COVID-19 mRNA vaccines are generally recognized as safe for gestational administration. However, their transplacental pharmacokinetics remain obscure. In this study, mRNA-1273 intramuscularly given to pregnant mice rapidly circulated in maternal blood and crossed the placenta within 1 h to spread in the fetal circulation. Although spike mRNA in fetal circulation faded away within 4-6 h, it could accumulate in fetal tissues, mainly the liver and get translated into spike protein. Transplacental mRNA-1273 proved immunogenic in the fetuses, as postnatally equipped with anti-spike immunoglobulin (Ig)M, paternal allotypic anti-spike IgG2a, and heightened anti-spike cellular immunity. Gestationally administered, mRNA-1273 had a dose-dependent effect on its transplacental transfer and immunogenicity in the fetuses, with higher mRNA-1273 doses leading to increased transplacental mRNA-1273 passage and greater serum titers of endogenous anti-spike IgM/IgG generated by the fetuses. Thus, gestationally maternal mRNA-1273 vaccination might endow the newborns with not only passive but also active anti-spike immunity. Our results pose new insights into transplacental capacity of mRNA vaccines and their immunogenic potential in the fetuses, advancing our knowledge of mRNA medicine to protect the unborns against pathogens in perinatal life and broaden our horizons of prenatal mRNA molecular therapy.
Background and aimAutoimmunity refers to the presence of autoantibodies and autoreactive lymphocytes against the structural molecules of an individual's cells or tissues, known as self-antigens or autoantigens. It might exist in the absence of autoimmune disease. However, how autoimmunity develops remains a mystery, despite the discovery of autoantibodies in human cord blood.MethodsMurine fetuses on day 14 of gestation were subjected to intraperitoneal injection of murine thyroid peroxidase (TPO) peptides or collagen type II (CII) at graded doses via transuterine approach. Postnatally, the recipients were examined for autoantibodies by ELISA and autoreactive lymphocytes by in vitro incorporation of tritium and for the development of autoimmune thyroiditis or arthritis.ResultsAt one month of age, the recipients did not secrete significant levels of anti-TPO or CII IgG2a in sera until a dose of 0.5 µg TPO or 5.0 µg CII was injected in utero. Serum anti-TPO or CII IgG2a persisted for at least two to four months postnatally. In recipients with elevated autoantibodies, their lymphocytes also showed proliferative responses specifically to TPO or CII. However, the development of autoantibodies and autoreactive lymphocytes was not associated with inflammatory cell infiltration of thyroid glands or paw joints even though anti-TPO or CII IgG2a was enhanced by postnatal TPO or CII challenge.ConclusionFetal exposure to free autoantigens could be immunogenic, shedding new light on the in utero origin of autoantibodies and autoreactive lymphocytes. The development of autoimmunity requires a threshold intensity of autoantigen exposure in the fetus.
Background Neurosphere medium (NSM) and self-renewal medium (SRM) were widely used to isolate enteric neural stem cells (ENSCs) in the form of neurospheres. ENSCs or their neurosphere forms were neurogenic and gliogenic, but the compelling evidence for their capacity of assembling enteric neural networks remained lacking, raising the question of their aptitude for rebuilding the enteric nervous system (ENS) in ENSC therapeutics. It prompted us to explore an effective culture protocol or strategy for assembling ENS networks, which might also be employed as an in vitro model to simplify the biological complexity of ENS embedded in gut walls. Methods NSM and SRM were examined for their capacity to generate neurospheres in mass culture of dispersed murine fetal enterocytes at serially diluted doses and assemble enteric neural networks in two- and three-dimensional cell culture systems and ex vivo on gut explants. Time-lapse microphotography was employed to capture cell activities of assembled neural networks. Neurosphere transplantation was performed via rectal submucosal injection. Results In mass culture of dispersed enterocytes, NSM generated discrete units of neurospheres, whereas SRM promoted neural network assembly with neurospheres akin to enteric ganglia. Both were highly affected by seeding cell doses. SRM had similar ENSC mitosis-driving capacity to NSM, but was superior in driving ENSC differentiation in company with heightened ENSC apoptosis. Enteric neurospheres were motile, capable of merging together. It argued against their clonal entities. When nurtured in SRM, enteric neurospheres proved competent to assemble neural networks on two-dimensional coverslips, in three-dimensional hydrogels and on gut explants. In the course of neural network assembly from enteric neurospheres, neurite extension was preceded by migratory expansion of gliocytes. Assembled neural networks contained motile ganglia and gliocytes that constantly underwent shapeshift. Neurospheres transplanted into rectal submucosa might reconstitute myenteric plexuses of recipients’ rectum. Conclusion Enteric neurospheres mass-produced in NSM might assemble neural networks in SRM-immersed two- or three-dimensional environments and on gut explants, and reconstitute myenteric plexuses of the colon after rectal submucosal transplantation. Our results also shed first light on the dynamic entity of ENS and open the experimental avenues to explore cellular activities of ENS and facilitate ENS demystification.
ABSTRACT Background Children with autism spectrum disorder (ASD) experience impairments in their social interactions, language communication, and stereotypical patterns of behavior. Parents of children with ASD experience higher levels of stress and more depression and anxiety than parents of children with other disabilities or typically developing children. Parents of children with disabilities develop coping strategies to counteract the stresses associated with raising a child with special needs. Understanding coping strategies to help counteract the stresses associated with parenting a child with ASD may enhance well-being in parents of children with ASD, improve the quality of care provided to these children, and foster better parent–child relationships. Purpose The purpose of this study was to explore the coping strategies used by parents in Taiwan parenting a child with ASD. Methods In this descriptive qualitative study, thematic analysis was conducted on data collected during face-to-face interviews. Fourteen parents of children with ASD were recruited using purposive sampling. Researchers employed a teamwork approach for data analysis to increase the dependability and consistency of the transcribed interviews. Team members discussed coding and identified the themes collaboratively. Results Taiwanese parents of children with ASD coped with the psychological impacts of parenting by employing problem-focused and emotion-focused strategies. Problem-focused strategies included communication, support, and management, whereas emotion-focused strategies included acceptance and adaptation. Findings showed that both coping strategies were useful in addressing specific situations and circumstances. Social and clinical support improved parents’ mental health and children’s external behaviors. Conclusions/Implication for Practice Healthcare providers should evaluate how parents are coping with the stresses related to raising a child with ASD and consider the cultural factors that might influence how they accept and adapt to parenting children with ASD. Understanding these variables may be used to tailor strategies appropriate to reducing stress and improving the well-being of parents and their children. Support and resource referrals should be considered, including parent support groups, books, web-based services, and recommendations for professional consultations with social workers or therapists.
Extending well beyond the original use of propagating neural precursors from the central nervous system and dorsal root ganglia, neurosphere medium (NSM) and self-renewal medium (SRM) are two distinct formulas with widespread popularity in enteric neural stem cell (ENSC) applications. However, it remains unknown what growth factors or nutrients are crucial to ENSC development, let alone whether the discrepancy in their components may affect the outcomes of ENSC culture. Dispersed enterocytes from murine fetal gut were nurtured in NSM, SRM or their modifications by selective component elimination or addition to assess their effects on ENSC development. NSM generated neuriteless neurospheres, whereas SRM, even deprived of chicken embryo extract, might wire ganglia together to assemble neural networks. The distinct outcomes came from epidermal growth factor, which inhibited enteric neuronal wiring in NSM. In contrast, basic fibroblast growth factor promoted enteric neurogenesis, gangliogenesis, and neuronal wiring. Moreover, vitamin A derivatives might facilitate neuronal maturation evidenced by p75 downregulation during ENSC differentiation toward enteric neurons to promote gangliogenesis and network assembly. Our results might help to better manipulate ENSC propagation and differentiation in vitro, and open a new avenue for the study of enteric neuronal neuritogenesis and synaptogenesis.
Despite the evidence for fetal immunization following maternal infection, it remained a mystery how the fetal immune system was primed by vertically-transmitted pathogens or microbial antigens, especially before its full maturation. We previously demonstrated the capacity of fetal macrophages for endocytosing oncoprotein and allergens to bridge towards adaptive immunity in postnatal life. To investigate the immunological consequences of fetal contact with microbial antigens and the role of fetal macrophages in the defense against infection before T-cell development, we exposed gestational day 14 murine fetuses and their macrophages to flagellin and heat-killed Salmonella Typhimurium. Recipients with in utero exposure to Salmonella antigens or adoptive transfer of microbial antigen-loaded fetal macrophages were examined for immune responses to Salmonella antigens and resistance to virulent Salmonella challenge. Fetal exposure to microbial antigens or adoptive transfer of microbial antigen-loaded fetal macrophages could confer antigen-specific adaptive immunity. However, protective immunity against lethal Salmonella challenge was only granted to those receiving heat-killed Salmonella antigens, presenting as heightened recall responses of serum anti-lipopolysaccharide immunoglobulins and interferon-gamma. In immunized recipients surviving Salmonella challenge, their serum transfer to succeeding recipients provided immediate protection from lethal Salmonella challenge in preference to lymphocyte transfer, indicating a more active role of humoral immunity in the prevention of Salmonella invasiveness. Our study sheds insight on the role of fetal macrophages in immunogenicity to transplacental pathogens regardless of fetal lymphocyte maturity, paving the way for fetal macrophage therapies to enhance vaccine responsiveness or increase resistance to pathogenic microorganisms in perinatal life.
Background Envisioned as a similar process to tumorigenesis in terms of biological behaviors and molecular basis, embryogenesis necessitates an immune surveillance system to eliminate erratically transformed cells. Our previous study demonstrated that fetal macrophage-like phagocytes triggered Th2-skewed immunity following endocytosing prenatally administered ovalbumin to facilitate postnatal allergic airway responses, highlighting the critical role fetal phagocytes played in dealing with antigens present in developing fetuses and shaping subsequent immune responses. It prompted us to examine whether fetuses could mount Th1 tumoricidal immunity against tumorigenesis following in utero exposure to tumor antigens.Methods Gestational day 14 murine fetuses underwent in utero injection of Th1-promoting human papilloma virus (HPV) E7 peptides. Postnatally, recipients were examined for immunological consequences and the resistance to TC-1 tumorigenesis.Results Fetal exposure to HPV E7 did not cause tolerance but rather immunization in the recipients, characterized by proinflammatory Th1 polarization of their lymphocytes. Fetal macrophage-like phagocytes were responsible for taking up HPV E7 and triggering HPV E7-specific T-cell cytotoxicity and humoral immunity that rendered recipients resistant to TC-1 tumorigenesis in postnatal life. Adoptive transfer of HPV E7-loaded fetal phagocytes also elicited Th1 immunity with rapid expansion of HPV E7-specific cytotoxic CD8+ T-cell clones in response to TC-1 cell challenge so as to protect the recipients from TC-1 tumorigenesis, but failed to completely eliminate pre-existing TC-1 cells despite perceptible attenuation of local TC-1 tumor growth.Conclusions Our study revealed that Th2-biasing fetus was not immune-privileged to foreign peptides, but competent to mount Th1 cytotoxic immunity and generate immunoglobulins against tumorigenesis following in utero exposure to Th1-promoting oncoantigen. It shed light on the role of fetal macrophage-like phagocytes in bridging toward tumor antigen-specific cellular and humoral immunity potentially as an immune surveillance system to eliminate transformed cells that might be egressing during embryogenesis and leftover until postnatal life.
According to actively acquired tolerance, antigen exposure before full immune development in fetal or early neonatal life will cause tolerance to this specific antigen. In this study, we aimed to examine whether allogeneic tolerance could be elicited by in utero exposure to surface MHC antigens of allogenic cells or soluble form of MHC exosomes. Gestational day 14 FVB/N fetuses were subjected to intraperitoneal injection of allogeneic major histocompatibility complex (MHC) exosomes or highly enriched B-cells. Postnatally, the recipients were examined for the immune responses to donor alloantigens by lymphocyte proliferative reactions and skin transplantation. In utero exposure to allogeneic MHC exosomes abolished the alloreactivity of recipients' lymphocytes to the alloantigens, but could not confer skin allograft tolerance. In utero transplantation of highly enriched allogeneic B-cells generated low-level B-cell chimerism in the recipients. However, it only extended the survivals of skin allograft by a few days despite the lack of donor-specific alloreactivity of recipients' lymphocyte. Thus, an early in utero contact with exosomal or B-cell alloantigens did not lead to full skin tolerance but rather, at best, only to delayed skin rejection in the presence of microchimerism made by B-cell inocula. These results argued against the theory of actively acquired tolerance, and implicated that in utero exposure to marrow cells in previous studies was a unique model of allo-tolerance induction that involved the establishment of significant hematopoietic chimerism. Taken together with the discovery of in utero sensitization to ovalbumin in our previous studies, the immunological consequences of fetal exposure to foreign antigens might vary according to the type or nature of antigens introduced.
Autism spectrum disorder has only recently been recognized as a developmental disability in Taiwan. We conducted an exploratory qualitative descriptive study with children (n = 14, mean age = 13.57 years) and their parents to understand stressors experienced by children with autism spectrum disorder in Taiwan. An analysis of face-to-face interviews revealed that children with autism spectrum disorder experienced stressors of daily living, which included environmental stimuli, academic and behavioral expectations, deviations in routine, behavioral expectations, and emotional control, and stressors of socializing, which included bullying, communication, personal interactions, conflict resolution, and difficulty understanding others' emotions. Stressors resulted from the core symptoms and characteristic behaviors of autism spectrum disorders, and also Taiwanese cultural expectations. Our findings could help develop individualized educational plans and culturally-sensitive behavioral interventions. Facilitation of these interventions could be used by nurses and health-care professionals to help facilitate problem solving and communication skills, which could reduce the stress for children with autism spectrum disorder in Taiwan.
An autism spectrum disorder can result in considerable stress and confusion for parents as they attempt to understand their child's problems and obtain a diagnosis. Few studies have explored the parental experience in the context of Chinese culture. The purpose of this study was to understand the experiences of parents in Taiwan of children diagnosed with autism spectrum disorder. In total, 15 parents, 1 father and 14 mothers, were recruited by purposive sampling. This qualitative study used semi-structured interviews and descriptive phenomenological analysis. The findings indicated that parents of children diagnosed with autism spectrum disorder underwent five coping experiences during the diagnostic process: (1) uncertainty and difficulty understanding their child's behaviour, which occurred during the pre-diagnosis phase; (2) obligation to obtain professional services; (3) anxious searching for a second opinion, which occurred during the diagnosis phase; (4) acceptance and fortitude and (5) further adjustment during the post-diagnosis phase. Our findings add to our understanding of how parents experience the diagnostic process, which could improve medical professionals' counselling and support for parents at the stage of obtaining a diagnosis for their children.
AIMS AND OBJECTIVESTo explore and describe the coping experiences of children with autism spectrum disorders in Taiwan.BACKGROUNDChildren with autism spectrum disorders are faced with daily social and living challenges, which can cause stress. Chinese culture emphasises discipline and obedience, which may influence coping strategies of children with autism spectrum disorders in Taiwan.DESIGNThis qualitative study employed an exploratory descriptive design.METHODData were collected from in-depth, face-to-face structured interviews. Interviews explored coping strategies of Taiwanese school-aged children (aged 6-19) with autism spectrum disorders. Children (N = 17) and their caregivers were recruited by purposive sampling. Transcribed interview data were thematically analysed using the procedure of Miles and Huberman.RESULTFive themes emerged from the analysis of the data, which described the coping strategies of the children: (1) problem-solving, (2) acting-out, (3) avoidance, (4) seeking help and (5) self-regulation. These themes included multiple coping strategies, which employed the concepts of engagement and disengagement.CONCLUSIONSThe children with autism spectrum disorder used many strategies to cope with the stresses resulting from behaviours and symptoms associated with the disorder. Most of the Taiwanese children use both problem-solving and emotional-focused coping strategies.RELEVANCE TO CLINICAL PRACTICEUnderstanding coping strategies of children with autism spectrum disorder could help caregivers (parents, teachers) and medical professionals develop interventions to reduce these challenges, which could alleviate stress and improve social functioning for these children.
BACKGROUND:Hematopoietic stem cell transplantation has prolonged life for children with life-threatening diseases. Quality of life is an essential outcome for evaluating the long-term effects of transplantation.OBJECTIVE:The aims of this study were to compare the quality of life of children posttransplantation to that of healthy peers and explore the variables associated with the quality of life of posttransplant children.METHODS:A cross-sectional study was conducted with 43 pediatric transplantation survivors and 43 age- and sex-matched healthy peers.RESULTS:The mean age of the transplant group was 12.06 years. The mean time since transplant was 3.73 years. After covariate adjustment, there was no difference between posttransplant and healthy children in each domain and overall quality of life, except for physical functioning where the posttransplant children had lower scores than did the healthy group. Chronic graft-versus-host disease was found to be the primary factor associated with poor posttransplant overall quality of life and emotional and social functioning. Sociodemographic variables, symptom distress, and caregiver depression were not correlated with posttransplant quality of life.CONCLUSIONS:The quality of life of pediatric transplantation survivors was comparable to that of healthy peers.IMPLICATIONS FOR PRACTICE:The finding that children after transplant may achieve quality of life similar to their healthy peers is important information for parents to consider as they consider treatment options. For those sick children who cannot regularly attend school, their emotional and social functioning should be closely monitored.
RATIONALE:Actively acquired tolerance occurs when foreign antigens come into contact with the immature fetal immune system.OBJECTIVES:Armed with the knowledge of actively acquired tolerance, we attempted to prenatally abolish or diminish allergic responses.METHODS:In utero injection of adjuvant-free ovalbumin (OVA) was conducted in Gestational Day 14 FVB/N mouse fetuses. Postnatally, mice were evaluated for their resistance to intraperitoneal OVA sensitization and oral or aerosolized OVA challenge, and then they were examined for humoral and cellular immunological profiles, airway hyperresponsiveness to bronchospastic stimuli, and lung histology. Fluorescent conjugates of OVA were used for further studies of mechanisms.MEASUREMENTS AND MAIN RESULTS:This presumed tolerogenic action turned out to be a sensitization process with the development of anaphylaxis or heightened recall, T-helper cell type 2-skewed responses to postnatal encounter with OVA. Further postnatal aerosolized OVA stress triggered allergic lungs with functional and structural alterations of airways. The unintended consequence resulted from macrophage-like fetal phagocytes that took up OVA and differentiated toward dendritic cells. These fetal dendritic cell progenitors attenuated proteolysis of endocytosed OVA for delayed presentation in postnatal life. This specialty of fetal phagocytes effectively retains the memory of antigens internalized early before full development of the immune system, leading to an event of in utero sensitization.CONCLUSIONS:Our results have mechanical implications for prenatal imprinting of atopy and shed light on the importance of fetal phagocytes in shaping the developing immune system and initiating allergic airway diseases.
BackgroundTo investigate the differences in eating behaviors between picky and nonpicky eaters, and to correlate parental management of children's eating problems with qualities of general development in children.Methods This was a cross-sectional analysis of parental observations on their children's eating behavior, sampled from three major cities in Taiwan. We used a structured questionnaire during face-to-face interviews to collect information on each child's picky eating habits and behaviors, caregiverchild interaction and intervention during feeding, and the child's qualities of general development. Analysis of variance was used to determine significant differences between picky and nonpicky eaters.ResultsSixty-two percent of the children were considered to be picky eaters. Lack of appropriate caregiverchild interactions (e.g., repeated food attempt, persuasion, and encouragement) and the presence of inappropriate parental interactions (e.g., threatening, snacking, and nutrient supplementation) were significantly more common in picky eaters. Picky eaters also tended to exhibit low development quality in the domains of learning ability, interpersonal relationships, and physical performance, particularly in their attention span and uncooperativeness.ConclusionThere is a relationship between inappropriate parental interaction and interventions in children's eating problems and the low quality of general development in picky eaters. (C) 2016, Taiwan Pediatric Association. Published by Elsevier Taiwan LLC.
The major barrier to clinical application of in utero hematopoietic stem cell transplantation is insufficient chimerism for phenotypic correction of target diseases or induction of graft tolerance. Postnatal donor lymphocyte infusion (DLI) may enhance donor cell levels so as to further facilitate tolerance induction. We created murine mixed chimeras in utero. Chimeras with <10% donor cells were subjected to postnatal DLI to evaluate the effects of DLI on chimerism augmentation and skin tolerance induction. Within one day after DLI, recipients experienced a transient peaking of donor chimerism, which could be as high as 20~40%. However, the transient chimerism peaking didn't benefit donor skin survivals despite immediate skin placement after DLI. In case of fruitful DLI, chimerism augmentation was usually observed after a latent period of 2~4 weeks. Otherwise, chimerism would return to around pre-DLI levels by days 7~14. Peripheral chimerism of >3% could be consistently boosted up to >10%, whereas chimerism of <0.2% hardly showed any significant enhancement. As for chimerism levels of 0.2~3%, chimerism augmentation up to >10% succeeded in 3(15%) of 20 recipients. Notably, chimerism augmentation by postnatal DLI was often associated with unexpected death or graft-versus-host disease (GVHD). In conclusion, transient chimerism augmentation by DLI played no role in facilitating graft tolerance. Substantial augmentation by DLI demanded a threshold chimerism level and posed a serious risk of GVHD to the recipients. It raised the concern about using postnatal DLI to broaden therapeutic horizons of in utero hematopoietic stem cell transplantation.
The alterations in MHC class I expression play a crucial step in immune evasion of cancer or virus-infected cells. This study aimed to examine whether tolerized grafts modified MHC class I expression. FVB/N mice were rendered tolerant of C57BL/6 alloantigens by in utero transplantation of C57BL/6 marrows. Postnatally, engrafted donor skins and leukocytes were examined for their MHC expression by quantitative real-time PCR and flow cytometry. Engrafted donor skins upregulated their MHC class I related gene transcripts after short-term (1~2 weeks) or long-term (>1 month) engraftment. This biological phenomenon was simultaneously associated with upregulation of TAP1 gene transcripts, suggesting an important role of TAP1 in the regulation of MHC class I pathway. The surface MHC class I molecules of H-2K(b) in engrafted donor leukocytes consistently showed overexpression. Conclusively, the induction of allograft tolerance involved biological modifications of donor transplants. The overexpression of MHC class I within engrafted transplants of tolerant mice might be used as the tolerance biomarkers for identifying a state of graft tolerance.
Background Among cell suspensions from different origins, lymphocytes were reported to have the superiority of tolerance-conferring capacity in preimmune hosts. However, this belief was derived directly from murine combinations with fewer major histocompatibility complex (MHC) barriers that are exceptional in the clinical arena. Because of the potential for prenatal tolerance induction to facilitate postnatal therapies, it is important to examine the relative merits and hazards of fully MHC-mismatched naïve lymphocytes as the prenatal tolerogenic agent in the preimmune fetus to cross MHC barriers. Materials and methods In utero injection of C57BL/6 splenic lymphocytes was conducted in gestational day 14 FVB/N fetuses. Then, FVB/N recipients were subjected to the evaluation of hematopoietic chimerism, donor-specific tolerance, and graft-versus-host disease (GVHD). Results With a dose of ≥5 × 105 C57BL/6 lymphocytes, the recipients born alive either died unexpectedly by maternal cannibalization or succumbed to GVHD within postnatal 1 mo. GVHD mice showed significant hematopoietic chimerism that was dominated by donor CD3 T cells. It was found that allogeneic lymphocytes could rapidly damage the fetal liver within 5 d after injection. Fetal recipients could survive a dose of ≤2 × 105 allogeneic lymphocytes beyond 1 mo of age, but at best showed microchimerism that was insufficient to confer donor-specific skin tolerance. Conclusions Fully MHC-mismatched lymphocytes injected in utero had lethal graft-versus-host effects, which might rapidly develop within 1 wk after injection in preimmune fetuses. They were incapable of conferring significant hematopoietic chimerism and graft tolerance even at bearable doses.