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1.
J Genet Couns ; 30(1): 283-292, 2021 02.
Artigo em Inglês | MEDLINE | ID: mdl-32885542

RESUMO

As demand for genetic services grows, innovative genetic counseling service delivery models (SDMs) are needed. However, there is limited research on the barriers and needs of genetic counselors (GCs) interested in implementing new SDMs into their practice. In fall 2017, the National Society of Genetic Counselors (NSGC) Access and Service Delivery Committee's SDM Subcommittee sent an online survey to the NSGC membership regarding the use of SDMs, which aimed to update the understanding of current SDM use and how this has changed over time. The survey included several questions with open-response components assessing the need for new SDMs and barriers to implementation. Inductive thematic analysis was used to identify common themes. Among 517 usable responses (16% response rate), more than half (54.4%) of respondents indicated their current SDM was inadequate to address the patient need in their area. Nearly two-thirds (64.8%) indicated they were in the process of or planning to make changes to their SDM, although 40.6% did not have a specific timeline. Three major themes related to expanding access, reimbursement for services, and lack of support were identified from responses to questions about implementation of additional SDMs. Access included subthemes of geographic and physical location limitations, addressing long wait times, and the need to expand services. Reimbursement for services included issues with billing, genetic counselor licensure, and limitations due to the need for physician involvement in billing. The lack of support was evident with issues related to understaffing; difficulty gaining support at the administrative, institutional, or physician level; time constraints; and funding concerns. This study shows that GCs need education, tools, and resources to overcome barriers in implementing new or adapting current SDMs, and there is a need for policy change, including new billing and coverage models.


Assuntos
Conselheiros , Médicos , Aconselhamento Genético , Humanos , Inquéritos e Questionários
2.
J Genet Couns ; 29(6): 1126-1141, 2020 12.
Artigo em Inglês | MEDLINE | ID: mdl-32314856

RESUMO

In 2010, the National Society of Genetic Counselors (NSGC) membership was surveyed about their use of genetic counseling service delivery models (SDMs) including in-person, telephone, telegenetics, and group genetic counseling. Since that time, the demand for genetic counseling services has increased in the United States (US). We hypothesized that the use of various SDMs has increased to help address the growing demand. To assess for changes in SDM use and interest in implementing innovative SDMs, the NSGC SDM subcommittee sent an electronic survey to the NSGC membership (N = 3,616), which was open from August 2017 to December 2017. Descriptive statistics and chi-square analysis were used to compare and identify differences in SDM utilization between 2010 and 2017. There were 590 total responses (16.3% response rate) with 517 usable responses, representing multiple genetic counseling specialties. Compared to 2010, significantly fewer respondents indicated they 'always' provide services in-person in 2017 (p < .04, df = 4), with 92.6% of respondents reporting 'always' or 'often' utilizing in-person SDM in 2017. Telephone genetic counseling was reported by 12.5% as a model used always or often, compared to 8% in 2010; however, the shift toward or away from telephone genetic counseling since 2010 was not statistically significant (p = .27, df = 4). The number of respondents using telegenetics always or often increased from 2.3% in 2010 to 6.7% in 2017, and more respondents report using telegenetics at an increased frequency (p < .01, df = 4). In contrast, those reporting use of a group genetic counseling SDM always or often decreased from 3.0% to 1.4%, though there was not a significant shift toward or away the frequency of respondents using group genetic counseling (p = .21, df = 4). Almost all respondents (93%) were interested in implementing an additional and/or different SDM; however, many (74%) identified barriers to implementation. There was an increase in those reporting use of 3 or 4 SDMs in practice since 2010 (p < .02). Genetic counselors may be attempting to compensate for longer wait times by implementing additional SDMs to improve access for patients. There is strong interest in learning about and implementing innovative SDMs to improve access and efficiency. However, resources need to be developed to help genetic counselors identify and overcome implementation barriers to achieve these goals.


Assuntos
Aconselhamento Genético/organização & administração , Modelos Organizacionais , Inovação Organizacional , Estudos Transversais , Feminino , História do Século XXI , Humanos , Masculino , Estados Unidos
3.
Endocr Res ; 38(3): 139-150, 2013 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-23102272

RESUMO

AIM: To test the transactivation domain-mediated control of glucose homeostasis by the tumor suppressor p53. BACKGROUND: The tumor suppressor p53 has a critical role in maintenance of glucose homeostasis. Phosphorylation of Ser18 in the transaction domain of p53 controls the expression of Zpf385a, a zinc finger protein that regulates adipogenesis and adipose function. This results suggest that the transactivation domain of p53 is essential to the control of glucose homeostasis. MATERIALS AND METHODS: Mice with mutations in the p53 transactivation domain were examined for glucose homeostasis as well as various metabolic parameters. Glucose tolerance and insulin tolerance tests were performed on age matched wild type and mutant animals. In addition, mice expressing increased dosage of p53 were also examined. RESULTS: Mice with a mutation in p53Ser18 exhibit reduced Zpf385a expression in adipose tissue, adipose tissue-specific insulin resistance, and glucose intolerance. Mice with relative deficits in the transactivation domain of p53 exhibit similar defects in glucose homeostasis, while "Super p53" mice with an increased dosage of p53 exhibit improved glucose tolerance. CONCLUSION: These data support the role of an ATM-p53 cellular stress axis that helps combat glucose intolerance and insulin resistance and regulates glucose homeostasis.

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