satisfactory result both in safety and prognosis was achieved.

5.
Chinese Journal of Hepatobiliary Surgery ; (12): 886-888, 2012.
Article in Chinese | WPRIM | ID: wpr-430146

ABSTRACT

Autophagy is a vacuolar process of cytoplasmic degradation by lysosomes which ubiquitously occur in all eukaryotic cells.Heightened autophagy is a mechanism of resistance for cancer cells faced with metabolic and therapeutic stress,revealing opportunities for exploitation as a therapeutic target in cancer treament.This article reviews the mechanism of autophagy in cancer and its role for cancer treatment.

6.
Chinese Journal of Hepatobiliary Surgery ; (12): 130-134, 2012.
Article in Chinese | WPRIM | ID: wpr-424887

ABSTRACT

Objective To identify the role of p53 in the induction of growth arrest DNA damage-inducible gene 45β (GADD45β) in HCC cells by Oxaliplatin.Methods A Hep3B+p53 clone was established by transfection of the full-length p53 sequence to Hep3B.Following oxaliplatin administration,quantitative real-time PCR was employed to validate the expression changes of GADD45β.pGL3 basic luciferase plasmids including promoter fragments were synthesized in vitro and transfected into cells.The effects on promoter activity,cell growth and the cleavage of Caspase-3 were further focused on.Results Hep3B+p53 expressed p53 protein stably.The transfection of p553 enhanced the induction of GADD45β in Hep3B by Oxaliplatin.The promoter activity of fragments constructed NF-κB and E2F-1 binding sites was induced about 1.5 and 0.8 folds by transfection of p53.The colony formation and DNA syntheses were inhibited apparently in Hep3B+p53 with p53 by Oxaliplatin (30.41% and 75.60% by 100 μmol/L Oxaliplatin,respectively).Moreover,p53 transfection triggered cleavage of Caspase-3 more rapidly.Conclusion p53 played a role in the induction of GADD45β in Hep3B by Oxaliplatin.

7.
Chinese Journal of Pathophysiology ; (12): 401-404, 2010.
Article in Chinese | WPRIM | ID: wpr-403922

ABSTRACT

Autophagy is a vacuolar process of cytoplasmic degradation by lysosome which ubiquitously occurring in all eukaryotic cells. The researches of autophagy have made great progress with the development of the yeast model and genetic technology. This review will summarize the determination of autophagy, its relationship with apoptosis and its role in the tumor treatment in order to give a comprehensive understanding of the function of autophagy.

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