1.Simultaneous resection of pancreatic cancer and liver metastases following total neoadjuvant therapy:A case series and analysis of the National Cancer Database
McKenzie L. SCHAEFER ; Patrick L. QUINN ; Alexander H. SHANNON ; Laith ABUSHAHIN ; Jordan M. CLOYD ; Mary E. DILLHOFF ; Ning JIN ; Ashish MANNE ; Arjun MITTRA ; Anne M. NOONAN ; Timothy M. PAWLIK ; Shafia RAHMAN ; Aslam EJAZ
Annals of Hepato-Biliary-Pancreatic Surgery 2026;30(1):58-66
Background:
s/Aims: The role of surgery for pancreatic ductal adenocarcinoma (PDAC) with synchronous liver metastases remains controversial. Previous studies assessing the outcomes of combined surgery for primary PDAC and liver metastases have been limited by the inconsistent application of neoadjuvant chemotherapy (NAC).
Methods:
We identified patients with PDAC and fewer than three liver metastases who received at least six months of NAC and underwent simultaneous pancreas and liver resection between January 2018 and March 2023 at a single institution. Additionally, we queried the National Cancer Database (NCDB) from 2010 to 2019 to identify patients with synchronous metastatic PDAC to the liver who received NAC before simultaneous resection, serving as a comparison group.
Results:
Ten patients met the inclusion criteria for the institutional case series, with seven ultimately undergoing simultaneous resection. Among 224 patients in the NCDB who underwent simultaneous pancreas and liver resection, 70 patients (31.2%) received NAC.After a median follow-up of 59 months in the institutional cohort, five patients experienced recurrence, resulting in a median disease-free survival of four months (95% confidence interval [CI] 3, not reached). After controlling for confounding factors in the NCDB cohort, the administration of NAC was associated with improved survival (hazard ratio: 0.44, 95% CI 0.29–0.65, p < 0.001) compared to those who underwent upfront surgery.
Conclusions
Neoadjuvant therapy followed by simultaneous liver and pancreas resection for metastatic PDAC is safe and feasible, and it may provide a survival benefit in carefully selected patient populations.
2.Analysis of three wheat cytoplasmic male sterile lines mitochondrial DNA by AFLP.
Qidi ZHU ; Xinbo ZHANG ; M EJAZ ; Gaisheng ZHANG ; Huixue CHE ; Shuping WANG ; Qilu SONG ; Shuling YANG ; Longyu ZHANG
Chinese Journal of Biotechnology 2013;29(5):646-656
Cytoplasmic male sterility is an important way to utilize wheat heterosis. The purpose of thisstudy was to identify cytoplasmic type of three wheat male sterile lines. Amplified fragment length polymorphism (AFLP) marker technique was used to analyze the wheat mitochondrial DNA. We isolated mitochondria by differential centrifugation and density gradient ultracentrifugation. The results show that the extracted mitochondrial DNA was pure. It was suitable for PCR and genetic analysis. We got 4 pairs of specific primers from 64 primers combinations. Primer E1/M7 amplified 3 specific fragments in ms(Kots)-90-110. Primer E4/M2 generated 2 specific fragments in ms(Ven)-90-110. Primer E7/M6 amplified 2 specific fragments in ms(S)-90-110. Primer E6/M4 produced 2 specific fragments in ms(Kots)-90-110. Four specific primers could be used to identify three cytoplasmic types of Aegilops kotschyi, Ae. ventricosa and Triticum spelta. It provided the molecular basis to further study the mechanism of wheat cytoplasmic male sterility.
Amplified Fragment Length Polymorphism Analysis
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methods
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Cytoplasm
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metabolism
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DNA, Mitochondrial
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genetics
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DNA, Plant
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genetics
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Gene Expression Profiling
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Genotype
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Plant Infertility
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genetics
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Triticum
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genetics
3.Anatomical studies on water hyacinth (Eichhornia crassipes (Mart.) Solms) under the influence of textile wastewater.
Qaisar MAHMOOD ; M Rehan SIDDIQI ; Ejaz ul ISLAM ; M Rashid AZIM ; Ping ZHENG ; Yousaf HAYAT
Journal of Zhejiang University. Science. B 2005;6(10):991-998
Water hyacinth (Eichhornia crassipes (Mart.) Solms) is a prolific free floating aquatic macrohpyte found in tropical and subtropical parts of the earth. The effects of pollutants from textile wastewater on the anatomy of the plant were studied. Water hyacinth exhibits hydrophytic adaptations which include reduced epidermis cells lacking cuticle in most cases, presence of large air spaces (7 approximately 50 microm), reduced vascular tissue and absorbing structures. Textile waste significantly affected the size of root cells. The presence of raphide crystals was noted in parenchyma cells of various organs in treated plants.
Eichhornia
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anatomy & histology
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growth & development
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Industrial Waste
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Plant Roots
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anatomy & histology
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Rhizome
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anatomy & histology
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Textile Industry
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Water Pollutants, Chemical

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