Analysis of lipophilic pigments from a phototrophic microbial mat community by high performance liquid chromatography.

J Microbiol Methods

National Aeronautics and Space Administration, Ames Research Center, Moffett Field, CA 94035, USA.

Published: October 1997

As assay for lipophilic pigments in phototrophic microbial mat communities using reverse phase-high performance liquid chromatography was developed which allows the separation of 15 carotenoids and chloropigments in a single 30 min program. Lipophilic pigments in a laminated mat from a commercial salina near Laguna Guerrero Negro, Baja California Sur, Mexico reflected their source organisms. Myxoxanthophyll, echinenone, canthaxanthin, and zeaxanthin were derived from cyanobacteria; chlorophyll c, and fucoxanthin from diatoms; chlorophyll a from cyanobacteria and diatoms; bacteriochlorophylls a and c, bacteriophaeophytin a, and gamma-carotene from Chloroflexus spp.; and beta-carotene from a variety of phototrophs. Sensitivity of detection was 0.6-6.1 ng for carotenoids and 1.7-12 ng for most chloropigments. This assay represents a significant improvement over previous analyses of lipophilic pigments in microbial mats and promises to have a wider application to other types of phototrophic communities.

Download full-text PDF

Source
http://dx.doi.org/10.1016/0167-7012(88)90003-6DOI Listing

Publication Analysis

Top Keywords

lipophilic pigments
16
pigments phototrophic
8
phototrophic microbial
8
microbial mat
8
performance liquid
8
liquid chromatography
8
analysis lipophilic
4
pigments
4
mat community
4
community high
4

Similar Publications

Highly efficient and convenient QuEChERS using ZIF-67 derived magnetic nanoporous carbon for determination of carbamate pesticides in various vegetable and fruit samples.

Food Chem

January 2025

School of Public Health, Hebei Key Laboratory of Occupational Health and Safety for Coal Industry, North China University of Science and Technology, Tangshan 063210, Hebei, China. Electronic address:

Effective and convenient QuEChERS of lipophilic pesticides with wide pK range from strongly pigment-rich food samples remains a great challenge. Here, a ZIF-67 derived magnetic nanoporous carbon (Co@MPC) was firstly proposed for modified QuEChERS of carbamate pesticides (pK 4.3-12.

View Article and Find Full Text PDF

The red pigment was recovered from the S. phaeolivaceus GH27 isolate, which was molecularly identified using 16S rRNA gene sequencing and submitted to GenBank as OQ145635.1.

View Article and Find Full Text PDF

The kinetically-derived maximal dose (KMD) is defined as the maximum external dose at which kinetics are unchanged relative to lower doses, e.g., doses at which kinetic processes are not saturated.

View Article and Find Full Text PDF
Article Synopsis
  • Niosomes are vesicular systems that utilize nonionic surfactants for effective topical and transdermal drug delivery, offering targeted release while reducing systemic toxicity.
  • Recent research emphasizes the importance of nonionic surfactants and cholesterol in enhancing the stability and drug entrapment capacity of niosomes, making them beneficial for treating various dermatological and systemic disorders.
  • The potential applications of niosomes extend to cancer therapies and immunization, leading to improved efficacy, reduced side effects, and better patient outcomes in drug delivery.
View Article and Find Full Text PDF

Tyrosinase, a key protein in the biosynthesis of melanin pigments, is crucial in determining skin pigmentation. Inhibiting tyrosinase activity is a promising approach for treating conditions related to excessive pigmentation. For the synthesis of more potent tyrosinase inhibitors, we combined two approaches, para-substitution and lipophilicity, to enhance the inhibitory properties of ()-2-(4-hydroxybenzylidene)hydrazine-1-carbotiamide, whose enzyme inhibitory properties have been previously demonstrated.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!