investigator_user
investigator
user
funding
collaborators
pending
menu
bell
message
arrow_up
arrow_down
filter
layers
globe
marker
add
arrow
close
download
edit
facebook
info
linkedin
minus
plus
save
share
search
sort
twitter
remove
user-plus
user-minus
Sign Up for Updates
Map
Countries
Cancer types
All cancers but non-melanoma skin cancer
Bladder
Brain, nervous system
Breast
Cervix uteri
Colorectum
Corpus uteri
Gallbladder
Hodgkin lymphoma
Kaposi sarcoma
Kidney, renal pelvis and ureter
Larynx
Leukaemia
Lip, oral cavity
Liver and intrahepatic bile ducts
Melanoma of skin
Multiple myeloma and immunoproliferative diseases
Nasopharynx
Non-Hodgkin lymphoma
Non-Melanoma skin cancer
Oesophagus
Other pharynx
Ovary
Pancreas
Prostate
Sarcoma
Stomach
Testis
Thymus
Thyroid
Trachea, bronchus and lung
Specialities
Hematology and hematologic malignancies
Palliative Care
Pathology
Pediatric oncology or childhood cancer
Radiation Oncology
Surgery / Surgical oncology
Blog
About
Login
Project leads
Collaborators
Molecular Imaging of Protein Glycosylation in Living Subjects
Adam De La Zerda
0 Collaborator(s)
Funding source
National Institutes of Health (NIH)
Follow
+ Project
+ Post
+ Event
Info
People
Posts
Adam De La Zerda
Stanford University
Stanford, United States
Related projects
Allen C Gao
Interleukin-6 and Castration-Resistant Prostate Cancer
Prostate
Pathology
Harry Ostrer
Genomics and Predictive Modeling of Prostate Cancer Heath Disparity
Prostate
William Figg
Clinical Pharmacogenetics
Prostate
Pathology
Valeri Vasioukhin
The Hippo Pathway in Prostate Gland Homeostasis and Prostate Cancer
Prostate
Pathology
Zijie Sun
Cellular and Molecular Properties Of PINs In Prostate Tumorigenesis
Prostate
Jayson Xiao Chen
Epigenetic changes in a PhIP-induced prostate cancer model in hCYP1A mice
Prostate
Li Xin
The Notch Signaling in Prostate Homeostasis and Carcinogenesis
Prostate
Shahriar Koochekpour
Metabotropic Glutamate Receptor 1 in African American Prostate Cancer
Prostate
Michael J Holliday
Mapping and Controlling the Segmental Dynamic Networks of Cyclophilin A as they Relate to Enzymatic Function
Prostate