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- All Subjects: Diabetes Mellitus
- Member of: Doctor of Nursing Practice (DNP) Final Projects



Diabetes mellitus (DM) is a detrimental disease that afflicts approximately 23.6 million Americans and costs $176 billion dollars annually in direct medical expenses (American Diabetes Association [ADA], 2015). Approximately 208,000 children and adolescents with diabetes are under the age of 20 years (ADA, 105; CDC, 2014). Currently, the standard of medical practice in school-aged children and adolescents with type 1 diabetes is to administer insulin after the child or teen has eaten. The most current evidence has demonstrated a decrease hemoglobin A1C (HbA1c) and preference for pre-prandial insulin administration (Cobry et al., 2010; Danne et al., 2003; DePalma et al., 2011; Enander et al., 2012; Luijf et al., 2010; Scaramuzza et al., 2010).
This Doctor of Nursing Practice (DNP) project delivered an educational program for parents of school age children and adolescents with type 1 diabetes and instituted pre-prandial insulin administration as the standard of care in an outpatient pediatric endocrine clinic. Education was delivered in both verbal and written formats. Data collection included weekly blood glucose reports and HbA1c at initial and follow-up sessions. Descriptive statistics were utilized to analyze the data. No post intervention data was able to be collected due to participant drop out. Future directions to promote this practice change are discussed.

Methods: Primary care providers have an opportunity to screen for sleep disorders as part of the intake process during an office visit. The Functional Outcomes of Sleep Questionnaire (FOSQ), has been proposed as guide to determine if a sleep disorder is affecting quality of life. This descriptive study randomly recruited 20 participants from a community health center. A 10-question survey was given to individuals over the age of 18 who can write and speak English and either have a body mass index (BMI) over 30, hypertension (HTN) or diabetes type II (DMII). Demographic information evaluated included age, gender, HTN, DMII, BMI>30, marital status, sleeping alone, employment type, race, type of insurance, how many times do they wake up at night, the average number of hours slept per night and does the person work night shift.
Results: The study used a qualitative approach with a descriptive methodology; statistical analysis consisted of proportions, means and standard deviation to describe the study population. Participant age ranged from 33 to 72 years (M=50.1, SD= 11.32). Sixty percent were both female and married/living with partner. Despite being married/living with partner, 50% slept alone. A Mann-Whitney U test showed that there was a significant difference in four of the questions in the FOSQ-10 in which functional outcomes were not affected by being sleepy or tired.
Conclusion: The FOSQ-10 may serve a role in identifying patients who might benefit from a sleep study. The inclusion of a sleep disorder screening tool may increase the specificity and sensitivity of the intervention and the ability to yield data that will objectively measure disordered sleep.
The reactionary nature of the current healthcare delivery system in the United States has led to increased healthcare spending from acute exacerbations of chronic disease and unnecessary hospitalizations. Those who suffer from chronic diseases are particularly at risk. The dynamics of health care must include grappling with the complexities of where and how people live and attempt to manage their health and disease. Team-based care may offer a solution due to its interdisciplinary focus on proactive, preventative care delivered in outpatient primary care.
Studies examining the effects of team-based care have shown improvement in; HbA1c, blood pressure, lipids, healthcare team morale, patient satisfaction rates, quality of care, and patient empowerment. In an effort to improve type 2 diabetes health outcomes and patient satisfaction a team based care project was implemented. The setting was an outpatient primary care clinic where the patients are known to have limited social resources. The healthcare team was comprised of a DNP Student, Master of Social Work Student, Clinical Pharmacist, and Primary Care Physician, who discussed patient specifics during informal meetings and referral processes.
Adult patients whose HbA1c level was greater than 6.5% were eligible to participate, 183 were identified and invited. Fourteen (14) agreed to participate and seven (7) completed the initial screening with a mean HbA1c of 9.7%. Significant social needs were identified using the Health Leads Questionnaire. The diabetes and social needs were addressed by members of the team who met individually with patients monthly over the course of three months. Of those who completed the initial evaluation only two (2) returned for a follow-up and had a repeat HbA1c. Both participants had important improvements in their A1C with a decrease of 2.3%, and 3.4%. The others were lost to follow up for unknown reasons. Despite the small numbers of participants this project suggests that patients can benefit when an interdisciplinary team addresses their needs and this could improve health outcomes.

Gestational diabetes mellitus (GDM), diabetes diagnosed in the second or third trimester of
pregnancy that is not clearly overt diabetes, has become more common as the rates of obesity in women of childbearing age have increased. Undiagnosed, uncontrolled diabetes in pregnancy can lead to maternal and infant health comorbidities as well as have adverse long-term effects for mother or baby. Although routine screening for gestational diabetes mellitus (GDM) occurs between 24 and 28 weeks gestation, the American Congress of Obstetricians and Gynecologists (ACOG) recommends screening earlier in pregnancy for women at risk for undiagnosed type 2 diabetes. Risk factors include previous history of GDM, known impaired glucose metabolism, or obesity (BMI > 30).
The purpose of this project is to implement the clinical practice guideline for early maternal glucose screening during pregnancy in women with risk factors through the integration of a clinical decision support (CDS) tool in an electronic health record (EHR). CDS tools can be utilized as a point of care strategy to remind providers of the clinical practice guidelines and to assist providers in decision-making related to screening. Participating providers (n=18) utilized the CDS tool during the initial obstetrical visit for at risk women without a pre-pregnancy diabetes diagnosis and entering prenatal care prior to 24 weeks. The impact of
implantation of the CDS tool shows that an increase in screening was statistically significant (p<.001).

Methods: This quasi-experimental pre/post design project was guided by the ACE Star Model and Leininger’s Theory of Cultural Care. The affiliated University’s IRB approved this project. The Diabetes Empowerment Education Program (DEEP) was implemented in a free, community clinic in a medically underserved area. Spanish speaking patients (n = 15) with A1C levels
> 8mg/dl were recruited to participate in a 6-week group educational program facilitated by community health workers. Outcomes included A1C levels, weight, and two surveys from the Michigan Diabetes Research Center - DM knowledge test and the DM empowerment scale.
Results: Paired sample t-tests were used to analyze the outcomes. The participants had an average pre-A1C of 8.82 mg/dl with post-A1C of 8.01 mg/dl (p = .028). Pre-knowledge test scores averaged 9.40 with post-test average of 12.07 (p < .001). Empowerment scores increased from 4.09 to 4.63 (p = .001). The reduction between the average pre-and post-weight measures were not statistically significant (p = .681).
Discussion: The implementation of a culturally-tailored DM educational program in a medically underserved community had a significant impact on reducing A1C levels, improving DM knowledge, and enhancing empowerment levels. Although the sample size was small and limited to one clinic, applying these programs can have a measurable clinical impact in the treatment of Hispanic DM patients. Future research can further exam how to duplicate this project on a larger scale and over a sustained period.

Type II Diabetes Mellitus has detrimental effects on the human body. A1C levels reflect the attachment of glucose to hemoglobin-the protein in red blood cells that carries oxygen. Elevated A1C levels are an indicator of how controlled diabetes is. Uncontrolled diabetes not only affects glucose levels, but has detrimental repercussions in other organs of the body, causing peripheral vascular disease, risk of developing dementia, periodontal or gum disease, skin infections, neuropathy in lower and upper extremities, renal damage, erectile dysfunction, decreased blood flow, and cardiac conditions among others.
A diet low in calories positively affects glucose levels in the body. Type II Diabetes can be easily controlled when lifestyle modifications are included in the plan of care. Among those modifications, diet is an effective intervention for the management of this condition.
Establishing a diet among the patients that have an elevated A1C is the plan of care and ultimate goal for this project. The Mediterranean diet has demonstrated decreased blood glucose levels, improved weight control and enhanced quality of life.

Randomized controlled trials and systematic reviews of paired education involving both diet and activity recommendations have shown significant reductions in the advancement of adult (age 18 to 80) prediabetes to type 2 diabetes mellitus (T2DM). Paired education on diet and activity has been effective for persons from diverse races, ethnicities, and levels of education. For this project, the paired education focused on the dietary guidance of the Whole 30 plan and the current exercise/activity recommendations of the American Diabetes Association (ADA). The ADA recommends 30 min 5 x week or 60 min 3 x week of exercise, with no more than 48 hours between exercise occurrences.
Ten adults with HbA1C between 5.7%-6.4%, levels specified by the ADA as prediabetes, were invited to participate in the project at an outpatient wellness practice. Participants took a pretest on basic food and activity knowledge, received educational sessions on the Whole 30™ plan and activity recommendations from the ADA, then completed a posttest. Participants were scheduled for one month follow ups. At the 3 month follow up appointment, repeat HbA1C was drawn. Most of the patients (7/10) completed return appointments at the 3-month time frame. Statistically significant results were seen in diet and exercise knowledge using a paired T-test. Clinically significant reductions were seen in HbA1C averages as well as weight, BMI, and glucose levels.
The purpose of this project was to evaluate the utilization of a smartphone application for diabetes self-management education (DSME) into a family practice office. Cochrane review of technological options for DSME identified the smartphone as the most effective option. All patients with diabetes presenting in a family practice office for appointments with the clinical pharmacist or the physician were asked if they would participate in the project if they met the inclusion criteria including the diagnosis of diabetes, owning a smart-phone, and over 18 years old. Exclusion criteria were pregnancy, end-stage kidney disease, or use of an insulin pump.
The goal was to enroll at least 10 patients and have them utilize the smartphone application Care4life for education and blood glucose tracking. HbA1c, heart rate, blood pressure, weight, and body mass index were collected at the initiation of the trial in addition to a demographic survey. A survey was obtained at the end of the trial. Ten patients were enrolled in the project; 50% women. One patient discontinued participation after enrollment. Six patients returned their surveys.
The feedback was primarily positive with individuals liking the text messaging reminders and ability to track their matrix (blood pressure, blood glucose, weight, medication adherence, exercise). Continued utilization of the smartphone application within the practice is likely for those patients who enjoy the technology as a reminder. Further opportunities for implementation would be in a hospital setting where patients face a delay post discharge for an appointment with a diabetes educator. Additionally, due to the complexity of the disease this application could be used to educate caregivers.