Elucidating the most probable compositions of the first cell membranes prior to the origin of life, within a laboratory setting, requires experiments with organic molecules and chemical conditions representative of those present on the early Earth. As such, the membrane forming molecules used in these experiments are described as 'prebiotically plausible', i.e., they could have formed through abiotic reactions and be available for membrane formation prior to the emergence of biology
Compartmentalisation by bioenergetic membranes is a universal feature of life. The eventual compartm...
Contemporary biological cells are highly sophisticated dynamic compartment systems which separate an...
Poster presented at the 2012 Washington State University Academic Showcase.The problem of how life b...
At some point in early evolution, life became cellular. Assuming that this step was required for the...
Popular hypotheses that attempt to explain the origin of prebiotic molecules and cellular life capab...
Organic compounds are synthesized in the interstellar medium and can be delivered to plan-etary surf...
The origin of life on Earth required myriads of chemical and physical processes. These include the f...
Studying the origin of life is one of man’s greatest achievements over the last sixty years. The fie...
International audienceIt is still uncertain how the first minimal cellular systems evolved to the co...
The basic tenet of the heterotrophic theory of the origin of life is that the maintenance and reprod...
It is still uncertain how the first minimal cellular systems evolved to the complexity required for ...
Compartmentalisation by bioenergetic membranes is a universal feature of life. The eventual compartm...
The goal of prebiotic chemistry is the depiction of molecular evolution events preceding the emergen...
The goal of prebiotic chemistry is the depiction of molecular evolution events preceding the emergen...
Our objective is to help explain how the earliest ancestors of contemporary cells (protocells) perfo...
Compartmentalisation by bioenergetic membranes is a universal feature of life. The eventual compartm...
Contemporary biological cells are highly sophisticated dynamic compartment systems which separate an...
Poster presented at the 2012 Washington State University Academic Showcase.The problem of how life b...
At some point in early evolution, life became cellular. Assuming that this step was required for the...
Popular hypotheses that attempt to explain the origin of prebiotic molecules and cellular life capab...
Organic compounds are synthesized in the interstellar medium and can be delivered to plan-etary surf...
The origin of life on Earth required myriads of chemical and physical processes. These include the f...
Studying the origin of life is one of man’s greatest achievements over the last sixty years. The fie...
International audienceIt is still uncertain how the first minimal cellular systems evolved to the co...
The basic tenet of the heterotrophic theory of the origin of life is that the maintenance and reprod...
It is still uncertain how the first minimal cellular systems evolved to the complexity required for ...
Compartmentalisation by bioenergetic membranes is a universal feature of life. The eventual compartm...
The goal of prebiotic chemistry is the depiction of molecular evolution events preceding the emergen...
The goal of prebiotic chemistry is the depiction of molecular evolution events preceding the emergen...
Our objective is to help explain how the earliest ancestors of contemporary cells (protocells) perfo...
Compartmentalisation by bioenergetic membranes is a universal feature of life. The eventual compartm...
Contemporary biological cells are highly sophisticated dynamic compartment systems which separate an...
Poster presented at the 2012 Washington State University Academic Showcase.The problem of how life b...