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1 apsulation response and for the formation of lamellocytes.
2 te concentration, and abundant production of lamellocytes.
3 ception, the encapsulation is carried out by lamellocytes.
4 not compromised in their ability to generate lamellocytes.
5 ood cells: plasmatocytes, crystal cells, and lamellocytes.
6  with layers of specialized hemocytes called lamellocytes.
7 se bacteria as well as to differentiate into lamellocytes.
8 ferentiation, except for a late induction of lamellocytes.
9 this cascade also prevents the generation of lamellocytes.
10 is response relies on the differentiation of lamellocytes, a cryptic cell type, dedicated to pathogen
11 asmatocytes, the major hemocyte subset, from lamellocytes, an activated subset present in gain-of-fun
12         In addition, many cells exhibit both lamellocyte and crystal cell markers.
13 to a dramatic increase in the number of both lamellocytes and crystal cells in the Drosophila larval
14 ction in which specialized host blood cells, lamellocytes and crystal cells, are activated and recrui
15 e to three mature cell types: plasmatocytes, lamellocytes, and crystal cells.
16  produced, plasmatocytes, crystal cells, and lamellocytes, and their differentiation is tightly contr
17  comprising plasmatocytes, crystal cells and lamellocytes are peripherally located in the cortical zo
18 tion to ensure the proper differentiation of lamellocytes at the expense of crystal cells.
19                          Similar capsules of lamellocytes, called melanotic capsules, are also formed
20 ell maturation and postinfection circulating lamellocyte concentration.
21 constitutive expression of dorsal can induce lamellocyte differentiation and cause the formation of m
22  that circulating hemocyte concentration and lamellocyte differentiation constitute two distinct phys
23  contributions of hemocyte concentration vs. lamellocyte differentiation to wasp egg encapsulation ar
24 l larval hemocyte proliferation and suppress lamellocyte differentiation, likely regulating hematopoi
25  of hemocytes and copious differentiation of lamellocytes during larval stages.
26 cipates in a switch between plasmatocyte and lamellocyte fate in a common precursor and further sugge
27              Constitutive differentiation of lamellocytes in larvae carrying these mutations is accom
28                                              Lamellocytes in mutants are either free in circulation o
29 ndance of highly differentiated blood cells (lamellocytes), normally not found in healthy larvae.
30 tion, but Dif controls both plasmatocyte and lamellocyte production.
31    Plasmatocytes differentiate into adhesive lamellocytes to form multilayered capsules around foreig
32 ystal cells (involved in wound healing), and lamellocytes (which encapsulate parasites).

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