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Mentored Research Scientist Development Award (Parent K01 - Independent Clinical Trial ... - 0 views

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    The purpose of the NIH Mentored Research Scientist Development Award (K01) is to provide support and protected time (three to five years) for an intensive, supervised career development experience in the biomedical, behavioral, or clinical sciences leading to research independence. Although all of the participating NIH Institutes and Centers (ICs) use this support mechanism to support career development experiences that lead to research independence, some ICs use the K01 award for individuals who propose to train in a new field or for individuals who have had a hiatus in their research career because of illness or pressing family circumstances. Other ICs offer separate K01 FOAs intended to increase research workforce diversity.
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Physical Activity and Weight Control Interventions Among Cancer Survivors: Effects on B... - 0 views

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    This Funding Opportunity Announcement (FOA) encourages transdisciplinary and translational research that will identify the specific biological or biobehavioral pathways through which physical activity and/or weight control (either weight loss or avoidance of weight gain) may affect cancer prognosis and survival. Research applications should test the effects of physical activity, alone or in combination with weight control (either weight loss or avoidance of weight gain), on biomarkers of cancer prognosis among cancer survivors identified by previous animal or observational research on established biomarkers other than insulin/glucose metabolism, especially those obtained from tumor tissue sourced from repeat biopsies where available. Because many cancer survivor populations will not experience recurrence but will die of comorbid diseases or may experience early effects of aging, inclusion of biomarkers of comorbid diseases (e.g., cardiovascular disease) and of the aging process are also sought. Applications should use experimental designs (e.g., randomized controlled clinical trials (RCTs), fractional factorial designs), and include transdisciplinary approaches that bring together behavioral intervention expertise, cancer biology, and other basic and clinical science disciplines relevant to the pathways being studied.
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Research to Advance the Understanding and Management of the Multiple Organ Dysfunction ... - 0 views

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    The purpose of this funding opportunity announcement (FOA) is to establish a program of research to advance the understanding, prevention and treatment of pediatric multiple organ dysfunction syndrome (MODS). Given the prevalence and associated morbidity and mortality of MODS in children, the current lack of understanding underscores the need for more basic, exploratory and longitudinal research. Possible topics of study include, but are not limited, to the epidemiology, pathophysiology, monitoring, and treatment of MODS. Studies that assess specific etiologies associated with MODS including, but not limited to, sepsis, trauma, acute respiratory distress syndrome, inborn errors of metabolism, burns, cancer, transplantation and congenital heart disease are encouraged. Applications may include any appropriate study designs ranging from basic science and animal models through prospective randomized controlled trials. It is hoped that as a result of research supported through this funding opportunity, outcomes will improve both in terms of the prevention and treatment of MODS in children.
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Examination of Survivorship Care Planning Efficacy and Impact (R21 Clinical Trial Optio... - 0 views

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    The purpose of this Funding Opportunity Announcement (FOA) is to stimulate developmental research evaluating the effect of care planning on self-management of late effects of cancer therapy; adherence to medications, cancer screening, and health behavior guidelines; utilization of follow-up care; survivors' health and psychosocial outcomes. How organizational-level factors influence the implementation of care planning and its associated costs is also of interest. Specifically, the FOA aims to stimulate research that will: 1) develop and test metrics for evaluating the impact of survivorship care planning; 2) evaluate the impact of survivorship care planning on cancer survivors' morbidity, self-management and adherence to care recommendations, utilization of follow-up care; 3) evaluate effects of planning on systems outcomes, such as associated costs and impact on providers and organizations implementing the care planning; and 4) identify models and processes of care that promote effective survivorship care planning. The ultimate goal of this FOA is to generate a body of science that will inform the development and delivery of interventions that improve follow-up care for cancer survivors.
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Research to Advance the Understanding and Management of the Multiple Organ Dysfunction ... - 0 views

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    The purpose of this funding opportunity announcement (FOA) is to establish a program of research to advance the understanding, prevention and treatment of pediatric multiple organ dysfunction syndrome (MODS). Given the prevalence and associated morbidity and mortality of MODS in children, the current lack of understanding underscores the need for more basic, exploratory and longitudinal research. Possible topics of study include, but are not limited, to the epidemiology, pathophysiology, monitoring, and treatment of MODS. Studies that assess specific etiologies associated with MODS including, but not limited to, sepsis, trauma, acute respiratory distress syndrome, inborn errors of metabolism, burns, cancer, transplantation and congenital heart disease are encouraged. Applications may include any appropriate study designs ranging from basic science and animal models through prospective randomized controlled trials. It is hoped that as a result of research supported through this funding opportunity, outcomes will improve both in terms of the prevention and treatment of MODS in children.
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Examination of Survivorship Care Planning Efficacy and Impact (R01 Clinical Trial Optio... - 0 views

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    The purpose of this Funding Opportunity Announcement (FOA) is to stimulate research evaluating the effect of care planning on self-management of late effects of cancer therapy; adherence to medications, cancer screening, and health behavior guidelines; utilization of follow-up care; survivors' health and psychosocial outcomes. How organizational-level factors influence the implementation of care planning and its associated costs is also of interest. Specifically, the FOA aims to stimulate research that will: 1) develop and test metrics for evaluating the impact of survivorship care planning; 2) evaluate the impact of survivorship care planning on cancer survivors' morbidity, self-management and adherence to care recommendations, utilization of follow-up care; 3) evaluate effects of planning on systems outcomes, such as associated costs and impact on providers and organizations implementing the care planning; and 4) identify models and processes of care that promote effective survivorship care planning. The ultimate goal of this FOA is to generate a body of science that will inform the development and delivery of interventions that improve follow-up care for cancer survivors.
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Human Heredity and Health in Africa (H3Africa): Ethical, Legal, and Societal Issues (EL... - 0 views

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    This Funding Opportunity Announcement (FOA) encourages applications to study the ethical, legal and societal issues (ELSI) of human genome research in African populations. Of particular interest are projects that propose focused bioethical, legal, and social science analyses of new or emerging issues.
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DoD Peer Reviewed Cancer, Translational Team Science Award - 0 views

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    TTSA supports hypothesis-driven translational studies. These studies should be associated with an ongoing or completed clinical trial and/or annotated biorepositories and focused on research for the next-phase clinical trial or future clinical application. The TTSA is intended to support advanced translational studies that have the potential for near-term outcomes that are based on results from clinical investigations. While funding for clinical trials is allowed, the TTSA is intended to fund correlative clinical research studies and not only a clinical trial. Research projects funded by the TTSA should address critical knowledge gaps in clinical outcomes, validate key research results, expand upon potentially transformative results, or investigate novel findings based on results from clinical research.
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Communication and Decision Making for Individuals with Inherited Cancer Syndromes (U01 ... - 0 views

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    This Funding Opportunity Announcement (FOA) is associated with the Beau Biden Cancer MoonshotSM Initiative (https://www.cancer.gov/research/key-initiatives/moonshot-cancer-initiative) that is intended to accelerate cancer research. The purpose of this FOA is to develop, test, and evaluate interventions and implementation approaches, or adapt existing approaches, to improve patient/provider/family risk communication and decision making for individuals and families with an inherited susceptibility to cancer. Specifically, this FOA targets the following area designated as a scientific priority by the Blue Ribbon Panel (https://www.cancer.gov/research/key-initiatives/moonshot-cancer-initiative/blue-ribbon-panel/prevention-screening-working-group-report.pdf) Recommendation G (https://www.cancer.gov/research/key-initiatives/moonshot-cancer-initiative/blue-ribbon-panel#ui-id-3 ): "Sponsor initiatives to improve the current state of early detection, genetic testing, genetic counseling, and knowledge landscape of the mechanisms and biomarkers associated with cancer development and conduct implementation science research to accelerate development, testing, and broader adoption of proven strategies to significantly reduce cancer risk and address cancer health disparities in these areas." This Funding Opportunity Announcement invites U01 applications for projects that develop, test, and evaluate interventions and implementation approaches, or adapt existing approaches, to improve patient/provider/family risk communication and decision making for individuals and families with an inherited susceptibility to cancer so that they can make informed clinical risk management decisions.
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Radiobiology of High Linear Energy Transfer (High LET) Exposure in Cancer Treatment (R0... - 0 views

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    The purpose of this Funding Opportunity Announcement (FOA) is to support multidisciplinary research projects that examine the relative biological effectiveness (RBE) of high linear energy transfer (high LET) radiation on cell and tissue targets. The overall goal of the research is to establish a firm scientific basis for RBE models of high LET radiation and determine potential benefits in cancer treatment. A meritorious application is expected to be well-balanced in terms of interdisciplinary science that spans approaches in both radiation biology and radiation physics research. Priorities for this FOA are on 1) Applications with potential to enhance the understanding of mechanisms related to high LET effects in both cancer and normal tissues; and 2) Characterization of high LET effects that have potential to inform treatment strategies for cancers resistant to conventional radiation or other combined modality treatments.
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The Desmoid Tumor Research Foundation - 0 views

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    The Desmoid Tumor Research Foundation, Inc. ("DTRF") funds research that will advance the current scientific knowledge about desmoid tumors, moving toward the development of new treatment options and bringing us closer to our ultimate goal of a cure. DTRF is the only foundation in the country dedicated to facilitating and funding research for a cure for desmoid tumors. We fund research that uses cutting-edge science and creative clinical applications, in addition to novel approaches addressing potential leads based on prior research. Research proposals with additional sources of funding support are particularly desirable. Researchers must be willing to collaborate with other scientists and institutions with similar interests.
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Harry J. Lloyd Charitable Trust: Melanoma Research Grants - 0 views

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    Applications will be accepted for a broad range of melanoma research projects involving basic science, clinical trials, etc. 1. An adequate discussion of biostatistics is required, including but not limited to specification of numbers of cell lines, laboratory animals, or patients to be treated in the studies. 2. Plans for adjustment for multiple looks should be presented, particularly in regards to clinical endpoints and evaluation of multiple biomarkers.
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RFA-RM-20-012: NIH Directors New Innovator Award Program (DP2 Clinical Trial Optional) - 0 views

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    The NIH Director's New Innovator Award Program supports early stage investigators of exceptional creativity who propose highly innovative research projects with the potential to produce a major impact on broad, important areas relevant to the mission of NIH. For the program to support the best possible researchers and research, applications are sought which reflect the full diversity of the research workforce. Individuals from diverse backgrounds and from the full spectrum of eligible institutions in all geographic locations are strongly encouraged to apply to this Funding Opportunity Announcement. In addition, applications in all topics relevant to the broad mission of NIH are welcome, including, but not limited to, topics in the behavioral, social, biomedical, applied, and formal sciences and topics that may involve basic, translational, or clinical research.
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RFA-RM-13-001: Planning Grants for the NIH Building Infrastructure Leading to Diversity... - 0 views

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    The purpose of this Funding Opportunity Announcement (FOA) is to encourage institutions with expertise and innovative strategies for developing research and mentoring opportunities for undergraduate students from backgrounds underrepresented in biomedical research to submit applications for 6 month planning grants for the NIH Building Infrastructure Leading to Diversity (BUILD) initiative. The BUILD initiative aims to increase the diversity of the NIH-funded workforce by supporting collaborative programs that include novel approaches for enhancing undergraduate education, training, and mentorship, as well as infrastructure support and faculty development to facilitate those approaches. BUILD planning grants are intended to help institutions develop the necessary partnerships and infrastructure needed to be competitive for the BUILD initiative.
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Apply Sean Patrick Grant | HERA Women's Cancer Foundation - 0 views

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    The HERA Women's Cancer Foundation provides funds for a project focused on the cause, early detection, treatment, and/or understanding of ovarian cancer. This annual award provides $50,000 for a cross-disciplinary project that is collaborative in nature.  The application must identify two (or more) scientists with different yet complementary skills and explain how these skills will be synergistic in addressing the ovarian cancer problem.  Applications are now being accepted for the 2013 award.
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nsf.gov - Funding - Integrated NSF Support Promoting Interdisciplinary Research and Edu... - 0 views

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    The INSPIRE awards program was established to address some of the most complicated and pressing scientific problems that lie at the intersection of traditional disciplines.  It is intended to encourage investigators to submit bold, exceptional proposals that some may consider to be at a disadvantage in a standard NSF review process; it is not intended for proposals that are more appropriate for existing award mechanisms.
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Innovative Technologies for Cancer-Relevant Biospecimen Science (R21) - 0 views

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    This Funding Opportunity Announcement (FOA) solicits grant applications proposing exploratory research projects focused on the early-stage development of highly innovative technologies that improve the quality of the samples used for cancer research or clinical care. This includes new capabilities to address issues related to pre-analytical degradation of targeted analytes during the collection, processing, handling, and/or storage of cancer-relevant biospecimens. The overall goal is to support the development of highly innovative technologies capable of maximizing or otherwise interrogating the quality and utility of biological samples used for downstream analyses. This FOA will support the development of tools, devices, instrumentation, and associated methods to preserve or protect sample integrity, or establish verification criteria for quality assessment/quality control and handling under diverse conditions. These technologies are expected to accelerate and/or enhance research in cancer biology, early detection and screening, clinical diagnosis, treatment, epidemiology, or address issues associated with cancer health disparities, by reducing pre-analytical variations that affect biospecimen sample quality.
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Validation and Advanced Development of Emerging Technologies for Biospecimen Science (R33) - 0 views

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    This Funding Opportunity Announcement (FOA) solicits grant applications proposing technically innovative feasibility studies focused on the advanced development and validation of cancer-relevant technologies that address issues related to pre-analytical variations in the collection, processing, handling, and storage of biospecimens or their derivatives. The overall goal is to develop technologies capable of interrogating and/or maximizing the quality and utility of biospecimens or their derived samples for downstream analyses. This FOA will support the development of tools, devices, instrumentation, and associated methods to assess sample quality, preserve/protect sample integrity, and establish verification criteria for quality assessment/quality control and handling under diverse conditions. This FOA solicits R33 applications for projects where proof-of-principle of the proposed technology or methodology has already been established and supportive preliminary data are available. Projects proposing to use established technologies where the novelty resides in the biological or clinical question being pursued are an example of a topic not appropriate for this solicitation and will not be reviewed.
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Early-Stage Development of Innovative Technologies for Biospecimen Science (R21) - 0 views

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    This Funding Opportunity Announcement (FOA) solicits grant applications proposing technically innovative feasibility studies focused on early-stage development of technologies that address issues related to pre-analytical variations in the collection, processing, handling, and storage of cancer-relevant biospecimens or their derivatives. The overall goal is to develop technologies capable of interrogating and/or maximizing the quality and utility of biospecimens or samples derived from those biospecimens for downstream analyses. This FOA will support the development of tools, devices, instrumentation, and associated methods to assess sample quality, preserve/protect sample integrity, and establish verification criteria for quality assessment/quality control and handling under diverse conditions. These technologies are expected to potentially accelerate and/or enhance research in cancer biology, early detection, screening, clinical diagnosis, treatment, epidemiology, and cancer health disparities, by reducing pre-analytical variations that affect biospecimen sample quality. All projects must include quantitative milestones (i.e., technical metrics that determine whether the specific aims have been accomplished). This funding opportunity is part of a broader NCI-sponsored Innovative Molecular Analysis Technologies (IMAT) Program.
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Integrating Biospecimen Science into Clinical Assay Development - 0 views

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    This Funding Opportunity Announcement (FOA) will support extramural research to investigate and mitigate challenges facing clinical assay development due to biopsy biospecimen preanalytical variability. The program will tie in with current efforts to optimize clinical biomarker assays utilized in NCI-sponsored clinical trials. Results from this research program will improve the understanding of how biopsy collection, processing, and storage procedures may affect all aspects of analytical performance for current and emerging clinical biomarkers, as well as expedite clinical biomarker assay development through the evidence-based standardization of biopsy handling practices. Critical information gained through these research awards may increase the reliability of clinical biomarker assays, reduce time requirements for assay development, and decrease assay failure during late-stage testing.
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