Project Grant DP2HD112040
- This $2,624,970 federal Project Grant, awarded by the National Institutes of Health (NIH) under the Trans-NIH Research Support program (CFDA 93.310), aims to construct the first-ever foundational in silico (computational) model of whole-embryo mouse embryogenesis. The project will leverage cutting-edge sequencing technology and machine learning techniques to establish a large-scale 3D multi-omics cell atlas of mouse embryogenesis from embryonic day 6.5 to 16.5, involving a total of 50 million...
- The National Institute of Child Health and Human Development (NICHD) awarded a $411,125 Project Grant (CFDA 93.865 - Child Health and Human Development Extramural Research) to Syracuse University to develop a microfluidic human placenta organoid model. The goal is to generate human trophoblast stem cells (HTSCs) from induced pluripotent stem cells and use them to create a placenta organoid system that can replicate early/mid-gestation placental development. The researchers will study the role of...
- The National Institute of Child Health and Human Development (NICHD) awarded a $109,076 Project Grant to the University of Pennsylvania, effective February 1, 2026 through June 30, 2027, under the Child Health and Human Development Extramural Research program (CFDA 93.865). The research project investigates the role and regulation of the IC2 imprinted gene cluster in extravillous trophoblast (EVT) differentiation, with the primary objective of understanding mechanisms that control placental...
- Federal Project Grant Award Summary Cincinnati Children's Hospital Medical Center received a $474,878 Project Grant from the National Institute of Child Health and Human Development (NICHD) under the Child Health and Human Development Extramural Research program (CFDA 93.865), awarded August 1, 2025, with a completion date of July 31, 2027. The research project, "Quantifying the Impact of Hyperglycemia on Embryonic Metabolism and Development in C. elegans," generates single-cell...
- The Whitehead Institute for Biomedical Research was awarded a $125,000 Project Grant from the Eunice Kennedy Shriver National Institute of Child Health and Human Development (NICHD) under the Child Health and Human Development Extramural Research program (CFDA 93.865). The purpose of this 2-year grant is to develop and leverage the PETRACER technology platform to create integrated maps of cell state and lineage during normal mouse embryonic development. The research aims to delineate how...
- This $168,954 Project Grant, awarded May 27, 2025, by the National Institute of Child Health and Human Development under the Child Health and Human Development Extramural Research program (CFDA 93.865), supports fundamental research to advance understanding of germ cell lineage dynamics during mammalian oogenesis. The research addresses infertility affecting approximately 10% of reproductive-aged individuals in the United States by investigating how early germ cell heterogeneity influences the...
- Federal Project Grant Award Summary The National Institute of Child Health and Human Development (NICHD) awarded the University of Washington a $121,443 Project Grant (CFDA 93.865: Child Health and Human Development Extramural Research) effective May 1, 2025, through July 12, 2026. This research initiative focuses on developing a novel microraft array platform to model chromosomal mosaicism during early human embryogenesis. The project deliverables include the creation of an automated microscope...
- This federal Project Grant award for $378,123 from the National Institute of Child Health and Human Development (NICHD) under the Child Health and Human Development Extramural Research program (CFDA 93.865) supports research to identify and test mechanisms that establish transcriptional regulatory potency in early embryos. The primary activities include using genomic methods like PRO-seq, DREG, and OMNI-ATAC to characterize transcriptionally active regulatory elements, DNA accessibility, and...
- This federal Project Grant award for $169,000.00, provided by the National Institute of Child Health and Human Development (NICHD) under the Child Health and Human Development Extramural Research program (CFDA 93.865), supports the development of a single-cell reference atlas of axolotl embryogenesis. The overarching goal is to elucidate the fundamental biological processes required for limb regeneration, with the aim of informing future regenerative medicine strategies for human limb injuries...
- Federal Grant Award Summary The Eunice Kennedy Shriver National Institute of Child Health and Human Development (NICHD) awarded a Project Grant of $719,141 to Columbia University's Health Sciences Division (award date: August 11, 2025; completion date: July 31, 2030) under the Child Health and Human Development Extramural Research program (CFDA 93.865). This research initiative leverages in vitro fertilization (IVF) technology to investigate prenatal effects independent of shared...
DECIPHERING PRINCIPLES OF HUMAN EMBRYONIC PATTERNING IN DEVELOPMENT AND DISEASE - PROJECT SUMMARY/ABSTRACT FUNDAMENTAL QUESTIONS IN DEVELOPMENTAL BIOLOGY REVOLVE AROUND UNDERSTANDING THE SEQUENCE OF MOLECULAR AND CELLULAR EVENTS THAT REGULATES LINEAGE SPECIFICATION AND DIFFERENTIATION. NOWHERE IS THIS MORE POORLY UNDERSTOOD THAN IN THE EARLY HUMAN EMBRYO, WHICH REMAINS EXPERIMENTALLY INTRACTABLE FOR TECHNICAL AND ETHICAL REASONS PAST THE ONSET OF GASTRULATION - THE POINT WHEN THE THREE MAJOR GERM LAYERS OF THE HUMAN BODY ARE SPECIFIED WITHIN THE EMBRYONIC EPIBLAST TISSUE. MYSELF AND OTHERS HAVE PREVIOUSLY DEVELOPED STEM CELL-BASED SYSTEMS THAT RECAPITULATE KEY ASPECTS OF 3-DIMENSIONAL (3D) MAMMALIAN DEVELOPMENT IN VITRO, PAVING THE WAY TO A MORE COMPLETE UNDERSTANDING OF THE SPECIFIC STEPS THAT GOVERN EMBRYONIC DEVELOPMENT. HERE, I PROPOSE AN INNOVATIVE NEW EXPERIMENTAL APPROACH, USING HUMAN PLURIPOTENT STEM CELLS (HPSCS), COMBINED WITH CUTTING-EDGE BIOENGINEERING TECHNOLOGIES FOR A CONTROLLABLE, EFFICIENT AND SCALABLE MODELING OF HUMAN EPIBLAST DEVELOPMENT IN VITRO. THIS MODEL WILL PERMIT STUDYING THE HUMAN GERM LAYER DIFFERENTIATION TRAJECTORY AND TEMPORAL DYNAMICS IN THE CORRECT 3D-CONFORMATION. I WILL COMBINE STATE-OF-THE-ART TOOLS IN GENETICS, IMAGING, AND SINGLE-CELL MULTI- OMICS IN TANDEM WITH HIGH-THROUGHPUT COMPUTATIONAL ANALYSES TO DEFINE THE KEY MOLECULAR AND CELLULAR EVENTS THAT REGULATE DEVELOPMENTAL PATTERNING UNDER DIFFERENT CONDITIONS. I WILL FURTHER INVESTIGATE HOW THESE EVENTS ARE CONTROLLED BY CELLULAR METABOLISM AND NUTRIENT AVAILABILITY, WHICH HAS IMPORTANT IMPLICATIONS FOR UNDERSTANDING THE EARLY EMBRYONIC ORIGIN OF NUMEROUS HUMAN DISEASES. MY PROPOSAL WILL OPEN UP A COMPLETELY NEW AND POWERFUL EXPERIMENTAL PARADIGM TO DISSECT THE FUNDAMENTAL, INTER-CONNECTED, PRINCIPLES OF HUMAN DEVELOPMENTAL GENETICS AT EARLY EMBRYONIC STAGES THAT ARE OTHERWISE INACCESSIBLE. THIS NEW KNOWLEDGE WILL ALSO DIRECTLY INFORM EFFORTS TO EFFICIENTLY GENERATE MATURE TISSUES AND CELL TYPES FROM STEM CELLS FOR DISEASE MODELING AND CELL THERAPIES. ULTIMATELY, THESE FINDINGS WILL BE CRITICAL FOR POSSIBLE PREVENTION OF ADVERSE PREGNANCY OUTCOMES, OFFERING A UNIQUE OPPORTUNITY TO UNDERSTAND THE CELLULAR AND MOLECULAR MECHANISMS BEHIND DEVELOPMENTAL DISORDERS AND CONGENITAL PATHOLOGIES.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $0 | 2/20/26 | ||
| Not listed | $1.0m | 9/3/25 | ||
| Not listed | $1.0m | 9/3/25 | ||
| Not listed | $0 | 9/15/22 | ||
| Not listed | $0 | 9/15/22 |