Climate Change and Human Health 

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Assignment 1

Topic:

Climate Change and Human Health 

In Unit 4, we discussed human body systems, and in Unit 5, we are discussing conservation and biodiversity. Let’s use what we have learned to explore the complex interactions between climate change, the environment, and human health.

Greenhouse gas emissions resulting from human activities are driving climatic changes.

Climate mitigation is the concept of taking action to reduce or prevent the emissions of greenhouse gases. Climate mitigation actions typically have health co-benefits. For example, implementing renewable energy technologies means fewer greenhouse gas emissions and also reduced emissions of particulate matter thus improving air quality which will translate into overall improved pulmonary health. This improved health outcome is an example of a health co-benefit. These health co-benefits may have maximum impact on already vulnerable populations (e.g. those with asthma). Current mitigation strategies will likely not be able to reverse the change in climate that has already occurred.

Adaptation strategies help people adjust to climate change impacts, such as worsened air quality, by altering behavior or way of life. An example of an adaptation strategy would be limiting outdoor exercise near major roadways to reduce exposure to greenhouse gas emissions. Through changes in human behavior, we may be able to reduce the negative impacts of climate change on human health.

Climate change mitigation strategies confer co-benefits to human health and adaptation strategies can reduce negative health impacts.

After reading the article that is attached “TEMPERATURE RELATED DEATH AND ILLNESS

write a paragraph, minimum of 100 words, in which you address all of the following points:

1.  What environmental condition(s) may arise in response to your chosen climate change topic?

2.  What negative health effect(s) may arise from exposure to this/these environmental condition(s)?

3.  How could climate mitigation impact health outcomes with regards to your specific climate change topic? What would be relevant health co-benefit(s) of climate mitigation?

4.  Come up with 2 adaptation strategies that individuals can incorporate into their life to adjust to the climate change impacts discussed in your chosen article.

5.  Come up with 1 adaptation strategy that society (your local community) can adopt or enact to adjust to the climate change impacts discussed in your chosen article.

6.  Discuss any pros or cons of your listed adaptation strategies either from an economic, social, or environmental perspective.

See the introductory section above for definitions and examples of climate mitigation and adaptation strategies. If you are having trouble coming up adaptation strategies, try searching the internet for inspiration. Do not use my adaptation strategy example.

Background reading if you need some inspiration for adaptation strategies:

ASSIGNMENT # 2

Go to the Concord Coalition web page linked below. The Concord Coalition is a non-partisan organization trying to help the U.S. Government reduce its growing national debt, which stands today at nearly $29 trillion. Read the entire page and then post a summary of the challenges the retirement and healthcare systems face in the coming years. MAKE SURE YOU WRITE A PARAGRAPH WITH 8 SENTENCES

https://www.concordcoalition.org/index.php/the-federal-budget-affects-you

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Foundational Neuroscience 

 Foundational Neuroscience

The foundations of neuroscience are based on the ability to understand the pathophysiology of psychiatric disorders in relation to the central nervous system. Psychopharmacologic agents have two mechanisms of action which are agonist and antagonist. Agonists emulate and link to and stimulate a receptor, while antagonists fasten to a receptor but stop them from manufacturing a particular response. Psychoactive medications can reduce activity at the synapse (antagonist) or increase activity at the synapse (agonist) (Barron, 2021). A partial agonist maintains reasonable action and solely creates half impact of a complete agonist. An incomplete or partial agonist can represent an agonist and equally be an antagonist and have the power to block the receptors from the full agonist. The molecular impact can be down restrained by antagonist medications which can attach to a receptor without any inherent reaction (Rosenthal & Burchum, 2018).

According to Berg &Clarke (2018), agonists have affinity and efficacy; this means they have target receptors that they bid to and can change receptor functionality to produce the desired response. Alternatively, antagonists have an affinity but cannot make a response; therefore, the antagonist will reduce the receptor ability of an agonist hence reduction in receptor response. Where there is a full agonist, the essential functions of an antagonist can be blocked as a full agonist produces a maximum response.

The couple proteins and ion-gated channels are prominent dualistic families of the receptor proteins, and their significant role is the closing and opening of the postsynaptic channels. The receptor is the first family identified as an ionotropic disorder and has a direct link to the ion channel. A neurotransmitter is considered the second family and is the metabotropic receptor, and one or more metabolic steps determine the movement of ions. The receptors have no ion channels and are directly affected by the initiation of the intermediate molecules. Metabotropic receptors are comprised of monomeric proteins that have an extracellular domain. The inotropic receptors bring together the transmitter bidding and channel function hence developing a single molecular entity known as a ligand-gated ion channel. The receptors are comprised of four or five individual protein subunits. The metabolic receptors activate the g-proteins, thus disassociating from the receptor and developing a direct interaction with the ion channel or binding to other effective proteins (Badheka et al., 2017).

Epigenetics is the study of changes that influence the phenotype without influencing the variation in the genotype. It focuses on heritable but rescindable gene expression variations without altering the primary DNA sequence. Epigenetic regulation plays a significant role in upholding normal cell phenotypic activity and treating illnesses such as neurogenerative disorders like dementia (Feinberg, 2018).

Antipsychotics are commonly prescribed for the treatment of psychosis and behavioral and psychological symptoms of dementia in elderly patients. The treatment is often ineffective and causes side effects (McClarty et al., 2018). When prescribing medication, it is always essential to individualize the patient and understand their history to assess their genetic implications to treatment and diagnosis. Although aging can affect drug metabolism and clearance, other pharmacokinetic and pharmacodynamics changes due to age-induced epigenetic alterations also impact important processes for antipsychotic function. Mechanisms of epigenetics account for some of the altered efficacy and increased side effects seen in patients, especially elderly patients, that involve histone modifications that can adversely affect the efficacy of antipsychotics and increased side effects in elderly patients (McClarty et al., 2018). Individualizing patient treatment helps the Psychiatric Nurse Practitioner (PNP) understand how to treat the psychotic symptoms presented in each case and how to treat the side effects that follow antipsychotic medication. Understanding that neurogenerative illness starts slowly and worsen with time and it cannot be treated, but its symptoms can be controlled (Cox et al., 2018), will help the PNP when treating patients with illness such as Alzheimer’s to know better whether the focus in on controlling the symptoms or reversing the disease process.

References

Barron, S. (2021). Psychopharmacology. In R Biswas-Diener & E Diener (Eds), Noba textbooks series: Psychology. Champaign, IL: DEF publishers. https://noba.to/umx6f2t8Links to an external site.

Rosenthal, L. D., & Burchum, J. R. (2018). Lehne’s pharmacotherapeutics for advanced practice providers. St Louis, MO: Elservier

Badheka, D., Yudin, Y., Borbiro, I., Hartle, C. M., Yazici, A., Mirshashi, T., & Rohacs, T. (2017). Inhibition of transient receptor potential melastatin 3ion channels by G-proteins By subunits. Elife, 6, e26147.https://elifesciences.org/articles/26147Links to an external site.

Feinberg, A. p. (2018). The key role of epigenetics in human disease prevention and mitigation. New England Journal of Medicine, 378(14), 1323–1334.

Berg, K. A., & Clarke, W. P. (2018). Making sense of pharmacology: Inverse agonism and functional selectivity. The International Journal of Neuropsychopharmacology, 21(10), 962–977. https://doi.org/10.1093/ijnp/pyy071Links to an external site.

McClarty, B. M., Fisher, D. W., & Dong, H. (2018). Epigenetic alterations impact on antipsychotic treatment in elderly patients. Current treatment options in psychiatry, 5(1), 17-29

Coc, P. A., Kostrzewa, R. M., & Guillemin, G. J. (2018). BMAA and neurodegenerative illness. Neurotoxicity research. 33(1), 178–183. https://limks.springer.com/article/10.1007/s12640-017-9753

Types of Actions of Psychopharmacologic Agents

Psychopharmacologic agents can have different effects on the brain depending on their position on the agonist-to-antagonist spectrum of action. An agonist is a drug that binds to a receptor and activates it, leading to a physiological response. On the other hand, antagonists bind to the same receptor but do not activate it; instead, they block other molecules from binding to it. Agonists and antagonists are both used to treat psychiatric disorders, such as depression, which is often treated with selective serotonin reuptake inhibitors (SSRIs) (Lenci et al., 2021). The agonist-to-antagonist spectrum of action of psychopharmacologic agents is essential in understanding how drugs interact with the brain and how they can be used to treat mental health conditions. By understanding this spectrum, doctors can better choose the proper medication for a patient’s individual needs.

Further, Partial agonists bind to the same receptor as an agonist but activate it to a lesser degree. In contrast, inverse agonists bind to the same receptor and cause it to become inactive. Therefore, the different ways that drugs can interact with receptors can significantly impact the efficacy of psychopharmacologic treatment (Deluigi et al., 2021). For instance, partial agonists can be beneficial in cases where a milder effect is desired, such as in opioid addiction treatment, where buprenorphine produces a lower opioid effect than an agonist. Inverse agonists can be beneficial in cases where a receptor’s products need to be reduced, such as in the treatment of schizophrenia, where clozapine is used to reduce the effects of a receptor.

Comparing the Actions of G Protein Coupled Receptors and Ion Gated Channels

The primary action of G-coupled proteins is to act as a signaling pathway for neurons in the brain. When a ligand binds to the protein, it triggers a signal transduction pathway that leads to the production of a secondary messenger, such as cyclic AMP, which then triggers a cascade of events in the cell (Duncan et al., 2020). These events can include the activation of specific genes or the release of neurotransmitters. G-coupled proteins are essential for various neurological functions, including memory formation, learning, and the control of hormone release. In contrast, the direct action of ion-gated channels is to regulate the flow of ions across the cell membrane. These channels can be selectively opened or closed in response to various stimuli, allowing specific ions to pass through the membrane (Wang et al., 2020). Ion-gated channels play an essential role in neuronal signaling. They allow ions such as sodium and potassium to enter and exit the cell, creating a wave of electrical activity essential for the brain to function correctly. Also, Ion-gated channels regulate ion concentrations within the cell, which can affect the activity of enzymes, the metabolism of the cell, and other processes.

The Role of Epigenetics in Pharmacologic Action

The term “epigenetics” describes heritable modifications to gene expression that take place without a change in the DNA sequence. These alterations are brought about by the DNA molecule receiving additional or fewer chemical markers, such as methyl groups. These epigenetic marks can affect how a gene is expressed, which can contribute to pharmacologic action (Hogg et al., 2020). For example, drugs that target enzymes involved in epigenetic modifications, such as histone deacetylases, could alter gene expression and, consequently, the pharmacologic action of a drug. By understanding the role of epigenetics in gene expression, it can be possible to develop drugs that are more effective and have fewer side effects.

Impact of Medication Action on Prescribing Medications to Patients

Understanding the agonist-to-antagonist spectrum of action of psychopharmacologic drugs and the impact of epigenetics in gene expression is crucial for psychiatric mental health nurse practitioners. This knowledge can help us as practitioners to better understand how drugs interact with receptors in the brain and how these interactions can be used to treat mental health disorders (Morrow et al., 2016). By considering this information when prescribing medications, practitioners can tailor their treatments to the individual needs of their patients. For example, when prescribing an antidepressant to a patient, the practitioner can consider the patient’s history and medical conditions, as well as the agonist-to-antagonist spectrum of action of the drug. Suppose the patient has a history of anxiety. In that case, the practitioner can opt for a selective serotonin reuptake inhibitor (SSRI), which is an agonist of the 5-HT receptor, as this type of drug is effective for this condition (Hogg et al., 2020). Alternatively, suppose the patient has a history of depression. In that case, the practitioner can opt for a partial agonist, such as bupropion, as this type of drug has been shown to have fewer side effects than a full agonist.

References

Deluigi, M., Klipp, A., Klenk, C., Merklinger, L., Eberle, S. A., Morstein, L., Heine, P., Mittl, P. R. E., Ernst, P., Kamenecka, T. M., He, Y., Vacca, S., Egloff, P., Honegger, A., & Plückthun, A. (2021). Complexes of the neurotensin receptor 1 with small-molecule ligands reveal structural determinants of full, partial, and inverse agonism. Science Advances7(5). https://doi.org/10.1126/sciadv.abe5504

Duncan, A. L., Song, W., & Sansom, M. S. P. (2020). Lipid-Dependent Regulation of Ion Channels and G Protein–Coupled Receptors: Insights from Structures and Simulations. Annual Review of Pharmacology and Toxicology60(1), 31–50. https://doi.org/10.1146/annurev-pharmtox-010919-023411

Hogg, S. J., Beavis, P. A., Dawson, M. A., & Johnstone, R. W. (2020). Targeting the epigenetic regulation of antitumour immunity. Nature Reviews Drug Discovery19(11), 776–800. https://doi.org/10.1038/s41573-020-0077-5

Lenci, E., Calugi, L., & Trabocchi, A. (2021). Occurrence of Morpholine in Central Nervous System Drug Discovery. ACS Chemical Neuroscience12(3), 378–390. https://doi.org/10.1021/acschemneuro.0c00729

Morrow, E. M., Roffman, J. L., Wolf, D. H., & Coyle, J. T. (2016). Psychiatric Neuroscience: Incorporating Pathophysiology into Clinical Case Formulation. Massachusetts General Hospital Comprehensive Clinical Psychiatry, 543–564. https://doi.org/10.1016/b978-0-323-04743-2.50042-1

Wang, Y., Yutuc, E., & Griffiths, W. J. (2020). Neuro‐oxysterols and neuro‐sterols as ligands to nuclear receptors, GPCRs, ligand‐gated ion channels and other protein receptors. British Journal of Pharmacology. https://doi.org/10.1111/bph.15191

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Analyze the influence of patient factors on pharmacokinetic and pharmacodynamic processes

Analyze the influence of patient factors on pharmacokinetic and pharmacodynamic processes

you examine the impact of patient factors that may lead to changes in pharmacokinetic and pharmacodynamic processes on patient drug therapy for cardiovascular disorders. You also explore ways to improve drug therapy plans for cardiovascular disorders based on patient factors and overall health needs.

  • Analyze the influence of patient factors on pharmacokinetic and pharmacodynamic processes
  • Analyze the impact of changes in pharmacokinetic and pharmacodynamic processes on patient drug therapies
  • Evaluate drug therapy plans for cardiovascular disorders

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What infectious microbe would you create a vaccine to protect people from the disease?

What infectious microbe would you create a vaccine to protect people from the disease?

Vaccines have effectively produced protection to a wide variety of infectious microbes.

  • What infectious microbe would you create a vaccine to protect people from the disease?
  • Describe how you would design the vaccine.
  • What are some new additives being used in vaccines and how do they help produce immunity?
  • How much will the vaccine cost?
  • Who should receive your vaccine?

Please be sure to validate your opinions and ideas with citations and references in APA format.

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Describe what you need to do to get ready for job interviews in the future.

Week 7 DiscussionDiscussion Topic Task: Reply to this topic Due December 8 at 11:59 PM

Interview Reflections

The discussion assignment provides a forum for discussing relevant topics for this week on the basis of the course competencies covered. For this assignment, make sure you post your initial response to the Discussion Area by the due date assigned.

To support your work, use your course and text readings and also use outside sources. As in all assignments, cite your sources in your work and provide references for the citations in APA format.

Start reviewing and responding to the postings of your classmates as early in the week as possible. Respond to at least two of your classmates. Participate in the discussion by asking a question, providing a statement of clarification, providing a point of view with a rationale, challenging an aspect of the discussion, or indicating a relationship between two or more lines of reasoning in the discussion. Complete your participation for this assignment by the end of the week.

Using your text and South University library resources, address the following:

  • Reflect on your third and final interview.
  • Provide an e-mail from the person with whom you completed the interview to verify interview completion.
  • Describe what you learned from the interview process about yourself and your readiness for the types of interviews.
  • Describe what you need to do to get ready for job interviews in the future.

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What marketing techniques can be used to appeal to the young and healthy and encourage them to enroll in health insurance plans?

What marketing techniques can be used to appeal to the young and healthy and encourage them to enroll in health insurance plans?

The uninsured healthy and young take good health for granted, place a high emphasis on the experience of care, are tech-savvy, and have low motivation to enroll in health insurance plans. Discuss the following for this assignment:

  • What marketing techniques can be used to appeal to the young and healthy and encourage them to enroll in health insurance plans?

The use of APA Style and scholarly references published within the last 5 years is required.

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What is a microgrid and its advantages/disadvantages to our current electricity grid?

The electric-utility business is going through a major business process reengineering (BPR), stemming from technology improvements, economic forces, and public awareness.  The electricity sector is transforming from large plants that produce hundreds or thousands of megawatts of power that are sent to users through distribution grids, thanks to factors including lower cost natural gas and solar power.  Other factors include advanced control systems; more compact, smarter, and efficient electrical inverters; smart electricity meters and the growing Internet of Things; and the ever-growing ability to extract actionable information from big data.

Use this forum to discuss solar power as an alternate to electricity.  Although solar panels for most homes is not yet cost effective, discuss government subsidies that aim to put solar panels on more rooftops.  What is ‘community solar’ and would you join such an initiative?  What is a microgrid and its advantages/disadvantages to our current electricity grid?

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research nanotechnology and its potential use in biotechnology.

research nanotechnology and its potential use in biotechnology.

Directions:

Genetic engineering has become a part of our culture, and it is difficult to tell the difference between unmodified and genetically modified food sources, such as plants and animals. After reading this module’s material regarding vectors in biotechnology, consider the potential for nanotechnology and gene therapy.

For your initial discussion post, research nanotechnology and its potential use in biotechnology. Explain the potential advantages and disadvantages of nanotechnology in healthcare and discuss whether you would or would not support further research.

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What are the symptoms and incubation period of the infection caused by the organism? 

What are the symptoms and incubation period of the infection caused by the organism?

Select ONE of the following fugal agents for your assignment.

  • Aspergillus, Tinea pedis, Candida albicans, Coccidioides, Pneumocystis jirovecii, Blastomyces, Cryptococcus neoformans, Histoplasma, Tinea corporis

Step 2

Research the chosen fungal agent to examine the anatomical structures and diseases associated with it.

Step 3

Using the template below answer the following questions:

  1. Where the organism is normally found and how is it spread?
  2. What are the virulence factors of the organism?
  3. What are the symptoms and incubation period of the infection caused by the organism?
  4. How would you diagnose an infection caused by the organism?
  5. Describe how the organism infects different organs and how the immune system responds to infection.
  6. What is the current treatment plan for the infections caused by the organism and the treatment success rate?
  7. What populations are most at risk for infection?
  8. What environments and sources are associated with the organism?
  9. What are some public health implications of the infection caused by the agent?
  10. What precautions can the public take to prevent infections?

Assignment File(s)

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In what way can the public influence this proposed policy change?

In what way can the public influence this proposed policy change?

n a 2-3 page paper include the following three parts:Part 1:What is one domestic policy that you would change? Why?

  • Be sure to use your approved policy and sources identified in the Policy You Would Change activity you completed in Week 9.

Part 2: From the list of branches below, choose two and explain the procedures for changing or making a new policy for each of the two you chose.

  • the legislative process
  • presidential executive action
  • administrative agency’s regulations
  • legal system of the courts

Part 3: In what way can the public influence this proposed policy change?

  • Use evidence to support your argument including statistics and/or relevant facts from your sources.

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