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Overcoming Drug Resistance in Gynecologic Cancers provides
up-to-date information related to important gynecologic cancers and
focuses on mechanisms of drug resistance, genetics, signaling,
immunology, health disparities, nanotechnology, economic
considerations and financial impacts. The book covers not only drug
resistance but also important means to reverse resistance both in
the laboratory and clinic. The book discusses topics such as
lifestyle, nutrition and risk of gynecologic cancers, the financial
impact of drug resistance, chemosensitizing agents and targeted
therapies in cervical, endometrial and ovarian cancer,
immunotherapy to overcome drug resistance, and genetic
polymorphisms in gynecologic cancers. Additionally, it discusses
ethnic and racial health disparity perspectives and future
developments in chemosensitizing activities to reverse drug
resistance in gynecologic cancers. It is a valuable resource for
cancer researchers, oncologists, clinicians and other biomedical
field members who are interested in new approaches to improve
chemotherapy outcome in patients with gynecologic cancers.
Theranostics and Precision Medicine for the Management of
Hepatocellular Carcinoma: Translational and Clinical Outcomes,
Volume Three provides comprehensive information about ongoing
research and clinical data on liver cancer. The book presents
detailed descriptions about diagnostics and therapeutic options for
easy understanding, with a focus on precision medicine approaches
to improve treatment outcomes. This updated volume discusses topics
such as clinical and safety assessment of HCC patients, liver
transplantation as a therapeutic option, immunotherapy
interventions, and image-based surveillance. In addition, it
discusses immunohistology of HCC-enabled precision medicine and
artificial intelligence for hepatocellular carcinomas. This is a
valuable resource for cancer researchers, oncologists, graduate
students, hepathologists and members of biomedical research who
need to understand more about liver cancer to apply in their
research work or clinical setting.
Theranostic Approach for Pancreatic Cancer modulates the biologic
properties of stroma in pancreatic cancer by targeting the several
chemotherapy resistance mechanisms to impede their malignant
property through introducing new strategies and drugs for tackling
the disease. It brings information about ongoing research as well
as clinical data about pancreatic cancer and provides detailed
descriptions about diagnostic and therapeutic options for easy
understanding. The book discusses several topics related to
pancreatic cancer, such as stem cells, drug resistance and
pancreatic tumor microenvironment, the latest developments in
chemotherapy for metastatic cancer and chemoprevention, and
epigenome as a therapeutic strategy. Additionally, it encompasses a
discussion on theranostic clinical applications for personalized
treatment and management of pancreatic cancer. The book is a
valuable resource for cancer researchers, oncologists, and several
members of the biomedical field who need to understand more about
the diagnosis and treatment of pancreatic cancer.
The work reported here was based on investigations of neutrons and
X-rays emitted from a Mather type plasma focus by varying charging
voltage (capacitor energy/ discharged current) and employing
different pre-ionization schemes to obtain high neutrons and
photons emission. It was observed that the radiated energy strongly
depends upon the filling pressure as well as on effectiveness of
pre-ionization. There was a significant increase in the neutron
emission, characteristics and total X-ray emission with
pre-ionization caused by depleted uranium as compared to other
pre-ionization schemes. Thus pre-ionization prior to pulse
discharge plays an important role in the breakdown phase of the
plasma focus operation, broadens pressure range for both neutron
and X-ray emission and improves shot to shot reproducibility of the
system. The results may be interesting for using a plasma focus as
an enhanced neutron and X-ray emission source for different
applications.
This book is a guide for microbiologists and environmentalists in
their incursions into the study of microbial genomes and their role
in the degradation of harmful & carcinogenic compounds in the
environment. It attempts to organize current affairs in
biotechnology through a survey of current methods. During the last
few decades environmental pollution control microbiology has become
an important field of science due to continuous industrialization
in both worlds. So it's a little effort in this rapid expanding
field. Aniline is a carcinogenic compound and extensively used in
taxtile industry for dying, causing serious threat to the
environment with a danger to reach in the food chain as well as in
water bodies. Its removal or degradation into harmless compounds is
of supreme priority in such areas suffering from taxtile effluents
and such. This work will serve as a guide line for the future
studies concerning biological or microbial degradation of harmful
or carcinogenic compounds like aniline.
In the first chapter some basic notions and results from
commutative algebra are being introduced. In the second chapter we
present new results related to sequentially Cohen Macaulay, pretty
clean and Stanley ideals. Let I be a monomial ideal of the poly-
nomial ring S. We show that S=I is sequentially Cohen-Macaulay if
and only if S=I is pretty clean. In particular, if S=I is
sequentially Cohen- Macaulay then I is a Stanley ideal. Chapter 3
includes some results related to Stanley Conjecture. We define nice
partition of the multicomplex associated to a Stanley ideal. In the
main result we show that if the multicomplex associated to monomial
ideal I has a nice partition then the multicomplex associated to
polarized ideal Ip has a nice partition. Fourth and last chapter
deals with the regularity of ideals of Borel type. We have proved
that the regularity of monomial ideals whose associated prime
ideals are totally ordered by inclusion is linearly bounded.
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