1.
Vegan Nutrition for Mothers and Children: Practical Tools for Healthcare Providers.
Baroni, L, Goggi, S, Battaglino, R, Berveglieri, M, Fasan, I, Filippin, D, Griffith, P, Rizzo, G, Tomasini, C, Tosatti, MA, et al
Nutrients. 2018;11(1)
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Plain language summary
Vegan diets have grown in popularity and so healthcare practitioners need to be adequately educated to be able to give advice, as if they are properly planned, they can give adequate nutrition throughout all stages of life. This review study aimed to summarise the findings of the Scientific Society for Vegetarian Nutrition (SSNV) on vegan diets throughout pregnancy, breastfeeding, infancy, and childhood to provide recommendations for healthcare professionals. The paper starts by defining a well-planned vegan diet as high in a variety of whole or minimally processed plant foods, which meets the required amount of energy. In addition, minimising vegetable fats and avoiding trans fats to not displace other nutrient-dense foods is a requirement of a vegan diet with sufficient nutrition. Adequate amounts of calcium are also needed to be a complete vegan diet and vitamin B12, and vitamin D should be obtained from alternative sources, which are lacking in plant-based diets. The paper then goes on to recommend sources and requirements of protein, fibre, omega-3 fatty acids, iron, zinc, iodine, calcium, vitamin D, and vitamin B12 in vegans during pregnancy, lactation, infancy, and childhood. Many positives of a vegan diet were outlined such as increased fibre benefitting gut bacteria and high iron intakes. It was concluded that adequately planned vegan diets can provide sufficient nutrition at all stages of pregnancy and early life and instances of malnutrition in vegans is usually due to an inappropriate diet. Healthcare professionals could use this paper to understand what defines a complete vegan diet and sources of critical nutrients to ensure that vegan clients and patients are receiving adequate nutrient amounts.
Abstract
As the number of subjects choosing vegan diets increases, healthcare providers must be prepared to give the best advice to vegan patients during all stages of life. A completely plant-based diet is suitable during pregnancy, lactation, infancy, and childhood, provided that it is well-planned. Balanced vegan diets meet energy requirements on a wide variety of plant foods and pay attention to some nutrients that may be critical, such as protein, fiber, omega-3 fatty acids, iron, zinc, iodine, calcium, vitamin D, and vitamin B12. This paper contains recommendations made by a panel of experts from the Scientific Society for Vegetarian Nutrition (SSNV) after examining the available literature concerning vegan diets during pregnancy, breastfeeding, infancy, and childhood. All healthcare professionals should follow an approach based on the available evidence in regard to the issue of vegan diets, as failing to do so may compromise the nutritional status of vegan patients in these delicate periods of life.
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In silico Derivation of HLA-Specific Alloreactivity Potential from Whole Exome Sequencing of Stem-Cell Transplant Donors and Recipients: Understanding the Quantitative Immunobiology of Allogeneic Transplantation.
Jameson-Lee, M, Koparde, V, Griffith, P, Scalora, AF, Sampson, JK, Khalid, H, Sheth, NU, Batalo, M, Serrano, MG, Roberts, CH, et al
Frontiers in immunology. 2014;:529
Abstract
Donor T-cell mediated graft versus host (GVH) effects may result from the aggregate alloreactivity to minor histocompatibility antigens (mHA) presented by the human leukocyte antigen (HLA) molecules in each donor-recipient pair undergoing stem-cell transplantation (SCT). Whole exome sequencing has previously demonstrated a large number of non-synonymous single nucleotide polymorphisms (SNP) present in HLA-matched recipients of SCT donors (GVH direction). The nucleotide sequence flanking each of these SNPs was obtained and the amino acid sequence determined. All the possible nonameric peptides incorporating the variant amino acid resulting from these SNPs were interrogated in silico for their likelihood to be presented by the HLA class I molecules using the Immune Epitope Database stabilized matrix method (SMM) and NetMHCpan algorithms. The SMM algorithm predicted that a median of 18,396 peptides weakly bound HLA class I molecules in individual SCT recipients, and 2,254 peptides displayed strong binding. A similar library of presented peptides was identified when the data were interrogated using the NetMHCpan algorithm. The bioinformatic algorithm presented here demonstrates that there may be a high level of mHA variation in HLA-matched individuals, constituting a HLA-specific alloreactivity potential.