RE: RE: Carboxysome: Bacterial Microcompartment
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RE: Carboxysome: Bacterial Microcompartment

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porous carbon spheres
graphene
ferroelectric
boron
nitride
carbon
electron
hexagon
heterostructure
biomass porous carbon (BPC)
microwave absorbing material (MAM)

porous carbon spheres look like mycoplasma laboratorium.

extremophile bacteria virus phage chimera toxoplasma porous carbon sphere, microwave antenna, programmable carbon, super-comparator batteries.

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Graphene and boron nitride lateral heterostructures for atomically thin circuitry

https://www.nature.com/articles/nature11408

Physicists discover important new property for graphene

Unconventional form of ferroelectricity could impact next-generation computing

https://mrl.mit.edu/index.php/about-mrl/history/386-physicists-discover-important-new-property-for-graphene

Biomass derived porous carbon (BPC) and their composites as lightweight and efficient microwave absorption materials

https://www.sciencedirect.com/science/article/abs/pii/S135983682033609X

Biomass porous carbon (BPC)
Microwave absorbing materials (MAMs)
Effective absorption bandwidth (EAB)
Reflection loss (RL)
Absorption mechanism

Porous hollow carbon spheres decorated with molybdenum diselenide nanosheets as anode for highly reversible lithium and sodium storage

https://www.researchgate.net/publication/275898319_Porous_hollow_carbon_spheres_decorated_with_molybdenum_diselenide_nanosheets_as_anode_for_highly_reversible_lithium_and_sodium_storage

Porous carbon hollow spheres synthesized via a modified Stöber method for capacitive deionization

https://pubs.rsc.org/en/content/articlelanding/2016/ra/c6ra06489b/unauth

Porous hollow carbon spheres: facile fabrication and excellent supercapacitive properties

https://www.sciencedirect.com/science/article/abs/pii/S001346861530623X

The Nanobacteria Revolution

https://www.alive.com/health/the-nanobacteria-revolution/

Nanobacterium

https://en.m.wikipedia.org/wiki/Nanobacterium

Nanobe

https://en.m.wikipedia.org/wiki/Nanobe

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Prion (≈10 nm)
smallest known infectious agent

Parvovirus (18-28 nm)
smallest known viruses

Nanobe (20 nm)
possible smallest lifeforms

Nanobacteria (<200 nm)
possible lifeforms smaller than bacteria

Ultramicrobacteria (200 nm)
possible dormant forms of larger cells

Ultramicrocells (200 nm)
possible dormant forms of larger cells

Mycoplasma (300 nm)
smallest known bacteria

Nanoarchaeum (400 nm)
smallest known archaeum

Pandoravirus (1000 nm)
one of the largest known viruses

Pithovirus (1500 nm)
largest known virus

Protocell (Protobiont) — a self-organized, endogenously ordered, spherical collection of lipids proposed as a stepping-stone toward the origin of life.

Protocell research has created controversy and opposing opinions, including critics of the vague definition of "artificial life". The creation of a basic unit of life is the most pressing ethical concern, although the most widespread worry about protocells is their potential threat to human health and the environment through uncontrolled replication.

Researchers E. Olavi Kajander and Neva Ciftcioglu discovered in 1995 that nanobacteria secrete a sticky, calcium-rich coating that allows them to adhere to cells inside artery walls and to each other. The coating then calcifies into a shell, protecting the bacteria from the immune system as well as all antibiotics, radiation, and even chemotherapy. An inflammatory cascade is initiated in the artery or organ that ultimately forms hard calcific plaque. The plaque layers continually grow over a period of years, eventually leading to blood vessel or organ disease. Due to their small size, nanobacteria slip through conventional filters and can contaminate vaccines and other biological treatments.

Nanobacterium is one of the most controversial issues in today’s biological studies.

Nanobacteria are resistant to heat and various conditions that would normally kill other bacteria. Present data suggest that nanobacteria are only killed by ethylenediaminetetraacetic acid and tetracycline.

NB are slow growing, not culturable in any standard microbiological medium, not Gram stainable, and resistant to heat and most antibiotics routinely used in cell culture.

Originally based on observed nano-scale structures in geological formations (including one meteorite), the status of nanobacteria was controversial, with some researchers suggesting they are a new class of living organism.

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A historical reflection on the discovery of human retroviruses

https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2686671/

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moldavites were formed about 14.7 million years ago during the impact of a giant meteorite in the present-day Nördlinger Ries crater. Splatters of material that was melted by the impact cooled while they were actually airborne and most fell in Bohemia. Currently, moldavites have been found in an area that includes southern Bohemia, western Moravia, the Cheb Basin (northwest Bohemia), Lusatia (Germany), and Waldviertel (Austria).

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Heat Shock Protein
Extremophile
Nanobacterium

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Nanobacteria: An alternative mechanism for pathogenic intra- and extracellular calcification and stone formation

https://www.ncbi.nlm.nih.gov/pmc/articles/PMC20966/

What are the nanobacteria?

https://www.researchgate.net/publication/280062094_What_are_the_nanobacteria

Nanobacteria: The Medusa strain

https://mail.classicalmusicguide.com/viewtopic.php?t=17687

Fetuin-A/albumin-mineral complexes resembling serum calcium granules and putative nanobacteria: demonstration of a dual inhibition-seeding concept

https://pubmed.ncbi.nlm.nih.gov/19956594/

Rest in peace nanobacteria, you were not alive after all

https://www.sciencenews.org/article/rest-peace-nanobacteria-you-were-not-alive-after-all

@mikewick77: porous carbon | Ecency