@secret_editz5: i love when sam and colby colab with celinaspookyboo and callmekris, they need to colab more often. this took forever pls boost it 🙏 i love how it turned out though! we r on the road to 1000 followers! im so greatful thank you everyone! #CapCut #samgolbach #colbybrock #samandcolby #edit

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§ê¢rê†_ÈÐï†z
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Friday 12 June 2026 20:33:37 GMT
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star_king809
STAR 🌟 BOY :
The fact that all their numbers in numerology all align and show that they were made to be together to bring the most out of the spiritual world
2026-08-04 16:14:13
252
stayfan_4.ever
Ares :
And Garrett!!
2026-08-04 21:51:14
829
softlavender1
softlavender1 :
Now add garret into the mix
2026-08-04 14:59:17
592
rainy0dayz
Rainy0dayz :
Kris and Celina are like the woman counterparts of Sam and Colby, and I think it’s so cool that the four became friends
2026-06-26 16:23:27
431
clarity_bakugo
Clarity bakugo 🫪 :
I kinda thought it was gonna be corny and Jake guys...
2026-08-06 15:40:37
34
scarlettsbg13
Scarlett VA :
I WANT THEM BACK.
2026-06-27 00:00:57
195
dontfallasleep._
zach :
ok ignoring the fact that when i watched a video of all of them together my house burned down, uhh this is a very beautiful edit😳
2026-08-06 20:43:28
13
quadkvx
🌜arys🐞🐛💛(Noah K’s version) :
This group raised me, especially Kris
2026-06-30 01:06:36
87
virginia_dibelkaaa
virginiaaaa :
i miss kris and celina on the channel together
2026-08-05 05:49:47
20
faith_gummie0
🌈💅⭐️FAITH⭐️💅🌈 :
Imma be real, the only times I've actually watched a Sam and Colby video was when Kris and Celina were there
2026-08-09 20:32:13
5
gothic_line
Nour :
guys we definitely need a collab with kris back!!
2026-08-06 19:04:54
8
priv.emmy37
🎐🌴🚓Emmy🚓🌴🎐 :
people keep mentioning garret so that got me thinking that someone should do the dustin lucas will mike auww but with them
2026-08-05 01:40:12
29
lillianoconley
Spiderlily 🖤💙 :
This song was made for them
2026-06-26 01:31:14
61
kait.wood26
kait.wood26 :
I NEED them to do another video together like right now 😭
2026-06-20 03:54:34
13
definitelynot_inlove
Kris :
this group helped me alot through life
2026-06-26 18:00:37
34
usernwnox9y8cw
💜🖤Uzi Doorman🖤💜 :
I miss them...😭😔✌️
2026-06-20 00:54:03
44
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The kidneys are two bean-shaped organs located retroperitoneally in the upper abdominal cavity, one on each side of the vertebral column. The right kidney typically sits slightly lower than the left due to the position of the liver. Each kidney has a convex lateral surface and a concave medial border where the renal hilum is found – this is the point of entry and exit for the renal artery, renal vein, lymphatics, and ureter. The outer surface is encased in a fibrous capsule, and internally the kidney is divided into an outer cortex and an inner medulla. The medulla contains renal pyramids, which drain urine into minor calyces, then into major calyces, and finally into the renal pelvis, which narrows to form the ureter. Functionally, the kidneys are central to maintaining internal balance in the body. They filter blood through about a million nephrons in each kidney, removing metabolic waste products such as urea and creatinine while conserving substances like glucose, amino acids, and water. They play a major role in fluid and electrolyte regulation by adjusting sodium, potassium, and hydrogen ion levels. The kidneys also produce hormones such as erythropoietin, which stimulates red blood cell production, and renin, which is involved in blood pressure regulation. Additionally, they convert vitamin D into its active form, contributing to calcium homeostasis. Through these combined functions, the kidneys are vital for maintaining acid-base balance, controlling blood volume and pressure, and supporting overall metabolic stability. The kidneys receive a rich blood supply primarily through the renal arteries, which branch directly from the abdominal aorta. Each renal artery enters the kidney at the hilum and divides into segmental arteries, which further branch into interlobar arteries that travel between the renal pyramids. These then give rise to arcuate arteries that arch over the base of the pyramids, and from these arise interlobular arteries, which supply the cortex. The afferent arterioles branch off from the interlobular arteries and lead to the glomeruli, which are networks of capillaries involved in the initial filtration of blood. #osteopathy #anatomy #osteopath #kidneydisease
The kidneys are two bean-shaped organs located retroperitoneally in the upper abdominal cavity, one on each side of the vertebral column. The right kidney typically sits slightly lower than the left due to the position of the liver. Each kidney has a convex lateral surface and a concave medial border where the renal hilum is found – this is the point of entry and exit for the renal artery, renal vein, lymphatics, and ureter. The outer surface is encased in a fibrous capsule, and internally the kidney is divided into an outer cortex and an inner medulla. The medulla contains renal pyramids, which drain urine into minor calyces, then into major calyces, and finally into the renal pelvis, which narrows to form the ureter. Functionally, the kidneys are central to maintaining internal balance in the body. They filter blood through about a million nephrons in each kidney, removing metabolic waste products such as urea and creatinine while conserving substances like glucose, amino acids, and water. They play a major role in fluid and electrolyte regulation by adjusting sodium, potassium, and hydrogen ion levels. The kidneys also produce hormones such as erythropoietin, which stimulates red blood cell production, and renin, which is involved in blood pressure regulation. Additionally, they convert vitamin D into its active form, contributing to calcium homeostasis. Through these combined functions, the kidneys are vital for maintaining acid-base balance, controlling blood volume and pressure, and supporting overall metabolic stability. The kidneys receive a rich blood supply primarily through the renal arteries, which branch directly from the abdominal aorta. Each renal artery enters the kidney at the hilum and divides into segmental arteries, which further branch into interlobar arteries that travel between the renal pyramids. These then give rise to arcuate arteries that arch over the base of the pyramids, and from these arise interlobular arteries, which supply the cortex. The afferent arterioles branch off from the interlobular arteries and lead to the glomeruli, which are networks of capillaries involved in the initial filtration of blood. #osteopathy #anatomy #osteopath #kidneydisease

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