Search results for " Green"

showing 10 items of 405 documents

Systematic study of SYBR green chromophore reveals major improvement with one heteroatom difference

2021

Five nucleic acid binding cyanine dyes were synthesized and their photophysical properties were evaluated. Changing a single heteroatom in the chromophore causes major differences both in brightness and photostability between the dyes. With such alteration, the brightness of the chromophore increased two-fold compared to the one found in SYBR Green I.

BrightnessMolecular StructureHeteroatomBiomedical EngineeringDNAGeneral ChemistryGeneral MedicineDiaminesChromophorePhotochemistrychemistry.chemical_compoundchemistryQuinolinesSYBR Green INucleic acidRNAGeneral Materials ScienceBenzothiazolessense organsCyanineFluorescent DyesJournal of Materials Chemistry B
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Medium for Screening Leuconostoc oenos Strains Defective in Malolactic Fermentation

1989

A new sensitive medium was developed to screen and isolate mutagenic Leuconostoc oenos strains defective in malolactic fermentation. The essential components of the medium included fructose (22 mM), l -malic acid (74.6 mM), bromocresol green (as pH indicator), and cellulose powder. The wild-type colonies turned blue, but defective malolactic colonies gave an acid reaction and remained yellow-green.

Bromocresol greenEcologybiologyfood and beveragesFructosebiology.organism_classificationStreptococcaceaeApplied Microbiology and Biotechnologychemistry.chemical_compoundchemistryBiochemistrypH indicatorMalolactic fermentationMethodsLeuconostocCelluloseBacteriaFood ScienceBiotechnology
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Searching for the right timing of surgical delay: angiogenesis, vascular endothelial growth factor and perfusion changes in a skin-flap model.

2009

Summary Background The angiogenic potential of vascular endothelial growth factor (VEGF) and its oxygen pressure-dependent regulation suggest a strong connection between this growth factor and the ‘delay phenomenon'. In this study we focused on the chronological changes in VEGF concentration and flap perfusion in order to optimise the duration of surgical delay. Methods The VEGF concentration in skin and underlying muscle was measured in oversized, random-pattern flaps on 38 male Sprague-Dawley rats after 3, 5 or 7 days of surgical delay. Additionally, flaps were raised 5 or 7 days past preconditioning. The effect on flap perfusion was measured using indocyanine green fluoroscopy and the si…

CD31Graft RejectionMalemedicine.medical_specialtyTime FactorsAngiogenesismedicine.medical_treatmentNeovascularization PhysiologicVasodilationEnzyme-Linked Immunosorbent AssayStatistics NonparametricSurgical FlapsNeovascularizationRats Sprague-Dawleychemistry.chemical_compoundRandom AllocationLaser-Doppler FlowmetryMedicineAnimalsProbabilitySkinbusiness.industryVascular Endothelial Growth FactorsGrowth factorMicrocirculationGraft SurvivalSkin TransplantationSurgeryRatsVascular endothelial growth factorDisease Models AnimalchemistryMultivariate AnalysisSurgerymedicine.symptombusinessIndocyanine greenPerfusionBiomarkersJournal of plastic, reconstructiveaesthetic surgery : JPRAS
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Sentinel lymph node mapping with indocyanine green in cervical cancer patients undergoing open radical hysterectomy: a single-institution series

2020

Abstract Purpose To assess the rate of bilateral sentinel lymph node (SLN) detection with indocyanine green (ICG), to evaluate the sensitivity and the negative predictive value of cervical cancer patients undergoing open radical hysterectomy; to compare open versus minimally invasive SLN biopsy performance and to assess factors related to no/unilateral SLN mapping. Methods We retrospectively reviewed consecutive patients with FIGO 2018 stage IA1 with lymph-vascular space involvement to IIB and IIIC1p cervical carcinoma who underwent SLN mapping with ICG followed by systematic pelvic lymphadenectomy between 05/2017 and 06/2020. Patients were divided according to surgical approach for statist…

Cancer ResearchUterine Cervical Neoplasmmedicine.medical_treatmentUterine Cervical NeoplasmsCohort Studieschemistry.chemical_compound0302 clinical medicineRetrospective StudieLaparotomyStage (cooking)Coloring AgentsColoring AgentCervical cancerAged 80 and over030219 obstetrics & reproductive medicinemedicine.diagnostic_testGeneral MedicineMiddle AgedSentinel lymph node mappingOncology030220 oncology & carcinogenesisLymphatic MetastasisFemaleRadiologySentinel Lymph NodeAdultIndocyanine Greenmedicine.medical_specialtySentinel lymph nodeHysterectomy03 medical and health sciencesMinimally invasive surgeryBiopsymedicineHumansRadical HysterectomyAgedRetrospective StudiesNeoplasm StagingLaparotomybusiness.industrySentinel Lymph Node BiopsyDetection rateLymphatic Metastasimedicine.diseasechemistryCervical cancerLymph Node ExcisionLymph NodesCohort StudiebusinessOriginal Article – Cancer ResearchIndocyanine green
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Indocyanine Green to Assess Vascularity of Ileal Conduit Anastomosis During Pelvic Exenteration for Recurrent/Persistent Gynecological Cancer: A Pilo…

2021

IntroductionPelvic exenteration performed for recurrent/persistent gynecological malignancies has been associated with urological short- and long-term morbidity due to altered vascularization of tissues for previous radiotherapy. The aims of the present study were to describe the use of intravenous indocyanine green (ICG) to assess vascularity of urinary diversion (UD) after pelvic exenteration for gynecologic cancers, to evaluate the feasibility and safety of this technique, and to assess the postoperative complications.MethodsProspective, observational, single-center, pilot study including consecutive patients undergoing anterior or total pelvic exenteration due to persistent/recurrent gy…

Cancer Researchmajor postoperative complicationsNeoplasms. Tumors. Oncology. Including cancer and carcinogensanastomosisgynecological canceranastomosimajor postoperative complicationeye diseasespelvic exenteration (PE)body regionsileal conduit diversionSettore MED/40 - GINECOLOGIA E OSTETRICIAOncologyindocyanine green (ICG)anastomosis; gynecological cancer; ileal conduit diversion; indocyanine green (ICG); major postoperative complications; pelvic exenteration (PE)RC254-282Original ResearchFrontiers in Oncology
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Organization of the pigment molecules in the chlorophyll a/c light-harvesting complex of Pleurochloris meiringensis (xanthophyceae). Characterization…

1997

Abstract By the aid of circular dichroism (CD), absorbance and fluorescence spectroscopy, we studied the molecular organization of the pigment molecules in cells, isolated chloroplasts and the chlorophyll a / c light-harvesting complex (LHC) associated with photosystem II of the chlorphyll c -containing alga, Pleurochloris meiringensis . In cells and chloroplasts, similarly to higher plant chloroplasts, a (+) 693 nm CD band accompanied by a tail outside the absorbance indicated a long-range chiral organization of the chlorophyll molecules. The LHCII of these algae exhibited an intense negative CD band at 679 nm. However, in contrast to the chlorophyll a / b LHCII of higher plants, where the…

Chlorophyll aCircular dichroismRadiationRadiological and Ultrasound TechnologyPhotosystem IIBiophysicsfood and beveragesLight-harvesting complexes of green plantsPhotochemistryChloroplastAbsorbanceLight-harvesting complexchemistry.chemical_compoundchemistryChlorophyllRadiology Nuclear Medicine and imagingJournal of Photochemistry and Photobiology B: Biology
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Early Steps in the Assembly of Light-harvesting Chlorophyll a/b Complex

2004

The light-harvesting chlorophyll a/b complex (LHCIIb) spontaneously assembles from its pigment and protein components in detergent solution. The formation of functional LHCIIb can be detected in time-resolved experiments by monitoring the establishment of excitation energy transfer from protein-bound chlorophyll b to chlorophyll a. To detect the possible initial steps of chlorophyll binding that may not yet give rise to chlorophyll b-to-a energy transfer, we have monitored LHCIIb assembly by measuring excitation energy transfer from a fluorescent dye, covalently bound to the protein, to the chlorophylls. In order to exclude interference of the dye with protein folding or pigment binding, th…

Chlorophyll bChlorophyll aChemistryPigment bindingChlorosomeLight-harvesting complexes of green plantsCell BiologyPhotochemistryBiochemistrychemistry.chemical_compoundChlorophyllChlorophyll bindingMolecular BiologyChlorophyll fluorescenceJournal of Biological Chemistry
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Consecutive binding of chlorophylls a and b during the assembly in vitro of light-harvesting chlorophyll-a/b protein (LHCIIb).

2006

The apoprotein of the major light-harvesting chlorophyll a/b complex (LHCIIb) is post-translationally imported into the chloroplast, where membrane insertion, protein folding, and pigment binding take place. The sequence and molecular mechanism of the latter steps is largely unknown. The complex spontaneously self-organises in vitro to form structurally authentic LHCIIb upon reconstituting the unfolded recombinant protein with the pigments chlorophyll a, b, and carotenoids in detergent micelles. Former measurements of LHCIIb assembly had revealed two apparent kinetic phases, a faster one (tau1) in the range of 10 s to 1 min, and a slower one (tau2) in the range of several min. To unravel th…

Chlorophyll bChlorophyllChlorophyll aTime FactorsPigment bindingLight-Harvesting Protein ComplexesModels BiologicalFluorescencechemistry.chemical_compoundStructural BiologyChlorophyll bindingAnimalsProtein Structure QuaternaryMolecular BiologyChlorophyll ACircular DichroismLight-harvesting complexes of green plantsChloroplastB vitaminsKineticsBiochemistrychemistryEnergy TransferChlorophyllBiophysicsChlamydomonas reinhardtiiProtein BindingJournal of molecular biology
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Chlorophyll b is involved in long-wavelength spectral properties of light-harvesting complexes LHC I and LHC II.

2001

AbstractChlorophyll (Chl) molecules attached to plant light-harvesting complexes (LHC) differ in their spectral behavior. While most Chl a and Chl b molecules give rise to absorption bands between 645 nm and 670 nm, some special Chls absorb at wavelengths longer than 700 nm. Among the Chl a/b-antennae of higher plants these are found exclusively in LHC I. In order to assign this special spectral property to one chlorophyll species we reconstituted LHC of both photosystem I (Lhca4) and photosystem II (Lhcb1) with carotenoids and only Chl a or Chl b and analyzed the effect on pigment binding, absorption and fluorescence properties. In both LHCs the Chl-binding sites of the omitted Chl species…

Chlorophyll bChlorophyllPhotosystem IIPigment bindingPhotosynthetic Reaction Center Complex ProteinsBiophysicsLight-Harvesting Protein ComplexesPhotosystem IPhotochemistryBiochemistryAbsorptionLight-harvesting complexReconstitutionchemistry.chemical_compoundSolanum lycopersicumStructural BiologySpinacia oleraceaGeneticsChlorophyll bindingCentrifugation Density GradientMolecular BiologyChlorophyll fluorescenceLong-wavelength chlorophyllBinding SitesPhotosystem I Protein ComplexChemistryChlorophyll ATemperaturePhotosystem II Protein ComplexLight-harvesting complexes of green plantsCell BiologyPigments BiologicalPlant LeavesSpectrometry FluorescenceLight-harvesting complexChlorophyll fluorescenceChlorophyll bindingProtein BindingFEBS letters
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Effects of chlorophyll a, chlorophyll b, and xanthophylls on the in vitro assembly kinetics of the major light-harvesting chlorophyll a/b complex, LH…

2001

The major light-harvesting chlorophyll a/b complex (LHCIIb) of photosystem II in higher plants can be reconstituted with pigments in lipid-detergent micelles. The pigment-protein complexes formed are functional in that they perform efficient internal energy transfer from chlorophyll b to chlorophyll a. LHCIIb formation in vitro, can be monitored by the appearance of energy transfer from chlorophyll b to chlorophyll a in time-resolved fluorescence measurements. LHCIIb is found to form in two apparent kinetic steps with time constants of about 30 and 200 seconds. Here we report on the dependence of the LHCIIb formation kinetics on the composition of the pigment mixture used in the reconstitut…

Chlorophyll bchemistry.chemical_classificationChlorophyll afood and beveragesLight-harvesting complexes of green plantsPhotochemistrychemistry.chemical_compoundB vitaminschemistryNeoxanthinStructural BiologyChlorophyllXanthophyllChlorophyll bindingMolecular BiologyJournal of Molecular Biology
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