» Authors » Sanchi Dhinoja

Sanchi Dhinoja

Explore the profile of Sanchi Dhinoja including associated specialties, affiliations and a list of published articles. Areas
Snapshot
Articles 10
Citations 2
Followers 0
Related Specialties
Top 10 Co-Authors
Published In
Affiliations
Soon will be listed here.
Recent Articles
1.
Fallatah W, Mary J, Dhinoja S, Vallabhaneni S, Jagadeeswaran P
Sci Rep . 2025 Feb; 15(1):5180. PMID: 39939668
Platelet production, or thrombopoiesis, is a critical process involving the differentiation of hematopoietic stem cells into megakaryocytes, which release platelets into circulation. This study employed a comprehensive screening approach through...
2.
Deebani A, Mary J, Dhinoja S, Al Qaryoute A, Fallatah W, Jagadeeswaran P
Sci Rep . 2025 Jan; 15(1):3058. PMID: 39856164
Transmembrane proteins (TMEMs) are embedded in cell membranes and often have poorly understood functions. Our RNAseq analysis identified 89 tmem genes in zebrafish thrombocytes, leading to further investigation through knockdown...
3.
Lekkala V, Shrestha S, Al Qaryoute A, Dhinoja S, Acharya P, Raheem A, et al.
ACS Biomater Sci Eng . 2024 Dec; 11(1):506-517. PMID: 39726370
Liver tissues, composed of hepatocytes, cholangiocytes, stellate cells, Kupffer cells, and sinusoidal endothelial cells, are differentiated from endodermal and mesodermal germ layers. By mimicking the developmental process of the liver,...
4.
Dhinoja S, Mary J, Al Qaryoute A, De Maria A, Jagadeeswaran P
Blood Coagul Fibrinolysis . 2024 Dec; 36(1):26-33. PMID: 39661534
Aim: This study aimed to create an f9l mutant zebrafish using clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR-associated protein 9 (Cas9) and characterize its coagulation properties to investigate its functional...
5.
Fallatah W, Dhinoja S, Al Qaryoute A, Mary J, Cheng V, Jagadeeswaran P
Blood Cells Mol Dis . 2024 Oct; 110:102897. PMID: 39413675
In mammalian hematopoiesis, megakaryocytes mature and become polyploid in the bone marrow before releasing platelets into circulation. In contrast, fish produce thrombocytes in kidney marrow, where young thrombocytes undergo maturation...
6.
Lekkala V, Shrestha S, Al Qaryoute A, Dhinoja S, Acharya P, Raheem A, et al.
bioRxiv . 2024 Sep; PMID: 39229042
Liver tissues, composed of hepatocytes, cholangiocytes, stellate cells, Kupffer cells, and sinusoidal endothelial cells, are differentiated from endodermal and mesodermal germ layers. By mimicking the developmental process of the liver,...
7.
Dhinoja S, De Maria A, Al Qaryoute A, Jagadeeswaran P
Blood Coagul Fibrinolysis . 2024 Jun; 35(5):238-247. PMID: 38874909
The aim of this study is to characterize zebrafish coagulation cofactors fviii and fv mutant fish and assess if they phenocopy classical hemophilia A and factor V deficiency in humans....
8.
Al Qaryoute A, Fallatah W, Dhinoja S, Raman R, Jagadeeswaran P
Sci Rep . 2023 Sep; 13(1):16066. PMID: 37752184
Previous studies have shown that human platelets and megakaryocytes carry microRNAs suggesting their role in platelet function and megakaryocyte development, respectively. However, a comprehensive study on the microRNAs and their...
9.
Al Qaryoute A, Fallatah W, Dhinoja S, Raman R, Jagadeeswaran P
Res Sq . 2023 May; PMID: 37162944
Previous studies have shown that human platelets and megakaryocytes carry microRNAs suggesting their role in platelet function and megakaryocyte development, respectively. However, a comprehensive study on the microRNAs and their...
10.
Dhinoja S, Al Qaryoute A, Fallatah W, DeMaria A, Jagadeeswaran P
Blood Coagul Fibrinolysis . 2022 Jul; 33(5):272-279. PMID: 35802508
The aim of this study is to model classical Bernard Soulier Syndrome in the zebrafish by targeting Gp1ba. We obtained gp1ba mutant embryos from Zebrafish International Resource Center and grew...