added to part 2

This commit is contained in:
aj 2019-11-15 18:17:08 +00:00
parent b6d3c8e69c
commit 41bd17b625
5 changed files with 387 additions and 10 deletions

125
Taxol.svg Normal file
View File

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@ -216,7 +216,7 @@ status open
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filename WellBandStructure.png
lyxscale 40
width 60col%
width 50col%
\end_inset
@ -1422,7 +1422,7 @@ status open
\begin_inset Graphics
filename probability-plot.png
lyxscale 30
width 75col%
width 60col%
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@ -1468,7 +1468,7 @@ status open
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@ -1613,7 +1613,7 @@ status open
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@ -1751,7 +1751,7 @@ Considering these two probabilities it is clear that it is more likely for
the electron to be found between 6nm and 8nm than between 2nm and 4nm across
the well.
This is as expected considering 6nm to 8nm places the interval towards
the center of the well.
the center of the 14.87nm well.
As the probability density function is a
\begin_inset Formula $\sin^{2}$
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@ -1786,26 +1786,208 @@ Application of Nanomaterials
\begin_layout Standard
The use of albumin protein nanoparticlces has provided a new delivery method
for the highly effective chemotherapy drug, paclitaxel, in turn reducing
side effects caused by previous delivery schemes and increasing circulation
half life around the body.
side effects and toxicity caused by previous delivery schemes and increasing
circulation half life around the body.
\end_layout
\begin_layout Section
Paclitaxel
\end_layout
\begin_layout Section
Previous Delivery
\begin_layout Standard
Paclitaxel is a chemotherapy drug in the taxane family which function as
mitotic inhibitors.
This involves the suppression of mitosis or cell division which is effective
in treating cancer as constant cell mitosis is how cancer spreads throughout
the body.
\end_layout
\begin_layout Standard
While taxanes are an effective cancer treatment, their use has proved difficult
as they are not particularly soluble in water requiring a delivery vehicle
in order to allow intraveneous application.
\end_layout
\begin_layout Standard
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filename Taxol.svg
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\begin_layout Plain Layout
\begin_inset Caption Standard
\begin_layout Plain Layout
Chemical structure for paclitaxel
\end_layout
\end_inset
\end_layout
\begin_layout Plain Layout
\end_layout
\end_inset
\end_layout
\begin_layout Section
Albumin
Previous Delivery Methods
\end_layout
\begin_layout Standard
As a result of the poor water solubility of taxanes and paclitaxel, a method
for delivering a solution was required.
Polyethoxylated castor oil (commercially known as Kolliphor EL, formerly
Cremophor EL [CrEL]) combined with dehydrated ethanol provides a suitable
formulation vehicle for many poorly water soluble and has been the standard
for many forms of commercially available paclitaxel such as Taxol.
\end_layout
\begin_layout Standard
While this solution has proved to be an effective delivery mechanism there
are significant side effects.
CrEL has been shown to cause severe hypersensitivity reactions and peripheral
neuropathy which are exacerbated by the high volumes of delivery agent
which must be coadministered with the active ingredient
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LatexCommand cite
key "elsevier_sdoi_10_1016_S0959_8049_01_00171_X"
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.
The use of CrEL also affects the behaviour of paclitaxel when administered,
manifesting as undesirable non-linear absorption, distribution, metabolism
and excretion behaviour
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, typically referred to as a drug's pharmacokinetic characteristics.
\end_layout
\begin_layout Section
Human Serum Albumin
\end_layout
\begin_layout Standard
Human serum albumin (HSA), sometimes referred to as blood albumin is the
most frequently found protein in the human body
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key "proquest1881262578"
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and is part of the albumin family of proteins.
HSA is produced by the liver and performs important functions such as maintaini
ng oncotic pressure in the blood vessels, ensuring the right levels of fluids
are found between blood vessels and body tissues, and transporting hormones
and fatty acids around the body.
\end_layout
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\begin_inset Caption Standard
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Crystal structure of human serum albumin with binding sites annotated
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\begin_layout Standard
Importantly for the application of drug delivery HSA along with the rest
of the albumin proteins are water soluble and HSA effectively binds with
both hydrophobic and hydrophilic chemicals
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Critically HSA has been shown to be nontoxic, non-immunogenic (provokes
little response from the immune system), biocompatible and biodegradable
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providing many advantages over Cremophor EL delivery.
\end_layout
\begin_layout Section
NAB-Paclitaxel
\end_layout
\begin_layout Standard
Word Count:
\end_layout
\begin_layout Standard
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@ -15,6 +15,7 @@ year = "2014-11"
@misc{new_semiconductor_materials_archive,
title={NSM Archive - Physical Properties of Semiconductors},
author={IoffeInstitute},
url={http://matprop.ru/},
journal={New Semiconductor Materials Archive},
publisher={Ioffe Institute}
@ -78,5 +79,74 @@ volume = "55",
year = "1989-08-14",
}
@article{elsevier_sdoi_10_1016_S0959_8049_01_00171_X,
author = "Gelderblom, H and Verweij, J and Nooter, K and Sparreboom, A",
issn = "0959-8049",
journal = "European Journal of Cancer",
keywords = "Cremophor El ; Formulation Vehicles ; Paclitaxel ; Pharmacokinetics ; Pharmacodynamics ; Medicine",
language = "eng",
number = "13",
pages = "1590,1598",
publisher = "Elsevier Ltd",
title = "Cremophor EL: the drawbacks and advantages of vehicle selection for drug formulation",
volume = "37",
year = "2001-09",
}
@article{proquest78006535,
author = "Sparreboom, A and van Tellingen, O and Nooijen, W J and Beijnen, J H",
issn = "0008-5472",
journal = "Cancer research",
keywords = "AnimalsPharmacokinetics ; Antineoplastic Agents, PhytogenicAnalogs & Derivatives ; Chromatography, High Pressure LiquidPharmacokinetics ; Dose-Response Relationship, DrugPharmacokinetics ; FemalePharmacokinetics ; GlycerolPharmacokinetics ; HumansPharmacokinetics ; MicePharmacokinetics ; PaclitaxelPharmacokinetics ; Pharmaceutical VehiclesPharmacokinetics ; SolventsPharmacokinetics ; Antineoplastic Agents, Phytogenic ; Pharmaceutical Vehicles ; Solvents ; Cremophor El ; Paclitaxel ; Glycerol",
language = "eng",
number = "9",
pages = "2112,2115",
title = "Nonlinear pharmacokinetics of paclitaxel in mice results from the pharmaceutical vehicle Cremophor EL.",
url = "http://search.proquest.com/docview/78006535/",
volume = "56",
year = "1996-05-01",
}
@article{proquest1881262578,
author = "Lomis, Nikita and Westfall, Susan and Farahdel, Leila and Malhotra, Meenakshi and Shum-Tim, Dominique and Prakash, Satya",
issn = "2079-4991",
journal = "Nanomaterials (Basel, Switzerland)",
keywords = "Mcf-7 ; Cancer ; Human Serum Albumin ; Nanoparticles ; Paclitaxel",
language = "eng",
number = "6",
title = "Human Serum Albumin Nanoparticles for Use in Cancer Drug Delivery: Process Optimization and In Vitro Characterization.",
url = "http://search.proquest.com/docview/1881262578/",
volume = "6",
year = "2016-06-15",
}
@article{wos000301045400002,
author = "Elzoghby, Ao and Samy, Wm and Elgindy, Na",
issn = "0168-3659",
journal = "Journal Of Controlled Release",
language = "English",
number = "2",
pages = "168,182",
publisher = "ELSEVIER SCIENCE BV",
title = "Albumin-based nanoparticles as potential controlled release drug delivery systems",
volume = "157",
year = "2012-01-30",
}
@incollection{BARBOSA2014345,
title = "Chapter 32 - Fibrillation and Polymorphism of Human Serum Albumin",
editor = "Vladimir N. Uversky and Yuri L. Lyubchenko",
booktitle = "Bio-nanoimaging",
publisher = "Academic Press",
address = "Boston",
pages = "345 - 362",
year = "2014",
isbn = "978-0-12-394431-3",
doi = "https://doi.org/10.1016/B978-0-12-394431-3.00032-8",
url = "http://www.sciencedirect.com/science/article/pii/B9780123944313000328",
author = "Silvia Barbosa and Pablo Taboada and Víctor Mosquera",
keywords = "human serum albumin, misfolded states, downhill polymerization, nucleation, lag phase, structural intermediates, curly fibrils, polymorphism, spherulites, biohybrid materials",
abstract = "Protein misfolding and self-assembly of disease-related and disease-unrelated proteins and peptides into highly ordered β-sheet-rich amyloid fibrils converts this self-assembly pathway in a generic property of polypeptide chains. Hence, to gain a detailed knowledge about the underlying packing and fibrillation mechanisms of such a process the use of model proteins appears to be the key. Human serum albumin (HSA) appears to be an excellent candidate because it is highly abundant and plays fundamental biologic roles; it also displays a complex tertiary structure without any propensity to fibrillation in its native state. Thus, in this chapter, we first give a very brief summary of the main aspects of the origin of protein fibrillation. Subsequently, we describe how the various factor induce HSA fibrillation, and we also describe the possible aggregation pathways and the structure of the resulting fibrils."
}